ML20082F681
| ML20082F681 | |
| Person / Time | |
|---|---|
| Site: | Calvert Cliffs |
| Issue date: | 08/13/1991 |
| From: | Keith Hoffman, Petten D BALTIMORE GAS & ELECTRIC CO. |
| To: | |
| Shared Package | |
| ML19302F033 | List: |
| References | |
| NUDOCS 9108150280 | |
| Download: ML20082F681 (128) | |
Text
CALVERT CLIFFS UNIT 2 STEAM GENERATORS 21 AND 22 EDDY CURRENT TESTING FINAL REPORT-APRIL / JULY 1989 9108150200 910913 g.
[DR ADOCK 050003.18 "DR
CALVERT CLIFFS UNIT 2 STEAM GENERATORS 21 AND 22 EDDY CURRENT TESTING FINAL REPORT APRIL / JULY 1989 Approved by:
Prepared by:
@cys#
[W M K.
M. Hoffm6n D.
J'.
Van Petten l
]
TABLE OF CONTENTS I.
INTRODUCTION II.
DISCUSSION Eddy Current Test Results for SG 21 APPENDIX I A.
. List with Plot of All Indications B.
List with Plot of <20% Indications C.
List with Plot of 20% - 39% Indications D.
List with Plot of >39% Indications E.
List with Plot of Distorted Indications F.
Lists with Plots of Tubes not Rolled G.
Lists with Plots of Sludge Data F.
List with Plot of Tubes Dented I.
List with Plot of Tubes Plugged During April / July 1989 J.
List-with Plot of all Tubes Plugged Eddy Current Test Results for SG 22 APPENDIX II A.
List with Plot of All indications B.
List with Plot of <20% Indications C.
List with Plot of 20% - 39% Indications D.
List with Pl'ot of >39% Indications E.
List with Plot of Distorted Indications F.
Lists with Plots of Tubes not Rolled G.
Lists with Plots of Sludge Data H.
List with Plot of Tubes Dented I.
List with Plot of Tubes Plugged During April / July 1989 J.
. List with Plot of all Tubes Plugged Steam Generator Inspection Information APPENDIX III A.
Steam Generator Support Location and Nomenclature B.
Steam Generator Tube Sheet Pattern and Number System C.
Eddy Current Inspection Acronyms
- )
.. - - - ~
. ~.
i P
l I.
INTRODUCTIO!i
- Zetec, Inc.
and NDE Technology were contracted in January, 1989 to provide equipment and personnel supporting BG&E with the eddy current examination of the Calvert Cliffs.
Unit 2 Steam Generators in Lusby, Maryland.
- Zetoc, Inc.
provided twelve people for data acquisition and thirteen people for the primary data evaluation.
NDE Technology i
provided four people for the secondary data evaluation.
This. report summarizes the April / July, 1989 eddy
~
current inspection results of Calvert Cliffs Unit 2 Steam Generators.
(
I Page 1 of 7
.. c
II.
DISCUSSION The MIZ-18A eddy current system and qualified operators inspected the Calvert Cliffs Unit 2 Steam concrators 21 and 22.
The system uses oddy current as the probing media to measure variations in effective conductivity and/or permeability of the tube being tested.
An alternating voltage is impressed across the test coil.
The magnetic field developed by current flow in the test coil causes eddy currents to flow in the tube wall.
The corresponding magnetic field caused by eddy current in the tube wall is out of phase with the field developed by flow the current in the test coil.
Since these fields tend to cancel one
- another, the coil voltage is decreased in proportion to the magnitude of eddy current flow in the test piece.
The magnitude of eddy currents in the test piece, thus the coil
- voltage, is dependent on the electrical properties of the tube being tested.
The electrical properties which affect the flow of eddy currents are permeability and conductivity.
In non-magnetic materials, such as inconel and 300 series stainless steel, conductivity is usually the only significant variable.
When the effective conductivity decreases due to a discontinuity in the tube
- wall, the coil voltage increases in direct relationship with the ef fective conductivity change.
- Thus, the amount of increase in coil voltage is related to the size of the uiscontinuity in the tube wall.
The coil voltage is sinusoidal, thus it can be described with a single vector having magnitude and phase.
The BGLE Technical Specification eddy current (ET) testing plan for the refueling outage selected 100% of the tubes for full length inspection each steam generator (SG).
The examination inspected 16,947 (100%)
SG tubes through their entire length.
212 tubes had indications of 20% through-wall degradation or greater.
Eleven (11) tubes which exceeded the plugging limit of 40%
thru wall degradation were removed from service.
As a preventative measure, 5 additional tubes with indications in the sludge pile area were plugged.
Of these 5 additional tubes taken out of service, all 5 were in SG 21.
previous metallurgical examination of Unit 1 tubing has Page 2 of 7
shown degradation in this area was caused by Intergranular Attack (IGA).
Even though these 5 tubes had indications which were less than the plugging limit, the tubes were plugged due to the potential for a
local active IGA degradation mechanism.
SG's 21 and 22 were examined using the Zetec MIZ-18A digital data acquisition system.
The frequencies selected all of which were run in were 400, 200, 100, and 30 KHz the differential and absolute modes.
The examination utilized a standard A. 5 60-S F/RM bobbin coil probe.
The MIZ-18A digital data acquisition system provided on-line data digitization and storage onto magnetic tape cartridges.
The digital signal was also converted to analog where selected frequencies were recorded on strip chart media as an aid to the analyst.
Prior to any. ET analysis
- primary, secondary, and Computer Data Screening (CDS) analysts were required to take a
BG&E-analyst qualification examination.
All analysts passed the BG&E site specific test.
In addition, CDS, with qualified analysts, was tested and passed the examination.
Each tube's ET data was analyzed by two independent teams of qualified and certified personnel and by computer analysis.
Zetec Analysis Software Edition 18.6, Rev. 5 with strip charts was used by each team of analysts.
Additionally, all stored digital data was analytically processed by "etec's CDS program using HP350/360 computers.
All distorted and pluggable indications were retested.
After *all data review was completed, the primary and secondary lead. analysts compared results with the CDs results and a
final report was produced.
Any final resolution that may have been required was performed by BG&E Level III personnel.
Figure II-1 illustrates the outage data analysis process.
In a d d i t i o n -. t o the standard Bobbin ET testing, some tubes were inspected using motorized rotating pancake coil (MRPC) probes in three areas.
Selected SG U-bend tubing was inspected utilizing U-bend MRPC probes on both SG's.
Of the 71 U-bends inspected using MRPC, degradation in 17 tubes was detected and verified bobbin coil results.
Straight tube section MRPC probes were used in tubes just below and above the secondary side of each SG tubesheet.
These 82 tubes, located in the sludge pile area, were inspected to further quantify known bobbin coil indications.
Also, the straight midspan tube section MRPC analysis confirmed the bobbin coil data.
Profilometry ET was used to evaluate tube denting at the 9th and loth solid support plates on both SG's.
Trend analysis of the profilometry information showed no denting growth since the Spring, 1987 outage.
Page 3 of 7
]
_ - =. - - - _ _.
?
FIGURE II - 1 l
Data Analysis Procesu t
DATA ACQUISITION
(
i!
r t
- 1 d,
- 1 46 PRIMARY COMPUTER SECONDARY
' I MANUAL SCREENING
)
MANUAL ANALYSIS ANALYSIS I
i l
l TAPE STORAGE C
jj V
[
Primary WW Secondary j!
i
')
ANALYSIS
(- -
Report RESOLUTION Report 5
I r
a v
ANALYSIS f
FINAL DAILY REPORT
,/
RETESTS (DAILY REPORT) l I
\\/
ANALYSIS DATA i
MANAGEMENT t
l ~
= INFORMATION FI4W j
= DATA TAPE FLOW i
t i
I i
Page L of 7
Indications were found in a total of 222 tubes from the 8,456 tubes examined in SG 21 and 174 tubes from the 8,491 tubes examined in SG 22.
Eleven tubes were found to have indications which exceeded the Technical Specification plugging limit of 40% loss of nominal wall thickness.
An additional 11 tubes were plugged as a preventative measure, of the total 22 tubes plugged during this Inservice Inspection, 12 tubes were plugged in SG 21 and 10 tubes were plugged in SG 22.
Tablo II-l is a summary of the Calvert Cliffs Unit Two 1989 Eddy Current examination results.
Prior to the outage, an estimate of tube plugging for each SG was made based on ET data trend analysis.
A 24 month degradation rate of 9% nominal wall thickness was used.
Using this degradation rate, it was estimated 70 tubes would exceed the plugging limit this inspection.
- However, only 11 tubes actually exceeded the plugging limit.
Various plots illustrating the locations and distribution of tube indications and a listing of tubes plugged-this inspection for SG's 21 and 22 are provided in Appendix I and II respectively.
The SG sketch in Appendix III shows the various tube support locations within the SG's and the nomenclature used throughout this report.
All indications found were on tube outside surfaces except for 2 ID freespan indications in SG 21.
The tubing ET indications can be placed into one of three major location categories:
just below and above the top of the tubesheet-at supports, or in free span areas between and not associated with supports (includes 2 ID indications in SG 21).
I t
These inspection results are similar to that reported l
for Calvert Cliffs Unit 1.
There are no apparent differences between Unit 1 and Unit 2 that indicate a unique l-problem in any particular SG.
This is to be expected since operating and chemistry conditions have remained similar between the two plants.
Indications found just below and above the top of the tubesheet are in regions of higher sludge levels.
Most of these indications are on the inlet tubesheet side and produce relatively low magnitude signals.
In late
- 1986, tube specimens have undergone metallurgical and chemical evaluations.
Results show that these indications are caused by IGA.
Page 5 of 7
- ~. - _
TABLE II - 1 Unit Two 1989 Eddy Current Ins.pection Results SG $21 SG f22
=-
Number of Tubes Inspected 8,456 8,491 Percent of Tubes Inspected (Full Length) 100%
100%
Number of Distorted Indications 7
3 Number cf Tubes with Distorted Indications 7
3 Percent-of Tubes with Distorted Indications 0.08%
0.04%
Number of Indications <20% (Imperfections) 133 85 Number of Tubes with
<20% Indications 125 77 Percent of Tubes with <20% Indications 1.48%
0.91%
Number of Indications 20-39% (Degraded) 110 123 Number of Tubes with 20-39% Indications 100 103 Percent of Tubes with 20-39% Indications 1.18%
1.21%
Number of Indications >39% (Defective) 6
_5 Number of Tubes with
>39% Indications 6
5 Percent of Tubes-with >39% Indications 0.07%
0.06%
Number of Tubes Plugged this Outage 12 10 Total Tubes Plugged each-Steam Generator 75 38 NOTE:
Tubes which contained more than one indication in more than one category
(<20%, 20-39%, and 40% and greater),
are listed-in all appropriate categories, o
t Page 6 of 7
..a,..;.---_.._---_,-.-,_.-
-.. -.. - - _... _ - -. _.. _.. -,, -. ~ -.
r I
i ET indications seen at support locations appear to be l
caused by
- isolated, random tube wear.
Wear marks at a
support contact region were confirmed on one tube removed
{
from SG 11 in 1983.
Note that most indications at supports occur at the vertical middle (VM), diagonal (DH & DC),
and vertical hot and cold (VH & VC) leg side supports.
I ET indications seen in free span areas are typically low magnitude signals.
Three tube specimens containing free span indications were removed from SG 11, one in November, 1983 and two in November, 1986.
Investigations of the free span indications showed these indications are manufacturing imperfections.
There is no correlation of
. free span i
indications with respect to location, elevation, inlet side or outlet sides tube manuzacturing imperfections would be expected to produce random occurrences like this.
i corrective measures have been initiated to minimize t
further degradation to the SG's.
During the 1986 outage the removal'of all major copper components from the feedwater and l
condensate systems was completad.
The-. installation of a
j nitrogen blanketing system on all condensate storage tanks is i
being completed to reduce auxiliary feedwater and condensate makeup oxygen.
Morpholine is being used to minimize the l
ingress of solids from the secondary system into the SG's
[
which may pronote sludge pile reduction.
(
Current chemistry pIc:edures require action to be taken below the Utility /EPRI Steam Generator Reliability Project (SGRP) PWR Secondary Water Chemistry Guideline Action Levels.
This enables corrective measures to be initiated before conditions become degraded in the SG's.
During outages steam generators are kept in wet lay-up with a nitrogen blanket ns much as possible.
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Page 7 of 7 1
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APPENDIX I EDDY CURRENT TEST RESULTS STEAM GENERATOR 21 A.
