ML20027A708

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Rev 1 to Testing Criteria for Integrated Leakage Rate Testing of Primary Containment Structures for Nuclear Power Plants.
ML20027A708
Person / Time
Site: Sequoyah  Tennessee Valley Authority icon.png
Issue date: 11/01/1972
From: Blasingame J, Brown R, Gregory Cranston
BECHTEL GROUP, INC.
To:
Shared Package
ML20027A709 List:
References
BN-TOP-1, BN-TOP-1-R01, BN-TOP-1-R1, TAC-65544, NUDOCS 8110090057
Download: ML20027A708 (110)


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                                                                                                                             \     -
                                                                                       .                                       y TOPICAL PIPORT                                           [.-
                            . . . _ . . . .                BN-TOF-1 TESTING CRITERIA       .

FOR , INTEGRATED LEAKAGE RATE TESTING . OF PRIMARY CONTAI N NT STRUCTURES FOR - NUCLEAR POWER PLANTS O , Prepared by: G. V. Cranston s Senio: Engineer . Approved by: ,

                                                                                             ?       fl % H A f

v .J H. Blasingacte v R. H. Brown, Jr. ' Chief Mechanical Engineer Engineering Specialis: Issue Dates

                                                     ~

Revision 0: February 1, 1972 ( Bechtel Corporation San Francisco, California Revision 1: Novenber 1, 1972 3 I lC& LOO 57 A'A

TABLE OF CONTENTS

                                                                 .                                                        by

1.0 INTRODUCTION

2.0 TEST DURATION CRITERIA 2.1 Historical Data 2.2 Duration Criteria , 3.0 ANALYSIS HETHODS - 3.1 General Discuscian , . 3.2 Absolute Method , 3.3 Total-Time and Point-to-Point Calculations 4.0 TEST INSTRUMENTATION ,- rd 4.1 Parameters Monitored 4.2 Drybulb Temperature .; . , 4.3 Dewpoint Temperature (Vapor Pressure) ' ' 4.4 Absolute Pressure - ' 4.5 Instrument Error Analysis 5.0 COMPUTER PROGRAM AND PRINIOUTS 5.1 General Discussion 5.2 Correction Data su= mary 5.3 Report Printout 6.0 LEAK RATE COMPUIATIONS 6.1 Hessured Leak Rate

                  '6.2     Calculated Leak Rate 6.3     Confidence Limits 6.4     Trend Report

7.0 REFERENCES

O i

      +                y -  -   ,.       - , - - - - - . - .
                       /,11. ::M C2ES A,

ILFeT Demonstration Report '

3. Containment ILRT Test Results -- -. . . . .

C. Calculation of Measured Leak Rate

p. Calculation of Calculated Leak Rate E. Calculation of 95% Confidence Limits ,

e 9 e 4 4 to a 6 4 e e e 4 e 4 e 4 t e

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1.0 I!:TRODUCTION e It has been custocary to conduct integrated leakage rate tests on  %- primary containment structures for a duration of at least 24 hours. The basis for the 24. hour test duration came from AEC guidelines and recommendations made in preliminary issues of ANS 7.60 (now ANSI N45.4-1972), " Leakage Rate Testing of Containment Structures for Nuc1 car Reacters." . Howevet, severni primary containment tests have been conducted over the *past two years providing additional information in regards to containcent leakage rate test duration. Test results have shown that a successful pri=ary containnen leakage rate test can be conducted in considerably less than 24 hours. Bechtel Corporation personnel have conducted, co=mencing with the Palisades Nuclear Plant, fourteen pricary containment leakage rate tests on seven contain=ents to date. It beca=a apparent early in the contain=ent testing program that the acceptability or nonaccepta-bility of the leakage rate ceasurements could be determined within a few hours (4 to 6) after the start of'the test. Early tests were still conducted for 24 hours in accordance with the original guide-lines until suf'ficient data was collected to confirm previous observations. Twenty-four hour pri=ary containment tests were conducted at peak test pressure and at reduced test pressure at Palisades, Point Beach Unit 1, Point Beach Unit 2 and Pilgrim Unit 1. , At Turkey Point Unit 3, the reduced pressure test was run for six hours. The peak pressure test was run for twenty-two hours, but ()> the test results were reported based on six hours of test data. . Subsequent to the Turkey Point Unit 3 containment test, a formal presentation was cade by Bechtel Corporation personnel to the AEC in Washington, D.C. on July 20, 1971. The AEC was represented by individuals from the Division of Co=pliance, the Division of Reactor Licensing and the Division of Reactor Standards. Data from previcus containment tests conducted by Bechtel was presented in tabular and graphical form 411ustrating the ability of the leak rate measurement system and co=puter program to determine the contain=ent leakage rate after approxi=atley six hours of testing. As a result of the July 20, 1971 meeting, it was agreed to conduct the Oconee Nuclear Station Unit I containment leakage rate test for a duration of ten hours. In August 1971 the reduced pressure test and

  • peak pressure test were successfully conducted at Oconee, each for a l

duration of ten hours. , The data indicated that a containment leakage rate test can be successfully run in less than twenty four hours and it scens neither necessary nor desirable from a practical standpoint for a utility to , commit to a 24 hour leah race test.

                                                                                                   ?)

1-1 m*

          -e   ee
   *In :' rcn' 1972 ths Turksy Paint Plant Unit 4 egntainment intscratsd lask

(

       .i t . te;t v2s aatisfactorily cc=plettd in Icss than twanty four hours.

p ,. ten: durations for the peak and reduced pressure tests were 8't hours ar,' rir. hours respectively. Theugh data presented to justify containment leakage rate tests for - durations of Icss than 24 hours was originally based on pressurized vater reactor contain=ents, similar criteria can be applied to boiling ( water reactor contain=ents. In June 1972 the primary contain=ent inter. rated leak rate test was satisfactorily completed at Pilgri= Unit 1. At the request of the client both the peak and reduced pressure tests were run for twenty four hours. F.owever, review of the data confirmed th-c the criteria previously applied to pressurized water reactor ( containments also applies to boiling water reactor (Bk'R) containments. ' The Pilgrim Unic I containment integrated leak rate tests could have been satisfactorily run is less than twenty four hours. The instru=enta-tion used and the method used to measure the leakage are the same. In general, only the containment size and maximum allowable leakage rate vary from site to site. The reco=nended criteria for determining when a containment integrated leak rate test is successfully completed is presented in Section 2.0. s Detailed explanations as to how the leak rate is determined and reported are presented in subsequent sections. Section 4.0 describes instru=entation previously and currently used by ' Bechtel personnel. Ucuever, different instrumentation =ay be used on future containment integrated leak rate tests if it can be shown that the instrumentation provides equal or better test progress and results. e e e e # e

                                  ~.                                                (

4

  • 8 1-2
  • p
                                                                                              ~

2.0 TEST DURATTON CRITERIA

                                                      .                                          cf 2.1   Historical Data                                                         . s, This discussion is based on fourteen containnent integrated                        -

leak rate tests conducted on seven containceutc during the past two years. Peak pressure and reduced pressure tests were conducted at: Palisades Nuclear Power Station; Point Beach Nuclear Pcuer Plant Unit 1; Point Beach Nuclear Power Plant Unit 2; Turkey Point Plant Unit 3; Oconee Nuclear Power Plant Unit 1; Turkey Point Plant Unit 4; and, Pilgrim Nuclear Power Station Unit 1. A coeputer printout of the test report for each of these tests is provided in Appendix B of this report. Additionally, a graph of the Calculated Leak Rate versus Test Duration is provided for the reduced pressure tests (Figure 3.1) and for the peak pressure tests (Figure B.2). ' 2.2 General Discussion , The objective of conducting a containment integrated leak rate test.is to verify that the integrity of the contain=ent is in compliance with the criteria set forth in the plant Final Safety Analysis Report and Technical Specifications. This objective is acco=plished by pressuri=ing contain=ent and 99 measuring the resulting leakage of contained air. Dh p j The data is then statistically co= piled and reported to enable test personnel to make a decision as to the test results based on the data presented. A review of the data shows that in practically every case the magnitude and the trend of the calculated leak rate indicates a satisfactorily completed test in less than twenty-four hours of test duration. Based upon this review the following contain-ment integrated leak rate test duration criteria were formulated. A. Bechtel Co=puter Program The decision as to whether or not the leak rate is satisfactorily

                                                               '       '     '     ~

completed is determined from the m @ the e . ak r g the s ovided by the Bechtel Corporation computer program, and the judgment of test personnel based on an overall review of test data and on previous testing experience. 9 2-1 8 - se e e

                                                                                                                                             ~

I Additionall'y, it should be noted that analysis of data is based on information re:eived from the Bechtel containmen structure integrated leakage rate test computer program printouts.

                                                                                                                  ^
                                                                                                                               ^~                                       ^ - i-
                                                                 ' ~'

( T' _ ~ - . - - -_ as described in u In addition to co=puting Section 6 of this topical report. the leakage rate, the Ee:htel co=puter printouts ' ' ' ^ provide

                                                                                                                                                        %n and eger s*_-

information concerning the Mumm, ta. . c (J Consequently, the below listed criteria r.ay not be useable by others using different methods to analyze dat B. Containment At=osphere Stabilization'

                                                                                         ' '~                -
                                                                                                                                         "*^*---~ee"u A-                  .........___

ve. . This plot yields a farily s=ooth curve which will approach a straight line. A sloped straight line indicates that . a heat sink or heat source (due to ventilation system If (

                        '                          operation for exa=ple)sinks                exists    inside are                 the containment.the plot vill insignificant heat sources or heat become horizontal.

If the status of heat sinks or sources changes during the test

                   .                                       for example) the slope of the line vill of course c                                                           '

The pressure-time curve should follow the

                           .                               W    d.

temperature-time curve. For exa=ple if the 0 current contain-ment air te=perature and pressure are 70 F and 65 psia, respectively, and the te:perature drops 0.10F in one hour, (the pressure should drop 0.012 psi or more (depending on the lea , rate) during the same hour. ( 2-2

                                                                                                                         ~~~
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                                                                                                                                                                               =
                                                                                                                                                                  . . .                             -e

- _ _ _ _ = _ - -- -_ - _ _ _ _ _ _ _ _ _ __ w -- - - - , - - - + -

C. Sensor Palfunction er

                                                                                                                                                    '~

In addition to the above plots the recorded data of individual sensors must also be continuously reviewed. T"gummundsundesarch , dl;e. Deviation fron the trend may' indicate a faulty sensor. In general, the nu=ber of sensors that can be lost without having to abort the test is a function of the nu=ber of sensors used, the sensor locations, and the volume fractions

                                           .                        assigned to the sensors.

However, if data recorded over the past five hours indicates that dewpoint temperatures, i.e. partial pressure of water-vapor, have stabilized and any changes are not of an order to cause error in leak rate calculations, then calfunction i of any or all of the dewpoint sensors shall not require aborting the test (See ANSI N45.4-1972, section 7.9). N

                                      ~.                            1 f; -                     - ,
                                                                                                    >-..t...t
                                                                                                              . _ _ _ _ _ _ _ _ _ _ __ ___, - st b

At ing, D. System Verification - Subsequent to calculating the leak rate a superimposed leak rate of known magnitude is established. Data for verification portion of the test is reviewed and analyzed in the same canner as the data for leak rate portion of the test. 2.3 Duration criteria ~ Specifically, the following criteria shall be met in order to consider an integrated leak rate test satisfactorily co=pleted: A. Once the contain=ent is at test pressure the containment atmosphere shall be allowed to stabilize for about 4masambaumE.

                         ,                                       The atmosphere is considered stabilized when:
1. The rate of change of average temperature is less than 1.00F/ hour averaged over the last two hours. ,

or . Q

                                                             . 2. The rate of change of temperature changes less than 0.5 F/

hour / hour averaged over the last two hours. )

                           ,                                                           2-3 9   e

B. Data Recording and Analysis k The Trend Report based on Tm"' -- "te"'- 7 shall 1. indicate that the magnitude of the calculated leak rate is tending to stabilize at a value less than the maximum allowable leak rate (La). (tote: The magnitude of the & calculated leak rate ray be 6 as it d fro - "-"' " or last twenty data points, n en ever provides the most j points. the calculated leak rate can then be ph If th k , (La)

  • and
2. The end of test upper 95% confidence limit for the calculated Icak rate based on Total Time calculations shall be less (han the t:aximum allowable leak race.

and .

                                                                                 ,__,..__..s._                      . .. ,

m ._ _.2 3, c , of test or last twenty data points, whichever provides the most data, s te. and

4. Data shall be recorded at approximately equal intervals and in no case at intervals greater than one hour.

and .

5. At least twenty (20) data points shall be provided for proper statistical analysis. .
                                                                                                                                                                   .(

and

6. In n'o case shall the mini =um test duration be less than six (6) hours. .

C. Verification

1. Contain=ent creosphetic conditions shall be h 8
2. The verification test duration shall be approximately equal ,.

to half the integrated leak rate test' duration. Q-2-4

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3. Result,s of this verification test shall be acceptable provided the correlation between the verification test e,.

data and the integrated leak rate test data demonstrate ., an agreement within plus or minus 25 percent. e e

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 /      3.0        ASALYSIS FETHODS i

3.1 General Discussion . The two cethods of leakage rate testing generally applied to primary containment systems are the Reference Vessel Method and the Absolute Method. Both methods are described in ANSI N45.4-1972, " Leakage nate Testing of Containment Structures for Nuclear Power Plants." d , en p -

                                                                                      .e.

Both procecures, Io w nd W ., are described in ANSI N45.4-1972. 3.2 Absolute Method The method of leakage rate testing employed by Bechtel Corporation for primary containment structures is the Ahmeissammbaused since Bechtel testing experience has shown that the Absolute Method is currently more practical for the testing situations encountered. Using. instrumentation of co= parable accuracy and repeatability

                       ~

both the Absolute Method and Reference Vessel Method provide comparable leakage rate measurement results. However, the Absolute Method is preferred by Bechtel for the following reasons: A. To accurately determine contain=ent atmosphere conditions all regions of the containment should be sampled. This

                               .can be accomplished easily and relatively inexpensively using the Absolute Method.

B. The leakage rate formula for the Reference Vessel Method

presented in ANSI N45.4-1972 assumes that reference vessel atmosphere and containment atmosphere te=peratures are equal. This temperature equalication is generally difficult to attain. Therefore, the usual Reference Vessel Method can make the reference vessel a gas thermometer and the shorter the ti=e interval between taking data the greater the error associated with a variable te=perature lag. ,

C. Reference Vessel Method instrumentation located inside the contain=ent is susceptable to leakage. Consequently, an additional leak rate test must be conducted on the reference vessel system. Also, due to their complexity.

                         "g.) a r.inimum nuuber of vessels would be built and installed.

r.",,9;.cli _s-(Should a small leak occur in a reference vessel the contain-ment must be depressurized to make repairs - a time consuming and costly operation'. Absolute Method instrumenta-tion located inside the containment is not susceptible to cuch failure. 3-1

D. Due to redundancy provided by the number of sensors

                                                                                                                                                  .}(,
 'A'    " ' ~ ' '                           installed for the Absolute Method, should a smalf                                                     .
       ,. ,       ,., . d . J '.            percentage of the sensors nalfunction the test need not be aborted. The inoperative sensors are simply factored out of the. program, volume fractions recomputed for the remaining sensors and the test continued.

3.3 Total-Time and Point-to-Point Calculations (

                                    'r                                                                                        and
                                   *Po                                                                                                 re 1 6 These procedures are described in ANSI N45.4-1972.                                                            ,

Leakage rate test reports were originally based on the Point-to- ,,, Point calculations as recommended by the April 1970 issue of .fE"7 *4, ANS 7.60 (now ANSI N45.4-1972) . Now, however, as reco== ended j/'f

  • by Appendix J to 10CFR Part 50, " Reactor Containment Leakage Testing for Water Cooled Power Reactors," leakage rate test reports are based on the Total-Tica calculations. Experience has shown that Total-Tice cniculations provide better results.

Additionally, the current revision of ANSI N45.4-1972 recommends the Total-Time procedure. The Total-Time procedure is preferred since it reduces the effect of instrument errors on leakage rate computations as the total test duration increases.  !"' er__. ____ . . .;ich m,_

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                                                                                                          , _ r , , ,, g ,

h of 6.m -..__ __

                                                                                      '_---'-l'                             __-- vulnt

_nts. As an exa ple, the following illustration is provided for a time distortion effect called time parallax: Assume that the 1400 data was actually taken at 1402 but recorded as taken at 1400. The 1430 data was taken on ti=e. The test started at 0800. Data is taken every half hour.

                                                                               ~

l The 1400 Measured Leak Rate using Total-Time calcula-tions vould be in error by a factor of . l 3 (

                                               +2 min            +2 min

(} . t 6 hours 360 min

                                                                             =    +0*0056                                  -

i J%

              ,'}
                              } -l             or about +b%.           The 1430 Measured Leak Rate would c .~.                '
                                      ,        be correct.                                                                                          ,
                . .9
             '< ,'. I'                         on the other hand, the 1400 Measured Leak Rate                                                        .

g,[~ 7 using Point-to-Point calculations would be in error

         'i                 b                  by a factor of D
                                               +2' min           ,
                                                                   +2 min
                                                                              = +0.067                                                                ~I

( 0.5 hours 30 min or about 6.7%. The 1430 Measured Leak Race uoQld be in error by about the same amount except opposite in sign.

  ~

The Point-to-Point procedure is retained as part of the computer report printout since this method of calculation will core rapidly indicate departures from the trend late in the test . period. , a

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4.0 TEST INSTRO U TATION 4.1 Parameters Menitored During the prieary containment leakage rate tests, measurements are made of containment u.=, Mt te% (for vapor pressure determination), and h pM. 4.2 Drybulb Temocrature T damagango employing a sensitive element of extremely pure copper wire, wound and annealed to minimize strains. This construction provides a definite resistance value at each te=perature within the range of the detcetor. This stability and accuracy assures the repeatibility so important in leakage rate calculations since computations are based primarily on measuring the change in tc=per-ature and not on ceasuring the actual teuperature. Response time for 90% of a temperature change is about 40 seconds. Giammhm6Amumi-a Generally, twelve to twenty-four resistance th'ercometers are located throughout the contain=ent. The nu=ber selected is a function of the contain=ent free air volume, the contain=ent configuration, and the redundancy desired to insure a representative containment air sampling should there be temperature sensor malfunctions. The

   ,                locations of the sensors are selected. based on a temperature survey, to provide a representative sa=pling of containment atmosphere temperature. Each temperature sensor is assigned a volume fraction which is based on the fractien of the containment total internal free air volume, i.e. temperctuce zone deternined by tecperature survey, that the sensor is coattoring.

The recorded values of temperature for each temperature sensor are fed into the computer. The co=puter program then corrects for volume fractions, calibration curves and conversion tables, as required, and co:putes one total, corrected, average containment atmosphere te=perature in degrees F. , 4.3 Dewpoint Te:eerature (Vapor Pressure) Dewpoint temperature sensors generally used are described as follows:

a. Aluminu oxide humidity sensors which consist of an aluminum strip which is anodized by a special process to provide a porus oxide 1,ayer. A very thin coating of gold is evaporated over this structure. The alu=inum base and the gold layer form 1 the two electrodes of what is essentially an aluminum oxide ,

capacitor. Water pressure directly affects the electrical { capacitance and hence the sensor output. Systen accuracy is )

                                 +10C or +1.30F over a Dew / Frost point temperature range of        !
                                 -1100C to +2CoC, with a repeatability of +0.5 C in the humidity range co=monly encountered during the test.                         l 1

4-1 i

                  - . . - aw. ayanamm e ** -

(

b. Feristance dependent humidity sensors which have an insulator seface consisting of an epoxy filled fiberglass cloth on which a c deposited a pair of inter:cshing gold fingers. The disc is mounted on a two-stage thermoelectric ecolcr. Current to the cooler is controlled by comparing the sensor i=pedance to a fixed resistor. The dcupoint determinination is based on conductivity. System range is -200F to 1400F with an accuracy (

a re Generally, six dewpoint temperature sensors are located throughout the containment. Dewpoint temperature sensors are located following

  • v a temperature survey and each sensor is assigr.ed a volume fraction corresponding to the fraction of the containment internal free air volume monitored by that sensor.

The recorded values of dewpoint te=perature for each sensor are fed into the computer. The co=puter program then corrects for volume fractions, calibration curves and conversion tables and computes one total, corrected, PN 4.4 Absolute Pressure

     -         The pressure sensor generally used is a precision pressure Fage which consists of two parts: an interchangeable fused-quart:                                                      (. -

Bourdon tube capsule and a null-sensing optical readout unit. i Optical coupling between pressure sensor and readout eliminates reactive and frictional forces on the sensor, assuring optimum repeatibility. P.ange is 100,000 counts full scale; resolution 0.001% of full scale; repeatibility 0.001% of full scale; and, accuracy of _e . The recorded value of pressure is fed into the computer. The computer program corrects for a tube constant associated with the Bourdon tube and computes one total, c ent

              , at 4.5      Instrument Error Analvsis                                                             ,

(, The analyses are used 7; .. _ . - - '. - -->"-- > -"' e. primarily to select a balanced integrated leak rate measurement

                                                                                      -'-^--he system and evaluate, W ti ^^                                     .

ed

               .s m The                                                                                     s. Eb>

err se 1 1 6 - _ _ . a _ _1 - ^ - -

                                                                                                                 - _ ' hanges ta-in tG        ~           U                                 --                          .

bi'**"---'- ' '- jul . However, both analyses are , provided. I

                                                                                                                                      )

I . i 4-2 l l f l . I

4 o f

                        ..CCUPJ.CY ERP.OR A?:ALYSIS The measured leak rate in vaight percent per day is computed using the absolute =ethod by the formula:                                          ,

I T H = (100) (24,) i 1P~ n (1) 1 (g) 7--n p1 where: . Pg =Pg-Pyg = total containment atmosphere absolute pressure, in psia, at the start of the test, corrected for water vapor pressure. P, =P -P = total containment atmosphere absolute 2 pressure, in psia, at data point n after start of the test, corrected for water vapor pressure.

                                                                                                         ~

T y ,T, = containment mean atmospheric temperature in O R, at the start and at data point n, respectively. . H = test interval in hours between time 1 and time n. R = gas consttnt (assu=ed to be a constant for the - entire range of pressure and temperature). The change or uncertainty interval in M due to uncertainties in

                   ,   the measured variables is given by:
                                            '   ~

2400 I2 I2 Ob4 eM

           .                  bg       =

H dM dP 6

                                                                                   +     dM    *6                D+"

dP 2 2} 1 1)l IdM 6 \ dM 6 b

                                         +jdT     -

T l + - T (g 1 j dT 2 2 where 6 is.the standard error for ea'ch variable. This formula

                                                                                                                  + .4 ,+

N Even though the TorEla is deterministic it does, 'Q " however, allow accessment of figure of merit for various equip-ment to be used in the measuring systco without the need for assembling and calibrating the system as an entity.  :

                                                       .e

Th3 arrar in M citar differentiatin; is: *

                                                                    ~                                                                                    k,._
                                                                             -                 2

[

                                                 "    2400                    'l     e                 PT2g 2
                                    *M                                                                                ,P H

(~ E 12

  • 2
                                                                                          /            -2 Pg T2 1

(3)

  • I F 2 yT 2 'b 2 e *
                                                     +      -

p T + - T

                                                         *.           12                           2
                                                                                        \P g T2                 -                       -

l'g where: '

                                 "P 1            =6              '

p1 ep =6 p

  • 2 2 "T " "T g " "T2 ~~ ~

For the purpose of developing a finite number for eg using ' equation (3), it'is necessary to assume certain containment I conditions based on historical data encountered in previous Bechtel tested containment vessels. Therefore, the following h conditions vill be assu=ed to exist: '

1. For purposes of cocparison to other tests H=24 hours.
2. Containment leak rate is essentially zero, that is:

Pg =P y . Ty =T 2 P yg =P V2

3. Containment mean absolute pressure = 60 psig. '
4. Containment mean atmosphere temperature (drybulb) = 800 F =

539.70R based on 20 volume weighted temperature sensors. . Equation (3) has been verified by 10. Joroshek and E. L'eipport, Tightness Investigations o.' Reactor Eafety Pressure Vessels,".Vo. 13. No. 3, March 1961. 2) 4-4 p. - -- -- - - y

T 1

    .                                                                                            - s-
        ,                                                                                       T i

S. Containment mean dewpoint temperature = 70CF based on ' 6 volume weighted dewpoint tenperature sensors. Equation (2) becomes: . fe T3 2-h fe p }2

                                                                       +                                                       (4) e'M        =          100 2P 21 T                                             -

i / ( _ where:

                                    =         the error in pressure which accounts for the
                         *P                   error in the total pressure measurement system; both total absolute pre.ssure and ' water vapor pressure.                                    ,

I ep =  ! (ep )2 + (e p }2 j T V ep = inst. accuracy error / ino. inst. = error in i T total absolute pressure in psia, ep = inst. accuracy error / Vno. inst. = error in V vater vapor pressure (dewpoint) indicator in psia at 70 F. s = error in 7 e T'

                                      =         inst.accuracgerrr/Vn.1st.R.                                                         ._,

temperature, Substituting the instrurant accuracy values for the instrumen-tation previously described in this section into above equations getwa s ytaldst gh0i.i k - gos W 'S ap = 1(0.015".)(scale reading)/g . ' o,o d *: 3 -

          -                                                                                                             '                          U
                                         =       +(0.dOO15)(74.700 ps1.2)
                                                                                                                                         ,. e nv "'a -

ep = 10.0112 psia T 11 C_ , 1 1.80F- = +0.7350F  ! y 8 8 ~ ' 0 and from the steam tables et a davpoint of 70 F ep = 10.00918 psia- . , V - e L i N l 4-5 d

b snd, - f (,', ap = 1 */(0.0112 psia)2 + (0.00918 psia)2 Y a ep = 10.0145 psia

                              ,          ,     , 0.34        ,_0.3 n i'
                                               ~M              M                     .

e = T 10.0671 R Substituting into equation (4) yields: (. y _0.0145 0.067 "M 1 74.700

  • 539.7 j e =

i g 10.0326 weight percent / day F.PEATIBILITY ERROR ,WALYSIS Using the same formulas as before the repeatibility error is substituted for the accuracy error. ' I :.= s:. : ::: 3 ep T

                                      =

1(0.001%)(scale reading) y

                                     =

1(0.00001)(74.700 psia) '~ ep = + _0.000747 psia .

                                     , 4        0.50C          _0.90F
                           ,Py                            ,

g g

  • x e =
                                            +0.367 F Py             -

add fron the steam tables at a devpoint of 70 0F: , ( ep = 10.00465 psia -

                         .e p
        .                          =

1 (0.000747)2 + (0.00465)2 %

                                                                                   ~

ep = .+0.00471 psia s

                                  ~       k.1 F             k.1 P.
                         'T                  g
                                                               ,g h

e 0 T

                                  =

0.0223 R 4-6 .-

i . Substituting into equation (4):

                                                                                                                      ~

92 1 0.0223)

                                      =                  2[0.00471                            + 2 1100
                              *g                                           74.700                   (539.7 )                                 ,

L eg = +0.0107 weight percent / day , it should be noted that the errors associated with the above analyses are the worst possible or worst probable errors caused For measurements systems with multiple by the instruments.componenats, system calibrations typically show higher p than inferred from the so called worst possible or worst probable error analyses. e 4

  • O 9

4 f . 9 e g m O O e 9 9 O e

  • e l

e t l l i e I 9 47

5.0 COMPUTER PROCT.AM AND PRINTOUTS 5.1 General Discussion , The computer program used was developed by Bechtel Corporation specifically for the purpcse of co=puting contain=ent structure integrated leak rates. The formulas used in the Bechtel Integrated Leak Rate Test Program are taken from for=ulas and guidelines presented in ANSI N45.4-1972. The pri=ary computer system currently used is the CE635 time share system. The computer is located in San Francisco. A re=ote terminal is taken to the jobsite and is linked to the Bechtel computer via telephone. The remote terminal is used to input data and receive leak rate reports at the jobsite thereby providing leak rate status reports i==adiately after data insertion. The computer program is basically a two step program. The first (tep consists of computing the total, corrected, average contain-ment atmospheric te=perature and absolute pressure and providing a printout of this infor=ation. The second step then utilizes this information, called the Corrected Data Sum =ary, to compute the leakage rate and provide a printout in report forcat. 5.2 Corrected Data Sum =arv The uncorrected value of each contain=ent ateosphere parameter monitored (drybulb temperature, dewpoint temperature, and absolute pressure) is fed into the computer program. (See Appendix A, pages A-2 and A-4). The data is then corrected as

                                                             ' "- --- ' " -    's explained in Section 4.0 and a C-       ,
                                                                             . This gives the operator an opportunity to verify that the instrumenta-tion is functioning as expected.                                    -
         . 5.3   Report Printout                                                       -

The second step of the co=puter program computes the leakage rate and provides a report as shown in Appendix A, pages A-6 through A-8. The report is divided into three sections as follows: A. Leak Rate Based on Total-Time Calculations. B. Leak Rate Based on Point-to-Point Calculations. C. Trends Based on Total-Time Calculations.

                         -----               -     ~

The Tine, Te=perature. and Pressure colu=n data in the leak rate reports are obtained from the Corrected Data Suc=ary blocks e explained previously. The Measured Leak Race, Calculated Leak Rate and 95% Confidence Limits column data are co=puted from the Corrected Data Su= mary as shown in Section 6.0. 5-1 __p

t is not the time the data was taken as in the leak rate reports, he The nu=ber of data entries since the start '- of the test is shown in colunn two. Th h C: N

  • Rath and column data are computed as shown in Section 6.0.

The Trend Report has recensly been added as a computer program report printout and is provided to give test personnel a better indication of how the test is progressing. 5.4 computer Procran Loeic Diacram A computer progrcs logic diagram is shown on Figure 5.1, page

  • 5-3 to illustrate the general flow of the user's decisions.

e b

                                                                            #         ., ,                   e 3.-a l
                               ~

s 9

                                                                                                          ') . .
                                                        ~

O k an ) b

              '                                                                                                          Bechtel Corporation (SIGNON )

(RESTART?) *

                                                                                                      $NTER              BASIC /
          \ ENTERDATE OF TEST     STARTING /
                                                                      /                                 \          DATA          /

t > 4 ENTER PORTION NO / ENTER PREVIOUS \ OF BASIC \ VALUES ? / DATA YES iOPTIONS? YE INPU FROM\MO

                                             -                                                                  FILE ? /
                         '                                                                    FILE                                       ENTER CORRECIEDN, DATA                                                                     

SUMMARY

DATA / LISTED o o ( y' y .

           \ ENTER               NEXT    / SET /

OF DATA L (ERROR?) l TREND I ) ENTER / . TREND NO REPORT l

  'OORRECTION/

o .

SUMMARY

OF MEASURED DATA . TOTAL TOTAL TIME y s YES (ERROR?) . 1 NO

                                                                                                                                                    ]

NTER L. PORT / , VARIABLES /  : POINT REPORT o

                                                                  . TIME                               \ ENTER             NEW /                    _,
                                                                                                                                                          )
                                                                                                       ~ \ START TIME /
                                                                  . TERM                                   [SIGNOFF) 7                                           Y 7                                CONTAINMENT INTEGRATED ~ LEAK RATE TEST PROCEDURE COtiPUTER PROORAM LOGIC DIAGRAM

' Figurc S.1

             . 600      LEAK RA~E CC:!?UTATIONS
  ,/                    6.1         Measured Leak Rate The formula for co:puting the measured Icak rate (M) is taken
     ~                              from M'SI N45.4-1972, " Leakage Race Testing of Containment                                ,
  • Structures is forinNuclear also given Reactors." The derivation of the formula MiSI N45.4-1972.

The formula is as follows:

                                                  " 2400        ~

T1 (P2-Pv2

  • H T2 I# 1~PM) , ,

where, - M = measured Icak rate in weight percent per day. H = time interval, in hours, between measurements. T g,T2 = mean absolute te=perature, OR, of the contain-ment atmosphere at the beginning and the end of the test interval (H) respectively. P3,P2 = mean total absolute pressure, PSIA, of the containment atmosphere at the beginning and

                    ,       ,                       end of the test interval (H) respectively.

Pg ,Pv2 = mean t tal water vapor pressure, PSIA, of the containment atmosphere at the beginning and end of the test interval (H) respectively. F1 = P1 - Py1 '

  • P2 =P2 - ?vl .

Sincethecomputerprogramcorrectstheconta1bentaccosphere

                                ' absolute pressure for water vapor pressure prior to cocputing the leak rate M, equation (1) becomes:

P 2400 1 2 M = ~ ( H T2 P1 * ' The values of time, temperature, and pressure required to calculate M using equation (2) are taken from " Temperature and Pressure

                        ,         Corrected Data Surr.ary" block of the computer printout for both the Total-Time and Point-to-Point calculations.

An explanation of the origin of the " Temperature and Pressure  : Corrected Data Sumary" block is presented in Section 5.2. l

                                                                     ~

1 6-1 i 9 n-- - - ,- - - - - - - - , - y

Appendix A to this report provides a computer printout report of an actual leak race test with a known leak. A tabular listing l' of measured leak rates is shown on pages A-7 and A-8. A plot of ' the censured Icak rates for leak rate based on Total-Time - calculations is provided on Figure A.1, page A-9. Appendix C provides a sample proble= Lllustrating how the measured leak rates (M) were calculated in the ILRT Demonstration Report I (Appendix A) . 6.2 Calculated Leak Rate Since it is assumed that the leak rate is constant during the testing e period, a plot of the Measured Leak Rate versus Time would ideally yield a horizontal, straight line. Obviously, sampling techniques and test conditions are not perfect and consequently the values of measured leak rate deviate from the ideal straight line plot situation. ng ti- e, c , for a set of =casured data such that the sum of the squares of the deviations of each measured data point from the straight line is minimized. Using this statistical process a regression line is "best fit" to . the calculated values of measured leak rates. ' ' - ' - - ' ' " ' - The regression line equation for the Least Squares "best fit" straight line is: L = A + Bt (3) and therefore, the calculated leak rate at some specific time (t) is expzessed as: Li - A + Bei - (3A) The deviation of the censured Icak rate (M) from the calculated . leak rate (L) is shown graphically on Figure A.1 in Appandix A and 5 is expressed as: t Deviation =Mi-Li It was hentioned previously that the regression line is "best-fit" . I to the measured leak rate data by minicizing the sum of the squares of the deviations (i.e., the sus of the squares for error). Expressed

  • mathematically we wish to minimize:

i SSQ = j[(Mi - L i)2 (4) 1 I l 6-2 . l l

    /                                                    were SSQ is the sum of the squares of the deviations and f
 }                                                                                                      .

n -

7. y . .

i= 1 - Substituting equation (3A) into equation (4) yields: 2 - SSQ =2 Mi - (A + Bti) (5) Using differential calculus, the nu=erical values of A and B that will miniciza SSQ ccn be determined. It can be shown that A and 3 are the sclutions to the following pair of simul-taneous linear equations: (t.g - t) (Mg - 3) I '" .

                                                                                   . (c - t)4                                                                ,

n2t fg M - (2ty)(2M g) B = (6) n2t g2- (2tg)Z ,,

                                                               .A     . R - 31                                                    '                   -

(7) where, ME bd M fk g, i y,m M /,cb y n . It f - t = ,

                                                                                                                                  ,                                          (9)

Substituting equations (S), (8) and (9) 'into equation'(7) yields an alternate equation for A:

          ,                                                     A     =

(.I M f ) G ti ) - (2 t )i (2 t M g1 ) (10) 2 n2t g - Gt y)2 Equations (6) and (7) cre referred to as the Least Square Equations and are used by the cosputer program to co=pute the calculated leak rate for the Total-Time and Point-to-Point calculations. Appendix A to this report provides a computer printout report of an actual leak rate test with a known leak. A tabular listing of calculated leak rates is shown on pages A-7 and A-8. A plot of the calculated leak rates for leak race based on Total-Time calculations is provided on Figure A.1, page A-9. - a~ A 6-3 e-

   ~

Appendix D providas e sample problem illustrating how the calculated leak rates (1) were computed in the ILRT De=onstra- ' tion Report (Appendix A). . 6.3 Confidence Li :its Even though the regression line is statistically deter =ined to minimize the su= of the squares of error, the valtes of calculated leak rate cannot be considered to be exactly correct. If the containment integrated leak rate test were run a number of tices, under the same conditions, the calculated leak rates would be close in value but not exactly the same each time. However, based on statistics we ccn establish confidence limits . associated with the regression line such that the limits of the calculated leak rate computed would successfully enclose the 7 true value of the desired paraceter a large fraction of the time. 1 This fraction is called the confidence coefficient and the interval [ , , , vithin the confidence limits is the confidence interval.

        /. i             Confidence li=its for the integrated leak test computer program are determined based on a c                                                                                                       Tansa l       . me
 ,rj                     d
   -)

9 To determine the value of the confidence 11=its the following

  • q-'

y statistical infor=ation is required: tM WIIW W W W R , e d . b ? desdesulupn, and n.

                                       , as the name implies, is                                                                                                     ey 0

im _. The variance of the measured leak rate

                                                                                                                                               *h (M) from the calculated leak rate (L) is_given by: ., !w                                                                                                                     .

s2 = sso 6 ., 59P

                                                                                                 -               \'I    61 di.b 

j n-2 w 4. g= (11) w 3,,

                                                                                                                 ~

vhere s2 is the variance and s is the standard deviation based on (n-2) degrees of freedom. SSQ is co=puted from equation ~ (4) . 5.' The standard deviation has more practical significance since computing the standard deviation returns the measure of variability to the original units of measurement. Additionally, it can be shown , that given a normal distribution of measurements, approxicately 95% ,9 ? l, * , of the measurecents will fall within two standard deviations cf i [

                                                                                                                                                                                       ,ef.-

the mean. N -- ~~- / The number of standard deviations either side of the regression line which establish a 95% confidence interval are more accurately  : determined using a statistical table called a " Table of Percentage Points of the T-Distribution" and provide increased confidence in , outcomes for small and large sample sites. -- 6-4 m_ * * -

                 -..eem
                                                                                                                     . - - - - - . - _ . . _ ,    -,-,--_g              -,             .,

O Since we arc interested in reporting a single value of calculated leak rate based on massurements taken over a specific time period, an additional f actor is applied to the for=ula for computing the variance and hence, the standard deviarion. , For additional inforcation concerning the use of the T-distribution and the use of the factor applied to the formula for determining variance and standard daviation consult reference 1 or any similar publication on probability and statistics. The Table of T-Distributions has been formulized for use by the

                                   . computer program as fell.ows:
                   ,i0f 7
             ,,c ~

j ." # T = 1.95996 + 2.37226 + 2.8225 12)

       . j(b ~                                                                      (n-2)              (n-2)2
       ;ff
              ?'g,('Y"
                    ' ,, l
                                      /,h
          -    +                         where the value of T is based on 95% Confidence Limits and (n-2) degreens of freedom.