List with Plot of All Indications B.
List with Plot of <20% Indications C.
List with Plot of 20% - 39% Indications D.
List with Plot of >39% Indications E.
List with Plot of Distorted Indications-F.
Lists with Plots of Tubes not Rolled G.
Lists with Plots of Sludge Data H.
List with Plot of Tubes Dented I.
List with Plot of Tubes Plugged During April / July 1989 J.
List with Plot of all Tubes Plugged t
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STEAM GENERATOR 21 A.
List with Plot of All Indications A
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+ 0.80 62 66 4/89 OD 10 t TW 0.55 CTS-ST 0.60
+
62 138 4/89 OD 19 % TW 0.54 VM
+26.50 64 38 4/8?
OD 15 s TW 0.ct HTS-ST
+ 4.00 64 70 4/89 OD 12 % TW 0.80 HTS-ST 1.30
+
65 131 4/89-CD 19 % TW 0.79 HTS-ST
+ 0.80 66 72 4/89 CD 02 % TW 0.4e HTS-ST i 0.e0 66 120 4/89 OD 10 h TW 0.47 HTS-S
+ 0.60 0.52 HTS-Se[
68 72 4/89 OD 4 % TW
+ 0.60 68 76 4/89 OD 10 t TW 0.99 HTS-ST 1.50
+
I 68 78 4/89 OD 8 i TW 0.42 HTS-ST 1.e0
+
68 144 4/89 10 D 11 1 TW 0.75 H4
+24.00 69 37 4/S9 OD 14 1 TW 0.64 HS
+14.00 69 93 4/89 CD 22 t TW 0.50 HTS-ST 1.00
+
71 83.4/89 CD 35 t TW 0.65 HTS-ST 0.70
+
4/89
.0D 25 t TW 0.58 C7
+15.10 71 107 4/89 OD 2 i TW l 9 3 M *.
+20.80 4/89 OD
.1 1 TW-1.02 H5 4.?0
+
71 121 4/89 OD
!v i TW
,0.41 HTS-ST
+ 0.co 71 123 4/89-00 55 t TW 0.39 HTS-ST
+ 0.70 71
-125 4/89 OD 3)~t TW 0.37 HTS-ST
+ 0.80 70 22_4/89 OD 29 % TN 0.51 VM
+19.00 73 85 4/89 OD 22 t TW 1,44 H2
+17.20 73 113 4/89 OD 8 % TW 0.71 Ho 1 40
+
74 98-A/89 OD 10 t TW 0.e3 H4
/.20
+
75.
.75./89 OD-23 t TW 0.4! HTS-ST
+-0.90 75-93 4/89 OD 12 t TW 0.71 H5
+04.20 76 42 4/89 OD 16 t TW 0.t$ HIS-ST 0.90
+
-7e-42 4/89 OD
- 1) t TW-0.75 Cf 1.$0
+
78 124 4/89 OD 2$' s TW l
C. S *. C4 3.00
+
7S 152 4/89 OD t TW 0.51 C4
+16.90 79 51 4/89 OD
~t O TW 0."0 H2
+25.30 79 119 4/89 OD la T TW 0.56 HTS-ST
+ 0.30 4/39 OD 15 t TW 0.67 VM
+22.00 79_
135 4/89 OD 22.1 TW 0.64 H1.
+.0.50 81 49 4/89 OD 22 S TW 0.51 HTS-ST 0.90
+
61 119 4/89 OD 11 t TW 0.61 HTS-ST 1.20
+
81 123 4/89 OD 19 % IW
- 0. 51 PS
+25.40
'~
80 52 4/89 OD
~2
% TW 0.56 HTS-ST
+ 0.?0 82 74 4/89 OD 22 % 'TW 0.59 C4
+11.40 32 80 4/99 OD 22 t TN 9.44 HTS-ST 0.90 j
+
32 92 4/89 OD 17 % TM 0.51 HTS-ir
+ 0.90 j
80 116.4/89 CD 19 1 TW 0.56 HTS-ST 1.00 i
+
82 120 4/89 OD 13 t TW 0.c3 HTS-ST 1.10
+
i-I m-3.
.,mm.m,,.,
,__.m
.._,..-~,..,.,,_,...m_,,,,..._.,_~.J,.
...~.-,,..,,.,,,.,.-,_m.--.m,~..,.
?
.....o.......
r...................n n,
4 Plant CAL 7r,RT CLIFF 2 UtlIT 2.3 2 m anorstar: 31 Ou t ye s-
.4/99 QUERY: SG O! PLGT-OF AI.L INDICA!!?Hi i.>.
SLL ELE".ATP Hl. 4/3? ' O A G S
-ROW LINE OUTAGE IN D M A TI Otl 7 A ;'.M VOLTJ L MATMN
TW
.56 7M
+10.10
$3 49 4/89 OD TW v.4' MIS-2r 0.70 83 103 4/39 OD la t TW
.60 HTS-ST 0.E
+
B4 34 4/89 OD
- 1) % TW 0.11 HTS-SP 409. C l
l 4/89 OD 0% TW 0.97 VM
+10.69 1
84 68 4/89 OD 4 % TW 0.56 HTS-3r 0.t0 1.00 84 90 4/89 OD 04 1.
TW 0.46 HTS-ST 84 110 4/89 OD 06 t TW 0.45 HTS-!T
+ 0.$0 85 73 4/89 OD
~$ t TW 0.40 CTS-ST
+11.70 87 0 */ 4/39 OD 30 t TW 0.61 H2
+ 6.60 88 78 4/89 OD IS h TW Q.t? HTS-ST
+ 1.10
-83 88 4/89 OD 10 1 TW 0.50 C4 431.00 39 123 4/89 OD 19 1 TW O.56 C1
+19.00 90 46 4/69 OD 15 i TW l.1" H6
+ 3.10 90 76 4/89 OD 19 1 TW 0.59 HTS-ST
+ 1.10 90 90 4/89 OD 10 1.
TW 1.16 HTS-ST
+
1.00
-90:
96 4/89 OD 03 TW 1.40 HTS-ST 4
1.10 90 130 4/89 OD 23 % TW 0.cc CTS ST 03.70
+
94 100 4/99 OD 10 % TW 0.07 C4 5.80 1
+
95 4$ 4/89 OD 53 1 TW 0.67 HI
+0e.40 95 67 4/89 OD 11 % TW 1.00 HTS-ST 0.70 95 69 4/89 OD IS % TM 0.77 HTS-SF
+
0.90 1
96 100 4/09 OD 16 A TW 0.70 CTS-ST 3.30 4/89 OD 30 % TW 0.49 CTS-ST 0.30 i
+
4/89 OD 29 % TW 0.50 CTS-SP
+ 0.00 99 30 4/89 OD 11 % TW 0.53 C5
+ 6.40-96-60 4/ '9 OD 11 % TW 0.37 DH 99 51-4.'
OD 31 % TW 0.5e C5
+14.60 99 35 4 90 00 06 t TW 0.79 C3
+00.80 99-143 '
00 10 t TW 0.64 CO
+05.90 l
100 100 4, 8 OD 05 % TW 0.54 C3
+16.30 100 l
10.
. 11A 4/es 0D le t TW 0.54 H6
+11.60
'/89 OD 19 L TW 1.30 CTS-ST
+01.70
,1cl 74
/89 OD 09 % TW 0.35 HT3-SF 0.70
+
191 9t 4/89 OD 10 t TW 0.60 C!
9.39 t
J1 103 4/69 OD 13 % TW 1.00 VC
.+ 3.00 100 100 4/99 OD 15 % TW 0.el HS
+11.60 t
104 78 4/99 OD
'll 9.
TW 0.71 HE
+07.00 105 65 4/89 OD 17 T TW 0.80 CT2-ir
+ 1.50 t
e 105 67 4/89 OD 10 % TW
- .14 CTS-ST
+ 0.70 105 - 119 4/89 OD 10 t TW 0.90 CTS-ST
+
1.00 105 107 4/89 OD
~t
% TW 0.47 CTS-ST
+ 0.90
-106 36 4/09 OD 15 % TW-0.67 H4
+27.10 107 59 4/89 OD IS % TW 0.ee H9-S.70
+
'107 67 4/69 OD 13 % TW 0.73 H4
+ 6.00 4
108
$0 4/89 OD 03 % TW 0.53 C3
+13.80 i
109 33 4/89 OD 36 t TW l.01 C7
+03.50 110
'38~4/89 0D 13 % TW 0.63 H4
+35.50 110 118 4/89 OD 15 t TW 0.54 DH
+19.00 111-73-4/89 OD 04 t-TW J.61 HE
+30.10 1
110 48 4/89 OD 15 % TW 0.74 H7
+13.40 110 60 4/89 OD-11 % TW 0.70 Cl
+19.80 3.70 110 104 4/89 OD 00 % TW 0.62 CO
+
I 113 111 4/89 OD 11 % TW 0.57 DC
.9.70 114 116 4/89.
OD 34 % TW 0.41 HTS-ST
+ c.50 114 100 4/89 OD 38 % TW 0.54 CO
+03.50 L
114' 130 4/39 OD 17 % TW 0.69 CTS-SF
+ - 0.10-L 115 79 4/89 OD Ot't-TW.
1.09 H3
+3e.-30 I
115 101 4/89-OD
!? % TW 1.08 CTS-SP 1.00
+
t.
_115.
105 4/S9 CD 17 % TW 0.40 CTS-ST
' +
0.70 l-113 74 4/89 OD Os t TW 0.89 H2
+28.00 l
4/39 OD 10 t TW.
0.55 H2
+31.50 L
119 49 4/89 OD 20 1 TW
-0.53 H2
+05.00 4/89 OD 00 % TW l.01 H4
+15.10 100 46 4/89 OD 03 t TW Q.e! CT3-SF 1.00
+
100 100 4/89 00 00 1 TW 1.13 VH
+11.70 101 ol 4/89 OD 30 1 IW 0.3c CH 3.10
+
i l
s.
-e---e-av-
..* #r v ee -- s. - -
,-e4
,.,-.-,.4..-c,.-
>s.--,.r.4 i
,e.<.
.r-
,#y%,
,c
.+-..y
.,.-.,,co----..
un,~,e+e..,we-w,
.,==,y n w-w-,i, m m y w y.
,e,,w w
-,r-
- 6.....
4,..,,................,......
o
.......s M
.m.
o r
'ana: sur 0!
f Pl u +.: CA3.7ERT CLIFT!. UNIT 1
~m.a Outage:
4/39-l
-f QUERY: SG 01 PLOT OF'ALL INDICATICHO. ;D 1 ALL ELE 7ATI M2.
4/89 00TAGE ROW LINE OUTAGE INDICAT!0H V A L 'J E 7CLT2 I.'.17 A T I O N IM0HC0
)
100 96 4/*9 OD 31 ; TW 0.'O H1
+0s.3]
1.50 1
103 57 4/39 OD 04 ? TW D.39 CTC-JT 103 91 4/d?
OD 1,
t
- W 0.43 CTO-ST
+ 1.40 103 113-4/89 OD al \\ I.l 0.7e vb
+00.90
+ 3.10 104 46 4/S9 OD li % TW 1.07 CTS-ST 4/89 OD 1C i TW 0.60 CTS-ST
+ 4.80
(
[' ' '-
{04 60.4/99 00 05 t TW 0.41 CTS-SF
+ 0.50 1.10 i
04.
68.4/S9 CD OS t TW 0.54 CTS-ST
+
9.10 f
'25 71 4/89 OD 11 % TN 0.95 HTS-ST
+
' H.
85 4/89 OD 33 % TW 0.83 C1
+35.80 i
W p3 9 64 4/S9 00 07 % TW 0.55 M9
- 10.70 i
4.80 i
'1 4 /
70 4/89 OD 17 % TW 0.71 HTS-SF
+
b' 4/$9 CD IS i TW 0.57 H5
+01.00 f
s 84 4/89-CD 11 1 TW 1.20 CO
+05.10 I
F"
, OAi 55 4/89 OD 11 % TW 0. F, 8 H3
+08.90 1
e a
127-a,7 4/S9 OD 00 t TW 0.7t HTS-SF
+11.00 t
107 103 4/89 OD 10 t TW 1.46 C7
+ 8.50 t
4/89 Ob 19 % TN 0.94 CS
+18.90 4/89 OD 11 % TW 0.S8 HA
+03.43 128.
54 4/89 CD 15 % TW o.73 HI$-fi
+11.90 i
+ 9.00 i
129 55 4/S9 00 Oc t TM 1.!3 QC 109' 95 4/89 OD 03 % TW 0.87 r0
+11.70 0.27 TTa~
+.1.30 i
0.57 C"$ SFi?
100 99 4/S9-CD 35 t TW
+ 3.19 4/39-CD 16 % TW 130 80 4/89 OD Oc t TW 1.06 C3
+33.00 0.90 i
130 88 4/S9 OD 13 % TW 0.47 CTS-Sr
+
130 106 4/89 OD 05 t TW 0.S7 C10
+35.00 i
131.
93 4/89 OD 23 1.
TW 0.44 CTS-ST
+
0.10 1
131 109 4/89 CD 33 % TW 3.85 HTS-ST
+ 6.90 130 56 4/89 OD IS % TW 0.90 C3
+13.30 h
4/89 00 06 i TW 0.59 H3 6.80
+
130 84 4/89 OD 03 % TW 1.14 C3
+ 4.c0 v
4/S9 OD 34 % TW 1.09 C1
+ 3 6.10-l 132 94 4/89 OD 00 % TW-0.!? CTS-ST 4.40
+
134:
70 4/89 OD
' 15 t TW 0.96 C10
+ 7.70 t
6.90 l
134 78.4/'39 00 S % TW 0.80 CTS-SF
+
135 63 4/89 00 03 % TW 1.54 CTS-ST
+17.30 F
+ 1.70 l
135 61 4/39 OD 25 % TW 0.85 H5 4/89 OD
- 19. t TW 1.09 Ho
+ 9,60 4/S9 OD 00 % TW 1.04 H6
+17.50 135 81 4/89-CD 11 % TW 0.51 CTS-SF
+03.10 130 78 4/89' OD 0 0. % TW 0.60 CTS-ST
+ 8.70 v
5.10 136 100 4/89 OD.
48 t TW 1.37 CTS-SF
+
S.90
'1 4/89 OD 13 % TW 0.85 HTS-ST 137
+
139 81'4/89 OD 23 % TW 0.99 OH I
0.00-l 139 95 4/89 CD IS % TW 1.30 CTS-ST
+
h TOTAL TUBES FOUND
=
200 i
l TOTAL INDICATIONS F0UND
=
247 TOTAL TUBES IN INPUT FILE =
8519 i
=
8456 TOTAL TUBES-INSPECTED
!o i
t l
?
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Qutage:
4/39 SG 01 PLOT OF ALL ID INDI A!!QNJ. ALL E L E V A ! ! '.tl S. 4 39 O!1T A G E QUERY:
POW LINE OUTAGE INDICA!!ON 7ALUE V O L T ': LCCATION Irl HE3 4.30
[
16 154 4/89 ID 25 % TW 0.49 CT2-2T
+
74 74 4/S9 ID 22 A !W 1.51 H!i-ST
+27.20 TOTAL TUBES FOUND
=
0 TOTAL INDICATIONS TOUND
=
2 TOTAL TUBES IN INPUT TILE =
8519 l
TOTAL TUBES INSPECTED
=
S456 f
i I
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I f
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7 i
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STEAM GENERATOR 21 B.
List with Plot of <20% Indications t
SG 2.1 PLOT OF ALL INDICATIONS.
<20%.
ALL. ELEVATIONS. 4/89 OUTAGE GEtIERAT0ft 21 PLA:II: CALVERT CLIFFS UtilT 2 OUTAGE:
1/09 t - <20 is 25)
TOTAL TUDES ASSIGtED : 12b TOTAL 7tnlES
- H529 OUT OF SEir/ICF (#)
63 STAYS (P)
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i Outage:
4(39
]
C1 01 FLOT OF ALL IMDICAT 0H;.
- 0. ALL ILS7 71
- . 4fe.
~.M.
QUERY:
R0W LINE QUTAGE INDICATION 7 A LE 70LT* L : C A ! ! './ H IN?HF".
1 9 4/89 OD
.4
% T4 0-9 Hi
+01.'O 1
101 4/S9 GD
- ! % TW 0.71 HE
+ 1 1. 4 '.-
l 0
143 4/89 0D
- ' t TW 0.90 Ci
+15.8) l 6
24 4/89 OD 10 t TW 0.5% H0
- 1.50 l
10 130 4/89 OD 10 t IW 1. ', Hi j
4/d9 CD 11 s TW 0. +, 1 H!
-3r.00
'10 160 4/S9 OD 7 i TW 0. 2.1 HIS-SF
-14.00 13 145 4/89 OD 17 t TW 0.70 CTS-SP
+13.30 14 11$ 4/89 OD 10 % TW 0.43 HTS-SF 3.80
+
14 100 4/89 OD
!c % TW 0.66 HTS-ST
+34.40 l
17 63 4/89 OD 15 t TW 0.50 CTS-SF
+30.40 17 139 4/89 OD 11 1 TW 0.53 HE
+35.00 l
21 147 4/89 OD 1 % TW 0.54 CTS-ST 2.09
+
21 157 4/39 CD 10 t TW
-1.53 C4
+30.10 00 46 4/89 OD' li % TW 1.00 CTS-SF 8.60
+
20 138 4/89 OD i t TW 0.35 HTS-SF
+00.40 j
03 - 31 4/89 OD 10 t TW 0.50 C4
+00.40 23 151 4/69' OD 13 % TW 0.63 C5
+0c.00 i
25 51 4/89 OD 15 % TW 0.39 CO 10.40
+
05 143 4/89 OD 19 t ' TW 0.72 HTS-SF 0.30
+
27 163 4/89 OD le % TW 0.70 H2 e.50
+
30 116 4/89 OD 11 % TW 0.99-HTS-SF
+04.30 32 48 4/89 OD 15 t TW 0.77 C6
+03.70 i
34 106 4/S9 OD 10 i TW 0.50 H3
+05.30
-)
35 111 4/89-CD 10 % TN 1.00 H3
+03.00 6
0.)0 l
37 55 4/89 OD li % TW 0.43 HTS-SF 37 77 4/39 OD 13 % TW 0.45 CTS-SF 0.90
+
11.70 I
37 109 4/S9 OD 10 t TW 0.el M1
+
39 163 4/89 OD-6 % TW 0.4e H2 7.50 l
+
4.5 55 4/S9 OD 10 % TW 0.63 HTS-SF 0.30 4
46 34 4/89
-0D 10 % TM 1.07 H5 c.e3
+
0.90 i
46 134 4/89 OD 10 t.
TW 0.90 HTS-SF
+
47 55 4/89-CD 4 % TW 0.66 H!S-SF 0.90
+
(
47 137 4/89 OD
$ % TW 0.t6 C!$-SF
+13.00 j
6.70 60 4/89 OD 10 % TW 0.51 H1 48-74 4/89 OD 16 % TW 0.59 C3
+33.70
+
1 48 48 90 4/S9 OD 3 t TW l.10 HIS-ST 3.90
[
i
+
50 136 4/39 OD 13 1 TW 0.53 HTS-SF 0.70 i
+
51 103 4/89 OD 10's TW 0.55 H4
+10.10 0.c0 I
51 131 4/89 OD l '. % TW 0.09 HTS-SF
+
55 35 4/S9 OD 15 i TM 1.16 HTS-SF
+ 1.10 56 48 4/89 OD 15 % TW 0.85 CTS-SF
+06.30 57
.35 4/S9 OD 6 % TW 0.70 CTS-SF 3.90
+
57 65 4/89 CD 10 -t TW 0.89 HTS-SF
+ 0.90 60 78 4/89 OD 13 % TW 0.80 C1
+15.70 0.90 61 67 4/89 OD 5 t TW 1.06 HTS-SF
+
61 105 4/89 OD 15 % TW 0.70 H4 7.30
+
62 38 4/89 OD
!3 i TW 0.51 HTS-SF 0.80 1
+
0.60-60-66 4/89 OD
'O t TW 0.55 CTS-SF
+
60 138-4/89 OD
$9 % !W 0.54 VM
+00.50 64-38 4/89 OD 15 t TW 0.2d HTS-SF 4.00
+
64 70 4/SS OD 10 t TW 0.50 HTS-SF 1.30 i
+
0.80'
~ f 65 131 4/09 OD 19 % TW 0.79 HTS-ST
+
66 100 4/34 OD 16 t TW 0.4' HTS-SF
+ 0.60 0.60
(
68-70 4/85 OD 4 1;TW 0.50 HTS-SF
+
08 76 4/S9 OD 10 % TW 0.99 HTS-ST 1.50 t
+
68. 78 4/89-CD S% TW 0.40 HTS-SF 1.60
+
68-144 4/89 OD 1! % TW -
0.75 H4
+04.00 71
-107 4/89 OD
% TW 1.43 H6
+00.50 4.60 4/94 OD 3 i TW
!.00 HE
+
0.00 71 101 4/89 OG 10 % TW 0.4; HTS-SF
+
73 113 4/89 OD i t TW 0."1 H:
1.40
+
l-74
.93 4/89 OD le h !W 0.-3 H4 9.00
+
75 93 4/89 OD
- 0 K TW 0.71 Hi
-04.00 t
0.00 i
76 40~4/89 CD 10 t TW 0.tt HTS-SF
~73 40 4/S9 OD 19 3.
TW 0.~5 C5 1.5)
+
1.00
-j
??
124 4/39 OD 11 1 TW
..ef C4 P
I lr i
~
e f
m
.a..
n- -
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+
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+
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+10.60 84 68 4/89 OD 4 1 TW 0.55 HTS-ST 0.00
+
88 78 4/89 OD li t TW 0.t' HTS-SF 1.10
+
88 88 4/s?
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+31.00 89 103 4/S9 OD 17 s TN 0.56 C1
+19.00 90 de 4/89 OD 15 S.
TW
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90 76 4/89 OD 19 t TW 0.!? HTS-SF 1.10
+
90 90 4/99 OD 10 t TW
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+
5.30 94 100 4/89 OD
- 1) h TW 0.07 C4
+
95 67 4/89 CD 11 i TW l.00 HTS-SF 0.70
+
95 69 4/89 OD 1; % TW 0.77 HTS-ST 0. *f 0
+
96 100 4/89 OD it t TW 0.72 CTS-ST 3.10
+
98 32 4/89 OD 11 % TN 0.53 C5
+05.90 100 134 4/39 OD 18 t TW 0.54 H6 11.o0 101 09 4/89 OD 19 % TW 1.30 CTS-SF
+01.70 101 95 4/99 OL 10 % TW 0.$0 C1 9.30
+
101 103 4/89 CD 13 t TW 1.00 7C 3.00
+
102 100 4/89 OD 15 t TW 0.61 H7
+11.o0 104 78 4/89 OD 11 1 TW 0.71 HS
+07.00 105 65 4/89 OD 17 t TW 0.30 CTS-SF 1.50
+
0.70 105 67 4/39 OD 10 t TW 1.14 CTS-SF
+
105 119 4/89 OD 10 t TW 0.90 CTS-ST 1.00
+
106 36 4/89 OD 15 t TW 0.67 H4
+07.10 107
'59 4/89 OD la i TW 0.86 HQ
+
- 70 6.00 107 67 4/S9 OD 13 % TW 0.73 H4
+
110 38 4/89 OD 13 t TW 0.62 H4
+35.50 110 118 4/89 OD 15 t TN 0.54 CH
+.9.00 t
!!2 48 4/39 OD 15 t TW 0.'4 H7
+19.80 9.70 113 111 4/89 OD 11 t TM 0.5' 00
+
114 130 4/39 CD 17 % TW 0. 6 's CTS-SF 0.10
+
1.00 115 101 4/89 OD 1"
% TW 1.03 CTS-ST
+
+ 0.70 115 105 4/89 OD 17 K TW 0.40 CTS-ST 118 74 4/89 CD 10 t TW 0.55 H2
+31.50 1.40 123 91 4/89 OD 16 % TW 0.43 CTS-ST
+
3.10 104 46 4/*9 CD 16 t TW 1.0~
CTS-ST 4.50 4/89 OD 19 % TW 0.00 CTS-SE
+
9.10 125 71 4/89 OD 11 % TW 0.
5 HTS-ST
+
4.80 106 70 4/S9 CD
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+
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% TW 0.57 H5
+21.00 106 84 4/89 OD 11 1 TW l.00 CO
+0b.10 127 65 4/S9 OD 11 t TW 0.53 Hi
- 03.90 5.50 107 103 4/89 OD 10 t TW 1.40 C7
+
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- 1) t TW 0.94 CS
- 18.90 4/89 OD t.