The application of the additional factor to the variance formula yields: , 2., gg g .g,y

                                                                                                                                        ~

n-L-1 ,1 ,(t p - t)2 2 . ,2 -

                                                                                                                   =
                                                                                                                                             -         ~(13)     "

g [(t g- t)2 - where Pt is the time after start of test. 8 Taking the square root of equation (13) yields the standard deviation: b

              / d y, 6//d
                                                                       ~
                                                                                               - g)2 1 + 1 + (t' 8,*#d / (             Cr         = a                                                                                           (14)             ,

jy//uM

                             '                                         '             I(Ci ~ I)

[//M - The upper and lower confidence limits can now be deter =ined, the confidence li=its being equal to T standard deviations above and below the regression line. Combining equations (12) and (14) yields: (15) 4- -

  • Confidence Limits = L ,+ Tr ,
  • a ,

\ l or .

                                                         =      L+T        I                                                                             (16)        -"

UCL ,

                                                         =      L - TT-                                                                                  (17)       4-- -

LCL h where UCL and LCL are clic upper and lower confidence limits ) respectively. Sec e,I,. o .. I;>f n' i e .*

                                                     .                                                                  Q c. :... . :          .

6-5 l ',

                                                       = =em e. m .
                                                            .,-   .-.a       --           -        ,     -,w---,.             -        ,,n-    , - ,          .-        , - - - ~ - -

cocpuce the 95% Confidence Limits 1:quation program to (16) and (17) are us and Point-to-Point Calculations. for both the Total-Time ' l'.

                                                                                                                                                                      \'

leak rate test with a known leakAppendix eport of an actual A provides a co=pute Confidence Limits is shown on pag. A tabular listing of 95% es A-7 and A-8 UCL and provided on FigureLCLA.1,for leak page A-9. rate based on Total Ti A plot of me calculations is ,- Appendix E provides a sample problem ill Confidence (Appendix A). Limits were cceputed in the ILRT Dustrating how the 95% emonstration Report It should be noted that the standard devi ( . deviation reported at the bottom ILRT De=onstration Report printout r standard of the t b lequation (1

                                                                    ,           a u ated data on the at                                                     Appendix A, page A-7 and A-8.
                          ,..u vii                                                                                              e O*m      .-

(Mg - M)I f n-1 g The standard deviation is equation (14) i ' mean but to the regression line. s related not to the 6.4 h ' ( G' The trend report uses values previously -{ exception prv..we o r-of the change in calculated leakcalculated, with the n - rate~ 'colu=n, to  : th , t" . _ . .

                                                                                                                  ' 1' e
                                                                ....________...om                     e.

and i i The change in calculated leak rate is ( leak rate ictediately preceeding. eak rate and calculated difference between the late is stabilizing.The trend report is used primarily to det ermine when the leak race  !- Trend report values of calculated leak rat

          " beet-fit" values describedction in Se    6.2.e are the least squares t

I 6-6 . s

7.0 REFEREMCES 7.1 " Introduction to Probability and Statistics," by William Mendenhall. Wadsworth Publishing Company, Inc. , Belmont, California. July 1969. L. C. Cat. Card No.: 67-19290. . 7.2 Appendix J to 10 CFR Part 30 " Reactor Containnent Leakage Testing for Unter Ceoled Power Reactors." 7.3 ANSI N45.4-1972, " Leakage Rate Testing of Containment Structures for Nuclear Raactors." (Formerly ANS 7.60.) 7.4 ORNL-NSIC-26, " Testing of Containment Systems used with Light-Water-Cooled Power Reactors"., by Frank C. Zapp, August 1968. 7.5 " Final Results of the Carolinas Virginia Tube Reactor Contain-aient Leakage Rate Tests", by G. E. Bingham, IN-1399, June 1970.

                              ~.

e E e k e a I G 9 9 , to ' 6 s a e 8 9 9 5

    .                                                                                                                  O 9

A O 7-1 4 g

                                                                                               .n.,.--e         .                            ~
                      - < - -           -      w     --- -gw- - +y    y8---+w       -- ---   e          ,---#     --         -         --,      a--*--           ----e------v-               i--- - --

3 V( } '

                                                                       ,.f r ' ~" -'.    . :~ . - * . & *' -'       .Y. . _

I '" ~ ;ln '\ '- - * -

                                                                                              ~

s3/25

                                        \                   '
                                         )

J. R. Calhoun. 702 E3, C ~N *R. H. Davidsoh, 303 Pr3,T * ' R. T. Hathcote, Browns Ferry Attn: M. N. Sawyer March 19, 1975 Mr. Erik Kvaven, Assistant Chief IIuclear Procurerent Irench Tennoccee Valley Authority

 ,      112 Lupton Building Chattanooga, Tenn. 37h01

Dear Erik:

                                       . Browns Ferry 3 NELIA Inspection of IIRT 9595 Conff dence limits Enclosed cre the Appendicas A throurA E to the Bechtel 3H-TOP-1 report which was foniarded with cy letter of I: arch 6,1975 I hope thece prove useful.                                                                                 -

Va $nt y yours,

                 ,                            .. LA-.- --

J :.n R. heh. Jr. 7 y,,;3, auc:aar Departnent

                                                                                       ***"y'   ** = . 5 .T JRD:ccc                                                                       C:    -
                                                                                                        ~~

Dnc. i **; l-- ' ' &) 7 1

                                                                               ,'      }, p       3r

[- I t h6 . _ _ . _ b b (h) h el l' ' <-} MAR 2 1 1975 Morsh & McLennon incorrerated I.'21 Avenuu of t!.o Amcrms. New York.New York 10020 212/937 2000 1

             .'           =    1330,0305                                                                   '
                                                                                                       ~~

EllTER 21 TEtiP. PEAD. Ill DE6. F' .. T 1

                         = 77.59                                                                                                             -

A T 2 - *

                         = 78.51 T 3
                         = 77.72          *                                                            ,

T 4

                        = 77.45                   .           -

T 5

                         ='77.63 T    ~6
                         = 77.24                                                                                          .
                         .T 7                                                                                                       *
                                                                                                                                                                                 ^
                        = 75.86                                     *
  • k*
                                                                                                                                                                                  *~

T 8 .

                                                                                                                                                                  ~
                        = 75.97                                                                                                                 

T 9 ' '

         ~
                        = 75.88 T 10                                                                                              -
                        = 76.03                                                                    . .

T 11 .

                        =^75.88                                                                                                 -

T 12 -

                        = 76.28 T~13       .
                        = 73.15                                                                                                            ~

T 14

                        = 74.22                                                                   .

T 15 . -

                       = 73.43                                                                                                ,

T 16 *

                       .= 73.40                 '                                                                                                      .        .

T 17 '

                       = 73.48 T 18
                       = 7 0 .19                                  '

T ' 19

                       = 7 0.27
T 20 <
                       = 69.91
  • T 21 - O
                       = 69.96 EtiTEP 1 PREY . IttPIIA                                                                                          .

P 1

                       = 44.381 EllTER 6 VAP. PRE;;. Iti DEG. F VP 1                                                                                                                   -

O

               .       = 64.09 l                                                                   .

VP 2

                       = 61.12                                                                                        -
     .                 VP 3                                                                                       *                                                           *
                       = So. .1c                                                              .

P VP 4

                       = 51.43                                      '

VP 5 .

                       = 54
  • VP 6 -
                       = 51.57                                                                                                                            '

A-2 - - - - - - - t

ILPT DO!O?!STI').tTON RF.PDFT g . . The demonstration. integrated leak rate test (ILRT) presented in this Appendix is a portion of an actual containment test. In this case there was a leak of sufficient magnitude to cause the test to feil. The source of leakage was discovered and repaired and the containment was then ratested satisfactorily. An actual containment test with an excessive leak rate was used for this demonstration report to illustrate how rapidly the system detects and reports an excessive leak rate. . Pages'A-2 and A-4, illustrate how data is entered for a.given time period. ' 3 .- Pages A-3 and A-5 illustrate the computer printout of temperature, pressure. and vapor pressure after all corrections have been made for calibration curves, tube constants,'etc. Temperature is in degrees F, pressure in psia and vapor pressure in psia. The average containment atmosphere temperature corrected for volume fractions and the average containment absolute pressure corrected for vapor pressure and volume fractions is.shown at the bottom , of Pages A-3 and A-5.

                     "Temperrture and Pressure Corrected Data' Summary" values, including those shown at the bottom of Pages A-3 and A-5, are entered into the co=puter in the format chown at the top of page A-6.

Three report options are available. These include a Trend Report, a I'otal-O Time Report and a Point-to-Point Report which are shown on pages A-6. A-7 and A-8 respectively. , A plot of the Total-Time Report values is shown on page A-9. O' i . P . D . A.-1 .

R ,

SUMMARY

OF MEASURED DATA AT TIME 1330 305, , rmg TEMP 1 = 77.590 - TEMP 2 = 78.510 . TEMP 3 = 77.720

  • TEMP 4 = 77.450 , ,

TEMP 5 = 77.600 TEMP 6 = 77.24 0 . s-CS) TEMP 7 = 75.860 TEMP S = 75.970 TEMP 9 = 75.880 .- . . TEMP 10 = 76.030 , TEMP 11 = 75.880 - - TEMP 12 = 76.280 . TEMP 13 = 73.150 . TEMP 14~= 74.220 . TEMP 15 = 73.480 . TEMP 16 = 73.400 -

                                                                                                                                                                                              ~

TEMP 17 = 73.480 TEMP is = 7 0.190 ,- TEMP 19 = 70.276 r*s ~ TEMP 20 = 6S.910 - TEMP 21 = 69.960 . TPRS 1 = 44.331 -

     .                      VPRS     1=      G.296
  • VPRS 2= 0.257 . - .,

YPRO 3= 0.223 - YPRS 4= 0.188 VPRO 5' = 0.206 *

  • VP33 6= 0.189 ,

O TEMP. AtID PREOO. CORRECTED DATA

SUMMARY

                          ' TIME =      1330 p.g                         DATE =        305                                   -

TEttP = 76.423717 . . PRES = 44.191677 (- 7 ;. . .. -

 "'\                                                                                                                                                 .

A-3 . ee

                  ,. _               -         ...n
                                                                    - . . . . -                                                            -                                                                            r' T    2                                                       -
                                                                    =   78.4/                                                                                               .

T 3 ', 1 *

                                                                    = 77.54                                              -
  • T 4 -
                                                                    =   77.35       *
                                                                                                                                                                            .                                           e T 'S      *
= 77.62 T 6
                                                                    = 77.16                                                                    ,

T 7

                                                                    = 75.75                                                                                    "
                                                                                                                                                                                    .                                   .O T    S                                                         '
  • 75.85
                                                               .      T 9                                   '
                                                                    = 75.76.
                ,                                                     T 10
                                                                    = 75.92'                                                                                              -
                 *                                                                                                                                                            ~

T 11 '

                                                                     = 75.72                                           '
                                                                  . T 12'                                                                  .
                                                                    =   76.23                                                                                .      .

T 13 '

                                                                                                                                                                   .f
                                                                    = 73.06                                                                                                                                ,

T 14 .

                                                                    = 74.,14
                ,                                                     T 15
                                                                    = 73.39                                    -

T 16 ,

                                                                    = 73.32                                                  -

T 17 - 3

                                                                    = 73.42
  • T IS '
                                                                    = 70.11                                                              .                                        .

T 19 -

                                                                    = 70.23 T 20
                                                                    = 69.86 T 21                                                                                                                                              A
                                                                    = 69.90                                                                  -

i EllTER 1 PP.EOO . Ill PSI A - P 1

                                                                    -= 44.370
  • EttTER 6 VAP. PRESS..Ill DEG. F VP 1 O.
                                                                    = 64.09                                  .
                                                                 ,  VP 2                                                                                                     ~
                                                                    = 61.12
  • VP 3  ! *
                                                                    = 56.12 VP 4                                                                         . ':.                                  -
                                                                                                                                                                                                                    -     O
                                                                     = 51.43
  • VP 5
                                                                     = 54                                             .

VP 6

                                                                     = 51.5,                                                           , . -

l A-4 6 MW asp e ** * *

  • D
   -v- . --         ---,c--,-      - , ,- .- , ,., , - - , -                                , - - . , ,                                            - - - -                                  ,                -        -

- O 305

SUMMARY

OF MEA 5VRED DATA AT T SE 1400

                   .         TEMP              1 = 77.460 2 = 78.470 TEMP TEMP             3 = 77.540                                      .

TEMP 4 = 77.350 , gg TEMP 5 =,77.520 ,

                                                                                                                                                                                                                        ~

ess TEMP 6 = 77.160 ' ._ TEMP 7 = 75.750 .

        .                     TEMP             3 = 75.850 TEMP             9 = 75.760                                                                                                           .

TEMP 10 = 75.920 . TEMP 11 = 75.720 TEMP 12 = 76.230 - TEMP 13 = 73.060 ' ' 14 = 74.140 TE'iP TEMo 15 = 73.390 e

                             ' TEMP           16 = 73.320                                                                                                                                               ..

TEMP 17 = 73.420 . TEMP 18 = 7 0.110 - (" TEMP 19 = 7 0.230 ,

                               . TEMP         20 = 69.960
  • TEMP 21 = 69.900 .

TPRS 1 = 44.370 VPRS 1= 0.296 . VPRS 2= 0.257 VPP.S 3= 0.223 i YPRS 4= 0.1G8

'                                YPRS             5=     0.296 VPR3            6=       0.169                                                                                                              -

(~s ~ TEMP. AHD PRE 50. CORRECTED DATA 30MMARY , TIME = 1400

!                            s     DATE' =             305

("s

!                                  TEMP =            76.332724
  • 4 PRE 3 = 44.181110 n .

A-5

m. -s= . . .w.

r< -

                         -      -w     --s               *      ,-q    .,,
                                                                            -m-__*   -- -, - ,

w- --.y -.- _ . - - - - n. - -

IdHtti t- if t 1.Hb D tlt i EF YYYY**,*

                                        = 0800, 0 3 05
  • 78.0 09: ,Y , +.6.'s .: t< 8 - '

O

                                        = 0830, 0305, 7;.H29:82, ,-. 3-. v s': 4                                              .
                                        = 0900, 03.05, 77.590548, 44.3214 31
                                        = 0930, 0305            77.496316 44.300600
                                        = 1000, 0305            77.226938 44.233097 .
                                        = 1030, 0305, 77.127488, 44.267222
                                        = 1100, 0305, 76.972475, 44.252736
           .                            = 1130, 0305, 76.322943, 44.239474                                                                        G
                                        = 1200, 0305, 76.709837, 44.228717
                                        = 1230, 0305            76.580254, 44.213970                                                 *
                                        = 1300, 0305, 76.539358, 44.202492
                                        = 1330, 0305, 76.423717, 44.191677                                 ,
                                        = 1400, 0305, 76.332724, 44.131110                                          ,
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                                        = 9999,,,,                                              *
  • ILRT DEtiOt43TRATIOri FEFORT . ..
                                                                                   '                                                              O
                                                                           . - - 3                 .

8.06 [ 305 TIME, DATE SNAFT OF TEST T1HE AFTER START OF TEST o 6.00 HP. . .

  • TREliDO LASED Ott' TOT AL-TIME CALCUL6T10 tis HOURI DATA' f .1)

CR.CULRTEL Ch5 IN CALC LR OF TEST ENTRIES t1Ehti-DF/ ALC R LEAK FROM LAST FOlhT

                                                      ')                   .~ RA.TE- - - -

1.50- 4 0.337E+00 0.460E+ 0 0 ' 2.00 5 0.366E+00 0.373E+00 -0.874E- 01 8 2.50- 6 0.375E+00 0.397E+00 0.237E-01

  • 3.00 7 0.374E+00 0.339E+ 0 0 - 0.774 E- 02 3.50' S 0.36SE+00 0.266E+00 -0.227E-01 4.00 9 0.361E+00 0.343E+00 -0.235E-01 4.50 10 . 0.357E+00 0.3?iE+ 0 0 -0.986E-02 5.00 11 0.36 0E+.0 0 0.345E+00 0.125E-01 O 5.50 ,

12 0.360E+vo 0.348E+00 0.210E-02 6.00 13 0.359E+00 0.jl41E+ 00 0.933E-03 . THE CALCULATED LEAv RATE IS 0.349E+00 THE MAP.1 MUM ALLOi.iAILE LEAF PATE IS 0.263E+00 M THE LA~T O DATA F01 TIT. ESTABLISH A ItEGATIVE SLOFE

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1LRT DEH0tt3TRATION REFORT p' L . tit 1E. DATE OTART OF TEST 9.09 305 Tit 4E AFTER START GF 1E5T = 6.00 HF Q LEAK RATE BASED ON TOTAL-TIME CALCULATIDH5 a . . Tit 1E TEt1P . FPE000FE MEATUREL CALCULAT ED 95*'. CDriF ILE!4CE (F) (PSIA) LEAK RATE LEAR EATE ' Lit 41TO

     .        .         8.50r           77.83                44.340                  0.428E+00          0.370E+00                      0.11E+00 0.e?E+00 9.001           77.59                44.321                  0.156E+ 0 0 -      0.36SE+00                      0.12E+09 v.62E+00 9 .5 0 '- 77.50                      44.301                  0.576E+ 00 0 0.366E+00                            0.12E+00 0.61E+00 10.00'? 77s23                         44.283                  0.304E+00.Sd 0.364E+00                            0.12E+00 0.60E4 0 0 10.50'- 77.13                         44.267                  0.4 09E+ 0 0       0.362E+00                      0.13E+00 0.60E+09 11.00' 76.97                          44.253                  0.372E+00          0.360E+00                      0.13E+00' O.60E+00 11.505 76.82                          44.239                  0.333E+00          0.358E+00                      0.1EE+00' O.59E*00 12.001 76.71                          44.229                  0.311E+00          0.356E+00                      0.1EE+00          0.59E+00.
 ~

12.50o 76.56 44.214 0.325E+00 0.354E+00 0.12E+00 0.59E+00 13.009 76.54 44.202 0.GE1E+00 0.352E+00 0.11E+00 v.69E+v0 13.50.2 76.42 44.192. 0.359E+00 0.359E+00 0.10E 00 0.60E+00 14.00i3 76.33 44.181' O.357E+00/ 0.349E+00 0.92E-01 0.61E+0e IF IT IS ASSUMED THAT THE LEAK RATE IS ' CONSTANT : THE tiEAN IS 0.559E+00 THE STANDAFD DEVIATION 15 0.966E-01 ' SKEU IS POSITIVE , THE CALCULATED LEAK RATE AFTER 6.00 HubRS OF TEST IS 0.349E+00 D 4 O . O . .

                                                                                            .                    g A-7 e
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q ILRT DEMCit3TFAT10li REPDPT , Til1E, DATE ~ TART OF TEST 8.00. 305 , . .O

                             ~ TIME AFTER ITART CF TEIT =                                    6.00             HR                                     .
                =
. LEAK RATE BA3ED Ott POlttT-TO-POIhT .CALCULATIONI' e.

g- -

                                                                                                                                                                       ,p T,IME       TEMP.            PPES3UPE                    MEASUFED           CALCU;.ATED                      .

95*. CDitFIDENCE (F) (PSIA) LEAR FATE LEAR PATE LIMITS 7,no .s - G.50 77.83 44.340 0.428E+ 0 0'- 0.354E+00 -0.98E+u0 0.17E+01 9.00 77.59 44.321 -0.116E+00 0.354E+00 -0.95E+ 0 0 0.17E+01 9.50 77.50 44.301 0.141E+ 01. 0.355E+00 -0.9;E+00 0.16E+01 10.00 77.23 44.253 -0.511 E+ 0 0 0.355E+00 -0.89E+00 0.16E+01 10.50 77.13 44.267 0.832E+ 0 0 0.356E+00 -0.38E+00 0.16E+01 , 11.00 .76.97 44.25?' O.185E+00 0.?5f.E+ 0 0 -0.67E+00 0.16E+01 ti.50 76.82 44.239 0.101E400 0.157E+0C -0.G7E+00 0.16E+01

  .2.00       76.71              44.229                     0.155E+00          0.35S'E+ 0 0                  - 0. 67E+ 0 0             0.16E+01
  .2.56       '76'.56 76.54 44.214                     0.441E+00          0.359E+00                     -0.39E+ 0C                0.16E+01                       O
  .S.00                          44.202                     0.680E+00          0.359E+00                    -0.91E+00' O.16E+01
      .50     76.42              44.192                     0.13?E+00          0.359E+00                    -0.94E+00 0.'17E+01                                                  *
  .4 00       76.33              44.181                     0.333E+00          0.360E+ 00                   - 0.98E+ 0 0               0.17E+01                                 .

F IT IS A55014ED THAT THE LEAK RATE' IS Cutis TArtT: ,' - THE 11EAli 1* 0.357E+00 . THE ST ArtDAPD DEVI ATICit IS 0.504E+00. . SKEW 13 PO!1TIVE HE, CALCULATED LEAR PATE AFTER 6.00 HGUPS OF TE3T IS 0.360E+00 .

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M . N CONTAIN!!ENT INTEGRATED LE/J" RATE TEST RESULTS . Appendix B censists of computer printouts of the integrated leak rate test results for seven containments tested by Bechtel personnel.

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mg. The computer printouts appear in the follcwing order: P e,

                                                                                  .,,ag i               Palisades                 28     psig ILRT             B-4 thru B-8 '

Palisades 55 psig ILRT B-9 thru B-13 , Ch B-14 thru B-18 J Point Beach Unit 1 30 psig ILRT Point Beach Unit 1 60 psig ILRT B-19 thru B-23 *

       -         Point Beach Unit 2       30     psig ILRT              B-24 thru B-28 Point Beach Unit 2       60      psig ILRT              B-29 thru B-33 Turkey Pcint Unit 3      25      psig ILRT              B-34 thru B-37 Turkey Point Unit 3      50      psig ILRT              B-38 thru B-42 Oconee Unit 1            29.5 psig ILRT                 B-43 thru B-46 Oconee Unit 1            59      psig ILRT              B-47 thru B-50 Turke; Point Unit 4      25      psig ILET              B-51 thru B-54 Turkey Point Unit 4      50      psig ILRT              B-55 thru B-58 Pilgrim Station Unit 1 23        psig ILRI               B-59 thru B-66 Pilgrim Station Urit 1 45'       psig ILRT               B-67 thru B-74 Each printout consists of a lis' ting cf the Temperature and Pressure Corrected Data Summary, the Trend Report, the Total-Time Calculations Report and the Point-to-Point Calculations Report.                    ,

Figures B.1 and B.2, on pages B-2 and B-3 respectively, graphical'ly present the Trend Reports for each containment test. These graphs are provided to concisely illustrate the integrated leak rate test result trends for the containments included in Appendix B. , Containment integrated leak rate test results. are currently repbreed based on Total-Time Calculations,

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PALISAHF.S 28 l'S!G ILH1 , FN1Fis 1 ! *iE, 1 t'.1 > , 1 F *: h : " .F S 'i 1.h F N F l il %F is 591FN 99'/V,,,, a .O b C O , 0 5 >' /., */ 6. b l 5 71 L ', ^ *l . M O O 9 ( >

                    ~

'$ . = Oh 30 O bit o, "I t.. 5101 :"/ , 43. r* hb2 3 4

                                                  = 09 00, O S;'4, 7 6 509 t h 1, ^3. h 09 /.9 h                                                  .
                                                  = 09 30,6 Sa' ^, */ 6 522 510, 4.1 8 00 ^*'9
                                                  = 1000,0 52 4, *s 6. 51 h Sh 1, 43. h 009 3P
                                                  = 10 30,0 b2 4, *16 5 t h 4 45, 43. ~199 PO 3
                                                  = 1100,0524,76 50h528,43 7966ht D                                            "
                                                  = 1130,0 52 4, ~t6 528868,43 8002 65
                      .                           =        1200,0 52 4, */ 6 50913h, 43 799022
                                                  = 1230,0 5::' ^, ~16 5>.Mu ~t 7, 43 79 H 63 5                                            '
                                                  =        1300,0 52 4, 76 51 :s 416, 4J. 79E 643                                                   -
                                                  = 1330,0524,76 511632,43 791055                                                               .
                                                  =        1400,0 5P 4, 7 6 509 2 63, 43 7 9 6712
                                                  = l430,0524,76 511373,43 794159
                                                 =         1500,0524,76 509291,43 795151
                                                  =        1530, 0 5f'^, *l 6. S I 14 5h , 43 79 41 SF
                                                  = 1600, O W 4, 7 6. 49 tf't0 5 , 4 3 . 'I9 5*/ 6 5
                                                  = 1630, 0 59 4, 7 6. 49 P 4'16, 4.3 7 9 413x
                                                  = 17 0 0, 0 52 4, 7 6 5(10 :13 *t , 4 't . */ 9 39 "i 2
                                                  = 1730,0 52 4, 7 6 49 't2h 4, 43 79 AP27
'N
                                                 =         1 B OO,0 52 4, 7 6. a 69 (.7 6, 43. */ 914PO
                                                 = 16 30,*0 52 4, 7 6 4H 3112, 43 79 40 51
                                                  = 1900,0 $P.4, */ 6 45 7 56 3,43 792 7f,9
                                                  = 19 30. O S2 4, *i 6. Ah l > 13, 43. */9 30 *19
                                                  = 2000, O 52 4, */ 6 4h02 a  ,
                                                                                              ' b, 4.l'. */91 157             .

t = 20 30,0 d9 4, 7 6. 45 47 31, A3. *19101.I

                                                  = 2100,OS24,*t6 452133,4J.7907IO
                                                  = 2130,05:!4,76 452606,4')."/904/.9
                                                  = 2200,0 52 4, 7 6. 4 456 6P, 43. *Iv 0 3 46
                                                  = 22 30,0 $9 4, *l 6 459211., 4*s .19 019 6
                                                  = 2300,0 5:!4, 7 6 444SM 3, 41 7r.9135
                                                  = 2330 0524,76 4513FA,63.*th74hra
                                                  = 2400,0 5P 4, */ 6 452 312,43 7h927 7
                                                  = 00 30,0 52 5, 7 6 4 ^9 ^O0, 43. ~1hh P ~i 5
                                                 = 0100,0 525,7 6 445( 2 5,43 7H9b 65
                                                 = 0130,0 525,7 6 43 4468,43 7M9 661
                                                  = UPOG , 0 5'8 5, 7 6 45 S',31, 43 7 i 9 6 3 */
                                                  = O2 30, 0 52 5, */ 6 499 5 b 6, 43. *irsh 66.1                                                     -
                                                 = D 3GO, U SRS, 7 6 457h 91, 43. *th e i M I
                                                  = 0330,OS25,7t. 433954,43 7F*/33V g                     ,
                                                  = 0 40 0, O $P 5. *s ( . /..i t 5 0 's , e.'t . "t M. 9 4,.
                                                  = 0 430,0 5:15, 7 6. A m.15's d e e J . 's b */ L *tu                                       .
                                                  = 0 50 0, 0 5? b, 7 t, . 4 J a.6 51, 4 3. *s h 6 *lk'2
                                                  = 0 530,0 b2 S, */ 6. 4.l*/V H 9, 43 7H '/2 6M
                                                  = OI,00, t.5p S, 7 e 44*t e.;t 3, 4:3. ~ig e,p, 7
                                                  = 0 630,0 52 5, 7 6 4ah 611, 43 76 020V 3                                             ,
                                                  = 0700,0 52 5, 71. 450 Sh 4, 4'). 7H 71 1 I
                                                  =        0730,05i25,7/. 444549,43 7h6575
                                                  = 0b00,0 5? 5, 7 6 4~156 t '6, d') . 78 4291
                                                  = 9999,,,e
                                                                                                             '
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TIME AFTER ITAPTiOF TEOT a 24.00 HR , g,, TREfib5 BAIED Ori TOTAL-TIf1E CAL,CULATIOrl! HOOR: DATA MEPr* OF CALCULATED CH6 Ili CALC LR OF, TEST EllTRIES CALC LR LEAK FATE FROM LA3T POIfiT q 1.50 4 0.185E-01 0.230E-01 . 2.00 5 ' O.159E-01 0.134E-01 -0.956E-02 2.50 6 0.113E- 01 0.309E-01 0.17.5E- 01 3.00 7 0.229E-01 0.333E-01 0.236E-02 3.50 8 . 0.237E-01 0.3306-01 -0.294 E- 0:1 4':

                '4 . 0 0 '           9       0.231E-01            0.291E-01                   -0.389E-02
               ^4.50               10        0.244E-01            0 '.323E-01                      0.320E-02 5.00              11        0.243E-01            0.305E-01                   -0.177E-02 5.50              12        0.253E-01            0.331E-01                        0.258E-02 6.00              13        0.260E-01            0.343E-01                        0.124E-02 6.50              14        0.282E-01            0.410E-01                        0.663E-02 7.00              15        0.292E-01            0.427E-01                         0.170E-02 7'.50             16        0 . 3 04 E- 01.      0.454E-01                         0.271E-02 8.00              17        0.301E-01            0.428E-01                    -0.261E-02 0.417E-01 S.50               18       0.302E-01                                         -0.105E-02 9.00               19       0 '. 3 05E- 01       0.415E-01                    -0.244E-03 9.50              20        0.305E-01            0. 4 03E- 01                 -0.116E-02 10.00               21        0.305E-01            0.396E-01                    -0.708E-03 10.50               22        0.301E-01            0.373E-01                    -0.231E-02                              /*$

11.00 23 0.301E-01 0 366E-01 -0.694E-63 11.50 24 0.299E-01 0.351E-01 -0.148E-02 12.00 25 0.300E-01 0.350E-01 -0.156E-03 ~ - 12.50 26 0.296E-01 0.334E-01 -0.162E-02 13.00 27 0.293E-01 0.319E-01 -0.146E-02 1'3.50 28 0.290E-01 - 0.30'E-01 *

                                                                                               -G.123E-02 14.00               29        0.287E-01             0.292E-01                   -0.145E-02 14.50               30        0.285E-01             0.285E-01                 .-0.746E-03 15.00               31        0.283E-01             0.277E-01                   -0.826E-03 15.50               32        0.283E-01             0.278E-01               .        0.137E-03                               -

16.00 33 0.281E-01 0.271E-01 -0.685E-03 16.50 34 0.280E-01 0.267E-01 -0.399E-03 17.00 35 0.277E-01 0.256E-01 -0.113E-02 17.50 36 0.273E-01 0.243E-01 -0.131E-02 fg 18.00 37 0.271E-01 0.236E-01 -0.655E-03 18.50 38 0.268E-01 0.226E-01 -0.992E-03 19.00 39 0.267E-01 0.225E-01 -0.127E-03 19.50 40 0.265E-01 0.220E-01 -0.498E-03 2&.00 41 0.262E-01 0 . 21 1 E- 01' -0.870E-03 20.50 42 0.261E-01 0.208E-01 -0.338E-03 21.00 43 0.260E-01 . 0. 2 0'6E- 01 -0.227E-03 21.56 44 0.258E-01 0.202E-01 -0.4 03E- 03 22.00 45 0.257E-01 0.201E-01 -0.162E-04

  • 22.50 46 0.256E-01 . 0.199E-01 -0.198E-03
            . 23.00                47       0.255E-0.1            0.197E-01                    -0.203E-03 23.50               43       0.254E-01             0.195E-01                    -0.213E-03                              f.,

24.00 49 0.253E-01 0'.196E- 01 0.577E-04 THE CALCULATEI! LEAN PATE IS 0.i96E-01 - THE MAXIr1Ull ALLOMAILE LEAK PATE 10 0.714E-01 THE LA0T 0 DATA POIliT3 ESTABLISH A IiEGATIVE CLOPE

                                                                                                                                               ~

B-5 ,__ hm

  • r .

f"% s PAL 10ADEO 28 PSIG ILRT e TIME, DATE OTART DF TEIT '8.00 S24

                                                                                                                       .s

("s TIME AF'TEF; START. OF TEST = 24.00 $P , LEAK RATE 1:A0ED Dil TOTAL-TIME CALCULATIDM3 /Fs .TIMn TEMP. PRESSURE MEASURED CALCULATED 95% CDIFIDEriCE

' G'                  '

(F) (PSIA) LEAK RATE LEAK RATE LIMITS 8.50 76.51 43.800 0.305E-01

  • 0.311E-01 0. 96 E- 02 0.53E-01 9.00 76.51 43.801 - 0.144 E- 01 C.30SE-01 0.94E-02 0.52E-01 9.50 76.52 43.800 0.395E-01 0.306E-01 0'.92E-02 , ! O .52E-01 10.00 76.52 43.801 0.742E-02 0.303E-01 0. 9 02- 02 10. 52E- 01 10.50 76.52 43.799 0.436E-01 0.301E-01 11.00 43.799 0.SSE-02<20.51E-01 76 .~ 51 0.311E-01 0.299E-01 0.86E-02 0.51E-01 11.50 76.53 43.800 0.279E-01 0.296E-01 0.84E-02 0.51E-01 12.00 76.51 4?.799 0.193E-01 0.294E-01 12.50 76.52 43.799 0.347E-01 0.82E-02. 0.51E-01 13.00 76.51 0.291 E- 01 0.80E-02 0.50E-01 43.799 b.234E 01 - 0.289E-01. 0.78E-02 0.50E-01 13.50 76.51 43.797 0.357E 0.286E- 01 0.75E-02 14.00 76.51 43.797 0.50E-01
  • 0.336E-01 0.284E-01 0.73E-02 0.49E-01 14.50 76.51 43.794 0.545E-01 0.281E-01 e.71E-02 15.00 76.51 43.795 0.49E-01 15.50 0.4146-01 0.279E-01 0.69E-02 0.43E-01 76.51 43.794 0.4 74 E-01 0.277E-01 16.'00 76.50 0.67E-02 0.49E-01 43.796 0. 267E- 01 0.274E-01 0.64E-02 0.4SE-01 16.50 76.49 43.794 0.31SE-01 0.62E-02 17.00 0.272E-01, 0.4SE-01 76.50 43.794 0.350E-U1 0.269E-01 17.50 76.50 .0.60E-02 0.4?E-01 18.00 76'.47 43.794 0.302E-01 0.267E-01 0.5SE-02 0.46E-01 43.791 0 .-317E- 01 0.264 E- 01 0.55E-02 18.50 76.48 43.794 0.222E-01 0.47E-01 19.00 76.49 43.793 0.262E 0.53E-02 0.47E-01 0.297E-01 0.259E-01' 0.51E-02 C.47E-01 19.50 76.48 43.793 0.244E-01 0.257E- 01 20.00 76.48 43.791 ' O.48E-02 0.47E-01 0.316E-01 0.255E-01 0.46E-02 0.46E-01 20.50 76.45 43.791 0.218E-01 0. 252E-01 0.43E-02 0.46E-01 21.00 76.45 4?.791 0.215E-01 21.50 7e. 45 43.790 0.250E-01 0.41E-02 0.46E-01

(*% 0.218E-01 0.24 7E- 01 0.38E-02 0.46E-91 22.00 76.45 43.790 0.192E- 01. 0.245E-01 0.36E-02 22.50 76.46 43.790 0.233E-01 0.242E-U1 0.45E-01 23.00 76.44 43.789 0.33E-02 0.45E-01 0.220E-01 0 .24 0E- 01 0.31E-02 0.455-01 23.50 76.45 43.787 0.291E-01 0.237E-01 0 . 2SE- 02' O.45d'01 24.00 76.45 43.789 0.223E-01 24.50

                                                                              '0.235E-01            0.2dE-02 6.44E-01

("\ 25.06 76.45 76.45 43.788. 4?.790 0.142N-01 0.233E-01 0.23E-02 0.44E-01 U.173E-01 0.230E-01 0.20E-02 0.44E-01 25.50 76.43 43.790 0.146E-01 0.228E-01

                                                                                                                      ~

26.00 76.46 43.790 0.!CE-02 0.44E-01 0.196E-01 0.225E-01 0.15E-02 i 0.44E-01 26.50 76.43 43.789 0.158E-01, 0.223E-01

                     ,27.00   76.46         43.788                                                  0.12E-02 0.43E-01 0.234E-01             0.220E-01           0.95E-03 0.43E-01 O                                                                                          Y.

e

  • B-6
2. ""~

f

i -

                                                                                                                                          /~N 27.5h            ,76.43          43.787       '

O .195E- 01 0.218E- 01 . 0.6TE-03 0.43E-01 58.00 76.44 43.789 'O.152E-V1 0.215E-01 0.39E-03 0.43E-01 .S.50 76.44 43.788 O.201E-01 0.213E-01 0 .11 E- 0 3 0.42E-01 29.00 76.43 43.766 0.20?E-01 0.211E-01 -U.17E-0? 0.42E-01 F :'* . 5 0 76.44  : :.787 0.198E-01 0.208E-01 - 0.45E- 0 3 0.42E-01

     .00         76.45          43.786          0.228E-01           0.206E-01              -0.746-03                   0.42E-01 30.5,0            76.44          43.786          0.2 06E'- 01        0.203E-01              - 0.10E- 02                 0.42E-01            /~h 31.00             76.45          43.787          0.203E-01           0.201E-01              -0.13E-02                   0 . 41 E- 01 31.50             76.44          43.787          0.200E-01           0.19?E-01              -0.16E-02                   0.41E-01 32.00             76.44          43.784          0.231E-01           0.196E-01              - 0.19E- 02;                0.41E-01 IF IT 13 A55UMED THAT THE LEAK PATE IS CDilSTAllT:.                                     ,
                                                                                                                                           <I.'