TW 0.33 H4
+08.90 129 99 4/89 OD 16 t TW 0.57 CTS-SF 3.10
+
0.90 130 88 4/S9 OD 1:
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+
130 56 4/39 OD li t TW 0.90 CS
+13.30 134 70 4/89 OD 15 % TW 0.9c C10 7.VO
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+03.10 137 71 4/39 OD 13 % TM 0.95 HTS-SF
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+
TOTAL TUBES FOUND
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9 4/B91 OD li W TW 0 '" H2
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13 4/89 OD 02 i TW-0.50 C3
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- TW 0.52 C2
+10.90 11 57 4/89 OD 20-t TW 0.43 VM l
14 58 4/89 OD 3e 9.
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+17.70 4/89 OD 27 + TW 0.4t C4
- 31.60 14 118 4/89 OD 20 t TW 0.52 C2
+ 5.50 15 137 4/89 OD 35 t TW l.07 H4
+04.16 16 140 4/89 OD 25
+4 TW 0. 5 r, Cl.
+32.80 16 154 4/89 ID.
35 t TW O.4S CTS-SF
+ 4.80 18 24 4/89 OD 3e t TW 1,09 H4
+18.50 4/89 OD 2e t TW 0.c0 H4
+19.30 19 49 4/89
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+19.00 i'
20 6 4/89 OD 28 s TW 0.54 C2
+25.92 21 9 4/89 OD 20 t TW 0.66 C1
+07.60 24 144 4/89 OD 27.%-TW 0.45 HTS-SP
+ 0.80 24 160 4/89 OD 03 % TW 0.64 CO
+33.30 25 155 4/E9.
OD 06 % TW 0.53 H2
+11.70 4/89 OD 35 t TW 0.80 H2
+33.60 28-50 4/89 OD 26 t TW 0.66 HTS-ST
+18.90 i
29' 69 4/89 OD 35 t TW l.17 H3
+19.90 29 129 4'89 OD 37 % TW 1.01 CO 8.00
+
4 30 luo 4/89 OD 03 t TW 0.92 CO
+33.40 30 144 4/89 OD 20 t TW 0.50 C3 0.00
+
34 62-4/S9 OD 22 % TW 0.t4 C3
+34.40 34 llo 4/89 OD 27 t TW 0.82 C3
+20.70 4/89 OD 06 t TW 0.49 H3
+08.10 35 105 4/89 OD 35 t TW 0.54 H2
+05.70 43 113 4/39 OD 03-t TM 0.o? HTS-SF
+36.50
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43 105 4/89 OD-29 % TW 0.57 C1 45 149 4/89 OD 21 t TA 0.56 C3
+10.30 46 70 4/S9 OD 09 % TW l.20 H1
+24.70 48 4/89 OD 33 % TW 0.e4 HTS-SF
+ 1.00 i
53 87 4/89 OD 32 % TW.
0.60 C3
+30.10 54 58 4/89 OD 35 % TW 0.69 C4
+28.e0 56 90 4/S9 OD 26 % TW 1.05 F3
+25.30
.58 64 4/89 OD 31 % TW 0.39 HTS-SF
+ '0.30 s
61 21 4/89 OD 35 t TW 0.50 HTS-ST
+32.10 61 125 4/39 OD OS t TW 0.65 HI
+18.90 61 109 4/89 OD Oc % TW 0.48 HTS-$F 0.70
+
62 28 4/89 OD 31 % TN 0.90 C5
-+10.50 66 72 4/89 OD 02 % TW 0.46 HTS-SF 0.60 t
+
69 37E4/89
.OD 34 % TW 0.64 H5.
+14.20 69 93 4/89 OD-02 t TW 0.52 HTS-SF 1.00 r
+
71 83 4/S9 OD 25 t TW 0 65 HTS-SF 0.70
+
4/89 OD OS t TW 0.58 C7
+15.10 71 105 4/89 OD 39 i TW 0.37 HTS-SF
+-0.80 73 -
22 4/89 -
OD 09 % TW 0.51 VM
+19.20 70 85 4/89 OD 00 t TW l.44 H2
+17.00 i
74 74 4/89 ID s -
00 t TW l.51 HTS-SF -
-+07.00 75 75 4/S9 OD OS t ' TW 0.45 HTS-SF
+ 0.90 78 152 4/89 3D 02 % TW 0.51 C4
+16.90 79 -135=4/89 OD 22 % TN 0.64 HI
. +25.30
?
79 51 4/89 OD 06 % TW 0.50 H2-0.50 i
+
81 4 9 ~. 4 / 8 9 OD 00 t TN 0.51 HTS-SF
+ 0.90 80 52 4/89 OD 22 % TW 0.5e HTS-SF
+ 0.90
- 82
-74 4/09 OD 00 t TW 0.59 C4
+11.90 80 80 4/39 OD 03 Y TW 0.44 HTS-SF 0.80
+
2
.0.70 83 49 4/89 OD Co % TW 0 47 HTS-SF
+
84 90 4/89 OD 24 % TW 0.4e HTS-SF
.1.00
+
184 110 4/89 OD 26 t TW 0.45 HTS-SF 0 e d.
+
85 73 4/39 OD 25 t TW 0.40 CTS-SE
+11.70 87 27 4/89 OD 30 1 TW U.c! H2 6.t0
+
90 96 4/89 OD 21 s TW 1.42 HTS-6F 1.10
+
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+13.50 109 33 4/S9 OD in 1 TW 1.01 C7
+23.50 111 73 4/89 OD 24 % TW 0.t1 H5
+20,10 3.70 112 124 4/S9 OD 22 1 TW 0.c2 C2
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1.01 H4
+15.10 120 46 4/89 CD 23
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120 100 4/89 OD 22 9,
TW 1.13 VH
+11.70 121 61 4/89 OD 26 1 TW 0.96 DH d.10
+
122 96 4/89 OD 31 1 TW 0.70 H3
+2S.30 123 113 4/89 OD 21 % TW 0.7o C9
+20.90 124 60 4/S9 OD 25 t TW 0.4! CTS-SF 0.50
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124 68 4/89 OD t
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+ 1.10 125 85 4/89 OD 2S t,
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+35.30 i26 64 4/99 OD 2'
% TN 0.35 H9
+12.70 127 97 4/89 OD 22 % TW 0.7c HTS-ST
+11.20 128 54 4/89 00 35 % TW 0.73 HTS-SF
+11.90 9.20 129 55 4/89 OD 23 t TW 1.53 C6
+
129 95 4/89 OD 23 % TW 0.S7 C2
+11."0 129 99 4/89 OD 35 % TW 0.37 CTS-ST 1.30
+
130 82 4/89 OD 20 % TW l.06 CO
+33.00 130 106 t/89 OD 25 % TW 0.57 C10
+25.30 131 93 4/89 OD 23 % TW 0.44 CTS-SF 0.10
+
131 109 4/99 OD 33
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+
6.80 132 56 4/89 OD 2
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+
132 84 4/89 OD 25 t,
TW 1.14 C3 4.c0
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4/89 OD 34 i TW 1.09 01
+3c.30 4.40 132 94 4/S9 OD 22 1 TW 0."'
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135 e3 4/89 OD 25 t TW 1.54 CTS-SF
+17.30 1. O 135 67 4/89 OU 25 % TW 0.25 H5
+
4/S9 OD 20 % TW l.04 H6
+17.50 136 73 4/39 OD 22 t TW 0.e0 CTS-SF S.70
+
139 81 4/89 OD 23 % TW 0.99 DH 100 TOTAL TUBES FOUND
=
TOTAL INDICAT20NS FOUND 11u
=
$519 TOTAL TUBES IN IMPUT FILE
=
TOTAL TUBES It!SPECTED 9456
=
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List with Plot of >39% Indications
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1 SG 21 PLOT OF ALL It1DICATI0tlS.
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21 PLA:IT: CALVERT CLIFFS UNIT 2 OUTAGE:
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TOTAL TUBES ASSIGt!ED : '6 TOTAL TUBES
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4,'89
.-.31 OUTAGE
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ROWi-LINE OUTAGE INDICAT!O}l V A L'j E
~ VOLTS LOCA!!CH I rlCH ES 91 145 4/89 P' DISTORTED IND 1.02 V M. - -
47 135 4/89 DISTORTED IND 0-22 HTS-SF 1.00
+
32.4/89 f DISTORTED IND 0.44 HTS-SE 58 - 125 4/89 P-DISTORTED IllD 0.42 HTS-SF 0.70 0.60 59-
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70 llo 4/S9 C C 17 5."'
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+
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+
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+ S.00 1.90 4/39 DCNT 7.60 HS
+
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+0A.00 el 149 4/89 DENT 6.tl C7
+15.90 3e llo 4/89 DENT 5.07 H9
+17.00 37 47 4/89 DENT 10.80 VH 88-144 4/S9 DE!!T 5.5% HTS-ST
+17.00 91-49 4/89 DENT 5.54 H3
+11.60 91 63 4/89 D E tl T 5).34 H9 91 65 4/39 DENT 54.10 H9 91 07 4/89 DENT 71.31 Hi 91 69 4/89 DEtlT 17.44 H9 91 71_4/89 DENT 53.10 H9 91 85 4/89 DEN 7 9.09 C9 90 34 4/89 DENT 10.04 09 9':
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+
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+14.90 4/89 DENT 10.00 HS
+15.60 93 97 4/59 DENT 10.65 H) 93 131 4/$9 DENT 10.59 C3
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5; 01 PLOT Or it
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96 60 4/89 DENT 5.55 H9 96 60 4/89 DENT 94.10 H9
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96 64 4/89 DENT 74.63 H9 l
96 66 4/89 DENT 94.?? Hi l
96 70 4/$9 DENT 11.91 H9 97 39 4/S9 CENT 11.90 H3 3.40
+
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List with Plot of Tubes Plugged During April / July 1989
(
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Steam Generator #21 Tubes Plucced Durino the 1989 Outace l
l RQH LINE REASON FOR PLUGGING 5
129 Eddy current testing indication of 51% wall loss l
originating on the outside diameter of the tube at i
HTS-SF + 0.60 inches.
9 145 Eddy current testing distorted indication l
originating on the outside diameter of the tube at j
VM + 0.00 inches.
i 43 75 Eddy-current testing indication of 60%
wall loss l
originating on the outside diameter of the tube at CTS - SF + 6.60 inches.
53 33 Eddy current testing indication of 58%
wall loss originating on the outside diameter of the tube at i
HTS - SF + 0.90 inches.
58 32 Eddy current testing distorted indication originating on the outside diameter of the tube at HTS - SF + 0.70 inches.
71 123 Eddy current testing indication of 55% wall loss originating on the outside diameter of the tube at l
HTS - SF + 0.70 inches.
96 122 Eddy current testing indication of 39%, 32%, and j
16% wall loss originating on the outside diameter SF + 2.20, 0.80, and 3.30 e
of the tube at CTS inches respectively.
104 126 Eddy current testing distorted indication
[
originating on the outside diameter of the tube au l
CTS - SF + 1.80 inches.
117 109 Eddy current testing distorted indication l
originating on the outside diameter of the tube at CTS - SF + 0.70 inches.
t 121 105 Eddy current testing distorted indication originating on the outside diameter of the tube at i
CTS - SF + 1.10 inches.
r 123 57 Eddy current testing indication of 64% wall loss l
originating on the outside diameter of the tube at i
CTS - SF + 1.50 inches.
136 102 Eddy current testing indication of 48% wall loss i
originating on the outside diameter of the tube at CTS - SF + 5.10 inches.
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$7 4/89 PLUGGED MECH-W HTS-PT 4/89 PLUGGED MECH-W CTS-PT 136 100 4/89 PLUGGED MICH-W HTS-PT 4/89 PLUGGED MECH-W CTS-PT TOTAL TUBES TOUtlD
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PL UIT:
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List with Plot of Distorted Indications F.
Lists with Plots of Tubes not Rolled G.
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+
86 123 4/89 OD 15 % TW 0.55 06
+20.50 87 35 4/39 OD 35 % TW 0.59 H7 o.50
+
87 85 4/89 OD 13 % TW 1.C5 H5
-01.40 87 109 4/89 OD
~2 t TW 0.41 HTS-SF 9.00
+
87 133 4/89 OD 1F % TW 1.~.
C3
+11.90 89 21 4/89 OD 32 % TW l.31 CS
+21.40 89 55 4/89 OD 10 *. TW 0.73 C5
+10.90 89 85 4/89 OD 7 % TW 0.99 Cl
+22.40 90 34 4/89 OD
~2
% TW 0.5e HE
+35.00 91 83 4/89 OD 2 % TW 0.40 VH 3.70
+
91 113 4/39 OD 35 % TW 0.70 H2
+ ?.70 91 139 4/S9 OD
- 2 t TW 0.60 H5
+ 3.70 93 103 4/89 OD 1; % TW 0.98 VH
+17.10 93 127 4/89 OD 15 % TW 0.60 HTS-SF
+14.90 94 06 4/89 OD 31 % TW C.50 VM 95 111 4/89 OD 25 % TW 0.61 MTS-ST
+14.70 95 127 4/89 OD
- 4 k Ta 0. r.1 M '.
+18.40 95 135 4/89 OD 24 1 TW 0.55 Hi
+26.80 96 94 4/89 OD 10 K TW 1.il DH 96 112 4/S9 CD 1
t TW 0.04 H2
-34.90 c.3,
- 4. / 8 9 CD
'. ; A TW 3
,,. ; ; H4 97 1
t.10
+
nn
. m..
.. e. s.
- u. s 9.
J,
,,f o 9 Lw o.
- 3. s v
u
.....o...
o...-,.
n.
..m Plant CAL 7ERT CLITTC U!!!T Ottu a.arats :
Outa9e 4/89 QUERY: OG 00 PLOT OT ALL I!!r! CATI 0tl2, A LL. ELZ 7 AT I ?t10, 4.' 3 9 QUTAGE t
i ROW LI!!E OUTAGE I f1DIC A T ION VALUE VOLT 5 L?CATIGN I!!CHE3 97 105 4/89 OD 00 % TW 0.10 74
+05.10
-98 54 4/69 OD 3)
Y.
TW 0.33 H)
+00.90 101 51 4/89 OD
!! i TW.
0.70 He 1.10 4/89 OD
- t 1 TW 0.71 C3
+10.60 101 109 4/89 OD 05 t TW 0.95 vn
+10.73 4/89 OD 05 % TM 0.95 VM
+10.70
.103 37 4/89 OD 05 t TW 0.78 C9 103 115 4/89 OD O! t TW
!.0.
MS
+30.40 4/89 OD O! t TW 1.01 HS
+30.40 104 68 4/89 OD 11 % TW 0.to H7
+16.00 104 98 4/89 OD 00 i TW 0.53 H7
+ 7.50 104 110 4/89 OD 11 % TW 0.54 C3
+05.60
-4/89 OD 11 1 TW 0.54 C3
+05.60 104 106 4/89 OD 15 % TW 0.54 H2
+19.30 4/89 OD 06 % TW 1.03 H3
+ 9.30 4/89 OD 15 t TW 0.54 H3
+19.30 4/89 OD 0$ % TW 1.03 H2 9.30
+
106 40 4/89 OD 31 t TW 0.55 H5
+08.60 107-77 4/89 OD iv i TW 0.85 H2
+ 6.10
'108 60 4/89 OD 10 % TW 0.59 H7
+17.40 108 110 4/89 OD 10 1 TW 0.81 CO 4.70
+
4/89 OD 28 % TW 0.74 H4
+19.00 4/89 OD 31 i TW 1.50 H4
+13.90 109 37 4/89 OD 00 t TW 0.73 HTS-ST
+ 3 0. 7 0 -
109 83 4/89 OD 08 % TW 0.94 H4 7.00
+
109 101 4/89 OD 01 % TW 0.94 H4
+30.40 4/89 OD 35 i TW 0.67 H4
+36.70 110 38 4/89 OD 06 t TW 0.34 C3
+13.30 4/89 OD 33 % TW 0.Se C3
+19.90 4/89 OD 33 % TW 1.17 C3
+37.60 110 60 (489 OD 04 t TW 0.66 H4
+00.30 110 66 4/89 OD OS t TW 0.51 C3
+07.80 111 67 4/89 OD 10 i TW 0.54 H4
+31.00
(
111 83 4/89 OD I? % TW 0.55 H3
+05.60 111 111 4/89 OD 18 % TW 1.10 C7
+10.30 111 119.4/89 OD 7 % TW l.03 H4
+
6.00 110 100 4/89 OD 19 % TN 0.73 C3
+00.70 114 100 4/89 OD 04 i TW 0.55 CO
+13.60 4/89 OD 01 % TW 1.08-C3
+34.70 4/89-CD 03 % TW 0.70 C4
+01.50 4/89 OD 04 % TW 0.90 C5 4.70
+
4/39 OD 34 % TW 0.60 C7
+16.30 116 86 4/89 OD 19 % TW 0.53 H2
+13.60 116 96 4/89 OD 33 % TW 1.16 C3
+15.10 4/89 OD 10.t TW 0.65 HTS-ST
+03.00 117 107 4/89 OD 17 % TW 0.93 C4
+33.40 118 50 4/89 OD 20 t TW 1.07 H5
+10.50 4/89 OD 12 % TW 0.76 H5
+19.80 4/89 OD 00 t TW 0.53 HS 0.60
+
4/89 OD 17 t TW 0.94 H9 3.40
+
4/89 OD 03 % TW 0.54 H9-
+ 7.10 4/89 OD 06 % TW 0.51 H9
+13.50 4.30 119 75 4/89 OD 19 % TW 3.5d H4
+
100 48 4/89 OD 06 t TW 0.70 C4
+04,90 4/89 OD 11 % TW 0.61 C1 7.40
+
4/89 OD 10 i TW 0.45 CTS-ST 8.00
+
101-73 4/89 OD 28 % TW 0.73 HS
+30.30
'100.
88 4/89-OD 00 t TW 0.50 DC n
L 4/89 OD 04 % TW 0.41 C9 e.00
+
4/89
-OD 0: t TW 0.64 C7
+10.c0 l
4/89 OD 03 % TW 0.54 CO
+36.80 100 90 4/89 OD 09 t TN 0.89 H4
+14.30
'100 104 4/89 OD 38 % TW 0.60 C7
+11.10 L
103 107 4/89 OD 23 % TW 0.47 HE
+15.80 104 100 4/89 OD 2 % TW 1.00 CTS-ST
+09.40 125 101 4/89 OD 15 TW 0.78 C4
+30.40 106 64 4/89' OD 17 i TW 0.01 H7 7.10
+
. ~
m.
.m.
a%)+
a e.....nu rue e a.
.v u s,...................
u,..
wa........e..sa.
..w.e, Plant CALVERT CLIrr0 Utt!! 0
. te s 74nersN r: 2 Outages 4/49 QUERY:
SG 20 PLOT OT ALL INDICATICtff. ALL ELE 7AT!0tl2. 4/3t CUTAGE ROW LINE OUTAGE INDICAT!9N 7ALUE VCLT0 LCCA!!0t!
I !CHE0 129 95 4/89 OD
!. 3 TW 0.5f He
+10.70 l
131-107 4/89 OD 27 h TW 0.c6 7H
+;.40 l
132 74 4/89 OD at t TW 0.79 H/
3.30
+
132 104 4/89 OD
'l
% TW l.07 HT3-ST 9.70
+
133 97 4/89 OD 12 % TW Q.t C a.
+ 3.20 133 107 4/89 OD 10 % TW l.06 H2
+09.60 4/89 OD 26 % TW l.40 H2 3.30
+
135 95 4/89 OD 11 % TW 0.6o H4
+06.40 136 64 4/89 OD 36 % TW 0.90 VH
+23.90
[
139 91 4/89 OD 17 % TW 0.74 H4
+ 6.50 140 84 4/89 OD 37 % 'i W 0.55 H2
+18.o0 140 86 4/89 OD 16 % TW 0.40 HTS-ST
+ 5.20 TOTAL TUBES FOUND
=
174 TOTAL INDICATIONS FOUND
=
013 TOTAL TUBES IN INPUT TILE =
8519 TOTAL TUDES INSPECTED
=
8491 F
t I
?
9 s
9 i
1 P
I
)
~. -. -.. -..
4 STEAM GENERATOR 22 B.
List with Plot of <20% Indications w-v-
gye-
.e%+-e+-
.--pe-.
--og+-
+-
--,_7%--9,m_w.
...~4,pg7_ - _.
,,.wyw u p g-w _,
y,g,-..3 pgg%..ew c,
r p
y wywyp-my,py,y,wy y--py-w g
y----w
-y e
SG 22' PLOT OF If1DICATI0tlS.
d20%. ALL 6LEVATI0tJS.
4/89' OUTAGE
^
PLA!!T: CALVERT CLIFFS tMIT 2 G111ERATOR-22 OUTAGE:
t/89 t
1 - <20 f77)
TOTAL TilBES
- 8519 TOTAL TUDE3 ASSIGt:ED : 77 STAYS (0)
- 7 Ot1T OF SEir! ICE (4)
. 28
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a
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l 8
A a a a a a a a a a a a a ai 5
a 2 0 E E E E I T E E E E R % 2 E E E 3 S U O O O O O I 1 S S E ES 2'O DEG HOT TEMPIATES *A*
<- tJNES -->
90 NG t
3 2
r
.....o..
o,...
..............,,,.. 6....
~...........
Planta CALVERT CLITF0
'f MIT 'a 2. > '. n.
ro,,'r
- rt O.
Outago:
4/39
........................................,..................-Si4'...OUTA~E 50 22 PLOT OF INDICATIOtlS, ( 0 0 a., ALL ELEVAT M :,
QUERY:
ROW LINE.00TAGE I N 0 !C AT IO!1 7ALUE 7 0 L T *, L CATIGH I NC HI.t 2
108 4/89 OD li ^. TW C.41 HTS-ST
+i. 9 5
51 4/89 OD
!~
s TW 1.34 H; i
14 52 4/89 OD t % TW 0.71 C5
+03.1.
4/39 OD TW 0.70 C4
+14.70 15 29 4/39 OD 13 t TW 0.?? C2
+30.70 15 139 4/89 OD 17 i TW 0.4% CTS-SP
+00.10 4/89 OD 11 t TW 0.75 H2
+ 4.50 17 43 4/89-CD 8 t TW 0.75 C2
+11.50 23 145 4/89 OD 15 % TW 1.37 HTS-SF
+30.30 0.60 25 129 4/89 OD
't TW 1.1% HTS-ST
+
27 145 4/89 OD 10 t TW 0.90 CO
+.1.70 28 112 4/89 OD
- 1) % TW 0.64 H!
+16.30 30 36 4/89 OD 3 % TW 1.03 C4
+34.90
+
31 67 4/89 OD 10 t TW l.00 Cl
+03.60 35 77 4/89 OD 13 % TW l.li C1
+13.30 37 163 4/89 OD 17 t TW l.90 C4
+01.00 39 27 4/89-CD 10 % TW 0.77 C4
+37.00 i
39-105 4/89 OD 13 % TW O.51 HTS-SF
+13.00 t
43-_139 4/89z OD 10 t TW 0.61 Cl
+11.70 t
44 34 4/89 OD 12 % TW e.07 HTS-ST
+:0.40 i'
45' 79'4/89 OD 15 t TW 0.to H2
+23.90
- 54.
42 4/89 OD 19 % TW 0.50 CTS-ST 3.60
+
54 70 4/89-OD 11 t TW 1.30 H3 55 21-4/89 OD 16 % TW 0.75 H3
+ 8.40 55 127 4/89 OD 15 % TW 0.64 HC
+19.40 60-158 4/89 OD 13 t TH 0.63 C5
+04.10 65 17 4/89 OD 11 % TW 0.81 H3 e.30
+
66 72 4/89 OD 13 % TW 0.56 HTS-ST
+ 0.60
+
68 100 4/89 OD 19 % TW 0.50 C3
+14.90 68 108 4/89 OD 17 t TW 0.50 MTS-SF
+ 0.30 70 40 4/89 OD 0 t TW 0.41 CTS-SF
+ 0.50 I
70 78 4/89 OD 16 % TW 0.S0 HTS-ST
+ 0.30 l
72 94 4/89 OD 11 % TW 0.65 CTS-SF 5.60 I
73 137'4/89 OD 10 t TW 0.51 CO
+29.00 76 98 4/89 OD 10 t TW 0.85 HTS-SF
+ 0.80 77 57 4/89 OD 13 % TW 0.63 C3
+16.30 78 118 4/89 CD 18 i TW 0.71 DH
+13.40 4/89 OD 10 % TW 0.69 H3
-+-9.30 i
81 101 4/89 OD 15 t TW 0.60 H2
+33.50 t
81 105 4/89 OD 15 t TW 0.67 H3
+ 10. 7 0 82 00 4/89 OC 12 % TW 0.76 C3
+30.30 82 98 ~ 4/89 OD 16 t TW 0.S$ H4 6.30 6
+
0.50 l
4/89 OD 10 t TW 0.60 HTS-SF
+
84 94 4/89 OD 16 % TW 0.46 HTS-ST 0.t0
+
85 63 4/89 OD 13 t TW-0.53 C4
+31.90 86 92 4/89 OD li t TW 1.10 HTS-ST 0.30
+
86-128 4/89 OD 15 % TW 0.55 C-
+00.50 t
87-85.4/89 OD 13 % TW 1.05 HS
+01.40 87 133'4/89 OD
'9
% TW 1.24 C3
+11.90 I
89 55 4/89 OD 10 % TW 0.73 C5
+10.90 l
89 85 4/89 OD 7 % TW 0.96 C1
+00.40 93 103 4/89 OD 10 % T'.?