THE t1EAri 10 0.253E-01 1KE OTAriDAPD DEVI ATIDri 10 0.107E-01 , SLEt,t 15 ffEGATIVE THE C ALCULATED ' LEAR PATE AFTER 24.u0 HDURS GF IS TE'ST 0.196E-01 PALI 0ADES 28 PSIG ILRT TIMES DATE STAR'T OF TEST 8.00 524 JTIME AFTER START OF TEST = 24.00 HR LEAK RATE BASED Dif PDIttT-TD-POIllT CALCULATIONS MEASUFED CALCULATED 95;; CDriFIDEriCE

    ' TIME          TEMP.        PRE!IUFE                                                                                                    /"%

(F) (PSIA) LEAK EATE LEAK RATE LIMITS 8.50 76.51 43.800 0.305E-U1 0.24 0E- 01 -0.28E+00 0.3;E+00 9.00 76.51 43.801 -0.692E-01 0.240E-01 -0.28E+00 0.33E+00 9.50 76.5c 43.800 0.147E+00 0.24 0E- 01 -0.28E+00 0.33E+00 10.00 76.52 43.801 -0.886E-01 0.239E-01 -0.28E+00 0.33E+00 10.50 76.52 43.799 0.188E+v0 0.239E-01 -0.28E+00 0.33E+00 /"h 1?.00 76.51 43.799 - 0 . 316 E- 01 0.239E-01 -0.28E+00 0.33E+00 11.50 76.53 43.800 0.878E-02 0.238E-01 - 0. 28E+ 0 0 0.33E+00 - 12.00 76.51 43.799 -0.4 06E-01 0.235E-01 -0.28E+00 0.33E+00 . 12.50 76.52 43.7?9 0.158E+00 0.237E-01 -0.28E+00 0.32E+60 13.00 76.51 43.799 -0.784E-01 0.237E-01 -0.28E+00 0.32E+00 13.50 76.51 43.797 0.158E+ 0 0 0.237E-01 -0.28E+00 0.32E+00 r= 14.00 76.51 43.797 0.110E-91 0.236E-01 -0.28E+ 00 0.32E+00 14.50 76.51 43.794 0. 305E+ 00 0.136E-01 -0.28E+00 0.31E+00 15.00 76.51 43.795 -0.128E+00 0.236E.- 01 - 0.28E+ 0 0 0.32E+00 B-7 , e c

S 15.50 76.51 43.794 0.131E+00 0.235E u. 2i c., v ., 0.32E+00 16.00 76.50 4?.796 -9.283E+.Ou 0.235E-01 -0.27 +00 v.32E+00 16.50 76.49 43.794 0'.113E+ 0 0 0.235E-01 -0.27E+00 0.32E+00 17.00. 76.50 43.794 0.890E-01 0.J;34E-01. -0.27E+ 00 v.32E+00 17.50 76.50 43.794 -0.552E-01 -0.234E-01 -n.27E+00 0.32E+00 18.00 76.47 4.?.791 0.605E-01 0.2?4E-01 -0.27.E+00 0.IZE+09 76.48 43.794 -0.168E+00 0.233E-01 -0.27E+60 0.32E+60 g  !$.50 19.00 76.49 43.79? 0.18?E+00 0.233E-01 -0.27E+00, 0.IiE+00 19.50 76.48 43.T93 -0.929E-U1 0.232E-U1 -0.27E+00 0.32E+n0 20.00 76.43 43.791 0.197E+00 0.232E-01 -0.27E+00 0.32c+0A 20.50 76.45 43.791 -0.210E+00 0.232E-01 -0.27E+00 v.22E+00 76.45 43 #91 0.145E-01 0.231E-01 -0.27E+00 ## . 32 E+ 00

                 $1.00                           43.790         0.?O2E-01           0.231E-01 -0.27E+00 0.32E+0n c:1.50          ~76.45
  */             22.00            76.45          43.790      -0.526E-01              0.231E-01 -0.27E+00 0.32E+00 22.50            76.46          4?.790          0.13C+00            0.230E-01 -0.27E+00 0.32E+ 00 23.00            76.44          43.789      -0.152E-01              G.230E-01 -0.27E+00 0.32E+00 23.50            76.45          43.787          0.242E+00           0.230E-01 -0.27E+00 0.32E+00 24.00            76.45          43.78.5     -0.188E+00               0 '.229E- 01 -0.27E+00 0.32E+00 24.50           76.45          4?.78?          U.838E-01            0.229E- 01 -0.28E+00 0.32E+0p 25.0'0          76.45          4?.790      -0.2086+00                0 .22 i E- 01 -U.28E+00 0.32E4 ou 25.50           76.43          43.790     .-0.775E-01                C.228E-01 -0.28E+00 0.52E+00 26.00            76.46         4?.790          0.195E+00-            U.228E-01 -0.28E+00 0.32E+6A 26.50            76.43         43.789   ' -0.123E+0C                 0.227E-01 -0.28E+00 0.32E+00 27.00            76.46         43.788           0.307E+00            0.227E-01 -0.28E+00 0.32E+00 27.50            76.43         43.787       -0.129E+00               0.227E-01 -0.28E+00 0.12E+00 28.00            76.44         43.739       -0.154E+0Ul              0.226E-01 -0.28E+00 0.32E+00 28.50            76.44          4?.788          0.214E+00            0.226E-01 -0.28E+00 0.32E+00 D-         ,

29 . 0'- 76.43 43.786 0.570E-01 0.226E-01 -0.28E+00 U.?2E+00 29.50 76.44 43.787 -0.730E-01 0.225E-01 -0.28E+ 00 0.32E+00 30.00 76.45 43.786 0.195E+UO 0.225E-01 -0.28E+00 0.31E+00 30.50 76.44 43.786 -0.743E-01 0.225E-01 -0.28E+00 U. IGE +00 31.00 76.45 43.787 0.849E .02 0.224 E- 01 -0.2SE+00 0.33E+0V 31.50 76.44 43.727 0.469E-02 0.224E-01 .- 0. 29E+ 0 0 0.33E+00 32.00 76.44 43.784 0.171E+00 0.223E-01 -0.28E+00 0.33E+00 IF IT IS ASSUMED THAT THE LEAR RATE IS CDitST At-{T : 3 THE NEAft IO 0.232E-01 THE STAttDARD LEVIATIOtt II U.144E+00-SKEt,I IS FD3ITIVE 0.223E-01

                  .THE CALCULATET LEAK F ATE AFTEP 24.00 HOUPS OF TEST IS p                             ,

A . B-8 \

i PALI SADES 55 PSI C ILR1 * . p

                                                                                                 ~
                                  '  ~

F.N 1 F.it 11MF, DA 1 F ,1 F MV, P 6tESS

                  ,                      1.HF.N FINISHEb FN1FF. 9999,,,,
                                       =    I M00,0 521, 7 6 9 5 52 7S , 7 b . 2 51714
                                       =    1830,0521,76 95'0001,70 253125
                                       =    1900,0521,76 931413,70 249877
                                       =

g-

       ,                                    1930,0521,76 916763,70 245260
                                       = 2000,0521,.76.924393,70 246571
                                       =   2030,0521,76 929121,70 247675
                                       =   2100,0 5P 1, 7 6 9 3P914,70 2 44140
                                       = 2130,0521,76 900739,70 246430                     -
                                       = 2200,0521,76 902620,70 245857                                                            f=
                                   - = 2230,0521,76 907342,70 944586                                                                -
                                       = 2300,0521,76 903403,70 2'45139
                                       =~ P330,0 521,7 6 899224,70. P44359                            .
                                       = 2400,0521,7 6.gg 1999,70 y 425h2                                                ,
                                       =   OO30,0 5N!, 7 6.P.95 716,70 2 417 35                          ,
                                       =   0100,0 52 2, 7 6. xp 9139, 70. 2 420x 0
                                       =   0130,0522,76 672209,70 243167
                            .          = 0200,0522,76.HH5014,*i0 242439
                                       = 0230,0522,76 893560,*/0 242770
                                       =   0300,0522,7 6.h90189,70 240771
                                       = 0330,0522,76 693962,70 240327
                                       =   0 400,0 522, 7 6. H9 3201, 70 2 42 523
                                      = 0 430,0 522, 7 6.F H h9 7 4, 70 2 41527                                                    pe
                                      = 0500,0522,76 887478,70 243184
                                      = 0530,0 622,76.bb 69 64,70 2 44073
                                      = 0600,0522,76 897911,70 244342
                    *                 =    0 630,0 522, ~I 6 912 61'4,70 2 43H 46
                                      = 0700,0 50.9.,7 6.t9 4663,70 2 44628
                                      = 0730,0 522,7 6 926892,7n. 2 446h l 2
                                      = Oh00,0522,76 91P.426,70 244237
                                      = 0830,0522,7 6 901650,70.P45054
                                      = 0900,0522,76 923677,70 242729
                                      = 0930,0522,76 906532,70 246140
                                      = 1000iOS22,76 927203,70 246339
                                     .= 1030,0522,76 911336,70 246763
                                      = 1100,0 522,7 6 9142 52,70 2 46H 19
                                       = 1130,0522,76.922863,70 247962                           *
                                                                                                                                   /"
                                       = 1200,0522,76 943158,70 245932
                                      = 1230,0522,76 927213,70 248634
                                      = 1300,0522,76.940433,70 248407
                                      = 1330,0522,76 946808,70 245393
                                      =    140d,0522,76 9 39 409,70 250061                                                         g-
                                      = 1430,0522,76 939.377,70 246043
                                      = 1500,0522,76 955042,70 249502
                                      = 1530,0522,76 953078,70 247111                                        .
                                      = ,1600,0522,7 6 9 63270,70 24HOO9                                                 ,
                                      =    1630,0522,76 968282,70 248755
                                      =    1700,0522,76 969040,70 248868
                                      =    1730,0 522,7 6 9 63612,70 9 4n 425                                                       /*
                                      =    1600,0522,76 975155,70 251495
                                      = 9999,,,,                         ,

B-9 '

TIME AFTER CTAFT OF TEST = 24.00 HP (*% . TF.'Ef(It! EM2ED UH 4 UTAL-TIME" CALCULATIDris riOURO LATA MEnfi DF CALCULATED Ch6 Iri Cf LC LF OF TEST ENTRIE5 . CALC LR LEAK RATE FROt1_A;T POIfil r* ' 1.5C 4'

              .                                 -0.518E-01             U.061E-01 2.00             5         - 0 . 341'E- 01        U.503E-01                 0.14?E-01 2.50             6         -0.256E-01             0.477E-01             -0.264E-02 3.00             7         - 0 .125E- 01          0.679E-01       -

0.202E- 01 2 3.50 8 -0.133E-01 0.452E-01' -0.227E-01 (3) 4.00 ,9 - 0.128E- 01 0.341E-01 -0.111E-01 - 4.50 10 -0.106E-01 0.320E-01 -0.209E-02 5.00 11 -0.973E-02 0.274E-01 -0.458E-02 5 50 12 -0.823E-02 0.243E-01 -0.305E-02 6.00 13 .0. 77 0E- 02 0.232E-01

                                                                                             -0.107E-02 6.50            14         -0.006E-02            0.247E-01                  0.141E-02 7.00            15         -0.529E-02            0.23?E-01              -0.131E-02 7.50      _,    16         -0.485E-02            0.214E-01              -0.19EE-02 8.00            17         -0.453E-02            0.195E-01             -0.190E-02 8.50           18         - 0.4 06E- 02          0.185E-01             -0.940E-02 9.00           19          -0.332E-02            0.189E-01                  0.335E-03 9.50           20         -0.251E-02             0.196E-01                  0.784E-03 10.00            21             .0.220E- 02        0.187E-01             -0.969E-03 10.50            22         -0.186E-02             0.180E-01             -0.637E-03 11.00            23         - 0.183E- 02

("N 0.164E-01 -0.160E-02 11.50 24 -0:192E-02 0.146E-01 -0.185E-02 12.00 25 -0.185E-02 n.135E-n1 -0.105E-02 12.50 26 -0.153E-02 0.135E-01 0.39 0E- 04

                . *13.00            27         - 0.158E- 02           0.122E-01             30.129E-02 13.50            23         -0.121E-92             0.12TE-01                 '0 . 41 1 E- 0 3 14.00            29         -0.100E-Od             0.125E-01             -0.175E-03 14.50            30         -0.997E-03             0.116E-01             -0.979E-03
                  '15.00            31         -0.595E-03             0.123E-01                 0.715E-03 15.50            32         -0.615E-03             0.114 E- 01           -0.881E-03 16.00            33         -0.482E-03
                                                 '                    0.112E-01             -0.224E-03 16.5.0           34         -O.518E-03             0.104 E-01
                                                                                            -0.824E-03 17.00            35         -0.531E-03             0.971E-02             -0.672E-03 17.50            36         -0.544E-03             0.909E-02             -0.621E-03
 #'s               18.00            37         -0.?OSE-03             0.948E-02                 0.386E-03 18.50            38         -0.329E-03             0.888E-02             -0.597E-03 19.00           39          -0.256E-0?             0.869E-02             -0.191E-03 19.50           40          -0.153E-04             0.917E-02                 0.480E-03 20.00            41          -0.330E-04             0.865E-02             -0.516E- 03 20.50            42              0.764E-04          0.866E-02                 0.84TE-05 75               21.00            43              0.159F-03          0.858E-02             -0.802E-04 21*.50           44             0.315E-03           0.830E-02                 0.219E-03 22.00            45             0.475E-03           0.904E-02                 0.244E-Q3 22.50            46             0.622E-03           0.924E-02                 0.195E-03 23.00            47             0.759E-03           0.94.0E- 02               0.162E-03 23.50            48             0.678E-03           0.950E-02                 0.102E-03 ag               24.00            49             0.943E-03           0.941E-02             -0.935E-04
                                                    , e c n,                .*

THE CALCUL6TED LEAF FATE IS 0.941E-02 THE MA:":It1Url ALLO 8iAILE LEAL FATE I; 0.100ti+ 00 THE LA!T 1 DATA PDIllTO EITAFLI!H A ffEGATI.VE OLCFF B-10

PALISADEO SS P!IG ILRT . . A TIME, DATE OTART OF TEST 18.00 521 TIME AFTER START OF TEST = 24.00 HF tas .

  • LEAK RATE 3AIED DH 1DTAL-TIME CALCULATIONS TIME TEMP. PRESSURE MEASUFED CALCULATED 95*4 CONFIDENCE (F). (PSIA) LEAK RATE LEAK RATE ,

LIMITS , g7 18.50 76.95 70.253 -0.14dE+00 -0.752E-02 -0.58E-01 0.43E-01 19.00 76.93 70.250 -0.440E-01 -0.716E-02 -0.58E-01 0.44 E- 01

 '19,50     76.92-      70.245                       0.321E-01               -0.630E-02           - 0 . 58 E- 0,1         0.44E-01 20.00    76.92       70.247                       0.188E-01               -0.644E-02           -0.57E-01               0.44E-01 20.50    76.93       70.248                       0.839E-02               -0.608E-02           -0.57E-01               0.44E-01 21.00    76.93       70.244                       0.529E-01               -0.572E-02           -0.56E-01               0.45E-01 21.50    76.90       70.246                      -0.181E-01               -0.536E-02           -0.56E-01               0.45E-01 22.00    76.90        70.246                    - 0. SS6E- 02             -0.500E-02           -0.55E-01               0.45E-01 22.50    76.91        70.245                      0.647E-02               -0.464E-02            -0.55E-01              0.46E-01

~23.00 76.90 70.245 -0.149E-02 -0.428E-02 -0.54E-01 0.46E-U1 23.50 76.90 70.244 0.107E-03 -0.392E-02 -0.54E-01 0.46E-01 24.00 76.89 70.243 0.482E-02 -0.356E-02 -0.53E-01 0.46E-01 24.50 76.90 70.242 0.135E-01 -0.320E-02 -0.53E-01 0.47E-01 gg.' 25.00 76.89 70.242 0.476E-02 -0.284E-02 - 0 . 53 E- 01 0.47E-01 25.50 76.89 70.243 0.132E-b2 -0.248E-02 -0.52E-01 0.47E-61 26.00 76.89 70.242 0.3235-03 -0.212E-02 -0.52E-01 0.4 8E- 01

   ^6.50     76.89       70.243                       0.347E-02               -0.176E-02           -0.51E-01              0.48E-01
      . 00- '76.89       70.241                       0.919E-02               -0.140E-02           -0.51E-01              0.48E-01 27.50     76.89       70.240                       0.121E-01               -0.104E-02           -0.51E-01              n.49E-01 23.00     76.89       70.243                       0.363E-02               -O'.677E-03          -0.50E-01              0.49E-01 28.50     76.89       70.241                       U.490E-02               -0.317E-03           -0.50E-01              0.49E-01 29.00     76.89       70.243                     -0.108E-02                   0.431 E- 04       - 0 . 49 E- 01         6.50E-01 29.50     76.89       70.244                     -0.387E-U2                   U.403E-03         -0.49E-01              0.50E-01 30.00     76.90       70.244                     -0.391E-03                   0.763E-03         -0.49E-01              0.50E-01 30.50     76.91       70.244                       0.624E-02                  0.112E-02         -0.48E-01              0.51E-01 31.00     76.39       70.245                     -0.276E-02                   0.148E-02         -0.46E-01              0.51E-U1 31.50     76.93       70.245                       0.839E-02                  0.184E-02          -0.48E-01              0.51E-01 32.00     76.91       70.244                       0.456E-U2                  0.220E-02          -0.47E-01              0.52E-01            /*'

32.50 76.90 70.245 -0.849E-U? 0.256E-02 -0.47E-01 0.52E-01 33.00 76.92 70.243 0.110E-01 0.292E-02 -0.47E-01 0.53E-n1 33.50 76.91 70.246 -0.120E-02 0.328E-02 - 0 . 4 6 E- 01 0.53E-01 34.00 76.93 70.246 0.363E-02 0.364E-02 - 0 . 4 6 E- 01 0.53E-01 34.50 76.91 70.247 -0.166E-02 0.400E-02 -0.46E-01 0.54E-01 35.00 76.9,1 70.247 - 0.957E- 0 3 U.436E-02 - 0 . 4 5E- 01 0.54E-01 (*h 35.50 76.92 70.248 -0.100E-02 0.472E -0.45E-01 0.55E-01 76.94 70.246 0.796E-02 0.508E-02 -0.45E-01 0.55E-01

36. (l0
   .                                    .                                                                                                      /*R B-11 N

/*\ 36.50 76.93 79.249 -0.11DE-U2 U.544E-02 -0.44E-01 0.55E-01 0.5eE-01 37.00 76.94 70.248 0.245E-02 0.580E-02 -0.44E-01 57.50 76.95 70.245 0.913E-02 0.617E-02 -0.44E-61 0.56E-01 38.00 76.94 70.250 -o.724E-03, 0.65IE-02 -0.44E-01 0.57E-01 38.50 76.9? 70.246 0.445E-02 0.c4?E-02 -0.43E-01 0.57E-01 39.00 76.95 70.250 0.355E-02 0.725E-02 - 0 .43E- 01 0.5?E-01 3?.50 76.95 70.247 0.686E-U2 0.T61E-02 -0.43E-01 U.5&E-01

. 40.00 76.96 70.248 0.738E-U2 0.797E-02 -0.43E-01 0.55E-01 40.50 76.97 70.24? 0.70$E-02 0.835E-U2 -0.42E-01 0.59E-01 41.00 76.97 70.249 n.690E-02 0.569E-02
                                                                                             ~
                                                                                                         .-0.42E-01          '

n.59E-01 41.50 76.96 70.248 0.6?TE-02 0.905E-02 -0.42E-01 0.60E-01 42.00 76.98 70.252 0.402E-02 0.941E-02 *

                                                                                                         -0.42E-01                      0.60E-01 fr)

IF IT IS ASSUMED THAT,THE LEAK RATE IS. CONSTANT: . THE MEArt IO 0.94?E-03 THE STANDAPD DEVIATICH IE 0.246E-01 SKEW 10 NEGATIVE - THE C'LCULATED LERK RATE AFTER 24.00 HCURS OF T ST IS , 0.941E-62 ("% , PALISADES 55 P.SIG ILRT - TIME, LATE OTAPT OF TEST 18.00 521 TIME AFTER START OF TEOT = 24'.00 HR - LEAK RATE ERIED Off POINT-TD-PDINT CALCULATIONS Q. TIME TEMP. PRE 05UPE MEROUPED CALCULATED 95% CDNFIDEhCE (F) (PSIA) LEAK RATE LEAK F ATE LIMITO 18.50 76.95 70.253 - 0 .144 E+ 0 0 0.333E-02 - 0.37E+ 0 0 0.IEE+00 19.00 76.93 70.250 U.553E-U1 0.336E-02 -0.37E+00 U.3GE+00 70.245 0.185E+00 0.340E-02 -0.37E+00 0.3?E+00 ["5 19.50 76.92 0.34 3E-02 -0.37E+00 0.35E+0n 20.00' 76.92 70.247 -0.212E-01 20.50 76.93 70.248 -0.331E-01 0.346E-02 -0.37E+00 0.05E+00 21.00 76.93 70.244 0.276E+0u 0.349E-02 -0.37E+00 0.38E+GO 21.50 76.90 70.246 -0.444E+00 0.052E-02 - 0.37E+ 0 0 0.38E+00 22.00 76.90 70.246 0.561E-01 0.355E-02 -0.37E+00 0.LSE+00 22.50 76.91 70.245 0.129E+00 0.359E-02 -0.37E+00 0.38E+00 (as 23.00 76.90 70.245 - 0 . 7.3 0E 0.362E-02 -0.37E+00 0.54E+00 23.50 76.90 70.244 0.160E-01 0.365E-02 -0.37E+00 0.lTE*00 24.00 76.89 70.243 0 .568E- 01 .0.268E-02 -0.37E+00 0.1TC+00

                                                                         .B-12                                       .

24.50 T6.90 f 70.242 0.118E+00 0.371E-02 -0.37E+00 0.37E+00 25.00 76.89 70.2.42 -0.109E+00

 ?5.50        76.89    70.243                                    0.374E-U2- -0.37E+n0 0.37E+00 26.00                          -0.466E-U1                      0.377E-02 -0.37E+00 0.37E+0V 76.89   70.242    -0.146E-01                      0.381E-02 -0.37E+00 0.37E+00
 **.50       76.89    70.243      0.539E-01                     0.384E-02 -0.36E+00 .0.37E+00
 .   .00      76.89   70.241      0.106E+00                     0.387E-02 -0.36E+00. 0.37E+00 27.50        76.89   70.240      0.644E-01                     0.390E 0. 36E+ 0 0 0.3T.E+00                                    f.

28.00 76.89 70.243 - 0.157E+ 0 0 28.50 76.89 0.393E- 02 -0.36E+00 0.37E+00 70.241 0.304E-U1 0.396E-02 -0.36E+00 0.37E+00 29.00 76.89 70.243 -0.12TE+00 0. 4 00E- 02 -0.36E+00 0.07E+00 29.50 76.89 70.244 -0.652E-01 0.403E-02 -0.36E+ 00 0.37E+00 30.00 76.90 70.244

  • 0.796E-01 30.50 76.91 ~ 70.244 0.4 06E- 0.2 -0.36E+00 0.37E+00 <-

0.165E+00 0.4 09E-02 -0.36E+ 00 0.37E+00 " 31.00 76.89 70.245 -0.228E+00 31.50 76.93 70.245 0.412E-02 -0.36E+00 0.37E+00 0.298E+ 0 0 0.415E-02 0.37E+00 32.00 76.91 70.244 -0.990E-01 32.50 76.90 70.245 0.419E-02 '-- 0. 0.36E+ 36E+ 0 00 00.37E+00 33.00 -0.152E+00 0.422E-02 -0.36E+00 .0.37E+00 76.92 70.243 0.356E+00 0.425E-02 33.50 76.91 70.246 -0.36E+00 0.37E+00

                                -0.368E+00                      0.4286-02                -0.36E+00 0.37E+00 34.00       76'93     70.246      0.153E+ 0 0 34.50 76.91                                               0.431E-02                -0.36E+00 0.37E+00                      _.

70.247 -0.171E+00 35.00 76.91 70.247

0. 434 E- 02 -0.36E+00 0.37E+00 35.50 0.223E-01 0.433E-02 -0.36E+00 0.37E+00 76.92 70.248 -0.243E-02 0.441E-02 36.00 76.94 70.246 -0.37E+00 0.37E+00 0.322E+00 0.444E-02 -0.37E+00 0.37E+00 36.50 76.93 70.249 -0.327E+00 37.00 76.94 0.447E-02 -0.37E+00 0.38E+00 70.248 U.134E+00 0.450E- 02 -0.37E+00 0.38E+00 37.50 76.95 70.245 0.263E+00 38.00 76.94 0. 453E- 02 -0.37E+00 0.38E+00 f.

70.250 -0.385E+00 0.457E-02 -0.37E+00 0.38E+00 18.50 76.93 70.246 0.212E+00 0.460E-02 .,9.00 76.95 70.250 -U.37E+00 0.38E+00

  • T 50 -0.335E-01 0.463E-02 -0.37E+00 0.38E+00 76.95 70.247 0.146E+00 0.466E-02 4 00 76.96 70.248 -0.37E+00 0.38E+00 40.50 0.299E-01 0.*469E-02 -0.37E+00 0.38E+00 76.97 70.249 -0.616E-02 0.472E-02 41.00 76.97 70.249 -0.37E+00 0.38E+00
                               -0.746E-03                      0.476E-02                 -0.37E+00 0.38E+00 41.50       76.96     70.248   -0.182E-01                      0.479E-02 42.00       76.98     70.252                                                             -0.37E+00 0.38E+00
                               -0.107E+00                      0.482E-02                 -0.37E+ 60          0.38E+ 00 IF IT IS A5!UMED THAT.THE LEAK RATE IS CONSTANT:

THE MEAN IS 0.4 08E-02

  • 8 THE STANDAPD DEVIATION IS 0.179E+00 SKEW IS NEGATIVE
  • THE CALCULATED LEAK RATE AFTER 24.08 HCUPS OF ' TEST IS 0.482E-02 P
                    /

e m *

                                                                                                              - 7 . .-   -
                                                                                                         .                                1 9

B-13 Oe e mee en * * .* ' * * * ** *** ** *

  • e

l'T BEACH 30 PSIG ILI?T UN11 1 D

                                                          ' F N'I F it ~l I U , isA T F:,1 F NI', PI.F35 1hFN 5 I .91 ';H F li f v1 F.N 9 9 9 9 i , , ,
                                           .          =       1400,0 62rs, '/P. 4230 3 5, ^^. 4 mum 90
                                                     = 16.lb,4 600, 7h . 600 9 2 5, 4/ . 4'/7449

{, ,a .l ? Ou , f: 6'AO, 76. ~/1439 6, 4 4. 43'/ / 9 6

                                                     =        17 3[,,0 420, 7x . H 10 7 9 0, 4 4. e.4 6 *)3 6
                                                    =         I H 00,0 6PD, 'ib . 9 72 38 2, 4 4. 4 5 598 0
                                                    =

18 30,0 6g0,79 0 5 67 69, 44. 4610 4)

               .                                   =          1900,0620,79 152800,44.468009
                                                  =           1930,0620,79 316651,44.4773b3 (7) '
                                                  = 2000,0620,79.en395h,44.4H3478
                                                  = 20 y..,0 620, */9 53 46k0,w4. 491430
                                                  =          P 160,0 6PO, 79 6 559 7 4, 54. 49 7 5 46                      '
   ,                                              = 2130,0 690, 79. 7 560 51, 4 4. 50M 7 7 3 s, P.200,0 620, */9.h l b 42't , *4 5Gb99 6
                                                  = P930,06P0,79 865'109,4^.515541
                                                  = 2300,0620,79 9887R5,44 520H2P
a. 2330,0 620,80 0 6531'O, 44 52 5507
                                                =            2400,0620,60 146129,44 530092.                                        .
                                                =            0030',0 691,6 0 22060 5, 44 5J37 54
                                               =             0 3 00,0 6M i s hu.99 59 60, 44 5'19937
                                                =            0130,0 621, PU . 34729 6, 44 544997
                                                =            02()O,0 621, f n. 435~/ 3h, Ae.. S47h v0
                                               =             0230,0631, h o. 4h29 46, 44 5 529 47.

(*% *

                                              =             0300,G621,bO.519396,44 556129
                                              = 0330,0621, P.O . til P P. ~/ 4, 4 4 5 61 I 5 6                                           .
                                              = 0 400,0 6P t s h0. /.b 6M8 4, 44 5653 45
                                              = 0 430,0621,60 7 7 42 t M, o4 5~/x251
                                              = 0 500,0 621, ..0 6.13314, 44 5x 502H

, = 0 530,0 621,6 0. b99 4*/ 3, 44 568097

                                              = 0600,0621 h0 952hi3,44 591452
                                              = 0630,0621,60 992eO6,44 59 4448
                                              = 0700,0621 F1 043177,44 59F647
                                              = 0 730,0 621, r. l .12 49 62, 44 6025H 4
                                              = OH00,0621,ht.170kHA,44 605671
                                             = Ob 30,0 621, h t .2 679 30, 44 609906
                                             = 0900,0 6P I , A l . 2H '310 5, 44. 612 5b 4
                                             = 09 30,0 621, r. l . I V 5 437, 44 615 4h l

["T . = 1000,0621.ht.258679,44 61x13h

                                             = 1030,042),a1 457157,44 691177
                                             = 1100,0 6P 1, h 1 490232,44 62339 6
                                             =              1130,0691,H1 516430,44 626976
                                             = 1200,0 621, ' . I . 5 455 t h , 44 62.9 3 53

[~\ = 1230,0 621, b l . 60 60 30, 4e. 63R 49H

                                             = 1300,0 621, r. l . 67 69 9 5, 44 63 6 539
                                             = 1330,0621,81 719791,44 6.1994M                                                -
                                             = 1400,0 621, b l . 79 5 461, 44 6 41351
                                             = 1430,0621, h t . 7h v 7H 6, 44 642H 54
                                             = 1500,0641, n t .e 41445,44 6470 33

["\ = 1530,0 601,61 909 J 49,44 648 601

                                             = 1600,0 621,61 9n02 6 5, 44. 6 520 30
                                             = 9999,,,,                       -                 -

B-14 . ee oe er s-

TIME AFTER TART OF TECT = 24.00 HR , 8 TREr8D.i LA ED Ort TOT AL-T IME CALCULATIOf fi; , HOUR DATA MEAri OF CALCULATED CH6 lif C(uC LP OF TEOT ErfTRIE0 CALC LR LEAK RATE FROM LA0T FOIllT O 1.30 4 0.488E+ 0 0 0.185E+00 2.00 5 0.436E+0V 0.162E+00 - 0.257E- 01 2.50 6 0.399E+00 0.142E+00 - 0 . 2 04 E- 01 3.00 7

  • 0.370E+ 00 0.124E+00 -0.173E-01 3.50 8 0.354E+00 0.133E400 0.=92 0E- 02 h.

4.00 9 0.351E+('O 0.1722+00 n.383E-01 4.50 10 0.339E+00 0.168E+00 -0.325E-02

 .       5.00           11          0.332E+09         0.174E+00-                0.527E-02

. 5.50 12 0.326E+00 0.179E+00 0.522E-02 6.00 13 0.316E+00 0.176E+00 -0.327E-02 6.50 14 0.310E+00 0.167E+00 -0.905E-02 7.00' 15 0.304E+00 n.163E+00 -0.374E-02 7.50 16' O.298E+00 ~0.16 0E+ 0 0 -0.308E-02 8.00 17 0.R93E+00 0.158E+ 00 -0.186E-02 8.50 18 0.289E+06 0.157E+00 - 0 .'443E- 03 9.00 1.9 0.285E+00 0.156E+00 -0.160E-02 9.50 20 0.280E+00 0.151E+00 -0.486E-u2 10.00 21 0.276E+00 0.150E+00 -0.115E-02 10.50 22 0.272E+00 0.146E+ 00 -0.351E-02 O ~ 11.-00 23 0.269E+00 0.143E+00 -0.299E-02 11.50 24 0.265E+00 0.141E+00 -0.251E-02 . 12.00 25 . 0.262E+00 0.139E+ 00 -0.219E-02 12.50 26 0.258E+00 0.132E+00 -0.654E-02 - 13.00 27 0.253E+0u $.124E+00 -0.853E-02 13.50 28 0.249E+00 0.118E+00 -0.575E-02 14.00 29 0.245E+00 0.113E+00 -0.506E-02 14.50 30 0.242E+00 0.108E+00 -0.483E-02 15.00 31 0.238E+00 9.103E+00 -rk.477E-02 15.50 32 0.235E+00 0.997E-01 -0.345E-02 16.00 33 0.232E+00 0.965E-01 -0.321E-02 16.50 34 0.229E+0V 0.94 7E- 01 -0.183E-02 17.00 25 0.227E+00 0.922E-01 -0.253E-02 17.50 36 0.223E+00 0.862E-01 - 0 . 6 0.2E- 02 8 18.00 37 0.220E+00 0.813E-01 -0.484E-02 ' 18.50 33 0.218E+0V 0.815E-01 0.161 E- 03 19.00 39 0.216E+00 0.807E-01 -0.727E-03 19.50- 40 0.214E+00 0.794E-01 -0.132E-02 20.00 41 0.212E+00 0.780E-01 -0.144E-02 20.50 42 0.210E+00 21.00 43 0.208E+00 0.769E-01 0.761E-01

                                                                            -0.109E-02
                                                                            -0.795E-03
                                                                                                 /")

21.50 44 0.206E+00 0.752E-01 -0.915E-03 . 22.00 45 0.205E+00 0,752E-01 -0.307E-05 22.50 46 0.203E+00 0.746E-01 -0.612E-03 23.00 47 0.202E+0V 0.738E-01 -0.733E-03 23.50 48 0.200E+00 0.737E-01 - 0 . 914 E- 04 g 24.00 49 0.199E+0V 0.739E-01 0.177E-03 THE CALCULATED LE"6F FATE IO 0.739E-01 THE TIA>:Illuri ALLDi.lAI?LE LEAF FATE II 0.293E+00 THE LAIT 0 DATA POlitTS EITABL15H A fiEGATI'/E OLGFE

                                                                                                      =='.

v *

      ..                                        -- .. ..          ... o-.       ..o.   .

(~s . TIME , I! ATE !T APT GF TEOT 16.00 ~620 TIME AFTER !TAPT OF TECT = 24.00 HR (- , LEAK RATE 1: ACED Ort TUTAL-TIME CALCULATIDit! TIME TEMP .

  • FRE!!UPE
  • f1E A!UPED CALCULATED 95% CDf tFID5fiCE (F) <PCIA) s LEAK RATE LEAK RATE LIMIT 3

([I 16.50' 78.60 44.427 0.609E+00 ~0.324E+0h 0.15E+0V 6.50E+6u 17.00 78.73 44.438 0.448E+00 0.319E+00 0.15E+ 00 0.49E+00 17.50 78.81 44.446 0.208E+ 00 0.314E+00 0.14E+ 0 0 18.00 78.97 0.49E+00

    .                                  44.455            0.200E+00         0.308E+00         0.14E+00      v.48E+nn 18.50     79.06         44.461            0.250E+00         n.303E+00         0.10E+ 0 0 19.00     79.15                                                                             0.47E+0h 44.468            0.225E+00         0.298E+00         0.13E+ 0 0           nn 19.50    ,79.32         44.477            0.257E+uu 20.00 0.292E*00         0.12E+00      0.47E+5U 0.46E+

79.43 44.484 0.328E+00 0.267E+00 0.12E+ 0 0 20.50 79.53 44.491~ 0.46E+00 0.247E+00 0.282E+00 0.11E+00 0.45E+00 21.00 79.64. 44.4?? 0.265E+00 0.276E+00 0.11E+00 21.50 79.75 0.45E+00 44.503 0.265E+00 0.271E+00 0.10E+00 0.44E+00 22.00 79.82 44.509 0.238E+00 0.266E+00 22.50 0.96E-01 v.44E+00 79.89 44.516 0.211E+00 0.260E+00 0 . 91 E 0.43E+00 p.g 23.00 79.99 44.521 0.221E+00 0.255E+00 0.86E-01 0.42E+00 23.50 80.07 44.525 0.218E+00' O.250E+00 24.00 0.8 0E- 01 0.42E+06 80.15 44.530 0.219E+00 0.244E+00 0.75E-01 24.50 80.22 0.41E+00 44.534 0.221E+00 0.239E+00 0.70E-01 0.41E+00 25.00 80.30 44.539 0.213E+ 00 25.50 0.234E+00 0.65E-01 n.40E+00 80.35 44.545 0.194E+ 0 0 0.228E+00 0.60E-01 v.40E+00 2o.00 80.44 44.548 0.208E+00 0.223E+00 So.50 80.48 0.54E-01 0.59E+00 44.553 0.192E+00 0.218E+ 0 0 0.49E-01 0.39E+00 2;.00 80.54 44.556 0.190E+00 0.212E+00 0. 44 E- 01 0.36E+00 2<.50 80.od 44.5e1 0.189E+00 28.00 80.69 44.565 0.2 07E+ 0 0 0.39E-01 0.38E+60 0.188E+ 00 0.2 02E+ 00 0.33E-01 0.37E+UU 28.50 80.77 44.578 0.156E+00 0.196E+00 29.00 80.81 0.28E-01 0.36E+00 29.50 44.585 0.135E+00 0.191E+00 0.23E-01 0.36E+00 80.90 44.500 0.1465+00 0.186E+00 30.00 0.17E-01 0.35E+00 80.95 44.591 0.145E+ 0 0 0.160E+00 0.12E-01 0.55E+b0

#D            40.50     00.9y          44.594            0.141 E+ 0 0 31.00     81.04 0.175E+00         0.64E-02              n0 44.599            0.136E+uo        0.170E+0V         J.10E-02       0.34E+UO 0.34E+

31.50 81.12 44.603 0.141E+00 .0.164E+00 32.00 81.17 -0.44E-02 0.33E+00 44.606 0.139E+00 n.15?E+00 -0.98E-02 0.32E+00 om.50 o l . c, _, 44.e10 0.147E+00 33.00 0.154E+00 -0.15E-01 0.32E+00 81.c3 44.613 n.139E+00 0.148E+00 F5 33.50 :31.20 44.615

                                                                                          -0.21E-01        0.?2E+00 0.104E+00       0.143E+00        - 0 . 26E- 01    0.21E+00 34.00,    01.de          44.e18            0.10SE+uu       0.1?iE+00        - 0. 32E- 01     0.31E+00 34.50     81.4?          44.621            0.151E+00       0.132E+00 00    81.4Y                                                             -0.37E-01        0.30E+00 g                        44.623            0.142E+00       0.127E+00        -n.43E-01        0.30E+0V g5.50     g:1.52         44.627            0.134 E+ 0 0    0.122E+00        -0.48E-01        0.2?E+00 ao.00     01.55          44.629            0.131E+00       0.117E+00        -n.54E-01        0.29E+0V
  • Temperature and pressure increasing due to heat input from containment fan motors. Contain=cnt fans run during the ILRT.

B-16

36.50 81.61 44.633 0.13?E+06 0.11ic.+vu -0.60E-01 0.2SE+00 37.00 41.68 44.656 0.134C+00 0.106E+00 -0.65E-01 0.22E4(0 37.50 81.T2 44.640 0.131l:+ 0 0 0 .1. 01 E+ 0 0 -~0 . 7 1 E - 0 1 0.2TE+( ) 38.00 81.30 44.641 0.14 0E+ 00 0.952E-01 .-0.TTE-01 0.2TE+04 38.50 81. T .4 44.643 .0.152E+eu 6.899E-01 -0.32E-01 0.ieE+ 0 i 39.00 81.94 4.4.647 0.131. E+ 0 0 0.346E-01 -0.56E-01 0.2iE+0 50 81.91 44.649 0.136E+00 0.792E-01 -0.94E-01 0.15E+00 /"N 40.00 91.98 44.652 0.139E+00 0.739E-01 -0.99E-01 0.25E+00 JF IT I" AI!UMED THAL THE LEAK PATE IS COftSTAbT: THE MEAr4 IS 0.199E*00 THE STATIDAPD DEVI ATIOff IS 0.111E+00 F* . 5KELI IG FO;ITIVE . THE CALCULATED LEAK PATE AFTER 24.00 HOURS OF TEST IS 0.739E-01 PT BEACH 30 PSIG ILRT UtiIT 1 TIME,.DATE STAPT OF TEST.16.00 620 TIME AFTER 5 TART'OF TEST = 24.00 HR L.EHK PATE TAIED Off POINT-TD-POINT CALCULATIDit! 4 TIME TEMP .

  • PRESOUF E
  • MEA!URED CALCULATED 95% CurtFIDENCE (F) (PSIA) LEAK PATE LEAK RATE- LIMITS q 16.50 78.60 44.427 0.809E+00, 0.195E+00 -6.67E+00 0.11E+01 17.00 78.73 44.438 0.ST6E-01/, 0.193E+ 0 n -0.67E+00 0.11E+01 17.50 78.81 44.446 - 0.274E+ 0 0 O.190E+00 -0.67E+ 0 0 0.11E+01 18.00 78.97 44.455 0.496E+00- 0.18SE+00 -0.6TE+ 0 0 0.10E+ 01 18.50 79.06 19.00 79.15 44.461 44.4e8 0.130E+UO.