0.33 VH
+1".10 l
93 1274/89 OD 15 % TW-0.06 HTS-ST 414.9C I
96 94 4/S9 OD 10 t TW 1.81 CH i
96
-112 4/89 OD 19 t TN 0.c4 H2
+24.90 s
6.10 l
'97 33 4/89 OD 10 t.
TN 1.33 H4
+
104 o8 4/89-CD 11 t TW 0.50 H7
+18.00 t
104-110 4/S9 OD 11 % TW 0.54 C3
+05.60 4/89 OD 11 i TW 0.54 C3
+25.60
[
'104 126 4/89 OD 15
- v. TN 0.54 H3
+19.30
~4/89 OD 15 % TW 0.54 H2
+19.30 l
107
-77 4/89 OD
~
19 % TW 0.!5 H2 d.10
+
108 62 4/89 CD 10 i TW 0.59 H7
+17.40 r
108 112 4/89 OD 10 t TW Q.81 C9 4.70
+
111 67 4/89 OD 10 % TW 0.54 H 31.00 111 83-4/S9 OD 19 t TW 0.55 H2
+05.00 F
111 111 4/89 OD 13 t TN 1.10 C7
+10.30 i
e I
I i
.._ ____ ___ _..,___._ _,_._._ __.____._ _._ _ f
_.____ _ ___._ _ ___ _.m__ _
._._.m-
[- p
........a n......,....................,..
..i 4 o......
Plant CALVERT CLIFF.1 'Jti!! 0 S t a s.t. G+nerv. r: 02 Outaget 4/39 OUERY:
SG :: PLOT or ItDICAT!0 tis.
03t. ALL ELEVATIotl2, 4/t?
............................................................. '.....0JTAGE ROW LINE OUTAGE ItlDICATICt!
7ALUE V0LT2 L?; CATION INCHE3 111 119 4/89 OD 7 t TW
!.03 H4
- r...'. G
+
110 102 4/89 CD 19 TW 0.73 C1
+20.70 116 86 4/89 OD 19 t TW 0.53 H2
+13.60 116 96 4/89 CD 10 % TW 0.?! HTS-ST
+03.00 117 127 4/89 OD 17 1 TN 0.93 C4
+33.40 118-52 4/89 OD 19 % TW 0.76 HE
+19.30 4/89 OD 17 % TW 0.94 H9 3.40
+
119 75 4/89 OD 19 t TW 3.E6 H4
+ 4.80 1
120-48 4/89
- 0D 11 % TW 0.61 C1
+ 7.40 4/89 OD 10 1. T W 0.45 CTS-ST
+ 8.00 124 120-4/89 OD 2 % TW 1.00 CTS-ST
+26.40 105 101 4/89 OD 15 % TW 0.78 C4
+30.40 126-64 4/89 OD 17 % TW 0.61 H7 7.10 1
+
133
-97 4/89 OD 12 % TW 0.51 C6
+ 3.00 133 107 4/89-CD 16 % TW 1.06 H2
+09.60 135 95 4/89 CD 11 % TW 0.86 H4
+26.40 139-91 4/89 OD 17 % TW 0.74 H4
+ 6.50 140-86 4/89' OD
.16 % TW 0.40 HTS-ST
+ 5.00 TOTAL TUBES FOUND
=
77 TOTAL INDICATIONS TOUND 85
=
TOTAL TUBES IN INPUT TILE = - 8519 TOTAL TUBES INSPECTED
=
$491-e r*7 9
-M+e % 7 J mp%
werg44-**y 9,q=-1+-7-'
tPT*
- gye--2ey
@=
- d-M++
F F-T-
M*?-
9*+
F V'-"-*-T
1 i
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STEAM GENERATOR 22 C.
List with Plot of 20% - 39% Indications j
f I
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Plant: CAL 7ECT CLITTO !!N!T 0
- .*,r
' s.a-:,
Outsge:
4/39 i
SG 10 PLOT OT INDICAT!0!!C. 00-
................'...._....."! AGE ALL ELZYA!!. !C.
4M C QUERY:
......................................'9%.
RCW LINE OUTAGE INDICATION 7 A L'.f E 7'sLTO L 0 0 <*.! ! O!!
!!!CHZ 1
33 4/89 OD 11 t TS 0.5>
HTS-ST
+1;.90 0
50 4/89 OD 0"
5 TM 0.45 HTS. F
+11 ?
3 167 4/89 OD 0; 4 TM 0.li HTC-ST 4.4:
5 133 4/39 OD 04 t TW 0.74 CTS-SF t.11
+
7 55 4/89 OD
- t TN 1.03 H1
+01.?0 10 50 4/89 OD 20 t TM 0.5i
- H 3.50 11 59 4/89 OD 05 t TW 0
f'.
03
+
14 50-i/99 OD 23 % TW
- 0. ! ! C4
+10.00 TW 0.44 CTS-ST
+01.49 15 139 4/89 OD 03
'18 136 4/89 OD 04 % TW 0.47 HTS-ST
+ 0.60 00 106 4/89 OD 35 % TW 1.09 C4
+ 1.40 05 35 4/89 OD 00 t TW 0.5U H3
+13.00 c.90 25 63 4/89 OD 16 t TW 0.45 C3
+
26 04 4/89 OD 34 % TW 0.70 VM 27 15 4/89 OD 00 t TW 0.71 H4
+05.00 08 110 4/89 OD 33 % TW 0.80 H3
+ 6.60 29 09 4/89 OD 33 t TW C.49 HTS-ST 1.10-
+
+
31 27 4/89 OD 05 t TW 1.39 C4
+19.40 i
34 94-4/89 OD 36 % TW 0.43 DH 35 75 4/89 OD OS t TW 0.11 DH 37 41 4/89 OD 35 t TW 0.49 H2
+31.50 37 47 4/89 OD 35 % TW 0.53 Ci
+19.00 37
-97 4/89 OD 04 i TW 1.03 h1
-+11.40 4/89 OD 20 % TW 0.71 H1
+14.80 40 84 4/89 OD 03 % TW 0.51 C1
+05.10 43 53 4/89 OD 39 t TW 0.45 C3
+11.00 44 38 4/89 OD 23 % TW 0.53 HTS-ST 0.50
+
47 69 4/89 OD 33 t TW 0.54 C5 0.00
+
+ 8.60 f
50 38 4/89 OD 25 i TW 0.50 HTS-ST 4/89 OD 35 t TW 0.40 VM
+ 5.40 50 40-4/89 OD 08 % TW 0.41 HTS-ST 1.00
+
54 84 4/89 OD 31 % TN 1.00 C3
+03.30-54 100 4/89 OD 23 % TW 1.00 HTS-ST
+02.60 55 143 4/89 OD 03 % TW 0.53 YM 56 144 4/89 OD O! t TW 0.e0 H4
+10.90 59 131 4/S9 OD 07 t TW 0.73 HTS-ST 0.80
+
62 70 4/S9 OD 05 % TW 0.50 HTS-ST 0.30
+
64 50 4/99 OD 33 % TW 0.49 7M 65 17 4/39 OD 31 t TW 0.5d VM
+0e.30 t
65 109 4/89 OD 20 t TW 0.59 Hi
+13.40 1.00 1
66 70 4/89 OD OS t TW 0.43 HTS-ST
+
~67 95 4/89 OD 35 t TW 0.35 CTS-ST
+ 0.00 67 -101 4/89 OD 35 % TW 0.53 HTS-SF
+14.80 71 77 4/89 OD 00 t TW 0.49 HTS-ST 0.80'
+
-70 110 4/89 OD 05 % TW 0.57 CTS-ST
+0t.70 70 150-4/89 OD 35 t TW 0.49 HTS-ST
+17.90 73-21 4/S9-CD OS t TW 0.83 VM 75 03 4/89 OD 00 t TW 1.10 DC 76
-94 4/89 OD 25 % TW 0.4i HTS-ST 0.90
+
77 15 4/89 OD 01 % TW 0.61 H1
+01.00 78 80 4/89 OD is t TW 0.70 C5
+09.70 81 61 4/89 OD 01 % TW 0.54 C6
+15.10 L
80 94 4/89 OD 01 % TW 0.71 HTS-ST
+ 1.09 18 3 31 4/89 OD 30 t TW 1.15 Hi
+19.00 1
84 704,4/S9 OD 03 % TW-1.90 YH
+00.00 84 76 4/89 OD 09 t TW 0.44 HTS-ST 0.70 i
+
84 66 4/89 OD 06 % TW 0.93 HTS-ST 5.30
+
84-110 4/89-OD 0? t TW 0.56-HTS-ST
+-5.00-84 140 4/89 OD 30 t TW 1.34 C4
- 0.40
+
85 105 4/89 OD 03 t TW 0.54 H2
+10.00 86 94 4/89 OD 15 t TW 0.35 HTS-ST
+ 0.70 87
. 35 4/39 OD 15 % TW 0.59 M7
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+
99 01-4/89 OD 30 t TW 1.31 C3
+01.40 90 34 4/89 OD 00 t TW 0.56 HS
+35.00 3.~0 91 83 4/89 OD 00 3 TM 0.46 7H
+
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91 139 4/39 CD-
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+
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+25.10 98-54 4/89 CD 19
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+20.00 101 51 4/89 OD 31 % TW 3.72 H2
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+
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+32.60 l
101 109 4/89 OD 25 % TW 0.95 VM
+10.7C i
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+10.70 l
103 37 4/89 CD 2d % TW 0.79 C9 i
103 11$ 4/89 CD 21 % TW 1.01 H5
+12.40 4/89 OD 21 t TW 1.01 H5
+32.40 i
104
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+
104 ~126 4/89
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+ 9.30
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+ 9.80 106 40 4/89 OD 31 % 7W o.55 HS
+28.c0 108 112 4 / 8 ',
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+19.00
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+32.70
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+
109: -101 4/S9 OD 21 % TW 0.94 H4
+32.40 i
4/89-CD 35 % TW 0.o' H4
+36.70 110 38-4/89.
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+13.30 4/89.
CD 33 % TW 0.66 C3
+19.90 4/89 OD 28 % TN 1.17 C3
+37.00 l
110 62 4/89 OD 24 % TW 0.c6 H4
-20.30 110 66 4/89 OD 26 t TW 0.51 C3
+27.30 114 102 4/89 OD 24 % TW 0.55 C2
+33.60 l
4/89 OD 21 % TW 1.08 C3
+34.70 4/89 OD_
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+21.50 1
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+16.80 i
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+24.90 121 73 4/89 OD 28 % TW 0.73 H5
+32.30 122 88 4/89 OD 22 % TW 0.50 DC 6.00 4/89 OD 24 % TW 0.41 C9
+
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+16.60 4/89 OD 23 % TW 0.54 C2
+36.80 122 92 4/89 OD Oi % TN 0.89 H4
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+11.10 I
123 107 4/89 OD 33 % TW 0.47 HS
+15.30 f
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93 100 4/39
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+
- ~ 112-4/S9-SLUDGE 0.00-CTS-ST 98
~4/89 SLUDGE' O.00 CTS.S?
2.30
+
122
- 1.00 98 132.4/89-SLUDGE
.0.00 CTS-ST 103 29 4/89 SLUDGE-,
0.00 CTS-SF 0.60 i
+
103-37 4/89 SLUDGE 0.00 CTS-SF
+ 0.60 103 47 4/89-SLUDGE 0.00-CTS-SF 0 e0
+
103 57 4/S9 SLUDGE 0.00 CTS-ST
+ 1.90 103 67~4/89-SLUDGE-0.00 CTS-ST
'3.70
+
103 77 4/89 SLUDGE C.00 CTS-SF.
4.40
+
103 87 4/89 SLUDGE 0.00 CTS-SF
+ 3.30 103 97 4/89:
SLUDGE 0.00-CTS-SF 0.80
+
103 107 4/89 SLUDGE
-0.00-CTS-ST 2.30
+
103-117 4/89-SLUDGE:
0.00 CTS-SF l.20
+
.103_
127 4/89-
. SLUDGE 0.00 CTS-ST t
'103
-137-4/89 SLUDGE 0.00 CTS-ST TOTAL TUBES FOUND
=
219
-TOTAL INDICATIONS-FOUND
=.
219 TOTAL TUBES-IN INTUT TILE 85;9
=
TOTAL TUBES INSPECTED
=
8491 b
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l STEAM GENERATOR 22 H.
List with Plot of Tubes Dented i.
M.
SG 22 PLOT OF TUDES DEtJTED.
ALL ELEVATIOfIS.
4/89 OUTAGE Yt AUT: CALWHT CLIi-FS U: LIT 2 GEtlERATon:
22 OU T AGE:
4'89 i - (25.00 (463) 2 = 25.00-49.93 (53) 3 - 50.00-74.9'3 (20) 4 - v.' 4. w t'9 TOTA! 108.iS
. 8519' TOTAL TUrV.S ASSIGt)-D ti. 5 880
- S T,, ' S (M
?
OUT OF Sr.PilCE (#1 39
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ROW LINE CUTAGE INDICAT!0N 7A005 70' T : Lv?A!!ON
~;!CHES 1
157 4/39 DENT 8.;9 C0 3
12514/89 DENT
- 5.22 VM 4
.4 4/39 DENT 28.93 VM c
4
~ O t>.4/89 CENT 14.54 Ht
.0 5-7.4/89-DENT 6.91 H2 4.20
+
5 47 4/89 DENT Ic.19 VM 6.50-5 61 4/89 DENT 14.41 H6 4.60 13 167 4/S9 DENT 6.9! C5 2.70
+
14 20 4/89 DENT 10.33 CTS-ST
+35.90 4/89 DENT 8.11 Hi
+ 4.50 14 42 4/89 DENT 22.46 HS
+27.00 14-146 4/89 DENT 6.10 H5
+Dl.10 14 154 4/89 DENT 5.91 CTS-ST
+21.80 14 158-4/89 DENT 24.47 H6 9.60
+
15-63 4/89 DENT 7.92 Co
- +
9.10 15 105 4/89 DENT 7.17 C6
+
- 8. 90 15 129 4/89 DENT 9.00 C6 15 149 4/89 DENT 14.73 C6
+ 9.00 15 151 4/89 DENT 14.91 C6
+ 9.00 15 153 4/89-DENT 14.06 C6
+ 9.00 15 155 4/S9 DENT 14.53 C6
+ 9.00 15 157 4/89-DENT 14.41 C6 9.00
+
15 159 4/89 DENT 17.14 C6 9.00
+
15 161 4/89 DENT 15.47 C6 9.10
+
15 163 4/89 DENT 13.35-C6 9.00
-+
15 165 4/S9 DENT 14.01 C6
+ 9.10 15 167 4/89 DENT 14.24 C6 9.20
+
.18 24 4/89 DENT 7.94 H1 18 116.4/89 DENT 6.52 C6 9.90 19 19 4/89 DENT S.37 CTS-ST
+37.00
- 20. -126 4/S9 DENT 6.70 C6 20 138.4/89 DENT 6.57 C6 3.50
+
29 165.4/89 DENT 9.12 VM
- (
30 54-4/89 DENT 7.14 VM 2.40
+
31 3 4/89 DENT
!.24 C5
+12.10 30 24 4/S9 DENT 7.32 H4 5.00
+
30 54'4/89 DENT 6.20 VM 32' 112 4/89 DENT 7.45 CTS-SF 7.40
+
-33 5-4/89 DENT 7.71 VM' 33 51-4/89 DENT 41.08 VM 33 151'4/89 DENT 13.54 VM 33 159 4/89 DENT 19.13 VM 36
- 48 4/89 DENT 6.35 M6
-20.60 36 '162-4/89 DENT 13.23 VM 37 133 4/89 DENT 6.02 C1
+22.60 38 4 4/89 DENT 26.21 H7-
+ 5.70 1M3 18-4/S9 DENT 5.43 H6
+20.90 4/89 DENT 10.27 VM 4/89 DENT
-10.53 C7 1.90
+
4/89 DENT 5.55 CTS-SF
+37.00 4/S9 DENT 5.03 CTS-SE
+30.30 4/89 DENT 7.21 CTS-ST
+12.70
'38 34 4/89 DENT 13.75 C7 4/89 DENT 7.63 C6
+23.70 4/S9-DENT 15.45 C6
+21.40 4/89 DENT 9.66 C6
+20.30 4/89 DENT 5.36 C6
+20.00 4/89 DENT 10.37 C6
+14.60 4/89 DENT 3.13 C6
+13.30 4/89 DENT 21.16 C6 7.90 38 36 4/89 DENT 5.03 VM 2.00
+
4/89 DENT
~..'. 9 7M
+ 9.60 38 38 4/S9 DENT 6.43 C6-
. i. 2.,3 0
- 21.
4- / v 9 u.e..y.
. =. =..
o n
n,,
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38 112 4/89 DENT
!3.54 7M 33 11-4 4/89 DENT 27.49 7M 38 122 4/S9 DENT
'2.49 ?M V.
l l
I
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eg.
y,,
4, eeeeee 9964 r u p e e... m.
s Plan.. j w..e.r.
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P, O. ve
,J r r.e n e_.,l. e_ n.
A.,__
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m ROW-LINE OUTAGE INDICATION VAL"_E...
7 '_ L T S L1 CAT *0N
!NCHE.'
.,..)-
.o3 4/vi n e u..
.. =..
- n. u.
m 9
3v -
1.m. A 4,/.e c..
p e.t!.
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- u...c.. c.e oc i..
T i 21 C1 39.
63 4 /,8 9 D E N.J.
4,
.o., r3 e r.
- s...:..
- t...c,. r, e.
+
.,s,
.29 1,3 4
40 46 4/89 DENT 6.)9 HTS-SF
+15.80 4/89 DENT 12.35 C6
' 1.70 40 74 4/89 DENT 5.73 H4 5.50
+
42 102 4/89 D E;'T 15.80 Co
+17.40 44 116 4/S9 DENT 9.81 C4 6.50
+
46 32 4/89 DENT 9.79 C6
+15.50 4/89 DENT 9.79 C6
+15.50 46 114 4/89 DENT 6.43 C5
+ 9.30 47 137 4/89 DENT 5.10 H6
+ S.10 4/89-DENT-5.40 H7 1.10
+
4/89 DDNT 5.63 VM
+ 2.70 4/89 DENT-6.27 C6
+10.60 4/89 DENT 5.44 C6
+12.60 49 93 4/89 DENT 5.31 DH
+11.70 50 18 4/89 DENT 6.40 C6
+12.10 51 15 4/89 DENT 15.59 H2
+34.90 52 98 4/89 DENT 5.51 H1
+25.80 52 150 4/89 DENT 5.33 C4
+26.90 53 157 4/89 DENT 23.65 VM 54 114 4/89 DENT 5.44 HS
.90
+
54 120 4/89 DENT 5.35 H2
+33.20 54 158.4/89 DENT 5.01 H5 4.00
+
55 99 4/89 DENT 5.62 M4
+35.10 57 43 4/89 DENT 9.73 H6
+16.60 57 103 4/89 DENT 8.61 H7 59 31 4/89 DENT 6.56 C6
+15.20 4/89 DDNT 6.00 C6
+16.90 4/89 DENT 13.3S DH
+11.10 4/89 DENT 14.64 DH
+11.50 59 55 4/89 DENT 5.18 H4
+24.00 64 36.4/89 DENT 55.08 C7 65 73 4/89 DENT' 12.12 C7
+16.30 4/89 DENT 2.11 C7
+11.50 4/89 DENT 6.93 C7 S 60
+
S.00 4/89 DENT 6.99 C7
+
66 78 4/39 DENT 6.02 H7
+13.20 66-108 4/89 DENT S.11 C7
+14.40 4/89-CENT 7.11 H7
- 10.30 4/S9 DENT 7.10 H7 0.30
+
66 150 4/89 DENT 3.51 H7
+11.00 67 13 4/89 DENT
?.07 HTS-SF 5.60
+
67 43 4/89 DENT 12.54 C3 67
-45'4/89 DENT 14.13 C7
+11.10 67 49 4/89 DENT 21.29 CS 67 81 4,/89 DENT 5.94 HT
+ 1.50
,,r o.)
ue_ nl.
a. m a.
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v 4/v9 r c..y i 9.,...
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4/89 n r y..-
s.
6v 1v 4/v9 n, r n11
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M..
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54 o
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68 74 4/S9 DENT 5.73 HTS-SF 2.40
+
6S 134 4/89 DENT 9.67 C7
+11.80 4/89 DENT 3.26 H7
+13.40 9.90 69 31 4/89 DENT 6.43 C3
+
S.30 69 - 145 4/89 DENT 5.20 H7
+
69 153 4/S9 DENT 5.32 HI 9.40
+
70 74 4/89 DENT 21.6) H7 S.50
+
70 90,
- 4. / 8 9 DENT 6.73 M7
+13.60 1
7.
.i o.3 n e_ nI.
- i..,..:. a,
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..*. +..e. e.e.
/
v u.
4 71 93 4/89 D E tlT c.21 C7
+10.20 4.10 4/89 DENT 11.e5 H7
+
4/89 DENT 12.47 H6
+18.60 6.20 72 86 4/89 DENT 7. r. 2 H4
+
4 74 146 4/S9 DENT
.22 HS
+
7.50
. - - + ~ -
r...y -
.u....,..
o.......
i
-Plant: C AI.V ERT C1,'FFT '.' N ! ! 2
.e u.
g a r. a r a.. r ; ;;
Outage:
4/39 c-
++
s P t e.
- w. e + n. e..e..c> C.e,u.. e n,
4,
.a.,..s.,.-
, w.. w.n...,.
.-2 0n.e,Rv.:
o n
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.n s
. ~..................-............. ~.............................
us.
'J
's.. 'n-7 "'.\\. s 0.
7
, +,g g e U *r A'a' ?...........".....'...'l
"..a. ' ", r V N'.. '.-... '.'a#. \\ *.... I=........'""..3.-"c.....
4 p,. q.
+.
s w
75 S1-4/89 DENT 11.52 H7
-13.50 c7 5 97 4/S9-DENT 5.70 H7
~3.00
+
76:
18 4/89 D Ei!T
!*.3*
DH 77.
15 4/39 DENT-5.73 H7
+20.90 80 26 4/89 DENT 24.10 C2 22.30 80 - 46 4/89 DENT e.25 HTS-SF
+17.70 80-144 4/89 DENT 7.52 C2
+3t.00 82-
?O 4/89 DENT 7-. 0 6 C1
+25.30 83 45 4/89 DENT 5.11 C7 84 138 4/S9 DENT 5.66 HTS-ST
+12.70 84 140 4/89 DENT 5.59 HIS-SE
+13.00 84 142 4/S9 DENT 5.73 HTS-ST
+13.60 87 77'4/89 DENT 5.51 C6
+12.60 88 16 8 4/89 DENT 9.06 DC
+ 3.30-91 37 4/89 DENT 3.2S C3
+13.80 91 39 4/89 DENT 5.00 C9 1.10
+
91 45 4/89-DENT 7.16 CS
+14.40 91 67 4/89 DENT 5.70 HS
+10.40
'4.50 91 115 4/S9 DENT 7.44 HS
+
-91 127 4/89 DENT 8.29 H9 91.
129 4/89 DENT 19.50 HS
+10.80 4/89 DENT 8.13 HS
+ 9.90 4/89 DENT 12.56 HS
& S.00 91 131 4/39 DENT 6.91 H6
+21.80 19 1-133 4/89 DENT 5.57 CS
+16.70 4/89 DENT l'1.23 CS
+18.00 91
-141 4/S9 DENT 7.49 H9 91.
143 4/89 DENT 15.92 C9 91 145 4/89 DENT 15.00 C9 4/89 DEMT-7.52 H9 91 147 4/89 DENT 9.05 CS
+14.00 4/89 DENT 3.21 CS
+14.60 4/89 DENT 5.17 CS
+15.40
(
4/89 DENT 6.90 CS
+16.20 4/89 DENT 15.41 CS
+17.10 4/39 DENT 25.90 C9 4/89 DENT 11.38 H9 1.70
+
1.30 92 36 4/89 DENT 12.02 M9
+
4/89 DENT 11.66 C9 92 42 4/89 DENT 7.70 H9 92 62 4/89.