0.103E+00 0.185E+00 0.183E+00

                                                                                            -0.67E+00
                                                                                            -0.67E+00 0.10E+ 01 0.10E+ 01 q-19.50         79.32          44.477       0.45eE+v0           d 0.181E+00             -0.67E+ 00              0.10E+01 20.00        79.48           44.484       0.824E+00                   0.178E+00             -0.67E+00               0.10E+01   -

20.50 79.53 44.491 -0.400E+00l 0.176E+00 - 0.68E+ 6 0 0.10E+01 21.00 79.66 44.497 0. 4 2 0E+ 0 0: .i 0.173E+00 -0.68E+ 0 0 0.10E+01 21.50 79.75 44.503 0.273E+00. 0.171E+00* -0.68E+00 0.10E+01 22.00 79.82 44.509 -0.62TE-01I 0.169E+00 -0.68E+00 0.10E+01 O 22.50 79.89 44.516 -0.111 E+ 0 0 0.166E+00 -0.68E+ 0 0 0.10E+01 See note page B-16 . B-17 W

         $,<                                                                                                                              ~~~
  • S f. 164E+60' -0.68 Eon 0 0.10E+01 23.00 7?.99 44.521 6. 231 F + 601 23.50 80.07 44.525 0.176E+00 G 0.151E+00 5
                                                                                             .0.68E+nu      0.10E + n i 24.00       80.15  44.530        0.225E+005             0.159E+VO            -0.66E+00        U.10E+01 24.50       50.22  44.534         0.266E+UO.             0.157E+00           -0.69E+00        0.10E+01 25.00       80.30  44.53?         0.791E-016 0.154E+ 00                      - 0.69E+ 0 0     U.10E+01 25.50       60.35  44.545     -0.164E+001                0.152E+00           -0.69E+00        n.99E+00
 *\           26.00       80.44  44.546         0.474E+00'             0.149E+00           -0.6?E+00        0.?9E+VG
            - 26.50       80.48  44.553     -0.125E+00-                0.147E+00           -0.69E+ 00       0.99E+00 27.00       80.54  44.556         0.159E+v0           -

0.145E+00 -0.70E+00 U.??E+00 27.50 80.62 44.561 0.165E+00 . 0.142E+00 -0.70E+00 0.96E+00 28.00 80.69 44.565 0.154E+00t 0.140E+00 -0470E+00 U.95E+00 28.50 80.77 44.578 -0.615E+00 0.137E+00 -0.70E+00 U.93E+00 Sh 29.00 80.81 44.585 - 0.382E+ 0 0 .4 0.135E+ 0 0 * -0.71 E+ 0 0 0.9?E+00-n.133E+00 -0.71E+00 0.97E+00 29.50 80.90 44.588 0.435E+00 30.00 80.95 44.591 ^ 0.113E+00 # 0.130E+00 - 0. 71 E+ 0 0 0.97E+00 30.50 80.99 44.594 0.321E-011 0.128E+00 -0.71 E+ 00 ' O .97E+ 00 31.00 81.04 44.599 - 0 . 4 6 7 E- 02,. : 0.126E + 0 0 ' -O'. 72E+ 0 0 0.97E+00 31.50 81.12 44.603 0. 3 02E+ 0 0' U.123E+00 -0.72E+00 0.97E+VO 32.00 81.17 44.606 0.755E-01 0.121E+00 -0.72E+00 n.96E+00 32.50 81.27 44.610 0.405E+00 0.118E+ 0 0 -0.73E+00 n.96E+00 33.00 81.28 44.613 -0.153E+UO..* 0.116E+00 -0.73E+ 00 0.96E+00 33.50 81.20 44.615 - 0 .109E+ 01 ;. 0.114E+0'O - 0. 73 E+ 0 0 0.96E+0V 34.00 81.26 44.618 0.275E+00! 0.111E+00 -0.74E+00 0.?6E+00 34.50 81.49 44.621 0.170E+01} 0.109E+00 - 0.74 E+ 0 0 0.96E+00 35.00 81.49 44.623 -0.211E+0VI.C 0.106E+00 -0.74E+00 0.95E+00 35.50 61.52 44.627 -0.75E+00 0.95E+00

 *%            36.00       81.55  44.629     -0.15?E+

0.243E-02. 0 0 }.0.102E+00 0.104 E+ 0 -0.75E+00 0 0.95E+00 36.50 81.61 44.633 0.199E+00] -0.75E+00 0.95E+00 37.00 81.68 44.636 0.195E+00 .0.?92E-01 0.968E-01 -0.76E+00 n.95E+00 37.50 81.72 44.640 0.129E- 01 \# G.944E 0. 76E+ 0 0 0.?!E+00

              .38.00       81.80  44.641         0.520E+00I 0.920E-01 -0.77E+00 0.95E+00 38.50       81.79  44.643      - 0 . 212E+ 0 0 ,?        0.896E-01            -0.77E+00 0.95E+06 39.00       81.64  44.647         0.873E-02j,g 0.872E-01                      -0.TTE+00       0.95E+n0 39.50       81.91    44.649                               0.846E-01           -0.78E+00       0.95E+00 40.00       81.98    44.652.      0  . 433E+ 0 0.260E+00             00.824E-01
                                                                           )-                -0.78E+00       0.95E+00 IF IT IS ASSUMED THAT THE LEAK RATE IS CONSTANT:

THE MEAN I3 0.139E+00 THE STANDAPD LEVIATION IO 0.410E+00 SKEW IS FDIITIVE THE CALCULATED LEAK PATE AFTEP 24.00 HOUP! DF TEST IS 0.824E-91

                                              =
   *j T          .
          .                                                                 e B-18

PT BEACH 60 PSIG I L.R1 UN11 1 <3 EN1 EJ. 11 M t., DA1 E.,1 F.Mi', Pi !.:15 1.H FN F 1 N I ..hi.D FN 'T h. 9 '. 9 V , , , ,

                                   =~ 1200,0623,F3 430013,74 309667
                                   =    1230,0623,63 567167,74 32612A                                   #~h
                                   =    1300,0623,83 700575,74 341194
                                   =    1330,0623, P 3 7 4605P ,74 351520
                                   =    1400,0623,ha.P78973,74.361279
                                   =    1430,0 623, r 3 9112H 6,7 4 371339                -
                   -               =    1500,0623,64 031H20,74 3772h7
                               -   =    1530,0 623, F 4 0 5109 5,7 4 3a 39b4                          .

(~-

                                   =    1600,0623,64 112120,74 3br227
                                   =     1630,0 62 3, b e.12 59 44,7 4 30 6 t h 6             ,
 -                                 =     1700,0 62 3,8 4 16 5 69 6, 7 4. 3*; v e n9      *
                                   =     1730,0623,64 2909b4,74.e'S966          r
                                   =     1800, o n.3, . n. ../m 79 6, 7 4 40' 51 1
                                   =     lb30,0623,k4 31F793,74.el3568
                                   =     1900,0 623, h 4 3.33013, s e. el S 407
                                   =     1930,0623,b4 39ba44,~s4.4*1 TOC
                                   =     2000, 0 69 3, v. 4. e37915, 7 4. 4315 61
                                   =     20 30,0 62 3, b e. 453 61 k, 7 4. e319 55
                                    =    2100,0623,hn.e5/v4M,74 433h35
                                    =    2130,0623,n4 531450,74.e370h1
                                    =    2200,0623,84 520251,74.440649
                                    =    2230,0 623,6 a. 57i9 62,7 4. 4 430 49                          /*h,
                                    =    %300,0 623. R 4 5H9811,7 4. 447 778
                                    =    2330,0 62 3,8 4 6 40 46 6,7 4. e51291
           *
  • 2400,0623,P.4.681405,74 452754
                                    =    0030,0 62 4,8 4 7009 77,7 4. e574e5
                                    =    0100,0 62 4,8 4. 721451, 7 4. eS9 7Rh
             *                      =    0130,0624,64.755462,74.463b44
                                    =    0200,0624,64 787307,74.465262
                                    = 0230,0624,84 790673,74.470094
                                    =    0300,0 62 4,8 4 814816,7 4. 47R177
                                    =    0330,0624,64 898136,74.476061
                                    =    0 40 0,0 62 4,8 4 8 8121 H, 7 4. 47H 0 51
                                    =    0 430,0 62 4,8 4 92 4439, 7 4. e79 421
                                    =    0500,0 624,8 4 924688,7 4. 4M 3998 ,                            f.
                                    =    0 530,0 62 4,8 4 9 447h t ,7 4. 4R(98 3
                                    = 0 600,0 62 4,6 5 00 3 6h a,7 4. 4nh ead
                                    =    0 630,0 62 4, t 5 0C9hM'0,7 4. 49150H
                                     =   0700,0 62 ^,8 5 0 59 4 51,7 4. 409 015
                                     =   0730,0 62 4,6 5 0 47139,7 4. 49 An 31
                                    .* OH00,~0 62 4, h b . 09 09 60, 7 4. e9 b(:20                       ("% 
                                     = 0630,0624,85 108161,74 500010
                                    = 0900,0624,65 110631,74 501004                             ,
                         '           =  ,09 30,0 62 4, h 5 169929, 7 4. 49 6e.00                    ,
                                    = 1000,0624,65 155035,74 306167
                                    = 10 30,0 62 4,8 5 16 49 7 5,7 4 50 69 7R
                                     = 1100,0 624,8 5 20 60F O,7 4 509151                                /"n
                                     =    1130,0624,85 215932,74 512340
                                     = 1200,0624,65 233538,74 515267
                                     = 9999,,,,

4 6 B-19

   .g                                  * *"w     orece .ince ur acci =          cy . u n . My
                                    , TREliN irda 09 10 rAL-TIl1E CALCULATIDit HOUP!             DATA             T1EAff OF ' ,   CALCULATED           CHG Ill CALC LP
   ,                OF TE3T          EllTRIEC            CALC LR         LEAK RATE            FPurt LAIT POIllT 1.50                 4           0.120E+ 00 0.601E-01
                       '2.00                 5           0.1'29E+ 0 0      0.111E+00 2.50                  6                                                     0.510E-01 0.114E+00         0.721E-01             -0.3?1E-01 3.00                  7           0.122E+00         0.107E+ 0 0 3.50                  8                                                     0.352E-01 3                                                    0.119E+00         0.103E + 0 0          -0.408E-02 4.00                  9           0.119E+00         0.107E+00 4'50               10                                                       0.354E-02        -

0.113E+ 00 0.878E- 01 -0.189E-01 5.00 11 0.108E+00 0.768E-01 5.50 12 - -0.110E-01 0.110E+00 0.87'7E- 01 0' .109E- 01 6.00 13' O .10SE+ 00 6.50 0.624E -0.534E-02 14 0.106E+00 0.806E-01 7.00 15 - 0.18 0E- 02 0.104E+ 00 0. 775E- 01 - 0. 3 04 E- 02 7.50 16 0.103E+ 0 0 0.757E-01 -0.184E-02 8.00 17 0.100E+00 0.702E-01 8'.50 18 -0.552E-02

  • 0.985E-01 0.664E-01 -0.375E-02 9 00 19 0.965E-01 0.623E-01 9.50 20 -0.406E-02 0.956E-01 0.624E-01 0.239E-04
                    '10.00               21             0.937E-01         0.58?E-01             -0.369E-02 10.50               22             0.927E-01         0.581E-01 11.00               23                                                     -0.53?E-03 0.913E- 01        0.557E-01'            -0.250E-02 11.50               24            .0.902E-01         0.547E-01 12.00               25                                                     -0.939E-03 0.896E-01         0.553E-01                0.551E-03 12.50               26             0.SS7E- 01        0.546E-01 13.00               27                                                     -0.708E-03 0.879E-01         0.53SE-01             -0.780E-0?

13.50 28 0.870E-01 0.530E-01 14.00 29 -0.782E-03 0.864 E- 01 0.529E-01 -0.44SE-04 14.50 30 0.854 E- 01 0.514E-01 15.00 31

                                                                                                -0.159E-U2 0.845E-01         0. 5 01 E- 01         -0.12SE-02 15.50              32              0. 84 0E- 01      0.507E-01               0.581 E- 03 16.00              33              0.83?E-01         0. 499E- 01 16.50              34                                                     -0.750E-03 0.829E-01         0.501E-01               0.171E-03 17'.00             35              0.821E-01        0.491E-01 17.50              36                                                     -0.101E-02
 'N                                                     0.813E-01        0.480E-01             -0.115E-02 18.00              37              0.809E-01        0.481 E- 01 18.50              38                                                        0.10SE-03 0.803E-01        0.476E- 01            -0.462E-03 19.00              39              0. 797E- 01      0.469E-01 19.50               40                                                     -0.683E-03 0,791 E- 01    -

0.464E-01 -0.535E-03 20.00 41 0.787E-01 0.4 64 E- 01 20.50 42 0.12SE-04 0.783E-01 0.463E-01 -0.597E-04 21.00 43 0.779E-01 0.461E-01 21.50 44

                                                     "                                         -0.265E-03 0.778E-01         0.4 74 E- 01             0.131E-02 22.00               45             0.774E-01 22.50                                                0.470E-01             -0.399E-03 46             0. 77 0E- 01      0. 469E- 01 23.00               47                                                     -0.5?5E-04 0.767E-01         0. 46SE- 01           -0.701E-04 23.50               48             0.762E-01         0.465E-01 S                  24.00               49                                                     -0.36TE-03
0. 75.8E- 01 0. 460E- 01 -0.480E-03 4

THE C ALCULATED LEAK PATE Is 0.460E-01 THE 11ANIf1Uf1 ALLOMAELE LEAU PATE II 0.400E+00 _ THE LA T 5 DATA PDIr1T; EITABLICH A liEGATIVE OLGPE B-20 1 *

                                -m.

_ n -

PT I:EACH eV P01G ILRT Uff!T 1 rw TIME, DATE ITART OF TEIT 12.00 623 TIME AFTER START OF TEIT = 24.00 HR e LEAK RATE BASED Ort TOTAL-TIME CALCULATIONS TIME TEMP.* PPESOURE* MEASUFED CALCULATED 95%'COrlFIDENCE (F) (POIA) LEAK PATE LEAK PATE . LIMITS . I' 12.50 83.57 74.326 0.149E+00 0.106E+ 0'O 0.5?E-01 0.16E+vo 13.00 83.70 74.341 0.180E+00 0.104 E+ 0 0 0.51E-01 0.16E+0A

  . 13.50      83.75        74.351        0.300E-U1                           0.10;:E+ 00        0.50E-01                0.16E+00 14.00      83.88        74.361        0.159E+00                           0.102E+ 00         0.49E-01                0.15E+00 14.50      83.91        74.371        0.541E-01                           0.101E+00          0.48E-01                0.15E+ 0 0 15.00      84.03        74.377        0.158E+00                           0.993E-01          0.47E-01                0.15E+00
    .15.50      84.05    -74.383           0.105E+00                           0.980E-01         U.46E-01                 0.15E+00 16.00      84.11        74.388        0.119E+00                           0.96TE-01        0.44E-01                  0.15E+00 16.50      84.13       74.396         0.625E-01                           0.955E-01          0.43E-01                0.15E+00 17.00      84.17        74.400        0.679E-01                           0.942E-01          0.42E-01                0.15E+00 17.50      84.29        74.406       0.126E+00                            0.929E-01          0.41E-01                0.15E+00 18.00      94.27       74.410         0.8 03E- 01                         0.917E-01         0.40E-01                 0.14E+00 18.50      84.32       74.414        0.879E-01                            0.904E-01         0.38E-01                 0.14E+00       /"A 19.00      84.35       74.418        0.810E-01                            0.891E-01          0.37E-01                0.14E+00 19.50      84.39       74.422        0.828E-01                            0.879E- 01        0.36E-01                 0.14E+00 20.00      84.44       74.432.       0.646E-01                            0.866E-01          0.35E-01                0.14E+00 20.50      84.45       74.432        0.674E-01                            0.853E-01          0.34E-01                0.14E+00 21.00      84.46       74.433        0.622E-01                            0 . ?41 E'- 01     0.32E-01                0.14E+00 21.50      94.53       74.437        0'791E-01
                                            .                               ' O .828E-01 '        O.31E-01                0.13E+00 22.00      84.52       74.441        0.587E-01                            0.815E-01          0.30E-01                0.10E+00 22.50      84.58       74.443        0.728E-01                            0.803E-01          0.29E-01                U.13E+00 23.00      84.59       74.448        0.604E-01                            0.790E-v1          0.27E-01                0.13E+00 23.50      84.64       74.451        0.673E-01                            0. 777E- 01        0.26E-01                0.13E+00 24.00      84.68       74.453        0.756E-01                            0.764E-01          0.25E-01                0.13E+00 24.50      84.70       74.457        0.674E-01                            0.752E-01          0.24E-01                0.13E+00 25.00      84.72       74.460        0.659E-01                            0.739E-01          0.22E-01                0.13E+00 25.50      84.76       74.464        0.649E-01                            0.726E-01          0.21E-01                0.12E+00       r%

26.00 84.79 74.465 0.694E-01 0. 714 E- 01 0.20E-01 0.12E+00 26.50 84.79 74.470 0.573E-01 0.701E-01 0.18E-01 v.12E+06 27.00 84.81 74.472 0.580E-01 0.688E-01 0.17E-01 0.12E+00 27.50 84.90 74.476 0.717E-01 0.67EE-01 0.16E-01 0.12E+00 28.00 84.88 74.478 0.602E-01 0.663E '01 0.15E-01 0.12E+00 28.50 84.92 74.479 0.6TSE-U1 0.650E-01 0.13E-01 0.12E+ 0 0 /=g

    ~29.00      84.92       74.484        0.572E-01                            0.{32E-01          0.12E-01                0.12E+00 29.50      84.94       74.487        0.552E-01                            0.625E-01          0.11E-01                0.11E+00 30.00      85.00      74.488         0 . 654 E- 01                        0.612E-01          0.92E-02                0.11E+00 30.50      85.01      74.491         0.599E-01                            0.600E-01          0.79E-02                0.11E+00 31.00      85.06      74.499         0.570E-01                            0.5STE-01          0.6dE-62                0.11E+00 31.50      85.05      74.496         0.577E-01                            0.574E-01          0.52E-02                0.11E+60 32.00      85.09      74.498         0. 627E                         0.561E-01          0.09E-02                0.11E+00        #
  • See note page B-16 B-21 -

r _ DMW

 "'                        12.50       85.11               74.500              0.617F-U1           0.549E-01                  0.15E-Ud                  U.11t+99 M. . s. .;  47.11               74.501              0.592E-01           0.5?dE-01                  0.12E'n2                  6.1)E+09 3 3 . T. C. 0.T. 17             74.497              n.Td3E-61           0.S23E-01              -6.21E-0?                     0.10E+00 34.00       85.15               74.506               0.579E-01          0.511E-01              -0.16E-02                     0.10E+nu 34.50       85.19               74.507               0.613E-01          0.498E-01               -0.3 0E- 02                  0.10E+0V 35.00       85.21               74.,569              0.610E-01          0.485E-01               -

0.43E-02 0.10E+00 35.50 85.22 74.512 0.571E-01 0.473E-01 -0.57E-02 0.10E+00 7 36.00 85.23 74.515 0.553E-01 n.460E-01 - 0.71E-02 0.99E-U1 IF IT IS ASSUMED THAT THE LEAK PATE IS CDiiSTAliT: THE MEAri I 0.75SE-01 , f^. THE STAftDARD DEVIATIDft IS 0.30SE-01 SKEW IS FOOITIVE . THE CALCULATED LEAK RATE'AFTER 24.00 HOUP5 DF TECT IS 0.460E-01

                                                                           ~
                                                           ,                                ~.

PT BEACH 60 PSIG ILPT Uti!T 1 TIME, DATE START OF TEST 12.00 623 TIM,E AFTER START OF TEST = 24.00 HR LEAK RATE EASED Oft PDItiT-TD-PDIliT CALCULATIONS TIME TEMP .* PPES!UPE

  • MEA 50 PED CALCULATED 957; CDriFIDEliCE (F) (POIA) LEAK PATE LEAK RATE LIMITS 12.50 63.57 74.326 0.149E+00 0.ST2E-01 -0.57E+00 0.75E+r.0 13.00 93.70 74.341 0.211E+00 v.85SE-01 -0.57E+ 00 0. 74 E+ 0 0
  #"N                        13.50        83.75               74.351           -0.269E+00           0.$44E-01                -0.57E+00                   0.74E+00 14.00        83.88               74.361             0.544E+00          0.831E-01                -0.57E+00                   0.74E+00 14.50        93.91               74.371           -0.364E+00           0.817E-01                - 0. 57E+ 0 0               0.74E+00 15.00        84.03               74.377             0.680E+00          0.8 04 E- 01             -0.57E+00                   0.73E+0n 1.5.50       84.05               74.?S3           -0.215E+00           0.790E-01                - 0.57E+ 0 0                0.73E+00 16.00         84,11              T4.388             0.218E+UO          0.777E-01                -0.57E+00                   0. 73E+ 0 0
 , ras                       16.50         84,13
  • T4.396 -0.391E+00 0.763E-U1 -0.57E+00 0.73E+00 17.00 S4.17 74.400 0.117E+00 0.750E-01 -0.57E+00 n.72E+00 17.50' S4.29 74.406 0.709E+00 0.73dE-U1 -0.57E+00 0.72E+00 18.00 84.27 74.410 -0.424E+00 0.72 3E- 01 -0.5SE+00 0.72E+00 18.50 84.32 74.414 0.180E+00 0.709E-01 -0.5SE+00 0.72E+00 19.00 S4.35 74.418 -0.834E-02 0.695E-01 -0.5SE+00 0.72E+00 e=g 19.50 84.39 74.422 0.10SE+00 0.682E-01 -0.5SE+00 0.71E+00 20.00 84.44 74.432 -0.209E+00 0.66SE-01 -0.5SE+00 0.71E+00 20.50 S4.45 74.432 0.113E+ 00 0.655E-01 -0.5SE+00 0.71E+00
  • Scc note page B-16 .

B-22 N ** ***

w. ,

mm . m. .+

        - , - - - -                    y     7    ---.-               -

a - - - , . - - y _ , _ , .-. - ,

  • p 21.00 84.46 74.433 -0.273E-01 O.641E-01 -0.5SE+00 0.71E+00 21.50 S4.53 74.437 0.383E+00 0.628E-01 -0.58E+00 0.71E+00 22.00 84.52 74.441.. -0.329E+00 0.614E-01 -0.58E+00 0.70E+00 22.50 84.58 74.443 0.?54E+UO 0. 601 E- 01 -0.58E+00 0.70E+00 23.00 84.59 74.448 -0.200E+00 0.587E-01 -0.58E+00 0.70E+00 #'

23.50 84.64 74.451 0.220E+00 0.574E-01 -0.58E+00 0.70E+00 24.00 94.68 74.453 0.267E+00 0.560E-01 -0.59E+00 0.70E+00 24.50 84.70 74.457 -0.130E+00 0.546E-01 - 0.59E+ 0 0 0.70E+00 25.00 84.72 74.460 0.296E-01 0.533E-01 -0.59E+00 0.70E+00 25.50 84.76 74.464 0.085E-01 0.519E-01 -0.59E+00 0.69E+00 26.00 26.50 84.79 84.79 74.465 74.470 0.189E+00

                                           -0.282E+00 0.506E-01 0.492E-01
                                                                                          -0.59E+00
                                                                                          -0.59E+00 0.69E+00 0.69E+00

( 27.00 ?4.81 74.472 0.7S6E-01 0.479E- 01 -0.6 0E+ 0 0 0.69E+00 27.50 84.90 74.476 0.484E+00 0. 4 65E- 01 -0.60E+00 0.69E+00 28.00 94.88 74.478 -0.277E+00 0.452E-01 -0.60E+00 0.69E+00 28.50 84.92 74:479 0.293E+00 0.438E 01 -0.60E+00 0.69E+00 29.00 -0.293E+00 84.92 74.484 0 . 425E- 01 -0.6 0E+ 0 0 0.69E+00 29.50 84.94 74.487 -0.151E-01 0.411E-01 -0.60E+00 0.69E+00 30.00 85.00 '74.488 0.425E+00 0.397E-01 -0.61E+00 0.69E+00 30.50 85.01 74.491 -0.142E+00 0.384E-01 -0.61E+00 0.69E+00 31.00 85.06 74.499 -0.468E-01 0.370E-01 -0.61E+'00 0.69E+00 - 31.50 85.05 74.496 0.838E-01 0.357E-01 - 0.61 E+ 0 0 0.68E+00 32.00 85.09 74.498 0.258E+00 0. 343E- 01 -0.62E+00 0.68E+00 32.50 85.11 74.500 0.234E-01 0.330E-01 -0.62E+00 0.68E+00 33.00 85.11 74.501 -0.423E-01 0.316E-01 -0.62E+00 0.68E+00 /" 33.50 e5.17 74.497 0.793e+00 0.203E-01 -0.e2E+00 0.68E.00 34.00 85.15 74.506 -0.735E400 0. 289E- 01 -0.63E+00 0.68E+00 34.50 85.19 74.507 0.212E+00 0.276E-01 -0.63E+00 0.68E+00 35.00 85.21 74.509 0.456E-01 0. 262E- 01 -0.63E+00 0.68E+00 35.50 85.22 74.512 -0.119E+00 0.249E-01 -0.63E+00 0.68E+00 36.00 85.23 74.515 , -0.334E-01

  • 0.235E-01' -0.64E+00 0.68E+00 IF IT IO ASSUMED THAT THE LEAR RATE IS CONSTANT:

T.HE MEAN IS 0.553E-01 THE STANDARD DEVIATION IS 0.313E+00 SKEW IS POSITIVE

                                                                                                                             . f*

THE CALCULATED LEAK RATE AFTER 24.00 HOUP3 DF TEST 10 0.235E-01 (" pm B-23

  • id I U t.4 LH JU f * ,1 O A L. M 8 Umaa r.

R

  • FN1 FR 11 M F ,' DATF.,1 F.MP , P N ESS bHEN FINISHF.0 EN1Eh 9999,,,,
                                                 =    0230,0309,72 306139, 44.410928
                                                 =    0300,0309,71 970123,44.3x6603
                                                 =    0330,0309,71 762556,4e.366246
                                                 =    0400,0309,71.AO4740.,La.350523 0430,0 309,71 42 6bn a,44 3368 63
                                                 =    0500,0309,71       230781, e4 323652
                                                 =    0530,0309,71       123292,44 313262         ,
                     -                           =    0600,0309,71       044540,44 300004 f7'             .                                 =    0630,0309,70       6925'6,44.'89239   /                     .
                                                 =    070Q,0309,70 788 662,44 279 642
                                               ' = 0730,0309,70 697S00,44 271837                              -
                                                 =    0800,0309,70.584785,44 262505                                             .
                                                  =    0830,0 309,70 49009 E,44 254420
                                                  =    0900,0309,70 389791, 44.946837
                                                  =    09 30,0309,70 29b 499,44 239825
                                                  =    1000,0309,70 218371,44 232451
                                                  = 1030,0309,70 137547,44 225077                                      *
                                                  =    I l 00,0 309,70 0 55653,44 21 F.077
                                                  =    1130,0 309,69 9 7169 5, 44 211 h 61
                                                  =    1200,0309,69 908346,44 205479
                                                  =    1230, 0 30 9, 69. H O 310 7, 44 19 8 5b b
                                                  =    1300,030V,69 759908,44 19219 7 ag                    ,
                                                  =    1330,0309,69 733967, 44 186790
                                                  =    1400,0309,69 601957,44 181390
                                                  =    1430,0309,69 566335, 44.175483
                                                  =    1500,0309,69 475995,44 170567
                                                  =    1530,0309,69 429524, 44 164530
                                                 *= 1600,0309,69 396626,44 160643
                                                  = 1630,0309,69 299474,44 155362
                                                  = 1700,0309,69 311485,44 152079
                                                  = 1730,0309,69 245187,44 147162
                                                  = 1800,0309,69 183680,44 141649
                                                  = 1830,0309,69 098042,44 135916
                                                  = 1900,0309,69 0358h0,44 129 558
                                                  = 1930,0309,68 999205,44 126765
                                                  =    2000,0 309, 6h . 9 81449, 44 122 627

['\- = 2030,0309,68 921166,44 118279

                                                  =    2100,0309,66 834377, 44 114044
                                                  =    2130,0 309, 66 82 49 47, 4 4 10H 1' 70
                                                  = 2200,0309,68 78 4P66,44 10 5014
                                                  = 2230,0309,66 6h 70hH,44 101036
                                                 -= 2300,0309,68 677061, 44 093846

[\ ,

                                                   = 2330,0309,68 612964,44.091951-
                                                  = 2400,0309,6H . 553069,44 0M7929
                                                   =   00 30,0 310, 6S . 50 7 4 t h, 44 06 4513
                                                   =   0100, 0 31, 66 49 3 4 43, 4 4~. 08 0 5 5 3                         .
                                                   =   0130,0310,68 426702, 44 075863
                                            -      =   0200,0310,68 384331,44 071597

["% = 0230,0310,66 300365,44 066278

                                                   =    9999,,,,

B-24

TIME AFTER OTAPT OF TECT = 24.00 HP . p.

                                                                                                       ~

TREllDS BASED Dri TOTAL-TII1E CALCULATIONS HOUPS DATA - NEAN OF CALCULATED CHG Iff CALC LR EliTRIES CALC LR. LEAK RATE FROM LAST POINT

         .0F TEOT O

1.50 4 -0.125E+00 0.110E+00 2.00 5 -0.895E-01 0.115E+00 0.541E-02 6 -0.825E-01 0.682E-01 -0 . 472E- 01 2.50 - 0 .104 E- 01 3.00 7 - 0 .721 E- 01 0.578E-01

                                         -0 . 494 E- 01       0.989E-01                   0 . 412E- 01 3.50              8 0.830E-02                   (D; 4.00              9         -0.370E-01            0.107E+00                                                ' '

4.50 10 -0.268E-01 0.113E+00 0.600E-02 11 - 0.189E- 01 0.115E+00 0.179E- 02 5.00 -0.156E-02 5.50 12 , -0.130E-01 0.113E+00

   .         6.00            13           -0.821E-02           0.111E+0'0              -0.262E-02 6.50            14           - 0.496E- 02         0.105E+00               -0.538E-02 7.00            15           -0.268E-02            0.989E-01              -0.652E-02                          .

7.50 16 -0.495E-03 0.942E-01 - 0.478E- 02 17 0.157E-02 0.90SE-01 -0.362E-02 8.00 ~ 8.50 18 0.333E-02 0.871E-01 -0.341E-02 9.00 19 0.454E-02 0.828E-01 -0.437E-02 9.50 20, 0.588E-02 0.799E-01 -0.287E-02

                            '21               0.649E-02         0.751E-01              -0.476E-02 10.00 10.50            22               0.770E-02         0.734E-01              -0.176E-02                      #

11.00 23 0.945E 0.742E-01 0.849E-03 11.50 24 0.981E-02 0.702E-01 -0.4 05E- 02 0.685E-01 -0.162E-02 - 12.00 25 0.107E-01 12.50 26 0.109E-01 0.652E-01 -0.340E-02 13.00 27 0.115E-01 0.633E-01 -0.183E-02 13.50 28 0.122E-01 0.622E-01 -0.116E-02 14.00 29 0.124E-01 0.594 E- 01 -0.272E-02 14.50 30 0 .131 E- 01' O.590E-01 - 0 .431 E- 03 31 0.136E-01 0.582E-01 -0.856E-03 15.00 - 0.763E- 03 15.50 32 0.142E-01 0.574 E- 01 1'6.00 33 0.145E-01 0.560E-01 - 0 .141 E- 02 16.50 34 0.149E-01 0.550E-01 -0.942E- 03 17.00 35 0.152E-01 0.540E-01 - 0 .107E- 02 17.50 36 0.157E-01 0.538E-01 - 0.173E- 03 0.161E-01 0.533E-01 -0.505E-03 f* 18.00 37 18.50 38 0.163E-01 0.518E-01 - 0 .149 E- 02 19.00 39 0.167E-01 0.518E-01 0.381E-04 19.50 40 0.172E-01 0.517E-01 -0.141E-03 20.00 41 0.173E-01 0.5 04 E- 01 -

                                                                                         -0.131E-02 20.50             42              0.177E-01         0.507E-01                  0.314E-0?                   f' 21.00    ,        43              0.180E-01         0. 5 01 E- 01           -0.634E-03 21.50             44              0.181E-01         0.492E-01               -0.881E-03 22.00             45              0.182E-01         0.482E-01                -0.963E-03        -

22.50 46 0.185E-01 0.479E-01 -0.368E-03 23.00 47 0.187E-01 0.473E-01 -n.549E-03 23.50 48 0.188E-01 0.468E-Oi -0.462E-03 24.00 49 0.189E-01 0 .460E- 01 -0.797E-03 /* THE CALCULATED LEAV PATE IS 0.460E-01 THE MA::IMUM ALLOWALLE LEAF PATE 10 0'.283E+00 THE LAOT 7 DATA PDIriTO ECTABLISH A ffEGATIVE SLOPE . . B-25

                                                                                                         ._             s_.

S TIME,' HATE ITART OF. TEST 2.50 309 - TIME'AF.TER OTAPT OF TEIT = 24.00 HF , S . LEAR PATE yASED ON TOTAL-TIME CALCULATIDH7 MEA!UPED CALCULATED 95% CDftFIDEru.E TIME TEMP. PPE!!UPE , LIMITS (F) (P3IA> LEAR PATE LEAK PATE S 71.97 44.387 -0.403E+UO ~0.818E-02 -0.14E+00 0.11E+00 3.00 U 13E+00 3.50 71.76 44.366 -0.3?!E-01 -0.70?E-02 -0.14E+00 0.LSE+00 4.00 71.60 44.351 0.665E-01 -0.587E-02 -0.14E+00 0.13E+00 4.50 71.43 44.337 0.170E-01 -0.472E-02 -0.14E+00 0.13E+00

                                                    -0.544E-01 -0.357E-02 -0.14E+UO 0.13E+00 5.00    71.23      '44.324 5.50    71.12       44.313            -0.201E-01 -0.241E-02 -0.14E+00 0.13E+00 6.00    71.04        44.300              0.865E 0 .12 6E -0.13E+00 0.13E+0a 6.50    70.89        44.289              0.496E-01 -0.106E-03 -0.13E+ 0 0 U.13E+00 70.79       44.280              0.552E-01               0.105E-02 -0.13E+ 0 0 7.00 70.70       44.272              0.521E-01               0.220E-02 -0.13E+00 0.14E+00 7.50 8.00     70.58       44.262              0.463E-01               0.33eE-02 -0.13E+ 0 0 0.14E+00 70.49       44.254              0.441E-01                0.451E 0.13E+ 6 0 0.14E+00 8.50 9.00    70.39-      44.247              0.341E-01                0.566E-02 -0.13E+00 0.14E+00 9.50    70.30       44.240              0.269E-01                0.682E 0.13E+ 0 0 0.14E+ 0 0 10.00     70.22       44.233              0.301E-01                0.797E-02 -0.12E+00 0.14E+00
 *\

44.225 0.3$5E-U1 0.912E-02 -0.12E+0A 0.14E+00 10.50 70.14 0.103E-01 -0.12E+00 0.14E+00 11.00 70.06 44.218 0.316E-01 '

             '11.50. 69.97        44.212              0. 251 E- 01             0.114E-01 -0.12E+00 0.14E+00 12.'00   69.91        44.206              0.300E-01                0.126E 0.12E+ 0 0 0.14E+00 12.50     69.60       44.199              0.182E-61                0.137E-01 -0.12E+00 0.15E+00 69.76       44.192              0.317E-01                0.149E-01 -0.12E+00 0.15E+00 13.00                                                               U.160E-01 -0.12E+00 0.15E+00 13.50     69.73       44.187              0.463E-01 14.00     69.60       44.181              0.177E-01                 0.172E- 01 -0.11E+00 0.15E+00 14.50     69.57       44.175              0.303E-01                 0.184E-01 -0.11E+ 0 0 0.15E+00 15.00     69.48       44.171              0.177E-01                 0.195E 0.11 E+ 0 0 0.15E+00 69.43       44.165               0.260E-01                0.2 07E- 01 -0.11E+00 0.15E+00 15.50                                      0.296E-01                0.218E 0.11 E+ 0 0 0.15E+00 16.00    69.40        44.161 16.50    69.30        44.155              0.176E-01                 0.230E 0.11 E+ 0 0 0.15E+00 17.00    69.31        44.152              0.330E-01                  0.241E-01 -0.11E+00 0.16E+0A ras 17.50     69.25       44.147              0.297E-01                  0.253E-01 -0.11E+00 0.16E+0~0 0.264 E- 01 -0.11E+00 0.1dE+00 18.00     69.18       44.142              0.301E-01 69.10       44.136              0.240E-01                  0.276E-01 .-0.10E+00 0.16E+00
18. 50 44.130 0.274E-01 0.287E-01 -0.10E+ 0 0 0.16E+00 19.00 69.04 0.25SE-01 0.299E-01 -0.10E+00 0.16E+00 69.00 44.127 l 19.E 0 68.98 44.123 0.333E-01 0. 310E- 01 -0.10E+00 0.16E+00 20.00 0.022E-01 -0.10E+00 0.16E+00 20.50 ,68.92 44.118 0 . 2 0 3E- 01 21.00 60.83 44.114 0.206E-01 0.334E-01 -0.99E-01 0.1TE+00 21.50 68.82 44.108 0.346E-01 0.345E- 01 -0.?SE-01 0.17E+00 22.00 68.78 44.105 0.331E-01 0.357E-01 -0.97E-01 0.17E+00 22.50 60.69 44.101 0.210E-01 0.368E-01 -0.56E-01 0.1TE+00 0.374E-01, 0.30 0E- 01 -0.95E-01 0.1TE+00 23.00 68.68 44.094 f.

B-26

                                                                                                                              ~     ~

O 23.50 68.61 44.092 0.275E-01 0.391E-01 -0.94E-01 0.17E+00 24.00 68.55 44.088 0.244E-01 *0.403E-01 -0.93E-01 0.17E+00 24.50 68.51 44.084 0.22?E-01 0.414E-01 -0.93E-01 0.18E+ 00 25.00 68.49 44.081 0.291E-01 0.426E-01 -0.92E-01 0.18E+00 25.50 68.43 44.076 0.268E-01 0.437E-01 -0.91E-01 0.18E+00

 ^4.00      68.38         44.072      0.275E-01         0.449E-01          -0.90E-01                0.18E+00                rga s.50   68.30         44.066      C.231E-01         0.460E-01          -0.89E-01                0 .'18E+ 0 0

.IF IT IS ASOUMED THAT THE LEAR RATE IS CONSTANT:

                                                                                                    ~

THE MEAri IS 0.189E-01 . 47; THE STAllDARD DEV: ATIDri IS 0.659E-01 SKEW IT liEGATIVE . THE CALCULATED LEAK< PATE AFTER 24.00 HOURS DF TEST IS 0.460E-01 PT BEACH 30 PSIG ILRT Ur-IIT 2 . O TIME, DATE START OF TEST 2.50 309

                       . TIME AFTER OTART OF TEST =              24.00      HR LEAK RATE FA$ED Dil POIriT-TO-POIliT CALCULATIONS TIME     TEMP.       PRESSURE       MEASURED-        CALCULATED              95% CDriFIDENCE (F)         (PSIA)        LEAK RATE        LEAK RATE                             LIMITS 3.00     71.97        44.387     -0.403E+00          0.377E-01         -0.56E+00                 0.64E+00
   '3.50      71.76        44.366        0.327E+00        0.371 E- 01       -0.56E+00                 0.64E+00               r=..

4.00 71.60 44.351 0.276E+00 0.365E-01 -0.56E+00 0.64E+00 4.50 71.43 44.337 -0.132E+00 0.359E-01 -0.56E+00 0.63E+00 5.00 71.23 44.324 -0.340E+00 0.352E-01 -0.56E+00 0.63E+00 5.50 71.12 44.313 0.151E+00 0.346E-01 -0.56E+00 0.63E+00 6.00 71.04 44.300 0.726E+00 0.340E-01 -0.56E+00 0.63E+00 6.50 70.89 44.289 -0.208E+00 0.334E-01 -0.56E+00 0.63E+00 ras 7.00 70.79 44.280 0.10 pE+ 0 0 0.328E-01 -0.56E+00 0.63E+00 7.50 70.70 44.272 0.238E-01 0.321E-01 -0.56E+00 0.62E+00 8.00 70.$? 44.262 -0.111E-01 0.315E-01 -0.56E+00 0.62E+00 8.50 70.49 44.254 0.195E-01 0.309E-01 -0.56E+00 0.62E+00 . 9.00 70.39 44.247 -U.857E-01 0.303E-01 -0.56E+00 0.62E+00 9.50 70.30 44.240 -0.661E-01 0.297E-01 -0.56E+00 0.62E+00 10.00 70.22 44.233 0.743E-01 0.290E-01 -0.56E+00 0.62E+ 0 0 fe: 10.50 70.14 44.225 0.680E-01 0.284E-01 -0.56E+00 0.62E+00 11.00 70.06 44.218 0.178E-01' . 0.278E-01 -0.56E+00 0.62E+ 0 0 B-2T 6 E"-,. Y - - - -W w- _ _ , _ _ _

                                                                    **.d!d'             -0.860E-01 12.09 12;.s0                        g.y.91       44.'06                                  0.272 E- 01       -n.56E+nn          n.~te+nn 0.119E+00 13.00                        9 9 6'f       44.199               -0.206E+00 0.266E-91       .-0.56E+00           0.61E+6U gy . . e      44 192                                  0.260E-01        -0.56E+ 0 0 13.v0                        gy. o         44 187                 0.302E+00        0.253E-01                            0.61E+00 14.00                           9 e, u                            0.352E+00                         -0 56E+00                      nn 14.. 0                        e;9           44.181             -0.611E+00           0.247E-01 .-0.56E+00                 0.61E+bb 0.61E+

(*N 95, 44.175 0.241E-01 -0.56E+00 15.00 e9.46, 0.319E+00 0.235E-01 n.61E+0n 44.171 -0.285E+00 -n.56E+00 v.61E+5A j5.s0 00 eg.43 44.165 0.234E+00 0.229E- 01 -0.56E+ 00 0.61E+0b e- .4 0 n.212E-01 le? 50 44.lel 0.124E+UO -0.56E+n0 0.61E+60 9 9 30 0.216E-01 1r.00 44.155 -0.30&E+00 -0.56E+00 n. ele +hb e,.y . g l 44.152 0.210E-01 -0.57Et00 pg 1<. 0 e. 44.147 0.466E+00 0.204E-01 0.61E+bb

   -y                 16.00                        e,p.e5                         -0.671E-01                               -0. 57E+ 0 0        0.61E+6u g.18      44.142                                 0.198E-01         -0.57E+00 0.413E-01                                             n.61E+bb fkl*((
                           *       -               ?; 04
                                                   ?;.   . 10     44.136 44.130         -0.154E+00 0.191E-01 0.185E-01
                                                                                                                           -0.57E+00
                                                                                                                           -0.57E+ 0 0 0.61E+bn 1;. 5?                       g .UD                                 0.127E+00       0.179E-01                             0.61E+0b c0.00 9.y,9o          44.127        -0.2?1E-01                                -0.57E+00           0.61E+00
g. 44.123 0.173E- 01 -0.57E+ 0 0 20.50 ed. 0.289E+Un '0.167E-01 0.61E+00 44.118 -0.74TE-01 -0.57E+00 0.41E+00 c{1.gG 1 #0 go.(y2 :g: 44.114 -0.327E+00 0.161E-01 -0.57E+00 0.d1E+0n
                                                  ?B.od           44.108                                0.154 E- 01      -0.58E+00 c2.00                       To. o            44.105                0.554E+00       0.148E-01                             0. E.1 E+ 0 b c,2. 5 0                                                  -0.260E-01                                -0.56E+00            0.61E+vb
           ,                                     98 .ey           44.101                                0.142E-01       -0.58E+00 c,3.00                                                    - 0. 4 5 0E+ 0 0         0.136E-01                             0.61E+A5 23.50                       ?S.?S.

es.e1 44.094 0.691E+00 -0.5SE+00 0.61E+bb 44,092 ' 0.130E-01 -0.58E+ 0 0 4.00 e8.55 44.088 -0.376E+00 0.122E- 01 no

                                                                               -0.10dE+00                               -0.58E+00            0.61E+b0 mg                   j{#

430 -" go.51 44.084 -0.432E-01. 0.117E-01 -0.56E+ 0 0 n e.1 E+ b 51E+00 y,# - {,]  ?,4" 44.Or1 0.111E-01 -0.59E+00

                                                ?;,j, .43 44.0<e              0.304E+00-        0.105E-01                             0.61E+no c;6.,00                                                   -0..<<E-01                               -0.5?E+00             U.61E+00 98.3s             44.072                                0. 986E- 02     -0.59E+00
                  ,26.50                       e8.30             44.066             0.e13E-01          0.924E-02                             0.61E+00
                                                                              -0.184E+ 0 0                                                nn v.-Se+00
      .                                                                                               0.863E-02        -0.59E+bo 0.d1E+00
                                                                                                                       -0.59E+

IF'IT'IS ASOUMED THAT THE LEAKRATE IS CCriSTAriT: . THE MEAri I! 0.232E-01 .- THE STAttDAPD DEVIATIO!1 I; 0.285E+00 . SKEW IO FOOITIVE * % THE CALCULATED LEAK RATE AFTER 24.00 IS 0.6e3E-02 HOURS OF TES d B-28 .

                                                                                                                                       ~e D.
                                          % eo ** **

4 POINT hEACH 60 l'5! C ILRT UNI T 2 , fm F.NTER TIMF, Do.16 , T F:4 P , l'f!F.S S

  • lHEN FINIUH!11 FW1FS 9999,,,, *

(*g

  • 0230,0 311, *t 1 45x 415,7 e. 370149 -
                                =     0 300,0 311,71. OOP902,7 4 317145
                                =     0330,0311,70.~199562,74 271192
                         -      =     0400,0311,*/0 530866,74 235526
                                 =    0430,0311,70 3<.v601,74.MOPSH2
                                 =     0 500,0 311, 70 1548 7H, 7 4 17 52 47                                              Ih f,                          0 530,0 311, 69 9 9 69 9 6, 7 4.~150 7 7 6
                                 =
                                 =     0 600,0 311, 69. F 33169, 7 4 123367
                                  =    0630,0311,69 727304, 14 10H8 46
                                  =    0700,0311,69. Sh 6536,7 4 08h 672
                                  =    0730,0311,69 4'I9271,74 071033                                   .
                                  = 0800,0311,69 380254,7 4 0 54053
                                  = 0830,0311,69 227122,74 037246                                                   *
                                  = 0900,0311,69 150277, *l4 035388
                                  =     09 30,0 311, 69 . n 5 a v i , 7 e. 0100 69
                                   =    1000,0311,6h .9 59 601,7 3 9 9 626 6
                                  =     1030,0311,66.894551,73 983726 s 1100,0 311, 6r. .b l 59 54, *t3 9 70 RHO                                     -
                                   =    1130,0311,68 7 47 490, */ 3 9 609h8
                                   =    1200,0311,68 676390,73 950439                                                      fa
                                   =     1230,0311,68 612769,73 939479
                                   =     1300,0 31 1, 6b . 5POU9 't,7 3 9 9.9 60h                                                -
                                   =     1330,0311, 6E . 4h2529,7 3 9POM 47                                                     ,
                                   =     1400,0 31 1, 6M . 39 P.7 4 4,7 3 9107 46
                                   =     1430,0 311, 6b . 350168,73 9r.*%D20
                                   =     1500,0311, 66 29 39 t h,73.M9 3530 15 3D ,0 31 1, 6h . 9 49 9 8 4, */ 3. b 8 4P.9 5
                                    =
                                    =    1660,0311,66 229033,73 576346                          *
         *                          =    1630,0 311, 66 149 0 70, 73. M 6 6 60H
                                    =    1700,0311,6M.076 564,73 8 57679
                                    =    17 30,0 311, 6h . n 18 70 3, 7 3. B 49 2 3 6
                                    =     1800,0311,67 990915,73 842737
                                     =    1830,0311,67 943284,73 833295                                                      /"$
                                     =    1900,0 311, 67. h 7 3 649, 7 3 8 26013
                                     =    1930,0311,67 810174,73.818258                              ~
                                     =    2000,0311,67 759904,73 910480
                                      =   2030,0311,67 726250,73.'01870
                                      =   P.100,0 311, 6 l . 6670 37,7 3 79 65 66
                                      =   2130,0 311, 67 6500 59, 7 3. 7n977 3                                                f%,
                                      =   2200,0311,67 577223,73.740796
                                      =   2230,0311,67 537026,73 774847
                                      =   2300,0311,67.454945,73 767250                                             *
                                      =    2330,0311,67 439659,73.760306
                                      =    2 400,0 31 1, 6 ~/ . 42 70 51, 7 3 7 5430 6
                                       = 0030,0312,67 355285,73 746759
  • f"
                                       = 0100,0312,67 35552H,73 7406b2
                                     ': '0130,0312,67 294052,73 736477
                                       = 0'200,0312,67.263619,73 730123
                                       = 0230,0312,67 199024,73 722932
                                       = 9999,,,,

B-29 - -- _ : -- .

                                              .o..m    ....m.     . . . . . . . . .   . ..        _ .

["% TREflDS EA2ED Di1 TOTAL-TIf1E C ALCULA~IDf t! HOUP? DATA MEAN OF CALCULATED CHG Ift CALC LF DF TE3T EllTPIES CALC LR LEAK F ATE FROM LA;T FDIllT t 1.50 i 0.133E+UU 0.144E+00 2.00 5 0.138E+00 0.154E+00 0.969E-02 2.50 6 0.142E+00 0.162E+00 0.771E-02

                   .         3.00                  7              0.145E+ 0 0               0.165E+ 0 0                  0.298E-02 3.50                  8               0.146E+00                0.162E+00                -0.283E-02
 /~*
                           *4.00                   9               0.147E+ 6 0              0.161 E+ 0 0             -0.683d-03 4.50                10                0.146E+00                0.156E+ 0 0              -0.576E-02 5.00                11             -

0.145E+00 0.153E+00 -0.301E-02

   -                         5.50                12                0.146E+00                 0.152E+00               -0.4S3E-09 6.00        ,       13                0.143E+00                 0.141E+00               -0.114E-01
     .                       6.50                 14               0.140E+00                 0.131E+00               - 0 . 94 3E- 02 7.00                 15               0.138E+ 0 0               0.124E+00                -0.686E-02 7.50                 16               0.135E+0V                 0.118E+00                -0.662E-02
                           . 8 . 0 0'             17               0.134E+00               *0.113E+00                 -0.490E-02 8.50                 18               0.132E+00                 0.111E+00                -0.248E-02 9.00                 19               0.131E+00                 0.105E+00                 -0.301E-Of 9.50                20                0.129E+00                 0.104E+00                 -0.312E-02 10.00,               21                0.128E+00                 0.102E+00                 -0.227E-02 10.50                22                0.126E+00                  0.977E-01                -0.444E-02

(*\ 11.00 23 0.125E+00 0.950E-01 -0.265E-02 11'.50 24 0.123E+00 0.910E-01 -0.4 03E-02 12.00 25 0.122E+00 0.882E-01 -0.280E-02

                     .      12.50                 26               0.120E+00                  0.855E-01                - 0.267E- 02   -

13.00 27 0.119E+00 0.839E-01 -0.165E-02 13.50 28 0.118E+00 0.837E-01 -0.178E-03 14.00 29 . 0.118E+00 0.827E-01 .-0.102E-02 14.50 30 0.117E+00 0.811E-01 -0.159E-02 15.00 31 0.115E+00 0.794E-01 -0.173E-02 15.50 32 0 115E+00 0.782E-01 -0.117E-02 16.00 3? 0.114E+00 0.775E-01 -0.666E-03 16.50 34 0.113E+00 0.761E-01 -0.145E-02 17.00 35 0.112E+00 0.743E-01 - 0.179E- n2 17.50 36 0.111E+00 0.726E-01 -0.168E-02 18.00 37 0.110E+00 0.717E-01 -0.919E-03 ("% 18.50 38 0.109E+00 0.701E-01 -0.164E-02 19.00 39 0.108E+ 0 0 0.692E-01 -0.898E-03 19.50 40 0.108E+00 0.680E-01 -0.120E-02 20.00 41 0.107E+00 0.668E-01 -0.121E-02 20.50 42 0.106E+00 0.656E-01 -0.121E-02 43 0.105E+ 0 0 0.644E-01 -0.116E-02 (*\ 21.00 21.50 44 0.105E+00 0.638E-01 -0.612E-03

                         ' 22.00                  45                0.104 E+ 0 0               0.627E-01                -0.104E-02 22.50                  46               0.10 3E+ 0 0               0.624E-01                -0.315E-03 23.00                  47               0.103E+00                  0.615E-01                -0.945E-03 23.50                  48               0.102E+00                  0'.6 07E-01              -0.744E-03 gag                        24.00                  49               0.101 E+ 0 0             'O.597E-01                 -0.999E-05 THE CALCULATED LEAL FATE 10                              0.597E-01     -

i THE MA>:IMUM ALLDMAELE LEAF FATE IC 0.400E+00 THE LA T 42 DATA FDIllT: E;TALLI!H A fiEGAT'VE 2LDFE B-30 - 1

PT LEACH su P 16 8LF1 Of tl i 4 O TIME, DATE !TAPT OF TE!T* 2.50 'G11 , TIME AFTEP ~1 ART OF TEST = 24.00 HR ,

                                                                                                                        /*%
                   . LEAR RATE ES!ED OH TOTAL-TIME.CALCULATIOfiS PPE000PE       MEA UPEL        CALCUL6TED          95*. COMFIDENCE TIME    TEMP.                                                                          LIMITO (F)         (PSIA)     . LEAR PATE        LEAK FATE 74.318        0.781E-01       0.143E+00       0 .10E+. 0'O                   0.18E+00            <?.

3.00 71.09 ' 74.271 0.218E+00 0.141E+00 0.10E+ 0 0 0.18E+00 . 3.50 70.80 0.98E-01 0.18E+00 4.00 70.53 74.236 0.102E+00 0.139E+00 74.203 0.153E+00 0.137E400 - 0.97E-01 0.18E+00

 '4.50    70.33 n.95E-01                      0.18E+0n 5.00    70.15         74.175         0.160E+00       0.136E+00 74.151         0.159E+ 0 0     0.134E+00       0.93E-01                      0.17E+00 5.50    70.00 6.00    69.83         74.126         0.150E+0V       n.!32E+00       0.92E-01                      0.1 TE+ 0 0 74.109         0.153E+ 0 0     0.130E+00       0.90E-01                      0. t TE+ 00 6.50    69.73                                                                                      0.17E+00 7.00    69.59         74.089          0.139E+00      0.129E+00       0.88E-01 69.48        74.071          0.142E+00      0.127E+00       0.87E-01                      0.17E+00 7.50                                                                                              0.1TE+00 8.00    69.38         74.054         0.148E+00      0.125E+00       0.85E-01 8.50    69.23         74.037         0.110E+00      0.123E+00       0.83E-01                      0.1 D "00 ,

69.15 74.025 0.107E+00 0.122E+00 0.81E-01 0.16E+00 9.00 0.16E+00 9.50 69.05 74.010 0.109E+00 0.120E+00 0.80E-01 0.103E+00 0.118E+00 0.78E-01 0.16E+00 /"% 10.'00 68.96 73.996 0.16E+00 10.50 68.88 73.984 0.105E+ 0 0 0.116E.+ 0 0 0.76E-01 68.82 73.971 0.111E+00 0.114E+00 0.75E-01 0.15E+00 11.00 0.15E+00

   . 50  68.75         73.961         0.106E+00       0.110E+00       0.73E-01
     . 00  68.68         73.950         0.103E+00       Q.111E+00       0.71E-01 0.15E+00 12.50    68.61         73.939         0.104E+00       0.109E+00       0.69E-01 0.15E+00 13.00    68.52         73.930          0.898E-01      0.107E+00       0.68E-01 0.15E+00 13.50    68.48         T3.921          0.960E-01. 0.106E+00       0.66E-01 0.15E+00 14.00     68.39        ??.911          0.849E-01      0.104E+00       0.64E-01 0.14E+00 14.50     68.35        73.902          0.888E-01      0.102E+00       6.62E'01 0.14E+00 15.00     68.29         73.894         0.869E-01      0.100E+00       0.61E-01 0.14E+00 73.884         0.912E-01      0.986E-01       0 . 59E- 01                   0.14E+00 15.50     63.25 0.968E-01       0.57E-01 0.142+00 16.00     68.23         73.876         0.999E-01 16.50     68.15         73.867         0.933E-01       0.951E-01       0.55E-01 0.13E+00 0.53E-01 0.13E+00                                  p =.

17.00 68.08 73.858 0.877E-01 0.933E-01 17.50 68.02 70.849 0.849E-01 0.915E-01 0.52E-01 0.13E+00 18.00 6 7 . ? .'  : ^"3 0.876E-01 0.898E-01 0.50E-01 0.13E+00 18.50 67.94 72.833 0.905E-01 0.880E-01 0.48E-01 0.13E+00 19.00 67.87 73.826 0.829E-01 0.862E-01 0.46E-01 0.13E+ 0 0 73.818 0.782:E-01 0. 845E-ig .0.14E-01 0.12E+00 19.50 67.81 0.12E+00 20.00 67.7,6 73.811 0.TTSE-01 0.82TEwC1 - 0.43E-01 (% 67.73 0.829E-01 0.809E-01 0.41E-01 0.12E+00 20.50 73.802 0.12E+00 21.00 67.67 73.7.57 0.749E-01 0.792E-01 0.39E-01 73.790 0.805E-01 0.TT4E-01 0.37E-01 0.12E+00* 21.50 67.65 0.35E-01 0.12E+00 22.00 67.58 73.781 0.Td4E-01 0.756E-01 0.750E-01 0.739E-01 0.34E-01 0.11E+00 22.50 67.54 73.775 0.32E-01 0.11E+00

  .23.00     67.48         73.767         0.737E-01       0.721E-01                                                          f.

0.728E-01 0.703E-01 0.30E-01 0.11E+00 23.50 67.44 73.760 e

                                                                                         .e
    -                                            B-31                             ~                                            .

e

                                                                                          **     mmm              _ _ ,
                                                                          -eens. em      . _ , ,   . , ,

24.00 67.43 73.T54- 0.TTTE-n1 0.68dE-U1 0.286-01 n.11E+00 ("N 04.50 67.36 73.747 6. 721 E- s.

  • 0.668E-01 0,26E-n1 0.11E+00 45.00 eT.36 73.741 0.793E-v1 U .65fiE- 01 0.24E-01 0.11E+00 25.50 67.2? 73.736 U.714E-Ul~ U.63?E-U1 0.2?E-01 0.10E+00 26.00 67.26 73.730 0.728E-91 U.615E-01 0.21E-01 0.10E+0n 26.50- 67.20 73.723 0.688E-01 0.b97E-01 0.19E-01 U.10E+ve f- IF IT II A;IVI1ED THAT THE LEM PATE I5 CutlITAriT : -

THE MEAff Il 0.101E+00 THE STATIDAPD DEVIATICff 10 0.314E-01 - OKEkl IO PO3ITIVE , ,

   <             THE CALCIJLATED LEAK PATE AFTER 24.00 HOUFO DF TEST .IO                                       C.597E-01
       ."\
 ;            ~.                                                              .                          .

PT 1:EACH 60 PS1G ILRT UffIT 2 -

p. -
                                                 . TIME, DATE . START OF TEST         2.50        311                                           .

TIME AFTER START OF, TEST = 24.00 HR LEAK RATE IAIED Off POIttT-TO-POINT CALCULATICit0 TIME TEMP. PRES!URE MEA $i> RED CALCULATED 95:. CCT FIDEriCE (F) (PSIA) LEAK RATE LEAR FATE LIMITI

                                                                                      ~

3.00 71.09 74.318 0.781E-01 0.125E+00 -0.23E+00 0.48E+ 00 p 3.50 4.00 70.80 70.53 74.271 74.236 0.358E+ 00-

                                                               -0.131E+00 0.122E+00 0.120E+00
                                                                                                    -0.23E+00
                                                                                                    -0.23E+00 0.48E+00 0.4 TE+ 00
  • 4.50 70.33 74.203 0.308E+0V 0.118E+00 -0.24E+ 0 0 0.4TE+n0 5.00 70.15 74.175 0.186E+00 0.115E+00 -0.24E+ 00 0.4TE+n0
5. t. 0 70.00 74.151 0.153E+00 0.113E+ 0 0 -0.24E+0n n.46E+00 6.00 69.83 4.126 0.953E-01 0.110E+00 -0.24E+00 0.46E+00 p 6.50 7.00 ,69.59 69.73 74.109 74.089 n.175E+00 0.302E-01 0.108E+00 0.106E+00
                                                                                                     -0.24E+00
                                                                                                     -0.24E+00 0.46E+00 0.4e E+ 0 0 7.50               69.48       74.071        0.17 0E+ 0 0      0.103E+0V        -0.25E+ 0 0              0.4SE+00 S.00               69.33       74.054        0.202E+00         n.101E+00        -0.25E+00                0.45E+0n 8.50               69.23       T4.037     -0.3 0 0E+ 0 0       0.986E-01        -0.25E+00                0.45E+00 9.00               69.15       74.025        0.714E-01         0.962E-01        -0.25E+ 00               0.44E+0n 9.50               69.05       74.010         0.127E+ 00       0.938E-01        -0.25E+00                0.44E+00 10.00                68.96      73.996        0.287E-01         0.914E-01        -0.26E+00                0.44E+ 00 10.50                65.88      73.984         0.133E+ 0 0       0.391E-01       -0.26E+00                0.44E+00 11.00                68.82      73.9s'1        0.210E+00        0.867E-01        -0.26E+ 00               0.4 3E+ 00 B-32                                                                    -

meno----- e ON

                                                                                              ,__                                -          s_ _
                                                                                                        /'%

'1.50 68.75 73.961 0.200E-01 0.843E-01 -0.26E+00* 6.4 E+00 42.00 68.68 .73.950 0.3?6E-01 0.819E-0J -0.26E+00 0.43E+00 12.50 68.61 73.939 0.133E+00 0.795E-01 -0.2TE+00 0.'4 3E+ 0 0 13.00 68.52 73.930 -0.201E+00 0.TTEE-01 -0.27E+00 0.42E+00 50 68.48 73.921 0.227E+00 0.748E-01 -0.27E+00 0.42E+00 /'N 19.00 68.39 73.911 -0.160E+00 0.724E-01 -0.2TE+00 0.42E+00 14.50 68.35 73.902 0.180E+00 U.700E-01 -0.28E+00 0.42E+00 15.00 68.29 73.894 0.4 01 E- 01 0.676E-01 -0.28E+00 0.41E+00 15.50 68.25 73.884 0.200E+00 0.653E-01 -0.28E+00 0.41E+00 16.00 68.23 73.876 . 0.326E+00 0.629E-01 -0.28E+00 0.41E+00 es 16.50 68.15 73.867 - 0 . 867E- 01 0.6 05E- 0.1 -0.29E+00 0.41E+00 'i-17.00 68.08 7?.858 -0.688E-01 0.581E-01.-0.29E+00 0.4 0E+ 0 0 17.50 68.02 73.849 0.433E-02 0.557E-01 ' -0.29E+00 0.40E+00 ' 18.00 67.99 73.843 0.17 0E+ 00 0.534E-01 -0.29E+00 0.40E+00 18.50 67.94 73.833 0.181E+00 0.510E-01 -0.30E+00 0.40E+00 19.00 67.87 .73.826 - 0.16 0E + 0 0 0.486E-01 -0.30E+00 0.40E+00 19.50 67.81 73.818 -0.733E-01 0.462E- 01 -0.30E+00 0.39E+00 20.00 67.76 73.811 0.483E- 01 0.438E-01 -0.30E+00 0.39E+00 20.50 67.73 73.802 0.272E+00 0.414E-01 -0.31E+00 0.39E+00 21.00 67.67 73.797 -0.212E+00 0.391E-01 -0.31E+00 0.39E+00 21.50 67.65 73.790 0.287E+00 0.3J7E-01 -0.31E+00 0.39E+00 22.00 67.58 73.781 -0.791E-01 0.34 3E- 01 -0.31E+00 0.3SE+00 22.50 67.54 73.775 0.212E-01 0.319E-01 -0.32E+00 0.38E+00 23.00 67.48 73.767 0.201E-01 0.295E-01 -0.32E+00 0.38E+00 23.50 67.44 73.760 0.395E-01 0.272E-01 -0.32E+00 0.3SE+00 /"$ 24.'00 67.43 73.754 0.283E+00 0.248E-01 -0.33E+00 0.38E+00 ?4.50 67.36 73.747 -0.170E+00 0.224E-01 -0.33E+00 0.37E+00 25.00 67.36 73.741 0.398E+00 0.200E-01 -0.33E+00 ~ 0.37E+00 25.50 67.29 73.736 -0.286E+00 0 .176E- 01 -0.34E+00 0.37E+00 . P'.00 67.26 73.730 0.136E+00 0 153E-01 -0.34E+00 0.37E+00 . .50 67.20 73.723 -0.120E+00 . 0.129E-01 -0.34E+00 0.37E+00 IF IT IS A3Sur1ED THAT THE LEAK RATE I3 CDtt0 TANT: . THE MEAh IO 0.688E-01 THE STANDAPD DEVIATION IS 0.171E+00 SKEW IS fiEGATIVE THE CALCULATED LEAK PATE AFTER 24.00 HOUR 5 OF TEST'IS 0.129E-01 n o O B-33

TURXEY P'l 25 PSIG ILn: ma ., S . , S ' F.NT E:R 'l 1

  • h , l'A 1 : , 1 F.A F , h 4 E S 3 1; HEN F l .N I ':li U L' FN 1 EM 9999,,,, ,
                                                         =     6 *s 00, O ~/ 0 5, ** *'s . 9 P P 16P , 39 9 ? 37 9 4 s* 0's :lO,0 7b5,99. */ 52210, 39 9121 hn                                                                                           '

s OM00, u ~/0% 9 9. r 14319, .N . 900P90 ' 3

                                                         =     OH i b,070 5,92 53k92P.,39.H9 5189
                                                         .= 0830,070 5,92 46 59 s2,39.M90100
                                                         =     OH 45,0 70 5,9 2 42 60H 3', 39 66 6656
  • 0900,0705,9 2 370101,19.h829 ~i9
                                                         =     0915, O'io 5,9% '1?."10 61, 39 8 7h2FC
                                                         =     09 30, O ~10 % 9 6 %P 3 6 5't , 3V t.* 7 ^'I 6 3
                                                   .      =    09 45, si /0 5, V P . V:9 u S A, 3-) . h 71 1. 1
                                                          =     1000,0705,99 190999,39.>66011
                                                          =     1015 4 0 */ 0 5, *7  .15' 9 50, 39 . t' 6'> 191
                                                          =     10 30,0 70 % V R .116 7 31, 39 6 /.HG AU
                    ~

z 10 45, b *e O S, 9 6 08 0 6 5 6, 39 . b 59 P.7 3

                                                          =     1100,0 705,9 9. n e.9M 35, 39. A 57009                                                             '

sg *

                                                          =     1115 070 5,9 A' . 013309,39.h S4296 l l 30,0 7h S,91 9 7 4201, 3'7. d '42149 i
            ,                                                                                                                                                        d s
                                                          =     1145,0 70 5,9 I . 9 47 37 9, 3's . x 48 802
                                                          =     1200,0705,91 917453,3V.h46760                                                                                          .

z 1215,070 5, 91. S9 418:', 39 . h 4 4160 '

                  *
  • 12 30, 0 */ 6 5, 91. M 6*l 0P.3, 39 . H 42 5 3R
                                                          =     12 45,0 70 5,91 8 3*/ 39 4,39. n 4027 6 -                                                               $1 '
                                                           =     1300,0*iO5,91.H11493,39 63b500                                                *
                                                           =    9999,,,,

c I p - 4 \ B-34 ,

                                                                                                                                  - g gug    eg e =e             _,
                                                                                                                                           .      D TURI;EY PT 2SPOIG ILRT Ut(IT 3                           '     '
                                                                                                                            .-                    n TIME, DATE START OF TEST                      7.00          705                            -
  • TIME AFTER OTART OF TECT = 6.00 HP em e, TREllD5 I:AIED Of f TOTAL-TIME CALCULATIDflS - t-HDURO DATA MEAfi DF CALCUCATED ChG Ill CALC LR OF TEST EliTPIES CALC LR LEAR RATE FPDM LAST PDIfil.

i 1.25. 4 0.327E-02 0.549E-01 1.50 5 0.243E-01 0.999:E-01 0.350E-01 2.75 6' 'O.283E-01 0.836E-01 -0.619E-02 2.00 7 0. 31.1 E- 01 0.788E-01 - 0. 4 81 E- 02 2.25 8 0.352E-01 0.808E-01 0.203E-02 2.50 9 0.395E-01 0. 854 E- 01 0.455E-02 2.75 10 0.413E-01 0.828E-01 -0.254E-02 3.Q0 11 0.4 31 E- 01 0' . 819E- 01 - 0.987E- 0 3 3.25 12 0.44 6E- 01 0.810E- 01 -n.815E-03 /* _ 3.50 13 0.462E- 01 0. 811 E- 01 0. 761 E- 04 3.75 14 0.472E-01 0.800E-01 -0.112E-02 ,

            .            4.00              15                0.478E-01             0.780E-01                -0.200E-02 4.25              16                0.482E-01             0.759E-01                -n.211E-02                               -
                        '4.50              17                0.4 79E- 01          *0.714E-01                - 0 . 44 9E- 02 4.75              18                0.484 E- 01           0.710E-01                -0.430E-03 5.00              19                0.487E-01             0.697E-01                -a.129E-02 5.25              20                0.494E-01             0.701E-01                    0.400E-03 5.50              21                0. 4 97E- 01          0.6?2E-01                -0.9 09E- 03 5.75             22                 0.499E-01             0.681E-01                - 0 .101 E- 02 6.00              23                0.499E-01             0.66TE-01                -0.143E-02 THE CALCULATED LEAP FATE IO                       0.667E-01                                                      ('

r THE f1AMIf10M ALLDUA1:LE LEA) PATE II 0.177E+0V THE LAOT 3 DATA FDIfiT: EITAI:LI!H A fiEGA1IVE ILDFE s . (* e e 9 8 B-35 . e em e e -e

  • emme = w - = = =

w

S . TUc.E7 e P1 25P11G ILFT '.r1T ~ S " .' . r 0 705 T IfG . I+ 1 E 11 AA T C'F TE.T kc TIME i:FTEc- 11 APT Oc liiT = i.00 6 LEAL' AATE 1:AIED Drs IDis::iL-Tiff. C ALCUL ATIONi - ..~. . m . TIME TEMP. PFE M U)-E I4 K 8.*ED ( Alf.UL A1 ED 9t *c C CbF li. E PC E (F) (PIIA) LEAt PATE LEAK PA1E , LIMITI 7.50 92.75 ?9.912 -0.di1E-01 f.116E-01 - U . 3 .- d - r 1 v.106+ee 6.00 92.61 19.900 U.75C-E-U1 b.246E-U1 -0.35F-01. U .10e + ' s-8.25 92.54' 39.896 0.151E-U1 0 . 3t.4 E- 01 -0.?.:E-01 0.11E+vt-S.50 92.49 39.890 0.473E-01 'n.3SoE-01 -0.31E-01 U .1 1 E + vi-6:.75 92.43 39.087 0.445E-01 0.196E-01 -0.28E-v1 0.11E+ii0 9.00 92.38 39.88? 0.452E-01 0.412E-01 -0.26E-01 U.11E+u6 9.25 92.32 39.878 0.595E-01 0.429E-Al -0.25E-U1 0.11E+0' 9.50 92.28 39.875 6.697E-01 0.444E-01 -0.23E-A! 0.11E+0V q 9.75 92.2? 39.871 0.554E-01 0.460E-01 -0.21E-01 0.11E+n6 10.00 92.19 39.868 0.592E-"1 H.476E-01 -0.19E-01 0.11E+0V 10.25 92.16 39.4:65 0 . 6Ti OE- H 1 0 .'4 92 E- 01 -0.172-01 U.12E+nn 10.50 92.12 39.862 U.d??E-U1 U.508E-01 -n.16E-01 0.12E+o0 10.75 92.09 39.959 0.597E-01 0.524E-01 -0.14E-61 0.12E+oo 11.00 92.05 39.857 0.559E-H1 0. 54 0E- 0~1 -0.1?E-01 U.12E+00 11.25 92.01 39.854 0.542E-U1 0.556E-01 -0.12E-01 0.12E+00 11.50 91.?? 39.852 0.421E-01 0.571E-01 -0.10E-01 0.12E+00 11.75 91. c 5 39.849 0.578E-01 0.587E- 01 -0.90E-US U.13E+00 12.00 91.92 39.847 0.534E-U1 0.603E-01 -0.78E-02 0.12E+00 12.25 91.89 39.844 0.614E-01 0.619E-01 -0.67E-02 0.13E+no 12.50 ?1.87 39.842 0.549E-U1 0.635E-01 -0.56E-02 0.13E+00 12.75 41.84 39.840 0.538E-01 0.651 E- 01 -0.466-02 6.13E+00 13.00 91. :-: 1 39.839 0 . 5 06tE- U 1 0.667E-01 -0.37E-02 0.14 E+ 0 0 P. IF IT I3 AISUMED THAT THE LEAK PALE IS C0h3 TANT: THE MEAN I n.499E-01 THE STANI6PD IEVIATICH l '. 0.322E-01 ' OKEl.I IO HEGATIVE , THE CALCl.' LATED LEAK PATE AFTEP 6.00 HOUPS GF TEST 15 0.667E-U1 b 3-36

                   .                  TUPMEY PT 25P316 ILRT UtilT 3 TIME, DATE TTART OF TEST              7.00                    705                               -

TIME AFTER ITART OF TEOT = 6.00 HP e.. ' LEAK PATE BA.?ED Dri POIlli-TD-POINT CALCULATIDitO TIME TEMP. PRE 05UPE MEAIURED CALCULATED 95% CDilFIDENCE (F) (PSIA) LEAK RATE LEAK PATE LIMITS 7.50 92.75 09.912 -0.811E-01 0.580E-01 -0.34E+00 0.45E+00 8.00 92.61 39.900 0.233E+00 0.563E-01 -0.33E+00 0.44E+60 8.25 92.54 39.896 -0.22SE+00 0.555E-U1 -0.33E+00 0.44E+00 8.50 92.49 39.890 0.449E+00 0.546E-01 -0.33E+00 0.43E+U0 8.75 92.43 39.887 -0.213E+0V 0.538E-01 -0.32E+00 0.43E+00 9.00 92.38 39.883 0.567E-U1 0.53 0E- 01 -0.32E+00 0.4?E+00 9.25 92.32 39.878 0.174E+00 0.521E-01 -0.32E+00 0.43E+00 9.50 92.28 39.875 0.161E+00 0.513E-01 -0.32E+00 0.42E+00 9.75 '92.23 39.871 -0 ;73E-01 0.505E-01 -0.32E+00 0.42E+00

 '10.00           92.19          39.868         0.101E+00       0.496E-01                     -0.32E+00                0.42E+00 10.25          92.16          39.865         0.694E-01       0.48&E-01                     -0.32E+00.               0.42E+00
  ,10.50          92.12          39.862         0.107E+00       0. 48 0E- 01                  -0.32E+00                0.42E+00 10.75         -92'.08         39.859         0.874E-02       0.471E-01                     -0.32E+00                0.42E+00
        . 00      92.05          39.857       -0.129E-02      *0.463E-01                      -0.32E+00                0.42E+00 11.25          92.01          39.854         0.277E-01       0.454 E- 01                   -0.33E+00                0.42E+00 11.50          91.97          39.852       - 0.163E+ 0 0     0.446E-01                     -0.33E+00                0.42E+00 11.75          91.95          39.849         0.340E+00       0.438E-01                     -0.33E+00                0.42E+Ur 12.00          91.92          39.847       -0.287E-01        0.429E-01                     -0.33E+00                0.42E+00 12.25          91.89          39.844         0.221E+00       0. 421 E- 01                  -0.34E+00                0.42E+00 12.50          91.87          39.843       -0.818E-01        0.413E- 01                    -0.34E+00                0.42E+00 12.75          91.84          39.840         0.293E-01       0.404E-01                     -0.35E+00                0.4 3E+ 00 13.09          91.81          39.839       -0.22SE-01        0.396E-01                     -0.35E+60                0.43E+00 IF IT IS A'00UMED THAT THE LEAL FATE 10 CDI-i!T AtiT :                                                       -

THE ME' Art IO 0.484E-01 THE OTAriDAPD DEVIATIDil 12 0.169E+00 , SKEW 10 PDIITIVE , THE CALCULATED LEAK PATE AFTEP 6.00 HOURO OF TEST IS 0.396E-01

  • e e

B-37 , j W ess>= mm. m

A . F N11.r. glap,- 9 A g g. , 3.r. ' , P t'. F .'i S .

                                    .                     1.HFN F 1 \' 1 *31 F D F N 13-                           *
  • 4 9 51, , , ,
  • s 09 3 0, u *s .s t. , 9 4. *> t.a.6' * + , . . ,a .':409401 s
                                                        = 09 4 S, O */ O t., '8 4. $U 0 't i 1, f. o . P y (.0 :41 g                                                      = 10 0 0, C */1. 6, '.* 4. 4 5 6 69 7, / I . '* 9 0 9 l S-
                                                        = 1 O 15, 4 7 8. 6, 9 A . A 0 5 */ * * , , 6 4. *4. */ 019 I b )l e , a s */ t i t. , . ,. . in!!9 5 4, 6 4. Ph PG 5!!                                          '

s 1 C s p o t , *s t . e., u.s 4. *\ 6p 'p. , (. / . V *t *t o. y a

                                                        = 1100 O */0 6, V / . 3 5 / 551 ; , /./ . 97 #79 0
                                                        = 1 1 1 % G *s O s., 9 4. 3 41 : .4's , i. e. . *e */ O */ 3 5 o,                           ,
                                                        = 1 1.*ttr , fi*s o n, o 4. :11 511 4,64.p.67s.ly i.-                                                  = 1 14S , s e ~t      6, 's o. . il *:i . M , n o . M 6 5H 9 8 a'*
                                                       *=     1 nts6 ,re us s.,.s n . y 9:v ,:,*t , 6 4 . q (,:16 4(.
                                                        = I i: 1 ',, * * *r O t. , H /..
  • t /* .s b e :: , 6 / . Y 619 6 0
                                                        =     1 ? lb , ( * *t '; 6, '* 4. ')I h ^7 t , / e . V b'r. 4 43
                                                        = 1300, u */O L, 9 4. M nO *th 4, .*.4. M S 49 6 3
                                                        = 1.*l.*lO , O */ O 6, V / . ' d. 6 (.r. *s , 6 /: . '> 5P.'8 U 8
                                                        = 1/.Ofi, O 7 n /., y 4. ::ts. ;O 7, n/.. e a9 68 a
                                                        =     l 430, (,70 6, 9 4. v01 t,6f', 6 4. t: 4(- 1 %' t
                                                        = I 50 0, f * */O 6, 9 4. I v ,.'l(.*/ , 6 A. M / *t 6 S 3
                                                        = 15 30, (l *10 / , 9 4 1 / /.O s - , /.e . M /.'* / 4 5
                                  *                     = 16nh a n */ te h, 9 ^. I 57:s * * *i, a h e t' *SV b b
                                                        = 1610, D 7 tl6,9 4. I 6 A l (? P, ^ ^. !!'l8 0 S0
                                                        = 1700, i: */0 6,911 7h 4441, 6 ^.1 V b 5 6 4 O.
 =
                 -                                      = 1730,0 70 6,9 't. 5461 G S, 64. I 72 7 70
                                                        = 1 S O O , 0 7 0 6, 9 J . 4 3 49 41, e-i.                            15 /.h 39
                                                        =     11<. 30,0 70 6, 4 3. 'iP e.49), 6 o.144 441
                                                        = 1900,0 */0 6,9 3 9 ^O4P 4, 64 1309P3
                       -                                = 1930,0706,**:4 1 */fah 7 6, 6 4. I R2M 4S                                                                        .
                                                       * = 2000, O *10 6,4 :i.1 O'8R 70, /.a. I 1 155; 6
                                                        = 20 30,0 70 6,9 3 0 3(.MO 3, ( 4 102517
                                                        =    2100,0706,94 995012,64 0934,63
                                                        = 2130,0706,9?.9400*l3,64.087609
                                                        = 2200,0 70 6,9 9. . bv a9 th , 6 4. Oh P.7 49
                                                        = 2230,0 70 6,9 P. 54 562 63, / 4. O 7 S659                                                                      -
                                                        = 2 300,0 7 0 t ,9 P . v.22105, 6 4. 07 I (.b9
                                                        = 2 330, O */0 6, y ' . 7 79 9 6h, 6 4 0 6 40 / /.
                                                        = 2 400,0 70 t., %: . 7 A l 13 4, 6 4. O (.0 72 (.
                                                        = 00 30,0 70 7,9 P . 71 Oh b9, 6 4. 6 'i 17 47
                                                        = O l Or;, 0 7 0 f , 9 9. (,s p 6 4 4, A 4 0 49 3 Sy
                 -                                      = 0130, 0 7 0 *: , s * . i. b' 3.vs , i.4 0 a sy tr5
                                                        = O','00,07'VI,99 6PI59 4,64.Ga*00S
                                                        = Of' 30, 0 7 0 *t , 9 . 59 451 s , (. t. 0 3 3 31 1
                                                        = 0 30 G , 0 7 (,' 7, 4 ** . 5 6 %r pa *> , 6 t. . O P F 30 's                                       .
                                                        = 0 *L30, O 's O */ , 9 -t . S.1, :i So , e 4. 0 2 513 4
                                                        = 0400,O*/07,92.S13101,6t.OP1164
                                                        = 0 430,0 70 7,9:! . 49 P '.1 1, 6 o. O I 79 F.M                                                  ,
                                                        = 0 500, C 7 0 7,9 R . 44.'s ^68, 6 4. O 14015
                                                        = 0 5 30, O */0 7, VM . 4 4169 6, A t.. O 1 b 38 9
                                                        = 0 6f A, O *l 0 7, v n . /v' /i / ,;"/ , i.e . . iO */ 9 67 O                                                     = O t. 37. . t r 7 0 */ , 9  . 2 9 f.9 v 3, (. a . 0 0 0 a. i n
                                                        = 0 7 s .f i , i. */ U */ , 9 '.* . *j 's 'i l J .< , 6 1 9 9 7 7 f 3
                                                        =   O ~t 30, G 7 0 's , 9 6 3 461. / , ( 3 9 9 4 49 0
                                                        =   9999,,,,

1 . B-38 .

                                           . - .   =                              . . _ ,
                                                                           .n      _. ,                _ . . . _               -               -.            . . _ . _,           _ _ , .

TIME AFTEF TAPT OF lE*1 = 22.00 HR /** TREffD"i Eh!ED O!! TOTAL-TIME CALCJLATIOril' HOUP; DATA MEAli DF CA'LCULATED CH6 Itt CALC LP OF TE!T EtiTRIEI CALC LR LEAK RATE FFDM LAST FOIriT 0.75 4 -0.110E+ 00 ' -0.115E+00 1.00 5 -0.887E-01 -0.547E-01 0.607E-01 1.25 6 -0.626E-01 0.121E-01 0.669E-01 1.50 7 -0.377E-01 0.692E-01 0.571E-01 1.75- 8 - 0.139 E- 01 0.120E+00 - 0.503E- 01 . 2.00 ' 9 0.192E-02 0.14 3Et 0 0 'O.232E-01 2.25 10 0.154E-01 0.160E400 0.177E-01 2.50 11 0.245E-01 0.165.2+ 0 0 0.518E- 02 2.75 12 0.308E-01 0.164 E+ 0 0 -0.155E-02 3.00 13 0.381E-01 0.169E+00 0.520E-02 3.50 14 0.435 E- 01 0.182E+00 0.126E-01 4.00 15 0.479E-01 0.184E+00 0.169E-02 4.50 16 0.511E-01 0.178E+00 -0.524E-02 5.00 17 0.546E-01 0.175E+00 -0.309E-02 5.50 IS -0.578E-01 0.172E+ 0 0 -0.296E-02 6.00 19 0. 5.L2E- 01 0.162E+00 -0.976E-02 6.50 20 0.609E-01 0.156E+00 - 0 . 632 E- 02 7.00 21 0.62TE-01 0.152E+00 -0.408E-02 7.50 22 0.63dE-01 0.145E+00 -0.670E-02 rag 8.00 23 0.643E-01 0.139E+ 00 -0.646E-02 S.50 24 0. 6 4 3E- 01 0.131E+00 -0.819E-n2 9.00 25 0.641 E- 01 0.123E+00 -0.791E-02

                   .9 . 5 0 -           26                   0.644 E- 01                    0.118E+00              -0.455E-02 10.00                 27                   0. 64 6E- 01
  • 0.114E+00' -0.417E-02 10.50 28 0.651 E- 01 0.112E+00 - 0.257E- 02 11.00 29 0.655E-01 0.109E+ 0 0 -0.205E-02 11.50 30 0.663E-01 '0.109E+00 -0.219E-03 12.00 31 0.666E-01 0.108E+00 -0.100E-02 12.50 32 0.672E-01 0.107E+00 -0.154E-02 13.00 33 0.677E-01 0.106E+00 -0.776E-03 13.50 34 0.680E-01 0.105E+00 -0.110E-02 14.00 35 0.685E-01 0.104 E+ 0 0 -0.453E-03 14.50 36 0.688E-01 0.103E+00 -0.115E-02 15.00 37 0.692E-01 0.105E+00 -0.337E-03 #~I 15.50 38 0.696E-01 0.10 5E+ 0 0 -0.334E-03 16.00 39 0.701E-01 0.102E+00 -0.191E-03 16.50 40 0.705E-01 0.103E+00 0.184 E- 03 17.00 41 0.710E-01 0.103E+00 0.235E-03 17.50 42 0. 715E- 91 0.103E+00 0.279E-03 18.00 43 0. 719E- 01 0.103E+00 0.354E-05 I~'t 18.50 44 0.723E-01 0.103E+00 - 0. 387E- 04
                 .19.00,                45                  0.726E-01                       0.103E+00              -0.122E-03 19.50                 46                  0.729E-01                       0.103E+00              -n .102E- 03 20.00                  47                  0.732E-01                       0.103E+00              -0.23?E-03
  • 20.50 48 0.7?SE-01 0.102E+ 0 0 -0.345E-03 21.00 49 0.738E-01 0.102E+00 21.50 50 0.741E-01 0.102E+00 0.151E-03 /*$
                                                                                                                   -0.139E-04 02.00                  51                  0. 74 4 E- 01                   0.102E+00              -0.185E - 0 3 THE CALCULATED LEAL PATE 12                                  0.102E+00 THE T16::1fluti ALLCl'A1.LE LEAF FATE II 0.250E+00
                        .      THE LAIT 2 DATA FOIriTO E;TA1:LI!H A fiEGATIVE ILCFE                                             :          ,_.         B-39

s TIME. DALE '.TAGT OF TEIT 9.50, 70'6 TIME AFTEF ". TAFT OF TEIT = 22.00 HP I LEAL- PATE LAIE1: Or. 1DTPL-TIME CALCOLh110fn 4. I TIME TEMP. FPE010FE MEHiUFED CALCULATED 9-4 CGhFIDElCE LIM 115 (F) (POIA> LEA). GATE LEAt. PATE 9.75 94.50 64.296 - 0 .128ti+ 0 0 0.514E-01 -0.54E-01 n. lei +ou

  \          10.00     9'4.46         64.291              - 0 . e. 01 E- U 1      0.520E-01                  -0.53E-n1            0.16E+00                      -

10.25 94.41 64.257 - 0.14 0E+ n o r' .52 6E -01 - 0. 5 EE - 01 0.16E+un 10.50 94.35 64.282 -n.262E-91 0 . 5 2 E- 01 -0.52E-01 0,16E+6" 0.553E-01 -0.51E-01 0,.1 d E+ 0 n 10.75 94.36 64.278 0.41TE-01 11.00 94.35 64.275 U . C-:71 E- 01 0.544E-01' - 0 . 5 0E 0.~1 d E+MY 11.25 94 .34 64.271 0.1266+0V t. 549E-01 -0.5rE-61 0.1 d E+ m. 11.50 94.32 64.268 0.113E+60 c.555F-01 '-0.49F-01 0.16E+0h 0.1dE+0n ! 11.75 94.31 64.266 U.123E+0n 0.561E-01 -0.48E-01 12.00 94.29 64.264 0.10TE+00 -0.56TE-01 - 0 . 4 2 E- 01 c.1dE+n0 12.25 94.27 64.262 0.936E-01 0.573E-01 -0.4TF-n1 0.1dE+00 12.50 94.27 64.258 0.118E+00 U.578E-01 - 0 . 4 d E- 01 0. lee +b0 13.00 94.24 64.255 0.108E+00 0.590E-01 -0.45E-01 0. lie +00 13.50 94.23 64.252 0.105E+00 0.dO2E-01 - 0 . 44 E- 01 0.idE+0n 14.00 94.21 64.250 0.963E-01 0.61?E-01 -0.42E-01 0.ITE+00 S 14.50 94.20 64.246 0.107E+00 0.625E-01 -0.41E-01 0.1TE+n0 15.00 94.19 64.244 0.109E+00 0.637E-01 -0.40E-01 U.17E+00 15.50 94.16 64.243 0.441E-01 0 . 6 45E.- 01~

                                                                                                              -0.38E-01            u .1,7E+ 0 0               ^
                                                                                                                                                                     ~..~

16.00 94.16 64.240 0.913E-01 '0.660E-U1 -0.37E-01 0.1TE%oO 16.50 94.16 , 64.238 0.966E-01 0.672E-01' -n.36E-01, 3.1TE+no 17.00 93.78 64.196 0.824E-01' O.683E-01 -0.35E-01 0.1TE+00 17.50 93.59 64.173 0.784E-01 0.695E-01 -0.34E-01 U.17E+00 18.00 93.41 64.157 U.64TE-01 0. 70TE- 01 -0.J2E-01 0.1TE+00 18.50 93.32 64.144 0.594E-01 0.716E-01 -0.31E-01 0.1TE+00 19.00 93.24 64.1?1 0.713E-01 0.730E-01 -0.30E-01 0.16E+00 19.50 93.17 64.122 0.69eE-01 0.742E-01 - 0 . 29E- 0-1 U. lie +00 20.00 93.10 64.112 n.761E-01 0.753E-01 -0.28E-01 0.18E+n0 20.50 93.04 64.102 0.TT5E-U1 0.765E-01 -0.26E-01 U.18E+n0 21.00 92.99 64.094 0.350E-01 0.777E-01 -0.25E-01 0.16E+00

  *s          21.50      92.94           64.068               0.52TE-01              0.788E-01                 -0.24E-01            0.1 ? E+ 0 0
             '22.00      92_39           64.053               0.783E-01              0.800E-01                 -0.25E-01            n.16E+00 22.50      92.86           64.076               0.628E-01              U.812E-01                 -0.22E-01            U.1GE+00 23.00      92.82           64.072               0.798E-01              0. 82 2 E- 01              -0.21E-01           0.19E+00 23.50      92.79           64.064                0.942E-01              0.835E-01' -0.20E-01                          n.19E+00 24.00      92.T4           64.061                U.783E-01              0.64TE-01                 -0.19E-01           0. l i E+ 00 "N          24.50      92.71           64.054                0.843E-01              0.256E-01                 -0.18E-01           n.19E+06 25.00      92.68           64.049                0.243E-n1              n.970E-01                 -0.17E-01           0.19E+00 25.50      92 . e.5        64.044                0.854E-01              0 . ; .82 E- 01           -0.16E-01           0.19E+00 26.00      92.62           e.4 . 0 38            0.c89E-01              0.991E-01                 -0.15E-01           0.1FE+00 26.50      92.59           64.01:                0.897E-01              n . :-* 0 5E- 01          -n.14E-01           0.19E+90 27.00      92.56           64.028                0.905E-01              0.91TE-01                 -0.13E-01           0.2nE+n0 g           27.50      92.54           64.025                 0.r62E-01             0.928E-01                 -0.12E-n1           0.20E+0n 28.00      92.51           64.021                0.979E-01              0.940E-01                 -0.11E-01           0.20E+00 28.50      92.49           64.018                 0.372E-01            'U.952E-01                 -0.95E-02            0.10E+00 29.00     92.47           64.014                 0.874E-01             0.965E-01                 -0.56E-02            0.iOE+nu
  • Stcp change in temperature was due to starting of containment ventilation fans which ran for remainder of test. B-40
                                                                                                                                                  - - mammesmeM -
                                ---.e me        esamme memeem +  eit# *
                                                                                                     - - _ _               .m._ _     _ - _ _ , -

29.50 92.44 64.010 0.860E-i1 0.975E-01 - 0 . < t t:- U : U.dut+00 30.00 92.42 64.008 0.84TE-01 U.987E-01 -0.6TE-02 0.20E+00 A 30.50 92.40 64,000 .. 903'-01

                                                             .        t       0.995E-n1       -0.57E-02              0.21E+00 81.00          92.38              6?.998                      0.c'86E-01       0.101E+UO       .-0.48E-02             0.21E+00

'< 1. 5 0 92.35 63.994 0.866E-01 0.102E+ 0 0 -0.39E-02 .0.21E+00 fr TT I ': A::UrtED THAT THE LEAL FATE II' CCid TAriT : O

  • THE. f1E Af f I~ 0.744E-01 THE CTArtDAPD DEVIATIurt I? 0.526E O KEl,I IT ffEGATIVE THE C ALCULATED LEAK PATE AFTER 22.00 HCURS OF TEOT IS 0.102E+00 DPTIOff! '
= FDIll O

TURKEY PT 50PSlii ILRT UrtIT 3 tit 1E, DATE ITART OF TEST '9.50 706 TIME AFTER :TAPT OF TEST = 22.00 HR LEAR PATE BAIED Dit POIttT-TO-POIllT C ALCULATIDris TI!1E TEr1P. PPE! SUPE T1EAIUPED CALCULATED 95*: CDitFIDEtiCE O

        .          (F)              (PSIA)                    LEAK PATE        LEAR RATE                      LI!1ITO 9.75          94.50             64.296                   -0.12SE+00         0.925E-01        -0.23E+00             0.41E+00 10.00           94.46              64.291                     0 . c:29E- 02   0.925E-01        -0.23E+00             0.41E+00 10.25           94.41              64.287                  -0.300E+UO         0.924E-01        -0.23E+00             0.41E+ 00 10.50           94.38              64.282                     0 . 316E,+ 0 0  0.924E-01        -0.23E+ 00            0.41E+00          O 10.75           94.36              64.278                     0.313E+00       0.923E-01        -0.23E+00             0.41E+00 11.00           94.35'             64.275                     0.315E+00       0.923E-01        -0.23E+00             0.41 E+ 0 0 11.25           94.34              64.271                     0. 376E+ 00     n . 922E- 01     -0.2 3E+ 00           n.41E+00    .

11.50 94.32 64.268 0.553E-02 U.922E-U1 -0.23E+00 0.41E+0V 11.75 94.31 64.266 0.206E+00 0.921E-01 -n.22E+00 0.41 E+ 00 12.00 94.29 64.264 - 0. 4 21 E- 01 0.921E-01 -0.22E+00 0.41E+00 A 0.41Ed 00 12.25 94.27 64.262 -0.379E-01 0.920E-01 -0.22E+00 12.50 94.27 64.258 0.3STE+00 0 . 92.0 E- 01 -0.22E+00 0.41E+UO 3.00 ?4.14 64.255 0.505E-01 0.919E-01 -0.22E+00 0.41E+00 B-41 .

          .._. _._ _ ..                      = __              - _.

w wmea-w,s. a e._pe a

                   ,                              .     .    =   .       -             -                 -       .

O 13.50 .d4 .23 i 64.252 0.792E-01 0' . 918E- 01 -0.22E+00 0.41E+n0 14.00 94.21 64.250 v.292E-01 0.917E-01 .v .22E+ 0 e 0.41E+00 14 .5 0 94.20 64.246 0.201E+00 0.915E-01 -0.22E+00 n.41E+00 15.00 94.19 64.244 0.132E+00 U.914E-n1 -0.22E+no 0.41E+00 15.50 94.16 64.243 - 0 .1'.'41 E+ 0 0 n.913E-el - 0.2iE+ 0 0 0.41E+vn . 16.00 94.16 64.24n 0.178E+n0 n.912E-01 -0.22E+00 e.41E+0a

       /
       '~            16.50          94.16           64.238           0.166E+00                                     0.911E-01          -n.22E+0a                  o .a n'E+ 0 0 17.00          9 3.7?
  • 64.196 -n.116E+vn 0.910E-91 -0.22E+n0 n.40E+n0 17.50 93.59 64.172 n.188E-p1 0.?U9E-01 -0.22E+00 v.40E+e0 18.00 93.43 64.157 - 0.155E+ 0 0 0.908E-01 -0.22E+00 0.40E+00 18.50 93.32 64.144 -0.?O9E-01 0.907E-ul -0.22E+00 0.40E+09 19.00 93.24 64.131 0.286E+00 n.906E-01 -0.22E+ 0 0 0.40E+eu

(?\ 19.50 9?.17 64.122 0.415E-01 0.905E-01 -U.22E+00 6.40E+00 20.00 93.10 64.112 0.202E+00 0.904E-01 -0.22E+00 0.40 -+00 20.50 93.04 64.102 0.105E+00 0.?OIE-01 -0.22E+00 0.anE+00 21.00 92.99 64.094- 0.320E+00 0.902E-01 -0.22E+00 'i..,0E+00 21.50 92.94 64.088 -0.391E-01 0.901E-01 -0.22E+00 0.4eE+00 22.00 92.89 64.083 - 0 . 277E- 01 0.900E-01 -0.22E+00 0.40E+nc 22.50 92.86 64.076 0.195E+00 0.299E-01 -0.22E+00 0.anE+00 23.00 92.82 64.072 0. 291 E- 02 0.898E-01 -0.22E+00 0.40E+00 23.50 92.78 64.064 0.203E+09 H.697E-01 -0.22E+ 0 0 0.40E+00 24.0u 92.74 64.061 -0.872E-n1 0.895E-01 -0.22E+00 n.4HE+00 24.50 P2.71 64.054 n.260E+00 n.894E-01 -0.23E+n0 0.4nE+n0 25.00 92.68 64.049 0.820E-01 0.893E-01 -0.23E+00 0.40E+00 , 25.50 92.65 64.044 0.122E+00 0.892E-01 -0.23E+00 0.40E+00 26.00 92.62 64.0?8 0.200E+00 0.191E-01 -0.23E+00 0.40E+v0 ("\ 26.50 27.00 92.59 92.56 64.033 64.028 0.117E+00 . U .89 0E- 01 -0.23E+00 0.41E+00

0,119E+00 0.889E-01 -0.23E+00 0.41E+00 27.50 92.54 64.025 0.776E-02 0.986E-01 -0.23E+00 0.41E+00 l 28.00 92.51 64.021 0.765E-01 0.sSTE-01 -0.23E+00 0.41E+00 28.50- 92.49 64.018 0.591E-01 0.856E-01 -0.23E+ 0 0 0.41E+00 29.00 92.47 64.014 0.972E-I1 J 0.885E-01 - 0 . 23 E+ '0 0 0.41 E+ 0 a 29.50 92.44 64.010 0. 316E- 01 0.884E-01 -0.23E+00 0.41E+00 30.00 92.42 64.008 Oc?n?E-01 0.5??E-01 -0.2?E+00 0.41E+00 30.50 92.40 64.000 0.320E+00 0.88EE-01 -0.23E+00 0.41E+00 31.00 92.38 63.998 0.174E-01 0.851E-01 -0.23E+n0 0.41E+00 31.50 92.35 63.994 0.199E-02 0.980E-01 -0.23E+00 0.41E+00 1

IF IT 15 A350MED THAT THE LEAF PATE 10 CONSTANT: THE MEAN 10 n.905E-01 . THE STANDAPD DEVIATICH IS 0.153E+00 SKEW IS NEGATIVE THE CALCULA1ED LEAF. PATE AFTER 22.00 HGUPI UF TEST 12 0.880E-n1 i b ~

  • See note on page B-40 -

B-42 ,

                      . . - - - .         . . - ~         -    - - . .                                         .       :.                                     -- - - - - - - - -
                                                                                                                                                 ~   '

OCONEE 29 5 PSIG ILRT UNIT I (~N

                                                                                                                                                   ~

g

                                               *-          ENTE!: 's I M E, IA1F, TEMP, PRESS t.H F.N FINI SW D FNTER 9999,,,,

2130, 0 7 30, 79 . S 37 69 5, 4 3. ~i9 422 4 U S ' 2145,0 7 3n, 79. e 16 49 9, /.3'. M ua9 a -.1.,, - r9-2200,0 7 30, *s 9. ?Y 6099, 43. ~d 320h ,

                                                       ' 2215,0 730, 79. ~,oF.69e , 43 79 ? t 91
                                                 ,       2230,0730,79 79819F,e3 791173
        .                                               22 45,0730,79 7E Db99, 43. 791173 2300,0730,79 769499,43 791173 2315,0730,79 773499, 43 790156 2330,0730,79 77309E,43 790156 2345,0730,79 779698,43 789139                                                                           .

2 400,0730,79 7 7P o98, ^3 7E91 :49 001 S,0 *i 31, 79. 7 6L 6un , 4:5 7w913v

                                             -           0030, U 7.11, ~/v . ~s 61 19 7, 4.1 7 4 913 9 00 4S,0 7J 1, 79. ~i 6b l 9 h, 43 7 M9139
                                -                       0100,0 7 31, 7 9. ~,6229h, 43. ~tF 913Y                                                                          peg O l l S,0 731,79 7 5E 598, 4't. 789139 Ol 30,0731,79 76669h,43 789139                                                                                  ,

0145, G731, 79 7 67 69't,43 769139 0200,0731,79 769799,43 739139

02) $,0731,79 755696,43 769139 0230,0731,79 7 55196,43 7b9139 0245,0731,79.75439S,43 789139 0300,0731,79 753698,43 789139 0 31 S,0~/ 31, 79. ~/ 679 9 8, 43 79 015 6 0330,0731,79 764799, 43 790156 034b,0731,79 77 629H,43 790156 0 400,0731, 79 7 68H 98, 43. ~191 17 3 0415,0731,79 771076,43 791171 0430,0731,79.76*i497, 43 791173 (%

0445,0731,79 791819,43 792191 .

                                                       ' 0500,0731,79 779096, 43 795:191 0515,0731,79 7F7196,43 792191 O b30,0 7 31, 79 79r 39'                e > 43 79 3206 0 545,0 7 31, 79 7P 9 498, 43 19 422 4 0 600,0 73't , 79 797 iV7, 43 79 422 4                                                                          /"h 0 615,0 731,79.x0 3 49 7, 43 79 422 4 0 630,0 7 31, 74. F.0 469 9, 43 79 59 41 0645,0731,79.113t98,43 795241 0700,0731,79 617296, 43 79(,'d5M                                                                         ,

0 715,0 731, 79. h 22 59 8, 43 79 60 SH - ., , 0 730,0 7 31, 79. E 2919 8, 43 79 62 58 r* r.- f* 9999,,,, , ,

          -                                                                   B-43 M eem m mw e guuuuBNS Wh                **-                                                                                          p            4, m eda 6

i I DCDf EE 29.5 F ".IG ILRT Ull!T 1

                                                                                                                                                                                                                                                     \

TIME, DATE STAFT OF TEST 21.50- 730 TIME AFTER ~TAFT OF TECT = 10.00 HR TREllDS BA!ED Dri TOTAL-TIME CALCULATIDriO

                                                                                                                                                                                  ~

HOURO DATA MEArt DF CALCULATED CHG Iff CALC LP

                   .DF TEST              EriTR fEO                        CALC LR                        LEAK RATE                                          FROM LAST POIriT 3               s~
   $"' .                      0.75               4                    -0.240E+00                         -C.924E-01 1.00               5                    -0.182E+ 0 0                           0'.105 E- 01                                             0.103E+00
     ,                        1.25               6                    -0.159E+00                           'O.138E-01                                                  0.330E-02 1.50               7                    -0.148E+00                             0.211E-03                                           -0.136E-01 1.75               8                    - 0.132E+ 0 0                          0.152E-01                                                 0.150E-01 2.00                9                    -0.119E+00                             0.241E-01                                                 0.883E-02 2.25             10                      -0.105E+00                             0.440E-01                                                 0.199E-01 2.50             11                      -0.951E-01                             0.516E-01                                                0.764E-02 2.75             12                      -0.886E-01 0.497E-01                                           -n.189E-02 3.00             13                      -O.830E-01                             0.435E-01                                           -0.121E-02 3.25             14                      -0.773E-01                             0.499E-01                                                0.143E-02 3.50             15                      -0.729E-01                             0.487E-01                                           -0.126E-02
                    ,        3.75             16                      -0.694E-01                             0.464E-01                                        '-0.229E-02 85                         4.00             17                      -0.656E-01                             0.465E-01                                                 0.770E-04 4.25             18                      -0.622E-01                             0.465E-01                                                 0.395E-04
             ,               4.50             19                      -0.594E-01                             0.453E-01                                           -A.119E-02                                                   -

4.75 20 -0.573E-01 0.429E-01

                                                                                                               ~
                                                                                                                                                                 -0.239E-02
                             '5.00            21                      -0.553E-01                             0.40?E-01                                           -0.219E-02 5.25             22                      -0.535E-Oi                             0.337E-01                          .
                                                                                                                                                                 -0.202E-02 5.50             23                      -0.518E-01                             0.368E-01                                           -0.186E-02 5.75             24                      -0.502E-01                             0.354E-01                                           -0.141E-02 6.00             25                      - 0 . 488 E- 01                        0.338E-01                                           -0.163E-02 6.25             26                      -0.472E-01                             0.336E-01 0.204E-03 6.50             27                      -0.462E-01                             0.314E-01                                           -
                                                                                                                                                                    '0 223E-02 6.75             28                      - 0. 4 S2 E- 01                        0.296E-01                                            -0.174E-02 7.00             29                      -0.443E-01                             0.278E-01                                            -0.184E-02 7.25             30                      -0.4 33E-01                            0.271E-01                                           -0.672E-03 pg                         7.50             31                      -0.425E-01                             0.255E-01                                           -

0.158E-02 T.75 32 - 0 . 416 E- 01 0.247E-01 -0.824E-03 8.00 33 -0.4 07E-01 0.239E-01

                                                                                                                                                                -0.834E-03 8.25             34                      -0.4 03E- 01                           0.218E-01                                           -n.209E-02 8.50             35                      -0.397E-01                             0.204E-01                                          -

0.136E-02 . 8.75 36 -0.391E-01 0 :195E- 01 - 0.895E-03 4 p=g 9.00 37 -0.386E-01 0.181E-01 -0.140E-02 9.2s #8 -0.331E-01 0.173E-01 - n.810E-03 . 9.50 39 -0.??dE-01 0.162E-01 -0.114E-OL 9.75 40 -0.371E-01 0.154E-01 -0.784E-03 10.00 41 -0.366E-01 0.147E-01 -0.723E-03 i

  #"N THE CALCULATED LEAK FATE II                                               0.147E-01 THE f1A::IMUM ALLOI8AFLE LEA > FATE II 0.177E+00 THE LA T 23
  • LATA FDIllT: E~TABLICH A fiEGATIVE ILDPE e
                                                                                                                                           -                      ~

B-44 - e j .m. m..e v,-

                     ~w-                   --         --, , - - - -                  , , , ,  ,---..-----,r.         - - - - - , , , , - ,             r,,-   ,,r    -,.-,-me-      , , , --,,-, --      --m,--   ----   -e,    - - - , , , - - - -

s1Nt, Unit .'TAPT OF 1E:T 21.50 730 P. TIMF AFTEP TAPT OF TE!7 - 10.00 HP LEAK PATE FACED Off TOTAL-TIME CALCULAT IOli3 (IME TEMP. PPE020PE MEASUFED CALCULATED ?SN CDilFIDEriCE ( F )' (P2IA) LEAU PATE LEAK PATE LIMITO 09 7 Si r. 21.75 79.82 43.794 -0.377E+UV -0.880E-01 - 0.22E+ 0 0 0.45E-01 22.00 79.80 ' 43.793L -U.259E+00 -0.853E-01 -0.22E+06 0.48E-01 22.25 79.807 43.7921 -0.327E-01 - 0 . 827E- 01 22.50 79.80 43.791

                                                                                          - 0.2.2E+ 0 0      0.50E-01          .

e'

                                       -0.851E-02                -0.601E-01               -0.21E+00          0. 52E- 01 22.75       79.78      4?.791         - 0 . 695E- 01 23.00                                                            - 0. T74 E- 01           -0.21E+00          0. 54 E- 01 79.77      43.791         - 0 . 9 08E- 01            - 0 . 74 S E- 01         - n . 21 E+ 0 0    0.57E-01 23.25      79.77       43.790         -0.358E-01                 -0.722E-01 23.50       79.77     43.790
                                                                                         -n.20E+00           0.59E-01
                                      -0.322E-01                 -0.695E-01              -0.2 0E+ 0 0        0.61E-01 23.75      79.78      43.789            0.918E-02                - 0 . 669E- 01. - 0.2 0E+ 0 0               0.64E-01 24.00       79.77      43.759         -0.455E-02                 -0.643E 0.1 ?E+ 0 0                    0.66E-01 24.25      79.76      43.789          -0.242E-01 24.50      79.76
                                                                 -0.616E-01              -0.19E+00           0.68E-01 4.3.78.9        - 0. 2 06E- 01             -0.590E-01 -0.19E+n0                        0. 71 E- 01 24.75      79.77      43.789          -0.999E-02 25.00      79.76      43.789
                                                                 -0.564E-01 -0.19E+00                        0.72E-01
                                      -0.162E-U1                -n.53?E 0.18E+ 0 0                      0.76E-01 25.25      79.76      43.789          - 0 .195E- 01             -0.511E 0.18E+ 0 0 25.50      79.77      43.78?                                                                                 0. TSE- 01
                                      -0.930E-02                -n.485E-01 -0.16E+ 0 0                      0. 81 E- 01 25.75      79.77      43.789          -0.TTOE-02                - 0. 4 59E- 01           -0.1TE+00          0.63E-01 26.00      79.76      43.789          - 0 .121 E- 01            -0 . 432E- 01            - 0.1 TE+ 00 rag

'26.25 79.76 4?.789 -0.179E 01 0.86E-01 - 26.50 -0.406E-01 - 0.1 TE+ 0 0 0.68E-01 79.76 43.789 -0.1TTE-01 - U .38 0E-01 26.75 79.75 43.789 -0.175E-01

                                                                                         - 0.1 TE+ 0 0      0.91E-01 27.00      79.75                                                -0.353E-01               -0.16E+0V          0.94E-01 43.789         - 0 .173E- 01              -0.327E-01
                                                                                         -O.16E+00
^?.25     'T9 . 77    43.790         - 0 .152E- 01 0.96E-01
 .' .5 0   79.76                                                -0.301E-01               -0.16E+00          0.99E-01 43.790         -0.16?E-01                 - O'. 274 E- 01 27.75      79.78      43.790         -0.804E-02
                                                                                         -0.16E+00          0.10E+00 28.00                                                            -0.248E-01              -0.15E+00           0.10E+00 79.77      43.791         - 0 . 214 E- 01            - 0 . 2E 2E- 01         -0.15E+ 0 0         0.11E+00 28.25       79.77      43.791         - 0 .191 E- 01 28.50                                                            -0.195E-01              - 0.15E+ 0 0        0.11E+00 79.77      43.791         - 0. 2 07E- 01             -n.169E-01              - 0.15E+ 0 0        0.11E+00 28.75       79.79      43.792         -0.128E-01                -U.143E-U1 29.00       79.78                                                                        -0.14E+00           0.12E+00 43.792         -0.199E-01                 -0.116E-01              - 0.14 E+ 0 0       0.12E+00 29.25       79.79      4?.T92         -0.146E-01                -0.902E-02 29.50       79.80      43.793                                                            - 0.14E+ 0 0        0.12E+06
                                     -0.149E-01                -0.639E-02               -0.14E+00           0.12E+00 29.75       79.79      43.794         -0.260E-01                -0.376E-02 30.00       79.80      43.794                                                            -0.13E+00           0.13E+00
                                     -0.209E-01                -0.112E-02               -0.13E+00           0.13E+oO 30.25       79.80      43.794         -0.174E-01                    n.151E-02 30.50       79.80      43.795
                                                                                        -0.13E+00           0.13E+00
                                     - 0 . 225E - 01              0.414E-02'            - 0.13E+ 0 0        0.14E+0n 30.75       79.81      43.795        - 0.1 TTE- 01                  0.6TTE-02            -n.15E+00           0.14E+00 31.00       79.82      43.796         - 0 . 213E- 01               0.940E-02             - 0.12E+ 0 0        0.14E+00             II 31.25       79.82      43.796        -0.18?$-ol                    n.120E-n1             -0.12E+00           0.14E+00 31.50       79.82      43.796         - 0.18 0E:~ 01 . .6 14 TE- 01                      - 0.12E+ 0 0
                                                   , .    .?..  %..                                         0.15E+00     -

IF IT 13 A:2VMED THAT THE LEAL PATE II CDItSTAftT: THE heart I: -0.?66E-01 O THE 'T AriDMD DEVI ATIGri Il 0.693E'01 El EM I; liEGATIVE E C ALCULATED LEAK PATE AFTEP 10.00 HOUP2 OF TEIT II 0.14TE-01 B-45 __ _ ,e - - - ~ ~ * * * * * * * ' ' '

TIME, DATE':TAPT OF TE T 21.50 730 m ' t ' TIME AFTER JTAPT GF TE!T = 10.00 *HR -- LEAL; PATE LA:ED Uit PDirtT-TO-POIriT C ALCULAT ICit: (, TIME TEMP. PPEICUPE T1ER:UPED CALCULATED 95% CCitFIDErtCE (F) (PCIA) LEAI. FA1E LEAL PATE LIMITI 21.75 f9.32 4?.794 - 0.377E+ 0 0 -U.225E-01 -0.42E+00 U.37E+00 22.00 79.30 4?.793 -0.14 0E+ 0 0 -0.c22E-01 - 0.42E+ 0 0 0.37E+00 22.25 79.80 42.792 0.269E+00 -0.220E-01 -0.41E+00 U.37E+00

     /G)'

22.50 79.80 43.791 0.214E+00 - 0 . 218 E- 01 -0.41 E+ 0 0 U.376+00 22.75 79.78 43.791 - 0. 313E+ 0 0 -0.215E-01 -n.41E+00 0.37E+00

 ,                             23.00         79.77                 43.791     - 0.197E+ 0 0             -0.213E-01              - 0.41 E+ n 0    0.3TE+00 23.25         79.77                .43.790        0.294E+00              -0.211E-01              - 0.41 E+ 0 0    0.37E+00

! 23.50 79.77 43.790 - 0 . 714 E- 02 - 0. 2 08E- 01 -0.41E+00 0.37E+00 23.75 79.78 43.789 0.341E+00 -0.206E-01 - 0. 41 E+ 0 0 0.37E+00 24.00 79.77 43.789 -0.125E+00 -0.204E-01 -0.41E+00 0.36E+00 24.25 79.76 43.789 - 0.221 E+ 0 0 -0.201E-01 - 0.4 0E+ 0 0 0.?6E+ 0 0 24.50 79.76 43.789 0.196E-01 -0.199E-01 -0.40E+00 0.:6E+00 24.75 79.77 42.789 0.125E+00 -n.197E-01 -0.40E+00 0.36E+00 25.00 79.76 43.789 -0.105E+C0 -n.195E-01 -0.4 0E+ 00 n.36E+00 25.25 79.76 43.789 -0.656E-01 -0.192E-01 -0.4 0E+ 0 0 U . 36E+ 0 0 25.50 79.77 43.789 0.144E+00 - 0 .19 0E- 01 - 0.4 0E+ 0 0 0. 36E+ 0 0 25.75 79.77 43.789 0.:79E-01 - 0 .188E- 01 -0.40E+00 0.3dE+00 26.00 79.76 43.789 -0.870E-01 -0.185E-01 -0.40E+00 0.36E+00 26.25 79.76 43.789 -0.123E+00 -0.183E-01 -0.4 0E+ 0 0 e.36E+00 g 26.50 79.76 43.789 -0.124E-01 -0.181E-01 - 0.4 0E+ 0 0 0.36E400 26.75 79.75 43.789 - 0 .142E- 01 -0.178E-01 -0.4 0E+ 0 0 U.36E+00 27.00 79.75 4?.789 -0.124E-01 -0.176E-01 -0.4 0E+ 0 0 0.36E+00 27.25 79.77 43.790 0.318E-U1 - 0 .174 E- 01 -0.4 0E+ 0 0 0.36E+00 27.50 79.76 43.790 -0.570E-01 -0.171E-01 -0.4 0E+ 0 0 0.36E+00 27.75 79.78 43.790 0.205E+00 - 0 .169E- 01 .U.40E+00 0.37E+00 28.00 79.77 43.791 -0.354E+00 -0.16TE-01 -0.4 0E+ 0 0 0.37E+00 28.25 79.77 43.791 0.392E-01 -0.164E-01 28.50 79.77

                                                                                                                                .-0.40E+00       0.37E+00
                      .                                            43.791     - 0 . 639E- 01            -0.162E-01              -0.4 0E+ 00      0.37E+00 28.75         79.79                 43.792        0.210E+00              -0.160E-01              -0.40E+00        0.37E+00 29.00         79.78                 43.792     -0.226E+00                -0.157E-01              -0.40E+00        0.37E+00 29.25         79.79                 4?.792        0.144E+ 0 0            -0.155E-01              -0.40E+00        0.37E+00 29.50         79.30                 43.793    - 0.235E- 01               -0.153E-01              - 0. 4 0E+ 0 0   0.37E+00 29.75         79.79                 43.794    -0.381E+00                 - 0.15 0E- 01           -0.4 0E+ 00      0.37E+00 30.00         79.80                 43.794        0.148E+ 00             - 0.14 6E- 01           -0.40E+00        0.37E+00 30.25         79.80                 43.794        0.102E+00              -0.146E-01              -0.40E+n0        0.37E+00 30.50         79.80                 43.795    - 0.2 02E+ 0 0             -0.14 3E-01             -0.4 0E+ 0 0     0.38E+00 30.75         79.81                 43.795        0.157E+ 0 0            -0.141E-01              -0.41E+00        0. 38E+ 0 0 31.00         79.82                 43.796   .-0.155E+00                 -0*.139E-01             -0.41E+00        0.38E+00 f              -

31.25, 79.82 43.796 0 . 94 4 E'- 01 -0.137E-U1 -0.41E+00 0.38E+ 00 31.50 79.82 43.796 -0.694E-02 - 0 .1 34 E- 01 -0.41E+00 0.}8E+00 IF IT 15 A!JUr1ED THAT THE LEAL PATE 12 COtCTAtlT : h THE HEAri 1: -0.!T9E-01 l THE CTAr4DAFD DEVIATIDtl 1 0.184E+00 i iLEM 10 ftEGATIVE i THE CALCULATED LEAL FATE AFTEP 10.00 HOUE0 GF TECT,II -0.134E-01

               .                                                                               B-46                                            -

l . . . . .. . .- -

                          .- _ _ =             . _ . . . .               ..                         -

[

O CON r.t. av rnu 4... . . . . .

  • r3 FNTER TliR, CATE, TEMP, PRESS rag
                                 .              1.H FN FIN 13HFU EvlEG 9999,,,,                                           '
                                             =   O215,0h02,8 5. 3 4149h, 73 37 5n29 5 C  " ' '
                                             =   O230,0802, t 5 27 5797,7 3 36e 1 SP - "M.t117
                                             =   0245,0802,85 192797,73 360031                                       .

0 300,0h0 2, E S.133 39 7, "t h . 3 529 2 6

                                             =
                                             = . 0 315,0802, R 5 09139 6,7 3 3448 0 7                                                                        . /~N*
                                             =   0330,0802,h5 03559h,73~.337702
                                             =    0 345,0H02, M 4 9t:289 7,7 3. 'y30 59 7
                                             = 0 400,0802,6 4 9 9 59 9 7, 7 3. 32 3 492                             *
                                             = 0 415, Oh02, b 4.h 7PO9 7, 73 31636 7
                                             =    0 430,0602, h 4 827995.,73 31029 7
                                             =    0 445,0aO9,8 4. 77 7tsv 7,7 3 303191
                                             =    0 500, 0x 02, h A. */ 3 3 A9 */, 7 3. P9 710 2
                                             =    0 515, Oh02,8 4. 6h929R,73 991012
                                             =    0 530,0602, h A. 6 48 69 7,7 3. ?M 59 3 6
                                             =    0 545, OE OP, E 4. 60169 7, 7 3 2 76.8 31
                                             =    0600,On0P,LA.573298,73 2t3*/56
                                             =    0615,0802,84.53159P,73 2656AR
                                              =   0630,0802,84.493797,73 263607
                                              =   0 6 45,0802 e 8 4. 45789 7,7 3. 2 58 532

' = 0700,0602, h 4 42189 7,7 3 454471

                                              =   0715,0802,84.3n6097,73 441397
                                              =   0730,0F02,8 4 358997,73 244322
                                              =   0 7 45, C8 02, b 4 31.9 69 6, 's 3 2 412 7 's
                                              =   0800,0602,84 284297,73 233156
                                              =   0815,0602,84 259697,73 230112
                                              =    0830,0802,84 222196,73 225037
                                              =    08 45,0 SOP, b 4 200197,73 221992
                                              =    0900,0802,8 4 172b9 7,73 219916
                                              =    0915,0E 02,6 4 1449 96,73 2128 57                                                         .
                                              =    0930,0802, E 4 121097,73 209611
                       *                      =    09 45,0HO',8 4 09169H,73. 2057 51
                                             .= 10'00,0802,84 061399,73 201693                                                                                   fag
                                               = 1015,0802,84 037398,73 198647 1030,0802,84 014598,73 1945S6
                                              =     1045,0802,83 966198,73 191542
                                              =     1100,08 0 2, 8 3. 9 6 589 8, 7 3.'19k 49 7
                                               =    1115,0bO2, P 3 9 44396,7 3. I r .>^52
                                               =    1130,0h02,8 3 929P98, t 3. l ok 407.                                                                         /'i
                                               =    1145, C 8tio, F 3 90 Al y:',73. I 7$< 3 47
                                               =    1200,08 0 2, F.3. X n i n V E , 73 175303
                                               =    1215,0602,63 555699,73 17?256                                  1? 7 - 7*                         -
                                               =    9999,,,,,

8 l i B-47

                                                                                                                          .. =
                   ~       "

1

  -                  .-- -.                       ~ . . .                                                   __   __

0 DCartEE 59P'16 ILPI Util l 1 em

  -                             TIME, DATE ITAPT OF. TEST             2.25          602 TIME AFTER ITAPT OF TEIT =                10.00      HR
  • h

. TREllIIS I. ACED Dit TOTAL-TIME CALCULATIDil:

               ' HOUR 3          DATA             ME Ari DF       CALCULATED            CH6 Ill CALC LF CF TECT          EriTRIEO          CALC LR         LEAR PATE             FPOM LA*T POIllT m

~h' O.75 4 -0.21TE+00 -0.255E+00 1.00 5 .-0.185E+00 -0.147E+0V n.106E+00 1.25 6 -0.164E+00 -0.969E-01 0.502E-01 1.50 ' 7 - 0.14 8E+ 0 0 -0.651E-01 0.318E-n! 1.75 8 -0.136E+00 -O.485E-n1 0.166E-01 2.00 9 - 0.12TE+ 0 6 -0.369E-01 0.116E-01 2.25 10 -0.119E+00 -0.268E-61 0.101E-01 2.50' 11 -0.111E+00 -0.172E-01 n.95EE-02 - 2.75 12 -0.104 E+ 0 0 -0.943E-02 0.779E-02 3.00 13 -0.Y82E-01 -0.29?E-02 0.651E-02' O.25 14 -0.934E-01 n.10TE-02 6.400E-02 3.50 15 -0.585E-01 0.620E-02 n.515E-u2 3.75

  • 16 -0.234E-01 0.129E-01 0.66TE-02 4.00 17 - 0 . 7.L 1 E- 01 0.171E-01 0.420E-02 4.25 18 -0.753E-01 0 . 2'0 I E- 01 0.319E-02 4.50 19 -0.718E-01 0.231E-01 0.286E-02 4.75 20 - 0.689E- 01 0.243E-01 0.116E-02 -

5.00 21 - 0 . 66.1 E- n 1 0.259E-01 0.15dE-02 5.'25 22 -0.632E-01 0.284E-01 0.251E-02 5.50 23 -0.612E-01 0.281E-01 -0.289E-02 5.75 24 -0.584E-01 0.309E-01 0.284E-02 6.00 25 -0.560E-01 0.330E-01 0.205E-02 6.25 26 -0.5??E-01 0.346E-01 0.166E-62 6.50 27 - 0. 516E- 01 0.36nE-01 0.136E-02 6.75 2? -0.500E-01 0.360E-01 n.246E-06 7.00 29 -0.479E-01 0.380E-01 0.202E-02 7.25 30 -0.460E-U1 0.39eE-01 0.155E-02 7.50 31 - 0 . 44 2 E- 01 0.4 09E-01 0.131E-02 7.75 32 - 0 . 425 E- 01 0.419E-01 0.104E 8.00 33 -0.410E-01 0.427E-01 0.730E-AI S.25 24 -0.394E-01 0.4 37E- 01 v.101E-02 8.50 35 -0.380E-01 0.443E-01 0.589E-n3 8.75 36 - 0 *. 367 E- 01 n.447E-01 0.459E-03 9.00 37 -0.355E-01 0.451E-01 U.390E-03

                 ,9.25               38         -0.342E-01           0.45?E-01                0.646E-03 9.50              39         -0.329E-01           0.465E-01                0.742E-n3 9.75              40         -0.31TE-01           0.471E-01                0.605E-03 10.00              41.         - 0. 3 07E- 01      0.474E-01                0.322E-03
f. THE CALCULATED LEAF PATE II 0.474E-01 THE MA::IMurt ALLEuAILE LEAF PATE 1: 0.250E+00 THE LAIT U DATA POlitTi EITAILICH A flEGATIVE ': LOPE 4

B-48

TIME, DATE START OF lELT 2.25 802 . rs a T,IME AFTER OTAPT OF TE$T'= 10.hD HP ,

                                .                                   LEAM RATE EAIED Ori TOTAL-TIME cal'CULATIDfl5
                                                                                                                                                ~

A TIME TEMP. FPE030FE MEA ~bFED CALCULATED 95*: CONFIDEriCE (F) (PSIA) LEAK RATE LEAK PATE LIMIT 3 2.50 85.28 73.368 - 0.15 3E+ 0 0 -0.109E+ 0 0 -0.2 0E+ 0 0 ~- 0.21 E-01 2.75 85.19 73.360 -0.276E+00 -0.105E+00 -0.19E+00 -0.1TE-01 3.00 85.13 73.353 -0.223E+00 -0.101 E+ 0 0 -0.19E+00 -0.14E-01 57 3.25 85.09 73.345 -0.868E-01 -0.96TE-01 -0.18E+00 -0.10E-01 3.50 85.04 73.338 -0.802E-01 - 0 . 927.E- 01 -0.18E+00 -0.62E-02 3.75 84.98 73.331 -0.666E-01 -0.887E-01' -0.1TE+00 -0.25E-02 4.00 84.93 73.323 -0.675E-01 -0.847E-01 -0.17E+00 0.13E-02 4.25 84.87 73.316 -0.616E-01 -0.80TE-01 - 0.17E+ 0 0 0.51E-02 4.50 84.83 73.310 -0.525E-01 -0.76TE-01 -0.16E+00 0.90E-02 4.75 84.78 73.303 -0.426E-01 -0.T2TE-01 -0.16E+00 0.13E-01 5.00 84.73 73.297 -0.374E-01 -0.687E-01 -0.15E+00 0.1TE-01 5.25 84.69 73.291 -0.327E-01 -0.647E-01 -0.15E+00 0.21E-01

       -5.50                                            84.65            73.286   -0.34EE-01                      -0.60TE-01              -0.15E+00 0.24E-01 5.75                                        84.60            73.279   -0.245E-01                      -0.56TE-01              - 0.14E+ 0 0 0.28E-01 6.00                                        84.57            73.274   -0.119E-01                      -0.52TE-01              -0.14E+00 0.32E-01 6.25                                        84.53            73.269   -0.153E-01                      -0.487E-01              -0.13E+00 0.36E-01 6.50                                       84.49            73.264   -0.148E-01                      -0.447E-01              - 0.13E+ 0 0 0.40E-01                  /%

6.75 84.46 73.259 -0.122E-01 - 0. 4 07E- 01 -0.13E+00 0.44E-01 7.00 84.42 73.255 -0.170E-01 -0.26TE-01 -0.12E+00 0 . 48 E- n i- -

  .         7.25                                        84.39            73.249     J.12TE-01                      -0.327E-01             -0.12E+00 0.52E-U1 7.50                                       84.36            73.244   -0.490E-02                       -0.287E-01             -0.11E+00 0.56E-U1 7.75                                       84.32            73.241   -0.181E-01                       -0.24TE-01             -0.11E+00 0.60E-U1 8.00                                        84.28            73.233     0.184E-02                      -0.20TE-01             - 0.1 1 E+ 0 0       0.64E-01 8.25                                        84.26           73.230     0.303E-03                      -0.166E-01             - 0.10E+ 0 0 0.68E-01 8.50                                        84.22           73.225     0.423E-03                      -0.126E-01             -0.97E-01             0.72E-01 8.75                                        84.20           73.222     0.822E-03                      -0.864E-02             -0.94t-01 0.76E-01 9'00     .                                  84.17            73.220  -0.693E-02                       - 0 . 463E- 02         - 0 . 9 0E- 01        0.80E-01 9.25                                        84.15            73.213    0.874E-02                      -0.627E-03             -0.86E-01             0.84E-01 9.50                                       84.12            73.210    0.765E-02                        0.338E-02             -0.82E-01            0.89E-01 9.75                                       84.09            73.206    0.785E-02                        0.738E-02             -0.78E-01            U.93E-01 10.00                                           84.06            73.202    0.750E-02                        0.114E-01            -0.74E-01             0.97E-01         r*

10.25 84.04 73.199 0.650E-02 0.154E-01 -0.70E-01 0.10E+00 10.50 84.01 73.195 0.102E-01 U.194E-01 -0.66E '01 0.11E+00 10.75 ,83.99 73.191 0.798E-02 0.234E-01 -0.o3E-01 0.11E+00 11.00 83.97 73.189 0.7911-02 U.274E-01 -0.59E-01 0.11E+n0 11.25 83.94 73.186 0.8232-02 0.314E-01 -0.55E-01 0.12E+00 11.50 93.93 73.182 0.116E-01 0.354E-01 -0.51E-01 0.12E+00 ("$ 11.75 33.90 73.178 0.IIdE-01 U.394E-01 -0.48E-01 U.13E+00 12.00 83.88 73.175 0.134E-01 0 .4 34 E- 01 - 0 . 4 4 E- 01 0.13E+ 0 G 83.86 73.172 0.115E-01 0 .4 74 E- 01 -0.40E-01 0.13E+00

12. 25 IF IT 13 A CUMED THAT THE LEAK PATE 15 CDisITAriT: f THE f1EA!i 1 ~: -0.10TE-"!

THE :TAriI+;D IEVIATION I .: 0.611E-01 SKEu I: riEGATIVE - THE CALCULATED LEAK FATE AFTER 10.00 HOURS OF TEIT I; 0.474E-01 .

       .                                                                                                   B-49                                      I       .
                                                                                                             .. .      -        - - .                                  ~ - - -

Ane., UHrE :T6lT OF TE:T 2.25 8u2 TIFIE AFTEP OTAPT OF TE3T = 10.00 HP . LEAK RATE DAIED Off PDIt!1-TD-PDltiT C ALCUL61ICt.I O . TIME TEr1P . PPE!!UPE r1EA

  • UF ED CALCULATED (F) a;P!I A) LEAP RATE 95*: C Cr*F I del.C E LEAL EATE LIMIT 3 2.50 85.28 T3.363 2.75- 85.19 -0.153E+00 -0.368E-01 -0.37E+ 0 0 T3.360 -0.4 00E+ 00 -0.344E-n1 n.29E+00
/7g                 3.00     G5-.13        73.053                                                     -0.36E+00         v.10E+00 3.25     85.09                          -0.117E+00      -0.319E-01                -0.36E+00 73.345             0.323E+00     -0.294E'01                                  U . 3 0E.+ 00 3.50     85.04         T3.333           -0.534E-91                                -0.36E+00        0.30E+00 3.75     64.98          73.331                           -0.269E-U1                -0.35E+00        0.30E+n0 4.00     84.93                             0.129E-02     -0.244E-01                -U.35E+00 73.323           -0.728E-01                                                 0.30E+00 4.25     84.87          73.316                           -e.219E-01 ,-0.35E+00                      0.30E+00 4.50     84.33                           -0.200E-01      -0.194E-01               -0. ?4 E+ 0 0 73.310             0.200E-01                                                0.30E+00 4.75     84.78          73.303                           -0.170E-01               -0. 34E+ 0 0      0.51E+06 5.00                                       0.472E-el    -0.145E-01                - 0. 34 E+ 0 0 84.73          ??.297             0.144E-01    -0.120E-01                                  U . 31 E+ 0 0 5.25     84.69         T3.291              0.183E-01                              -0.33E+60         0.31 E+ 0 0 5.50     84.65         73.286                           -0.950E-02                -0.3.2E+00        0. 31 E+ 0 0 5.75     S4.60                          -0.511E-01      - 0. 7 01 E- 02           -0.33E+00 73.279             0.102E+00     -0.453E-02                                  0.11E+00 6.00     84.57         73.274             0.164E+00                               -0.33E+00         0.32E+00 6.25     84.53         73.269                           -0.204E-02               -0.32E+ 0 0        0. 52E+ 00 p                   6.50     84.49                          -0.655E-01         0.446E-03             -0.32E+00 73.264           -0.705E-02                                                  0.32E+00 6.75     84.46         73.259                              0.293E-02             -0.32E+ 0 0        U.32E+00 7.00      84.42                            0.318E-01        0.542E-02             -0.31E+00 T3.255           -0.103E+00'                                                 0.35E+00 7.25      84.39         ??.249                              O.790E-02             - 0. 31 E+ 0 0    0. 35E+ 00 0.686E-01       0.104E-91              -0.31E+00 7.50     34.36          73.244             0.152E+00                                                0. 33E+ 0 0 7.75     84.32.         73.241                             0.129E-01              -0.21E+00         0.33E+00 8.00     84.28                          -0.294E+00         0.154E-01              -0.10E+00 73.233             0.44tE+00       0.178E-01                                0. 33E+ 00 8.25     84.26          T3.230          -0.350E-01                                -0.30E+00         a.34E+00 8.50     84.22          73.225                             0.203E-01             -0.30E+00          0.34E+00 8.75     84.20                             0.341E-02       0.228E-01             -0. 3 0E+ 0 0 9.00                   T3.222              U.111E-01       0.253E-01                                6. 34E+ 0 0 84.17         72.220           -0.210E+ 0 0                             -0.30E+00          0.35E+00 9.25     84.15         73.213                              0.278E-01             -0.29E+00          0. 35E+ 0 0 9.50     S4.12                            0.433E+00       0.303E-01              -0.29E+00 73.210          - 0. 225E- 01      0.328E-01 0.35E+00 9.75     84.09         73.206             0.135E-01                              -0.29E+00          v.35E+00

'S 10.00 84.06 T3.202 0.352E-01 -0.29E+00 0.36E+ 00 10.25 84.04 -0.271E-02 G.377E-01 - 0.28E+ 0 0 73.199 -0.243E-01 0.402E-01 0.3dE+00

        .        10.50    S4.01         T2.195                                                     -0.28E+00         0.36E+00 10.75     03.99                             0.130E+00       0.42TE-01             - 0. 28E+ 0 0 T3.191           - 0 . 668E- 01     0.452E-01                                0. 57E+ 0 0 11.00     83.97         73.189                                                    -0.28E+00          0. 37E+ 00 11.25     33.94                             0.577E-02       0.4TTE-01             -0.28E+00 11.50 73.186              0.197E-01       0.502E-01
0. 37E+ 0 0 D S3.93 T3.182 0.133E+00 -0.28E+00 0.35E+00 11.75 63.90 73.178 0.52TE-01 -0.2TE+00 0.35E+00 12.00 63.88 0.894 E- 01 0.551E-01 -0.2TE+00 T3.175 0.542E-02 0.13E+00 12.25 83.86 T3.172 0.57dE-01 -0.2TE+00 v.39E+00
                                                        - 0.629E- 01       0.601E-01              -0.2TE+00          0139E+00 IF IT
  • % 10 A!30f1ED THAT THE LEAK PATE I3 COH3 TANT:

THE HEAh II 0.116E-01 THE STANDAPD DEVIATION IS 0.157E+00

                  !KEW 13 FO:ITIVE                                               .

THE CALCULATED LEAF. FATE AFTEP 10.00 HOUP3 CF TECT.10 0.6 01 E- 01

  • B.50

r~5

                                                                                                                                    . O
                       .        El-tTER TITLE CF LEOS THAN 28 CHAPACTERS
                           = -TURKEY PT 4 ILRT 25 PCIG gs EllTER t1AX ALLOWAELE LEAN RATE
                           =        .132                          .

EllTER flD. OF VARI ABLES TO BE PRItiTED Off EACH REPORT . E

                     ,         ,EllTER PRE 00UPE C0fiOTAfiT
                           =         .492 EllTER PFEVIOU3 VALUES                        t'                    .
                            = YES                                     _,                        ~
                     ';           IllPUT FROM FILE ?
                            = YE3 245        221          84.464198            39.735508 300        221          84.420846            39.733594 315        221          84.396072            39.732040 330        221           84.382883           39.729757                                            O 345        221           84.332073           39.728596 400        221           84.305953           39.726725
                   .                415         221          84.293841           39.724837 430         221          84.261681           39.723820
  • 445 221 84.247468 39.721734 500 221 84.221296 39.720305 515 221 84.189256 39.719458 530 221 84.173001 39.717378 545 221 84.138927 39.716389 600 221 84.123601 39.714870 '

615 221 84.104048 39.713886 630 221 84.071678 39.712701 645 221 84.045058 39.710863 700 221 84.041249 39.709715

                                                                                                                                      /**1 715         221         84.020317           39.709219 730         221         84.003307           39.707622 745         221         83.994328           39.705791 800         221         83.978843           39.704865-815         221         83.969e64           39.704208 830         221          83.948784           39.702156
                     ,               845         221          83.953644           39.700832                                              I B-51 6   M-**   *- **e     _
                                          . e -g    wg . ppm agre .                                                      .en_   N

DPTIDt!" i o TE&REffb .

 =s TURREY PT 4 ILRT 25 PSIG                                                            .

TIME, DATE START OF TEST 2.75 221

      'o TIME AFTER START CF TEOT =                                        6.00 .HR TREliDO 1:ASED Of t TOTAL-T'IME CALCULATIONS HOURS                DATA                                MEAH DF           CALCOLATED                    CH6 If t CALL Ef fTRIES                              CALC LR          LEAK RATE                     FROM LA!T FT OF. TEST' 0.'75                4 0.167E+00        -0.228E-01 1.00                 5                           -0.166E+00            -0.795E-01                      -0.567E--

0.160E+00 - 0 . 891 E- 01 -0.962E-8, 1.25 6 - 7 - 0.145E+00 -0.630E-01 0.262E-t 1.50 -0.291E-'

 \
  • 1.75 8 -

0.140E+00 - 0 . t.59 E- 01

                                                            '9                            -

0.130E+00 - U . 499E- 01 0.159E-: 2.00 0.735E-r 2.25 10 - 0.123E+00 -0.426E-01 2.50 11 -0.121E+00 - 0 . 484 E- 01 -0.577E-i. 2.75 12 - 0.116E+0V - 0.4 4 0E-01 0.438E-' 3.00 13 - 0.114E?00 -0.484E-01 -0.445E-' 3.25 14 -0.111E+00 - 0 . 481 E- 01 0.298E-r

                                     ' 3.50                 15                             -

0.10?E+00 -0.487E-01 -0.595E-r 3.75 16 -0.108E+ 0 0 -0.527E -0.401E-' 4.00 17 - 0.107E+00 -0.552E-01 *

                                                                                                                                               -0.24?E-t 4.25               18                             -

0.105E+00 -0.535E-01 0.168E-' 4.50 19 - 0.104E+00 - 0 . 54 3 E- 01 -0.789E-' 20 - n.102E+00 -0.533E-01 0.9?8E-* 4.75 0.299E-' 5.00 21 - 0.998E-01 -0.49?E-01 (~5 5.25 22 - 0.977E-01 -0.46eE-01 0.231E-' 5.50 23 - 0.956E-01 -0.429E-01 0.311E-i 5.75 24 - 0.934E-01 -0.391E-01

  • 0.384E-i
    -                                     6.00              25                              -

0.91sE-01 -U.364E-01 0.271E-i-I'\ THE CALCULATED LEAK PATE 10 -0.364E-01 THE f1A* A lfiUM ALLCUAI'LE LEAE FATE IS 6.132E+00 e THE LA T 0 LAT A PDIrtTE ESTAI:LICH A f tEGATIVE CLOPE O B-52 - 1

 ~~.'.                ._
    -              ..         ~ . , - . . - .      . .....                                                                                                  _

m , _. . .__-r4,---s..7,-<. ,% _ . . _ _ - , - , . , _ -

    'O' PTIDIC 7                                      .
                                                                                  ~
    = TDTAL                                                                    .                                                       /~%

TURKEV PT 4 ILRT 25 PSIG R. TIME, DATE OTART OF TEET 2.75 221 . TIME AFTER OTART OF TEST = 6.00 HR fp't LEAK RATE EASED DH TOTAL-TIME CALCULATIDtt0 . TIME TEMP. PRE 00VRE MEASURED CALCULATED 957. CDiiF ILENCE (F) (PSIA:, LEAK RATE LEAK RATE LIMITS

              '& . 9 :.   ' *; . R :,'
                                               ~

3.00 84.42 39.734 -0.302E+00 -U '~14

                                                                      .      TE+ 0 0     -0.25E+ 0 0 - 0.39E-01 3.25    4:4.40       39.732            -0.162E+00            -0.142E+00             -0.25E+ 00 -0.35E- 01 3.50    84.38        39.730           -0.151E-01             -0.137E+00             -0.24E+ 0 0 - 0.31 E- 01

. 3.75 84.33 39.729 -0.165E+00 - 0.132E+ 0 0 -0.24 E+ 0 0 - 0.2TE-01 4.00 84.31 39.727 -0.134E+00 -0.128E+00 -0.23E+00 -0.23E-01 4.25 84.29 39.725 -0.713E-01 -0.123E+00 -0.23E+ 00 -0.19E- 01 pas 4.50 84.26 39.724 -0.10TE+00 -0.118E+00 4.75 84.25 39.722

                                                                                         -0.22E+ 00 -0.15E-ul
                                           -0.621E-01             -U.113E+00             -0.22E+ 0 0 -0.10E-01 5.00     84.22        39.720           -0.681E-01             -0.108E+ 0 0 5.25                  39.719                                                         -0.21E+0 0 -0.58E-e2 84.19                         -0.974E-01             -0.104E+ 0 0           -0.21E+ 00 - 0.13E-02 1.50    84.17        39.717           -0.689E-01             -0.988E-Al             -0.20E+00            0. 33E-02 5.75     84.14        39.716           -0.934E-01
                                                                  - 0.94 0E- 01          -0.20E+00            0.81E-02 6.00     84.12        39.715           - 0. 788E- 01          -U.892E-01             -0.19E+ 0 0          0.13E-01 6.25     84.10        39.714           -0.808E-01             -0.844E-01             -0.19E+00            0.18E-01 6.50     84.07        39.713           - 0. 94 5E-01          -U.796E-01             - 0.18E+ 0 0         0.23E-01 6.75     84.05        39.711           - 0. 9 02E- 01         - 0 . 748E- 01         -0.18E+00            0.28E-01 7.00     84.04        39.710           - 0 . 725 E- 01        -0.T00E-01             -0.17E+00            0. 33E- 01 7.25     84.02        39.709           -0.823E-01             - 0 . 652E- 01         - 0.17E+ 0 0 +IN38E-01 7.50     84.00        ?9.708           -0.735E-01            -0.604E'01              -0.1dE+00 '6.43E-01 7.75     83.99        39.706           - 0 . 556 E- 01        -0.556E-01             -0.16E+00            0. 4 9E- 01 8.00     83.98        39.705           - 0 . 553E- 01         - 0. 5 03E- 01         -0. lee +00                                   r=.

8.'25 83.97 39.704 0.54E-01

                                           -0.530E-01            -U.460E-UI              -0.15E+00            0. 6 0E- 01 8.50     83.95        39.702           -U.451E-01            -0.412E-01 C.75     83.92        39.701
                                                                                         -0.15E+00            0.65E-01
                                           -0.484E-01            -0.364E-01       .
                                                                                         -0.14E+00'           O . 71 E- 01

_s IF IT 10 AIC,UMED THAT THE LEAF ' FATE 10 CDil!TAttT : 0

                                                                                          -0 0;v. y
                                                                                                       -           cJN e o2q 7 THE f1EAN IO -0.916E-01                                                                    ,gqt3 THE ETANLAPD DEVIATIDtf IE                   U .561 E- 01 SKE!J 10 ftEGATIVE                                                                                                         '

THE C ALCULATED LEAV FATE AFTER 6.00 HDURS OF TEST IS -0.364E-01 #* B-53 O

UPTIDf t  ? . p a PDIf f T r TUPI'.EY PT 4 ILET 25 POIG TIME, DATE OTAPT OF TECT 2.75 221 TIME AFTER STAPT OF TECT = 6.00 HP q ,

    . q;.

LEAR RATE FAIED Uri PDIfiT-TD .PDItiT CALCULATIDft! . TIME TEMP. PPE500PE MEAOUPED CALCULATED 95:: CCHFILEisCE (F) (PSIA) LEAK RATE LEAK RATE LIMITO 3.00 84.42 39.734 -0.302E+00 -0.123E+00 -0.68E+60 0.43E+0n 3.25 e4.4 0 39.732 -0.6 ee-01 -0.116E.00 -0.eee.oo 0.43e+0n 3.50 84.2E 39.730 0.319E+00 -0.110E+ 0 0 -0.65E+00 n.4?E+00 3.75 84.3? 39.729 -0. 616E+ 0 0 -0.103E+00 -0.64E+00 0.44E+nu 4.00 84.31 39.727 -0.879E-02 -0.96&E-U1 - 0.63E+ 0 0 0.44E+00 4.25 84.29 39.725 0.243E+00 -0.99?E-01 - 0 . e.2 E+ 0 0 0.44E+00 O 4.50 4.75 84.26 84.25 39.724 39.722

                                                               -0.522E+ 0 0 .-0.838E-01 0.253E+00                  -0.774E-01
                                                                                                                     -0.62E+00
                                                                                                                     -0.61 E+ 0 0 0.45E+00 0.4 5E+ 0 0 5.00          84.22        39.720        -0.11TE+00                    -0.709E-01            -0.60E+00                 0.46E+00 5.25          84.19        39.719       -0.361E+00                     - 0 . 64 5E- 01        -0.59E+00                0.46E+0V 5.50          84.17        39.717          0.216E+00                   -0.580E-01             -0.58E+ 0 0              0.47E+0e 5.75          84.14        39.716        -0.262E+00                    -0.515E-01             -0.5?E+UO                0.4TE+00 6.00          84.12        39.715          0.967E-01                   - 0 . 4 51 E- 01       -0.5TE+00                0.4EE+00 6.25          84.10        39.714        - 0.10TE+ 0 0                 -0.386E-01             -0.56E+ 00               0.49E+00 6.50          84.07        39.713        -0.285E+00                    -0.421E-U1             -0.56E+00                0.49E+00 6.75          84.05        39.711        - 0. 25eE- 01                 -0.257E-01             -0.55E+00                U.50E+00 7.00          6:4.04        39.710         0.211E+ 0 0                 -0.192E-01              -0.55E+00               6.51E+00 1

7.25 6:4.02 39.709 -0.250E+00 -0.12TE-01 -U.54E+00 0.52E+00 7.50 84.00 39.708 0.858E-01 -0.62GE-02 -0.54E+ 00 0.5?E+00 7.75 83.99 39.706 ^0.284E+0V 0.180E-05 -0.54E+DV 0.54E+00 l f, 8.00 83.98 39.705 -0.495E-01 0.664E-02 -0.53E+ 0 0 0.55E+00 i 8.25 83.97 39.704 -U.215E-02 U.131E-01 -0.53E+00 0.56E+0e l 8.50 83.95 39.702 0.12&E+00 0.196E-01 -0.5?E+00 0.57E+0V 8.75 83.92 39.701 -U.124E+00 0. 2 e. 0 E- 01 -0.5?E+00 0.58E+nu O IF IT 13 AICUMED THAT THE LE6l' PATE 13 CDff!T AtlT : THE MEAN 10 -0.483E-01

  • THE STANDAPD DEVIATIDri IC 0.247E+UO Sl: Eld IS flEGHTIVE p THE CALCULATED LE6F F6TE AFTEP 6.00 HOUPS OF TEST 10 0.260E-U1 l

I B-54 [ . . . . l _

                                        . .. -       -,             . . ~ . . . . . . . - - . . . . _ . . . .

A EliTEP TITLE OF LECO thall 16 CHAPACTEPE

                   = TUPLEY PT 4 ILPT 50 P IO
  • EriTER MAX ALLOUHELE LEAF PATE /'h
   .               = .187 EtiTER flu. OF VAPIAFLES TO LE.PRIriTED Oft EACH EEPORT
                   =
  • EffTEP PRE!!UPE CDrt! TANT
                   = 1.008                                                                      *
                   =

EllTER PPEVIOUS VALUES ? YE3~ IllPUT FPCM FILE i

                                                                       ~

('

                   = YES                                f " "

1 */ -

     .                 815      222 84.890917      64.575491              *                    .

830 222 84.815578 64.565991 845 222 84.748323 64.557928 900 222 84.600598 64.550813 915 222 84.620767 64.543633 . 930 222 84.573458 64.537400 . 945 222 84.5?2473 64.530528 2000 222 84.4834e0 64.524441 ~ 1015 222 84.4784e1 64.519401 1030 222 84.378191 64.513 10 1045 222 84.339383 64.508129 ("I 1100 222 84.309402 64.503222 1115 222 84.287372 64.498999 1130 222 84.252657 64.4935e9 1145 222 84.216741 64.488869 1200 222 84.183637 64.484797 - 1215 222 84.156272 64.479088 1230 222 84.121907 64.475367 1245 222 84.090188 64.472207 1300 222 84.060226 64.467656 1315 222 84.064003 64.463457 1330 222 83.993955 64.459099 1345 222 83.967884 64.455226 1400 222 83.962464 64.451703 1415 222 83.931631 64.447822 /"h 1430 222 83.903746 64.444797

               . 1445      222  83.881929      64.438139 1500      222  83.833377      64.434796 1515      222  83.808769      64.431734 1530      222  83.789e34      64.428566 1545      222  83.763671      64.425728                                                               /~h 1600      222  83.734842      (4.423850 1615-     222  83.T15137      64.419731 1630     222   83.694536      64.416149                                                        ~
                                  ?                               h DPT I Df f'.'        .'.                   .-
                                                                                                                            /"N 7

B-55 _. ~ *w - _ *"6 N O6

p ,

                                                   , TURKE'r PO f f tT 4 ILRT 50 FOIG                       .
                                       . TIME, DATE 'lART OF TEOT S.25         222
                                   *                                                 ~

flME AFTEE. ilART OF TEST = S.25 HR' ( . TREtlDS ~ I;ASED Ort iOfAL-TIME CALCULATIDNO HOURS DATA MEMit UF CALCULATED CHG' IN CALC LP

  .Q.

DF TEST EftTRIEO CALC LR LEAL RATE FROM LAST POIrtT 0.75 4 0.498E-01 -0.ST6E-U2 1.00, , 5 U.28cd '01 - 0 .,219E- 01 -0.132E-01

      .                 1.25 1.              6                U.252E-01          -0.143E-01                0.766E-02 1 '.'5 0             7                0.411E-01            0.157E-01               0.299E-01 1.75                  8                -U . 45 0t- U 1      0.320E-01               0.163E-01 2.00                  9                U.473E-01            0.'737E-U1              0.417E- 01 4

2.25 10 0.449E- 01 0.o04E-01 -0.133E-01 2.50 11 U.443E-01 0.521 E- 01 -0.830E-02 2.75 12 U.444E-01 0.511E-U1 -0.103E-02 3.00 . 13 U.449E-01 0.550E-01 0.399E-02 3.25 14 U.47UE-01 0.o12E-01 0.611E-02 3.50 15 U.467E-U1 0.oS4E-01 0.42SE-02 3.75 16 U.bOUE-01 0.679E-01 0.248E-02 4.00 17 U.523E-01 0.741E-01 0.617E-02 . 4.25 18 U.638E-01 0.772E-01 0.316E-02 4.50 19 U.54eE-01 0.778E-01 0.612E-03 4.?5 20 , U.bbeE-01 0.791E-01 0.126E-02 5.00 21 'O.680E-01 0.85GE-01 0.675E-02 5.25 22 U.b0eE-01 0.856E-01 -0.221E-03 5.50 23 U .390E- 01 0.85?E- 01 0.110E-03 5.75 24 0.o05E-01 0.883E- 01 0.257E-02 6.00 25 U.o16E-U1 0.901E-01 0.181E-02 6.25 26 U .oc4 E- 01 0.909E-01 0.751E-03 6.50 27 0.o39E-01 0.944E-01 0.355E-02 f 6.75 7.00 28 29 U.o47E-U1 U.653E-01 0 .;.451 E- 01 0'953E-01 0.677E-03 0.254E-03 7.25 30 0.ob9E-01 0.95SE-01 0.425E-03 I 7.50 31 U.co4E-01 0.956E-01 -0.160E-03 7.75 32 U.cobt-01 0.942E- 01 -0.140E-Oi 8.00 33 0. cot:6- U 1 U.936E-01 -0.549E-03 O S.25 34 D.o71E-01 0.935E-01 -0.188E-03 o THE CALCULATED LEAN 1 ATE 10 0.935E-01 THE NAXIMON ALLUWHt:LE LEAL RATE 15. 0.187E+00 THE LAST 4 DATM PulhT5 EITAI:LIIH A tiEGATIVE ILDPE 1 I . B-56 i

                                                                                                            -                                    /"N TIME, DATE START GF TEST                            S.25 .

222 . TIME AFTER OTHRT OF TEIT = 8._25 HR LEAK RATE 1:HLED Uit TOT AL-T.Ir1.F CALCULATIDrt; . O

                                                                       /

TIME TEMP. PRE 200RE MtALUPED CALCULATED 95% CDNFIDEh'CE (F) (POIA)

  • LEAN RATE LEAK RATE LIMIT 3
               .  ..t                                                                                     ,

p 64.566 .U.841E-01 0.4 08E-01 -0.15E-01 U.97E-01 8.50*1 84.82-8.75. 84.75 64.558 0.485E-01 0.425E-01 -0.13E-01 0.98E-01 9.00 84.65 64.551 - U .1:41E-01 0.441E-61 -0.11E-01 0.10E+00 9.25 84.e2 64.544 - U .o /4E- 92 0.458E-01 -0.94E-02 0.10E+00 9.50 84.57 64.537 U.131E-01 0.474E-01 -0.76E-02 0.10E+ 0 0 9.75 84.53 64.531 U . t. 08 E- 01 0.491 E- 01 -0.57E-02 0.10E+ 0 0 10.00 84.48 64.524 U.b80E-01 0.507E-01 -0.39E-02 0.11E+00 10.25 34.48 64.519 U .133t+ 0 0 0.523E-01 -0.21E-02 0.11E+00 10.50 84 .38 64.513 U .c:es ic-01 0.5~0E-01 -0.32E-03 0.11E+00 10.75 84.34 64.508 U.d90E-01 0.556E-01 0.15E-02 0.11E+00 11.00 $4.31 64.503 0.447E-U1 0.573E-01 0.32E-02 0.11E+00 11.25 84.29 64.4Y9 U.6UrE-01 0.589E-01 0.50E-02 0.11E+00 8'4.25 64.494 U.724E-01 0.606E-01 0.67E-02 0.11E+00 11.50 P. 11.75 84.22 64.489 0.709E-01 U.622E-01 0.34E-02 0.12E+00 . 2.00 84.18 64.485 0.o76E-U1 0.639E-01 0.10E-01 0.12E+00 0.12E+00 12.25 84.16 64.479 U.0o3E-01 0.655E-01 0.12E-01 50 84.12 64.475 U.781E-01 0.671E-01 0.13E-01 0.12E+00 1 75 84.09 64.4?2 U .e80E-01 0 .'688E- 01 0.15E-01 ' 0.12E+00 13.00 84.06 64.4o8 U./30t-01 0.704E-01 0.17E-01 0.12E+00 13.25 84.06 64.463 U.104E+00 0.721E-01 0.18E-01. 0.13E+00 13.50  :. 3 . 99 64.459 U.710E-01 0.737E-01 0.20E-01 0.13E+00 13.75 83.97 64.455 U.731E-01 0.754E-01 0.21E-01 0.13E+00 14.00 84.96 64.452 U.08et-01 0.770E-01 0.23E-01 0.13E+00 14.25 83.93 64.448 U.0edb-01 0.787E-01 0.24E-01 0.13E+00 14.50 83.90 64.445 U.811E-01 0.803E-01 0.26E-01 0.13E+00 14.75 83.88 64.438 U.1U1E+00 0.819E-01 0.2TE-01 0.14E+00 15.00 83.33 64.435 U.043E-01 0.836E-01 0.29E-01 0.14E+00 8 15.25 83.31 64.432 U .02 0E- 01 0.852E-01 0.30E-01

  • 0.14E+00 15.50 83.79 64.429 U.03cE-01 0.869E-U1 0.32E-01 0.14E+00 15.75 83.76 64.426 U.T98E-01 0.885E-01 0.33E-01 0.14E+00 16.00 82. 73 64.424 u . e.y6 E- 01 0.902E-01 0.35E-01 0.15E+00 16.25 60.T2 64.420 U.T60E-01 0 .L18E-01' O.3eE-01 0.15E+00 U.P6oE-01 0.935E-01 0.38E-01 0.15E+ 0 0 P 16.50 o .:. . o9. .rg 64 . 41 e .
                       \.s.             .J.                 ...                                                                  ,

IF IT 10 A5!UMED THAT THE LEAE FATE 10 COh3TAtti: THE MEAtt !~ 0.671E-01 # THE ITArtDMD DEVIRT ION l' 0.401E-01 ILEu I; rte 6ATIVE . CALCULATED LEAF PATE AFTER 8.25 HOOFi. OF TE~T I, n.935E-01 B-57 ._. . . _ eo m-

r TIME DA1E LTHPT OF TE~T '8.25 222 TIME AFTER il6PT.0F TECT = 8.25 HR f LEAK PATE I;A1ED uit PDirtT-TD-POINT CALCULAT IDit; TIME -T EMP . PRE 000RE MEAaVRED CAiCULATED 95"; CDrtc 1LEriCE (F) 1.POIA) i_Enk RATE LEAK RATE LIMiti

                    .sk 8.50       84.82               64.566                             U.041E-01            0.703E-01               -0.61E+00          U.75E+00 8.75       84.75               64.558                             0.131E-U1            0.708E-01               -0.60E+00          0.74E+00 9.00       84.68               64.551                         -0.13tE+00               U.714E-01               -0.60E+0V          0.74E+00 9.25       84.62               64.544                              U .14 7 E      U.719E-01               -0.60E+00          0.T4E+00 9.50       84.57               64.537                              U.Yeed-ul           0.724E-U1               -0.59E+0V          0.T4E+00 9.75       84.53               e4.531                              u,2Y9E+00           0.730E-01               -0.59E+00          0.74E+00 10.00        84.48               64.524                              U . -410E- 01       U.735E-01               -0.59E+00          U . 7 3E+ 00 10.25        84.48               64.51Y                              U .co2E+ 0 0-       U.741E-01               -0.59E+00          0.73E+00 10.50        34.38               64.b13                         -U . 0.<4 E+ 0 0         U.T46E-01
                                                                                                                     ~
                                                                                                                                         -0.58E+00          U.73E+00 10.75         84.34              64.508                              U.bo4E-01           0.751E-01               -0.58E+00          0.73E+00 11.00         84.31              64.503                              U.eU1E+00 ,

0.757E-01 -0.58E+ 0 0 0.73E+00 11.25 84.29 64.499 0.d40E+00- 0.762E-01 0.59E+00 0.7 3E+ 0 0

                       'll.50         84.25'             64.494                              U.d10E+00           U.768E-01                -0.58E+00         U.T3E+90 b                    11.75         84.22              64.489                              U .512E-- U 1       0.773E-01               -0.57E+00          0.73E+00 0.7 3E+ 00 12.00         84.18              64.485                              0.219E-01           0.778E-01               -0.57E+00
        .               12,25         84.16              64.479                              U.3cTE+00           0.764E-01               -0.5?E+00          0. 7 3E+ 00 12.50         84.12              64.475                         -

U.52SE-01 0.789E-01 -0.57E+00 0.T 3E+ 00 12.75 84.09 64.472 - 0.0Y3k-01 0.??5E-01 -0.57E+0V U .7 3E+ 00 13.00 84.06 64.4e8 U.149E+00 U.800E-01 -0.57E+00 0.73E+00 13.25 84.06 64.463 U.e9eE+00- U.806E-01 -0.5 7E+ 0 0 U.73E+0u 13.50 83.99 t.4.459 -

0. :.88E+ 0 0 0.811E-01 -0.57E+00 U.73E+00 13.75 83.97 64.455 U.11TE+00 0.816E-01 * - 0.57E+ U O U.73E+00 U.74E+00 14.00 83.96 64.452 U.4c9E+00 0.82EE-01 -0.5?E+ 0 0 14.25 83.93 64.448 0.33e.E 0.827E-01 -0.57E+00 0.74E+00 14.50 83.90 64.445 -
0. 418E- 01 0.833E-01 -0.57E+00 0.74E+00 14.75 83.88 64.438 U.ouTE+00 0.838E-01 -0.58E+00 0.74E+00 0.84 3E-01 -0.5SE+ 0 0 0.75E+00 p 15.0.0 15.'25 83.83 83.81 64.435 64.432
                                                                                         -0.360E+00 U.21?E          0.849E-01                 .0.58E+00        0.75E+00 15.50        33.79               64.429                              0.134E+00          0.854E-01 -0.58E+00                        U.75E+00 15.75        83.76               64.426                         -0.456E-01              0.Se0E-01 -0.58E+ 0 0                      0.75E+00 16.00        34.73               64.424                         -0.d29E+00               0 . S c.5 E - 0 1      -0.58E+00          0.76E+00 4

16.25 83.72 64.420 . U.deoE+00 0.870E-01 -0.59E+00 U.T6E+00 0.876E-01 -0.59E+00 0.76E+00 f 16.59 83 . e.9 64.416 U.1 Tub +00

  • 1F IT 10 A;;UMED THAT THE LEAL RhtT E 13 CDttITANT:

THE MEArt 10 0.789E-01 A THE OTRttDAF D DEVI A11DN 1; U.3U9E+00 ii.EM 1; itEGA11VE, THE CALCULATEL LEAK PATE MFTEP 8.25 HOUP OF TECT I3 0.876E-01 B-58 . .

                                                                                                                                   .-me g           g    g        ,g,,         gg. gg gg           gg M&

e ase g

               -h* W SN N                       - - -- 6 epeutmm emussaeh.upee e

PILGRIM 23 PISG ILRT SUIC'JtRY DATA A 715 .418 74.956247 37.397097 735 41S 74.884465 37.391397 ' 755 41S 74.322430 37.38405? 815 41S 74.75S759 37.377854 S35 418 74.716776 37.374887 r"g 855 413 74.669914 37.367402 915 413 74.629765 37.361652 935 418 74.5S8752 37.356888 955 418 74.555734 37.357893 . 1015 418 74.525414 37.349307 . 418 37.34S976- IT' 1035 74.501325 ** 1055 418 74.473636 37.345291 l'115 418 74.439338 37.339716 , . 1135 418 74.489973 37.539033

  • 1155 418 74.382644 37.331306 1215 413 74.350527 37.328240 1235 419 74.333984 37.326899 1255 41S 74.324T6S 37.325108 1315 413 T4.309512 37.320589 1335 418 74.2S4869 37.319066 74.263775 1355 413 37.313377 1415 418 74.251817 37.314480 1435 418 74.239738 37.309047 1455 418 74.227 6 37.305922 fag 1515 418 .74.221419 37.303091 1535 418 74.211597 37.303124 1555 418 74.199554 37.298808 1615 418 74.196404 37.294480 1635 418 74.195953 37.294297 i655 418 74.176330 37.299638 1715 418 74.166501 37.289633 1735 418 74.156672 37.290367 1755 418 74.149091 37.288216 1815 418 74.142794 37.238114 IS35 418 74.129364 37.284904 1855 418 74.116418 37.283180 1915 418 74.102989 37.279352 1935 418 74.0922?5 37.279016 /*6 1955 418 74.095S25 37.275826 2015 418 74.094475 37.27493S 2035 418 74.088660 ~37.273129 2055 418 74.085546 37.269678 2115 418 74.085060 37.267064 2135 41,9 74.077931 37.264915 /"*

2155 418 74.066338 37.264094 2215 418 74.052730 37.265483 . 418 2235 74.053808 37.260200 , 2255 41S 74.056923 37.257604 2315 418 74.049344 37.258600 2335 418 74.033165 37.256002 /* 2355 418 74.039430 37.251978 9 B-59

r wunus 4a roAu Anas dureuutz unra tuvNnsut;u) 15 419 74.031035 37.248387 35 419 74.028788 37.247786 55 419 74.026123 37.247563 115 419 74.020791 37.245894 ri) 135 419 74.021690 37.245565

      ?'                                  155     419     74.027922          27.240999                          -

215 419 74.027055 37.236922 235 419 74.021690 37.233720 . 255 419 74.023040 37.233552 315 419 74.022175 37.235061' 335 419 74.021690 37.233809 355 419 74.013159 37.227361 415 419 74.011964 37.229668 435 419 74.009716 37.225339 455 419 74.007464 37.225919 515 419 74.007882 37.222779 535 419 74.004315 37.221340 ~ 555 '419 74.004350 37.219682 l 615 419 74.003934 37.216374 635 4.19 74.00'6634 37.215075 655 419 74.005666 37.214469 715 419 73.994971 37.210235 1 - I l r ( I s 1 *% l *% l B-60 , 1 __ l L /

r

                                     ,   PILGRIM 23 PCIG ILRT                          .
                                                                                                     ~

TIME, DATE STAPT OF TEST 7.25 413 P TIME AFTER START OF TEST = 24.00 HR TREtID3 I:ASED Dit TOTAL-TIME C ALCULATIO!!?

                                                                                                                       -sm HOUR 3              DATA         MEAtt OF      CALCULATED                CHG !!i CALC LR OF TEST             EttTRIE3     . CALC LR      LEAV. RATE FROM LA3T' POINT 1.00                   4       0.277E+ 0 0      0.386E+00 1.33                   5       0.273E+ 00       0.332E+00 1.67                                                                        -0.540E-01 6       0.293E+00        0.372E+00                     0.395E-01 2.00                    7       0.312E+00       'O.40GE+00 2.33                                                                           0.359E-01 8       0.324E+00        0.424E+00                     0.165E-01 2.67                    9       0.317E*00        0.379E+00 3.00                                                                        - 0 . 4 51 E- 01 10         0.324E+00        0.390E+00 3.33                                                                           0.105E-01 11         0.323E+00        0.374E+00                  -0.154E-01 3.67                 12        0.322E+00         0.363E+00       '
                                                                                           -0.103E-01 4.00
                 .                  13        0.324E+00        (>.362E+00                 -0.914E-03                   8 4.33                 14        0.329E+00         0.376E+00 4.67                 15 0.132E-01 0.331E+00         0.376E+00                 -0.757E-05 5.00                 16        0.331E+00        0.372E+00 5.33                                                                       -0.333E-02 17        0.331E+00        0.365E+00 5.67                 18
                                                                                          - 0 . 71.5E- 02 0.330E+00    -

0.359E+00 -0.720E-02 6.00 19 0.330E+00 0.355E+00 6.33 -0.334E-02 20 0.329E+00 0.349E+00 -0.534E-02 6.67 21 0.330E+ 00 0.350E+00 7.00 22 0.732E-03 0.329E+00 0.344E+00 -0.606E-02 7.33 23 0.329E+00 0.343E+00 -0.707E-03 7.67 24 0.329E+00 0.343E+00 8.00 25 0.133E-0? 0.330E+00 0.344E+00 0.9 03E- 0 3 S.33 26- 0.329E+00 0.342E+00

      ,       3.67                27         0.330E+00        0.342E+00
                                                                                          -0.214E-02 0.553E-04 O

9.00 28 0.330E+00 0.345E+00 0.240E-01 9.33 29 0.331E+00 0.345E+00 0.52?E-0? 9.67 30 0.329E+00 0.338E+00 -0.694E-02 10.00 31 0.32?E+00 0.333E+00 10.33 0.219E-03 32 0.329E+00 10.67 33 0.329E+00 0.336E+00 0.334E+00

                                                                                         -0.223E-02                   O
                                                                                         -0.202E-92 11.00 ,              34         0.32SE+00       0. 3 31 E+ 0 0              -0.315E-02 11.33                35         0.327E+00       0.329E+00 11.67                36                                                     -0.240E-02             -

0.327E+00 0.326E+00 -0.264E-02 ~ 12.00 37 0.326E+00 0.324E+00 12.33 33 -0.164E-02 0.325E+00 0.322E+00 -0.253E-02 O 12.67 39 0.325E+00 n . '-:2 0E + 0 0 -0.139E-02 ._ _ _ _... ._ B-61 I

                                                                                                                                                     ~

13.00 40 0.325E+00 0.319E+00 -0.166E-01 13.33 41 0.324E+00 0.317E+00 -0.160E-vi g 13.67 42 0.324E+00 0.316E+00 -0.733E-Gi 14.00 43 0.324E+00 0.316E+00 -0.265E-0? " 14.33 44 0.324E+00 0.316E+00 -0.23SE-vi 14.67 45 0.323E+00 0.315E+00 - 0 .84 4 E- 0 *.:

  .                                        15.00                     46             0.323E+00                    'O.313E+00                          -0.223E-02 15.33                    +47             0.322E+00.                       0.312E+00                       - 0.7 07E- 0 ?

Cs . "15.67 48 0.322E+00 - 0.312E+00. -0.242E-0?

           ~~
                               '                                                    0.322E+00                        0.311E+00                       -0.124E-02
       -                                   16.00                     49 16.33                     50             0.321E+00                        0.310E+00                       -0.107E-02 16.67                     51             0.321E+ 00 -                     0.309E+00                       -0.233E-03 17.00                     52             0.321E+00                        0.309E+00                           0.185E-01
 !                                         17.33       .             53             0.321E+00                         0.309E+00                      -0.156E-03 17.67                     54             0.321E+09                        0.309E+00                       -0.565E-OL 18.00                     55             0.320E+00                         0.3 08E+ 0 0             '
                                                                                                                                                      - 0.602E-u?

13.33' 56 0.320E+0V ,0.3 0 TE + 0 0 "0.S57E-01 18.67 57 . 0.320E+00 0 .3 07E +'0 0 0.214E-04 l- 19.00 59 0.320E+00 0.30SE+00 0.577E-01 19.33 59 0.320E+00 0.309E+00 0.805E-0? . 19.67 60 0.320E+,00 0.309E+00 0.453E- 01

                                 .         20.00                     61             0.320E+00                          0.309E+00                      - 0.216E- 0 **

O' 20.33 20.67 62 63 0.320E+00 0.320E+00 0.309E+00 0.309E+00

                                                                                                                                                      -0.309E-01 0.514E-OL                ;

21.00 64 0.320E+00 0.309E+00 -0.254E-03 21.33 65 0.320E+00 0.309E+00 0.234E-0? ! . 21.67 66 0.31?E+00 0.30?E+00 -0.202E-0? 22.00 67 0.319E+00 0.309E+00 0.809E-04 l 22.33 68 0.319E+00 0.309E+00 0.4 02E- 05 22.67 69 0.31?E+00 0.30?E+00' O.112E-04 23.00 70 0.319E+00 0. 3 09E+ 0,0 0.274E-0? 23.33 71 0.319E+00 0.309E+00 4 0.237E-01 23.67 72 0.319E+00 0.310E+00 0 . e'- 0?E- 04 , ! 24.00 73 0.319E+00 0.310E+00 0.336E-01 - i

                 ^

THE CALCULATED LEAE PATE 13 0.310E+00 THE MAX 1Mun ALLDuABLE LE60 FATE 10 0.500E+00 I THE LA*.T 0 DATA PDINTO ESTABLI*H A HEGATivE ILGPE 1 p . e e a B-62 ,

                                                                                                                 .                                     - - - - - =

d

                                                          . r s uec a e c# r , s o s tr. :

O

                                              . TIf1E, DATE 3TAFT OF TECT                             T.25 418 .'*

TIl1E AFTER

  • TART OF TECT = 24.00 HR LEAK RATE IRIEL Ctl TOTAL-TIl1E CALCULATICil5 .

TIl1E TEf1P. FFE!!UFE f1EA2 0F ED CALCULATED 95% CGhFILEftCE i e (F) (PCIA)

  • LEAK RATE LEAK RATE LIMITS
7.58' T4.88 37.391 0.129E+00 0.329E+00 0.26E+00 0.4 0E+ 00 r.-

l T.?2 74.82 37.384 0.354E+00 0.328E+00 0.26E+00 0.40E+UO 8.25 74.76 37.378 0.248E+00 0.328E+00 0.26E+ 00 0.40E+00 8.58 T4.72 37.375 U.262E+00 0.326E+00 0.26E+00 0.4 0E+ 0 n 8.92 T4.67 37.367 0.372E+00 0.32TE+U0 0.26E+00 0.40E+0h 9.25 74.6? 37.362 0.4 04E+ 00 0.32TE+00 0.26E+00 0.4 0E+ 0 0 l 9.58 T4.59 37.357 0.399E+00 0.32TE+00 0.2dE+00 0.40E+00 9.92 74.56 37.358 0.269E+00 0.32TE+00 0.26E+00 6 . 3'.-E+ 0 V 10.25 74.53 37.349 0.376E+00 0.32dE+00 0.26E+00 0.39E+00 10.58 74.50 37.349 0.314E+00 0.326E+00 0.26E+00 0.??E+00 10.92 74.47 37.345 0.316E+00 0.326E+00 0.06E+00 U.39E+00 11.25 74.44 37.340 0.341E+00 0.32dE+00 0.26E+00 0.39E+00

                 ! ! .'58        74.49              37.338              0.392E+00                .0.325E+00          0.2eE+00             0.39E+00 11.92           74.3?              37.331              0.35?E+00                 0.32SE+00          0.26E+ 0 0           0.39E+06 12.25-          74.35              37.328              0.?40E+00~                0 . 3 C-tS E + 0 0 . 0.2eE+00          4.39E+00           8
            .   '12.58           74.33              37.327              0.?21E+00                 0.325E+00          0.26E+00             0.39E+00 12.92           74.32              37.325              0.315E+00                 0.324E+0e          0.2iE+00            0.39E+0V 13.25           74.30              37.321              5.42?E+00                 0.324E+00          0.26E+00            0.39E+00 13.58           74.28              37.319              0.315E+00                 0.324E+00          0.26E+00            0.3?E+00 13.92           74.27              37.313              0.343E+60        .        0.324E+00          0.2dE+00            0.39E+00 14.25           74.25              37.314              0.30dE+00                 0.023E+00          0.26E+00            0.39E+ne 14.58           T4.24              37.309 y..'d!332E+00                         0.323E+UO           0. 26.E+ 0 0        0.3?E+00 14.92           74.23              37.306              0.3STE+00                0.32?E+00           0.26E+ 00           0.39E+00 15.25           74.22              37.303              0.342E+00                0.322E+00           0.26E+00            0.39E+00 15.58           74.21              37.30?              0.323E+00                0.32EE+00           0.25E+0V 15.92           T4.20                                                                                                   0.39E+00 37.299              0.336E+00                0.322E+00           0.25E+00            0.39E+UO 16.25          74.20               37.294              0.353E+00                0.322E+00           0. 25E+ 00          0.39E+00 16.58          74.20               37.294              0.342E+UO                0.321E+0V           0.25E+00            0.39E+0V 16.92          74.18               37.300              0.285E+00                0.321E+00           0.25E+00            0.39E+Ho 17.25           T4.17               37.290              0.33dE+00                0.321E+00                                                  go,'

0.25E+00 0.39E+00 17.58 74.16 37.290 0.31dE+00 0.321E+n0 0.25E,+00 0.39E+00 17.92 74.15 37.288 0.31dE+00 0.320E+00 0.2SE+00 0.39E+0n 18.25 , 74.14 37.288 0.304E+00 0.320E+0V 0.25E+00 0.39E+00 18.59 74.13 37.285 0.300E+DV 0.320E+00 0.25E+0V U.29E+00 18.92 74.12 37.283 0.394E+00 0.320E+00 0.25E+00 0.39E+UO 19.25 74.10 37.279 0.311E+00 ' O.319E+UO 0.25E+0u 0.39E+00 \ 19.58 74.09 37.279 0.300E+00 0.219E+UO 0.25E+00 0.39E+0V 19.92 T4 '.10 37.276 0.310E+00 0.319E+00 0.25E+nU 0.39E+00 20.25 72.09 37.275 0.306E+00 '0.319E+00 0.25E+ 0 0 n.39E+0V 20.53 74.09 37.273 0.305E+00 0.31&E+ne 0.25E+06 0.3?E+00 1 20.92 74.09 37.270 0.313E+0V 0.318E+00 0.25E+00 21.25 74.09 0.39E+00 37.267 0.?!TE+00 0.318E+00 0.25E+00 0.39E+00 /"$ 21.58 74 . UC- 37.265 0.?!TE+00 0.31TE+00 0.25E+00 9.38E+0V 21.92 74.07 37.264 0.310E+00 0.31TE+UO 0.25E+0V n.38E+00 J B-63 . .!V

         "   22.25      74.05  37.265      0.2.d 3E + 0 0     n'.31 TE+ 0 0      0.25E+0V     u . ?6 E.+ v u 22.58      74.05  37.260      0.309E+00          0.31TE+0V          0.25E+00     n.?GE+ee
    \

22.93 74.06 37.258 0.314E+00' O.316E+00 0.25E+00 0.38E+0n 23.25 74.05 37.259 0.QO2E+00 n.31 E+00 0.25E+00 0.3GE+no 23.58 74.04 37.256 0.30?E+00 0.316E+00 0.25E+00 0.3GE+0V 23.92 74.04 37.252 0.312E+00 0.316E+00 0.25E+00 n.3CE+00 24.25 74.03 37.247 0.01tE+00 0.315E+0n 0.25E+A9 0.??E+00 24.58 T4.03 37.248 0.31?E+00 0.315E+00 0.25E+0V 0.0$E+0n eng 24.92 74.03 37.248 0.3 0TE+ 00 0.315E+00 0.25E+00 0.?EE+0s; 0.315E+00 0.25E+00 0.36E+0e

           , 25.25      74.02  37.246      0.306E+00 25.58      74.02  37.246      0.302E+00          0.314E+00          0.25E+0"      6 . .'":E+00 25.92      74.03  37.241      0.314E+00          0.314E+00          0.25E+00      0.?EE+n0 26.25      74.03  37.237      0.322E+00          0.314E+00          0.25E+00      0.3EF+00 26.58      74.02  37.234      0.326E+00          0.314E+00        -

0.25E+00 U.3sE+00 26.92 74.02 37.234 0.021E+00 0.010E+00 0.25E+00 0.36E+00

  1. rw
  ^'

27.25 27.58 74.02 74.02 37.235 37.234 0.311E+00 0.310E+00 0.313E+00 0.313E+00 0.25E+00 0.24E+00 0.0&E+00 U.35E-00 27.92 74.02 37.222 0.322E+00 0.313E+00 0.24E+.U0 0. 6E+t0 23.25 74.01 37.230 0.310E+00 0.312E+00 0.24E+00 0.?SE+00 28.58 74.01 37.225 0.31SE+00 0.312E+00 0.24E+0V U.3EE+00 28.92 74 .01 37.226 0.311E+00 0.312E+0V 0.24E+00 0.36E+0V 29.25 74.01 37.223 0.315E+00 0.311E+00 0.24E+00 0.3EE+0V 29.58 74.00 07.221 0.314E+00 6'.311 E+ 0 0 0.24E+00 0.36E+00 29.92 74.00 37.220 0.314E+00 0.311E+00 0.24E+00 0.36E+00 30.25 74.00 37.216 0.319E+00 0.311E+00 0.24E+00 0.3EE+00 30.58 74 .01 37.215 0.318E+00 0.310E+00 0.24E+00 0.3GE+00 30.92 74 .01 37.214 0.315E+00 0.310E+00 0.24E+00 0.38E+0e 31.25 73.99 37.210 0.020E+00 0.310E+00 0.24E+00 0.38E+00 f ' IF IT IS A33Uf1ED THAT THE LEAL RATE' 10 CuriSTAliT : THE f1EAff 10 0.319E+00

  • THE STAffDARD DEVI ATIOff IS 0.337E-01 OMEbl 13 liEGATIVE . -

THE CALCULATED LEAL PATE AFTER 24.00 HCUFO CF TEST IS 0.?!OE+60 O- . e 4 ("s . e (~s 9 4 B-64

                                                                                     $    9

q I PILGRIM'23 P!1G ILRT TIME, DATE OTART OF TECT 7.25 413 O TIME AFTER STAPT OF TECT = 24.00 HP LEAK RATE, ERO' D Ott PultlT-TO-PDltiT CALCULAT10tt; , p. .

    .       TIME   TEMP.             PRE 0 ' '.vE       MEASUPED            CALCULATED                                95% COrtFIDENCE (F)            (PSIA)            LEAK RATE           LEAK RATE                                      .1.IMIT S 7.53   74.38              37.3?1            0 .129E+ 00         0.303E+00                  -0.69E+00                    0.13E+01 7.92   74.82              37.384            0.579E+00           0. 3 0 BE+ 0 0             -0.69E+00                    0.12E+01 8.25   74.76              37.378           -0.336E+00           0.00SE+ 00                 -0.69E+00                    0.1LE+01 S.58   74.72              37.375            0.581E-02           0.309E+00                  -0.69E+00                    0.12E+01 C.92   74.67              37.367            0.811E+00           0.309E+00                  -0.69E+00                    0.13E+01 9.25   74.63              37.362            0.567E+00           0.309E+00                  -0.6SE+00                     0.13E+01 9.58   74.59              37.357            0.365E+00           0.010E+00                  -0.6SE+00                     0.13E+01 9.92   74.56              37.358          - 0 .6 39E+ 0 0       0.310E+00                   -0.66E+00                    0.1?E+ 01 10.25   74.53              37.349            0.125E+01           0.311E+00                  -0.6SE+00                     0.13E+01                 /*%

10.58 74.50 37.349 -0.261E+00 0.311 E+ 00 -0.6SE+00 0.13E+01 10.92 74.47 37.345 0.337E+00 0.311E+00 -0.6SE+00 0.13E+01 11.25 74.44 37.340 0.613E+ 00 0.312E+00 -0.6SE+00 0.13E+01 11.58 74.49 37.333 0.101E+01 0.312E+00 -0.6SE+00 0.13E+01 11.92 74.38 37.331 -0.150E+00 " 0.312E+00 -0.67E+00 'O.13E+01 12.25 74.35 37.328 0.15SE+00 0.310E+00 -0.67E+00 0.13E+01 12.58 74.33 37.327 0.357E-01 0.313E+00 -0.67E+00 0.13E+01 12.92 74.32 37.325 0.21SE+00 0.314E+00 -0.67E+00 0.13E+01 13.25 74.30 37.321 0.547E+00 0.314E+00 -0.67F+00 0.13E+01 13.5S 74.23 37.319 0.830E-01 0.314E+00 -0.67E+00 0.13E+01 13.92 74.27 37.313 0.SS1E+00 0.315E+00 -0.67E+00 0.13E+01 14.25 74.25 37.314 -0.441E+00 0.315E+00 -0.67E+00 0.13E+01 14.58 74.24 37.009 0.SSSE+00 0.315E+00 -0.67E+00 0.13E+01 l'4 .92 74.23 37.306 0.441E+00 0.316E+00 -0.67E+00 0.10E+01 O 15.25 74.22 37.303 0.46EE+00 0.316E+00 -0.67E+00 0.13E+01 15.58 74.21 37.303 -0.139E+00 0.317E+00 -0.66E+00 0.13E+01 15.92 74.20 37.299 0.671E+00 0.317E+.0 0 -0.66E+00 0.13E+01 16.25 74.20 37.294 0.7,9 3E+ 0 0 0.317E+00 -0.66E+00 0.12E+01 16.59 74.20 37.294 0.293E-01 0.31SE+00 -0.66E+00 0.13E+01 R l o..92 74.18 37.300 -0.130E+01 0.31SE+00 -0.66E+00 0.13E+01 - - 17.25 74.17 37.290 0.1SOE+01 0.319E+00 -0.66E+00 0.13E+01 17.58 74.16 37.290 -0.274E+00 0.319E+00 - 0.66E+ 00 0.13E+01 17.92 74.15 37.280 0.313E+00 0.319E+00 -0.66E+00 0.13E+01 18.25 74.14 37.288 -0.651E-01 0.320E+00 -0.66E+00 0.13E+01 18.58 74.13 37.285 0.439E+00 0.320E+90 -0.66E+00 0.13E+01 # 1E: .92 74.12 37.283 0.15SE+00 0.320E+00 -0.66E+00 0.13E+01 19.25 74.10 37.279 0.55SE+00 0.321E+00 -0.66E+00 0.13E+01 19.58 74.09 37.279 -0.793E-01 0.321E+00 -0.66E+00 0.13E+01 19.92 74.10 37.276 0.664E+00 0.322E+00 -0.66E+00 0.13E+01 B-65 4 -+e*

 - - - -              +.,e-,   , , -           --
                                                              ,- ,   ,_         - - , - -        -e       - - - - - -         .-   ,       -   - - - -- -r      ,-.,

f'% 37.275 0.153E+00 0.322E+00 -0.66E+00 0.13E+01 20.25 74.09 0.13E+01 20.58 74.09 37.273 0.271E+00 0.322E+00 -0.66E+00 37.270 0.625E400 0.323E+00 -0.66E+00 0.13E+01 20.92 74.09 -0.66E+00 0.13E+01 21.25 74 .09 37.267 0.499E+00 0 .~ 32 3E+ 0 0 37.265 0.319E+00 0.323E+00 -0.66E+00 0.13E+01 21.58 74.0S 0.324E+00 -0.66E+00 0.1*E+01 21.92 74.07 37.264 0.239E-02 37'.265 -0.452E+ 00 0.324E+00 -0.46E+00 0.13E+01 22.25 74.05 22.53 74.05 37.260 0.104E+01 0.325E+00 -0.66E+00 0.13E+01 37.258 0.544E+00 0.325E+00 - 0.6 6E+ 00 0.13E+01 22.92 74.06 0.225E+00 0.66E+00 0.13E+01 23.25 74.05 37.259 -0.2?5E+00 - 37.256 0.351E+00 0.026E+00 -0.66E+00 0.13E+01 23.58 74.04 0.13E+01 ( s, 23.?2 74 .04 37.252 0.7?SE+ 00 0.326E+00 -0.66E+00 37.248 0.5SOE+00 0.326E+00 -0.66E+00 0.13E+01 24.25 74.03 0.11E+01 24.58 74.03 37.248 0.360E-01 0.327E+00 -0.66E+00 37.248 0.734E-02 0.327E+00 - 0 .66E+ 0 0 0.13E+01 24.92 74.03 0.13E+01 25.25 74.02 37.246 0.251E+00 0.3286+00 -0.66E+00 l 37.246 0.759E-01 0.32SE+00 -0.66E+00 0.13E+01 i 25.53 74.02 0.32SE+00 -0.66E+00 0.13E+01 25.92 74.03 37.241 0.967E+00 0 .777E+ 00 0.329E+00 -0.66E+00 0.13E+01 26,25 74.03 37.237 0.13E+01 26.53 74.02 37.234 0.547E+00 'O.329E+00 -0.66E+00 37.234 0.506E-01 0.330E+00 -0.66E+00 0.13E+01 26.92 74.02 0.13E+01  ; 27.25 74.02 37.235 -0.303E+00 0.330E+00 - 0 . 66E + '*' O 37.234 0.236E+00 0.330E+00 -0.66E+00 0.13E+01 27.59 74.02 0.12E+01 27.92 74.02 37.228 0.110E+01 0.331E+00 -0.66E+00 37.230 - -0.433E+00 0.331E+00 -0.66E+00 0.1?E+01 23.25 74.01 37.225 0.80TE+ 0 0 0.331E+00 -0.66E+00 0.13E+01 [\ 2S.58 74.01 20.142E+00. 0.332E+00 -0.66E+00 0.12E+01 28,92 74.01 37.226 0.13E+nt 29.25 74.01 37.223 0.613E+00 0.332E+00 -0.66E+00 37.221 0.230E+00 0.333E+00 -0.66E+00 0.13E+01 29.58 74.00 0.13E+01 29.92 74.00 37.220 0.321E+00 0.333E+00 -0.66E+00 37.216 0.634E+00 0.?33E+00 - 0.66E+ 0 0 0.1?E+01 30.25 74.00 0.334E+00 -0.66E+00 0.13E+01 30.58 74.01 37.215 0.2SSE+00 0.104E+00 0.334E+00 -0.66E+00 0.13E+01 30.92 74.01 37.214 0.334E+00 -0.6dE+00 0.13E+01 31.25 73.99 37.210 0.675E+00 , IF IT 10 ASOUMED THAT THE LEAK RATE 10 CONOTANT: i

                         ,THE MEAN II                    0.321E+00                           .

THE STANDAFD DEVIATION 10 0.484E+00 SKEU 10 HEGATIVE 0.334E+00 1 THE CALCULATED LEAK FATE AFTER 24.00 HOUPC OF -TEST 10 D 4 i . . t a e G

'                                                                                  B-66 t
                    * * * * * ~ "        * * * * * * * -           . _ . _ _                                       ,
)
                                                                                                     +
    .                                  PILGRIM 45 PSIG ILRT 

SUMMARY

DATA - f. 815 420 75.530509 59.493123 835 420 75.465268 59.479157 355 420 75.379119 59.474186 . 915 420 75.321808 59.465077 935. 420 75.278406 59.456510 955 420 75.234967 59.449432 . 1015 420 75.167063 59.4454SS 1035 420 75.129025 59.433773 1055 420 75.0860?S 59.430581 1115 420 75.052466 59.424549 .- 1135 420 75.015393 59.415545 1155 420 *'4.998990

                                                        .-                      59.402711 1215 420'       74.973277                 59.400989                                s 1235 420         74.945069                59.397480
                                 '    1255 420         74.?t4613               59.392164 1315     420     74.?S775?               59.384505
                            .         1335     420      74.362111              59.379062 1355     420     74.S40268               59.371660 1415     420     74.812961               59.368823 1435      420      74.7?2818              59.366491 1455      420     74.7685?O               59.363531 1515      420     74.746199               59.356734 420     74.717054 1535                                      59.352393 1555      420    74.699645                59.347544                                                      <

1615 420 74.687947 59.346126 14 m. e 4 e o. < 4 . e < s . t. :- = o. . m. a n. o. a 4 1655 420 T4.666835 59.335658

  • 1715 420 74.649356 59.329447 1735 420 74.639042 59.220026
                 .                  1755- 420. 74.626759                       59.325990 1915      420     74.625579                59.320415 1835      420     74.613429                59.318282                                                           -

1855 420 74.602633 59.315822 1915 420 74.589652 59.311317 1935 420 74.582904 59.305324 1955 420 74.571654 59.302150 2015 420 74.562691 59.299856 2035 429 74.54922S 59.294548 ' 2055 420 74.542892 59.292763 2115 420 74.536179 59.287955 2135 420 74.529914 59.282415

              .                    2155       420     74.5244SO                59.290928
  • 2215 420 74.530225 59.273963 y
                   ,               2235       420     74.520311                59.276???

2255 420 74.523026 59.271748

e. ,. l es w .p n. 4 . e.s:..:.:.:.:. ec .o .
                                                                                    . .e. . .1   c.

J 4 .U ec..L%2L1% . . . L. . eO4J .4.e.JL%e .JLL J 2355 420 74.5246S7 59.262844 . . O . e

     .                                                          B-67 e

s eer e- ee

                                                                                                                           .N

s p - PILGRIt! 45 PSIG ILRT SUICA' RY . DATA (CONTINUED)

                                      ~                                                   .

15 421 74.521538 59.258831

                                                                                            ~

35 421 74.517??? 59.253901 55 421 74.518354 59.252742 115 421 74.516037 59.247725 135 421 74.511606 59.242919 $?)

 "                 ,                      155     421   74.505756   59.241808 215      421'.74.509252 ~59.240919 235      421   74.502122   59.233835 255      4s1   74.499422   59.232433                 '
 ,                                       315      421   74.501152   59.232405 335     421    74.494438   59.229040 355     421   74.489073    59.226974 415     421   74.490354    59.2258S0 435      421   74.484039   59.221130 455      421   74.494956   59.213707 515      421   74.485405   59.213853 535      421   74.477791   59.214S45
                                    . 555      421   74.474191   59.206680

,g 615 421 74.471040 59.202733 635 421 74.469657 59.204212 655 421 74.463392 59.202150 715 421 74.464706 59.198134 735 421 74.461143 59.190996 755 421 74.462457 59.191835 815 421 74.454427 59.191020 O e 4 e d e S 9 6 e B-68 e 9 O ,

s I PILGRIM 45 PSIG ILRT SUI *J'A RY . DATA (CONTINUED) 15 421 74.521538 59.258331 35 421 74.517??? 59.253901 55 421 74.518354 59.252742

  • 115 421 74.516037 59.247725 135 421 74.511606 59.242919 (3) 155 421 74.505756 59.241808 215 421 , 74.509252 59.240319 235 421 74.502122 59.23?S35 255 4s1 74.499422 59.232433 '
   '                                                  315       421 74.501152     59.232405 335       421 74.494438     59.229040 355       421 74.499073    59.226974 415        421 74.490354    59.225880 435       421 74.484089     59.221130 455       421 74.484956     59.213707 515       421 74.485405     59.213853 535       421 74.477791     59.214845
                                               . 555       421 74.474191     59.206680 615 421 74.471040     59.202733 635       421 74.469657     59.204212 655       421 74.463392     59.202150 715       421 74.464706     59.198134 735       421 74.461143     59.190996 755       421 74.462457     59.191835 815       421 74.454427     59.191020 Y

e B-68 - 2

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