DENT 13.50 H9 4/39 DENT 13.50 H9 92' 98 4/89 DENT' 61.15 H) 92 106 4/89 DENT 5.95 HS
+17.20 90--114 4/89 DCST
?.45 HS
+17.20 4/89 DENT 5.24 HS
+13.90
-92 lib 4/S9 DENT 9.03 CS
+10.50 4/89 DENT 5.13 C9 4/89 DENT 18.39 C9 1.40 4/89 DENT 14.11 HS
+12.00 92 122o4/89 DENT 6.14 HS 4/89 DENT 18.57 HS 9.20
+
4 /'8 9 DENT c.78 HS
+10.40 4/89 DINT 8.46 HS
+18.50 4/89 DENT 2.75 H9 4/89 DENT 19.39 C9 92.124.4/89-DENT 04.40 H9 92.130.4/89 DENT 7.23 HS
.92-140 4/89 DENT 9.91 H9 93 39 4/89 DENT 16.13 H9 93-41 4/89 DENT 16.50 CS
- 10.30 4/S9 DENT 31.15 CS 9.60
+
4/89 DENT 18.00 CS S.70 93 51 4/39 DENT 49.63 H9 4/S9 DENT Sc.65 C9 4/39 DENT 21.90 C3 9.70
+
93 53 4/S9-DEN.
s.33 M9
\\
L...... n.
i v,.....~-m..
4........
n....
...... - *:a Plant: CAL 7ERT CLIFF 2 "N'T 2
' - -. - Go ar; ::: 22 Cutage:
4/09
...............J.c C. e.
.nnee n,e sl. r D,
A.,
E, -.,, A.,.., u..
,4,, 3 %,
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.c a.
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su--
e.
if RDW LINE CUTAGE... INDICATION VALUE 70LT3 IOCATION INCHEC D""ii-5.Ii d2 93 sc 4,o9 u9 Db 93 59 4 $' S 9 7.40
+
93 c5'4/89 DENT 5.33 HTS-ST
+13.30 4/89 DENT 6.61 M9 93 77 4/39 DENT 6.90 Hy 93 103 4/89 DENT.
10.61 H9 1
'O i
93 115 4/89 DENT 7.22 CS
+
4/89 DENT 7.39 C3 4.JO
+
4/S9 DENT 46.01 C5 4/89 DENT 5.70 CS l
4/89 DENT 19.73 MS 6.70
+
93.
117 4/89 DENT 30.33 M9 93 119 4/89 DENT 5.57 CS
+14.10 93 125.4/S9 DENT 9.05 HS 7.40 f
+
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+15.30 4
93 145 4/89 DENT 13.49 HS
+11.20 4/89 DENT 5.49 H9 4/89 DENT 16.4; CS S.70
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+15.30 94
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33.79 H9 94 52'4/89 DENT 6.19 M9 t
94' 54 4/89 DENT 6.18 H9 94 86 4/89-DENT 9 99 H9 94 128 4/89 DENT 5 13 C3 9.70 l
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94 140 4/S9 DENT 5.63 H9 i
94 144 4/89 DENT 10.14 C9 4/99 DENT 5.57 M9 95 23-4/S9 DENT 5.41 C9 i
95 51 4/89-DEMT 11.72 H9 95 53 4/89 DENT 6.23 H9 f
95 55 4/89 DENT 10.30 H9 i
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96 72 4/39 DENT 6.10 H9-96 76 4/S9 DENT 23.61 H9 l
96 82 4/89 CENT
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+17.00 96 124 4/89 DENT 5.53 C3 3.40
+
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+11.50 i
96-126 4/89 CENT 35.43-MS
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+14.20 i
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+19.10 96 142 4/89 DENT 9.33 CS
+ 5.50 4/89 DENT IS.73 C9 4/89 DENT 17.41 H9 4/89 DENT 17.05 HS.
+13.30 96 144 4/S9 DENT
?.01 C9 97 43 4/89 DENT 27.61 H9 97 51 4/89 DENT
?.20 HS
+20.20 97 55 4/89 DENT 21.42 H9 97 57 4/89 DENT 6.30 H9 97 85 4/85 DENT 63.41 H9 97 93 4/89 DENT 16,73 C1
+30.10 4/89-DENT 6.44 CS
+15.10 97 97 4/89 DENT 9.66 M9 97 119 4/89 DENT 29.92 H9 97
-137 4/89 DENT 8.98 H9 97 139 4/89 DENT 13.19 H9 97 141 4/89 DENT c.49 C9-4/89 DENT 28.02 H9 4/89 DENT 9.17 HS
+13.70 4/89 DENT 6.56 HS
+ 1.70 98 64 4/89 DENT 15.12 H9 98 84 4/89 DENT 58.02 H9
- 98 90 4/89 DENT 59.21 H9 98 98 4/89 DENT 42.32 H9 98 102 4/89 CENT 30.02 H9 98 123 4/89 DENT 5.59 H9 98 136 4/89 CENT 40.53 H9
-(
99 51 4/89' DENT 13.26 H9 99 53 4/89 DENT 4c.68 M9 99 65 4/99 DENT S.S3 H9 99 69 4/SL DENT 7.00 H9 99
-71 4/89 DEMT 40.49 M9 99 75 4/89 DENT 17.30 H9-99 77 4/89 DENT Ic.62 H9 99 83 4/89 DENT
~.53 H9 99 85-4/89 DENT 91.13 H9 99.
117-4/89' DENT 17.22-H9 99-119 4/89 DENT 64.43 H9 99, '135 4/89 DENT 6.35 H9 99 141 4/89 DENT 9.30 C9 100-54 4/S9 DENT 70.17 H9 100 70 4/S9
-DENT 99.24 HG 100 74.4/89 DENT 6.39 H9 100-102 4/S9 DENT 17.41 H9 100 116 4/89 DENT-32.81 M9 100- 118 4/89 DENT 52.17 H9 100 100 4/89 DENT 32.S6 H9 100--
140 4/89 DENT c.77 M9 4/89 DENT 6.26 C4 101 49 4/89 DENT 6.49 M9 101 51 4/89 DENT 22.2S M9 101 53 4/89 DENT 70.01 H9 101 55 4/89 DENT 27.25 H9 101 59 4/89 DENT-9.99 M9 101 71 4/89 CENT 15.83 H9
'101 75 4/89 DENT 10.90 H9 101 77 4/89 DENT 6.23 H9
-101 83 4/89 DENT 17.41 H9 101 93 4/S9 DENT 9.0S H9 101 109 4/89 DENT 26.13 H9 1.90
+
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! !! *. ! '.' A T ! Q tl V A L '.! E 4/99 D E!! T 5.*r H2 20 105 137 4'89 CENT d.t' M9 4/99 C E!!T 5.t?
E' 106 40 4/89 D E!!T 44.s4 H) 106 58 4/89 D E !!T Ct.40 H9 106 60 4/39 C E!!T
!3.0) H9 106 66 4/89 DENT c ". 0 " H9 106 74 4/39 DENT 6.99 H) 106 138 4/89 DENT 5.60 H9 107 41 4/S9 D Ell T 10.99 H9 107 43 4/89 D E rlT 05.70 H9 107 57 4/89 DENT 10.94 H9 107 59 4/89 D E!!T 03.47 H) 107 61 4/B9 D E 'lT
?.34 H) 107 73 4/S9 DENT 15.00 H9 107 103 4/89 DENT 17.87 H9 108 40 4/89 D E!!T 16.57 H9 108 60 4/89 DENT 10.49 CTS-5F
+00.80 108 80 4/89 DENT 11.00 CTS-ST
+04.60 108 100 4/89 DEt!T 39.48 H9 109 47 4/89 DENT 11.08 H9 109 55 4/89 DENT 36.00 H9 109 111 4/89 DENT 36.63 H9
+ 1.00 4/89 D E rlT 17.04 H9 e/89 D E!!T 5.*$
H3
+00.00 4/39 DENT
$.71 H?
+ 5.10 109 105 4/89 DENT 14.47 H) 110 36 4/89 DENT S.54 CH
+ 1.50 110 54 4/S9 DENT 61.56 H9 110 76 4/89 DENT 10.7S H9 110 80 4/89 DENT 11.69 H) 110 86 4/89 D E!!T 01.30 H9 110 110 4/89 DE!!!
07.53 H9 4/89 DENT
'.93 H?
+16.50 i
110 llo 4/89 DENT 37.99 H?
110 113 4/89 DENT 09.40 H9 110 130 4/S9 DENT 13.90 TH
+03.e0 111 55 4/S9 D EtlT 110.30 H) 4/89 D E'l T 5.85 7M
+2S,90 111 57 4/S9 CENT 6.95 T3
+14.00 111 93 4/89 D E!!T 5.0: 7H 3.30
+
111 107 4/89 DENT 6.51 09
+00.00 4/89 D E!!T 10.30 H3
+14.40 111 113 4/89 D E!!T 16.79 DC 110 54 4/89 D E!!T li.99 H9 110 106 4/39 D E!!T 10.35 7 P.
113 55 4/S9 DENT 106.03 H9 113 59 4/89 D E!!T 13.00 Hi 113 70 4/89 DENT 8.75 H9 114 54 4/89 D E tlT 34.10 H9 114 74 4/89 DE!!T 5.71 H9 114 80 4/S9 DE!!T 17.57 H9 114 106 4/S9 D E !! T
$6.74 H) 115 55 4/89 D E tlT 60.50 H9 115 59 4/89 DENT 5.c3 H9 115 79 4/89 DErlT 7.50 H9 115 81
39 DENT 14.33 H9 116 78 4/39 DENT 13.40 H) 116 80 4/89 CENT 09.36 H9 117 39 4/89 CENT 11.47 H9
+ 7.00 117 13 4/39 DENT 1o.03 H10 117 45 4/89 DENT 10.35 C10 4/89 DENT 7.33 H10 117 v3 4/89 D E!!T t.10 C10 117 71 4/39 DENT 5.t3 HS
+01.90 117 79 4/39 D E!!T 15.9e H9 117 81 4/99 DENT
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!NDICATION VALUE VOL!O LOCATION INCHE0 4/89 DENT 5.70 H9
+11.90 4/89 DENT
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+'.5.00 4/S9
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".71 Ci
+16.40 4/89 DENT 9.73 Ct 3.30
+
100 46 4/89 DENT 10.47 H10 120 50 4/89 DENT
- 5. 27 H10 100 50 4/89 DENT A.50 H9 100 54 4/89 DENT 7.09 H9 120 60 4/89 DFNT 11.09 H10 100 64 4/89 DENT 6.4% H10 100 70 4/89 DENT r.
4 9 H9
+19.00 100 74 4/89 DENT 17.40 H9 4.00
+
4/89 DENT 5.10 H9 5.40
+
4/S9 DENT 10.0t H9 6.40
+
4/89 DENT 01.90 H9
+16.70 4/89 DENT 3.57 C10 4/89 DENT 8.14 C9
+ S.00 4/89 CENT 9.89 C9
+-6.10 100 94 4/89 DENT 7.70 C9
+ 6.60 4/89 DENT 15.10 H9
+16.50 4/89 DENT 14.03 H9 1.60
+
102 100 4/89 DENT f.
80 C10 103 45 4/89 DENT 5.96 HS
+19.70 4/89 DENT 5.04 H9
+ 4.70 4/89 DENT 13.41 H9
+11.70 4/89 DENT 13.05 H9
+19.50-4/89 DENT 10.00 H9
+01.60 4/89 DENT 7.45 H9
+00.60 4/89 DENT 10.07 C10 103-47 4/89 DENT 11.84 H10 103 55 4/89 DENT 14.41 H9 103 63 4/89 DFNT 6.93 H10 123 71 4/89 DENT 5.33 H9
+ 9.80
(
4/89-DENT 9.40 H9
+10.60 4/89 DENT 7.0c H9
+17.50 4/89 DENT 6.41 H9
+00.70 103 107-4/89 DENT t.70 VC 103 117 4/89 DENT 15.33 C9
+13.60 103 101 4/89 DENT 5.40 C10 104 de 4/89 DENT 5.!0 H10 4/89 DENT 10.05 H10 i
104 56 4/89 DENT 3.14 M9
+1?.70 104 60.4/89 DENT 10.07 H9
- + 3.80 4/89 DENT 7. 0.1 H10 4/89 DENT 3.75 H10 4/89' DENT 9.19 C10 4/89 DENT 5.73 C3
+14.00 104 64 4/89 DENT 7.76 H10 104 66 4/89 DENT 6.46 HS
+01.00 4/99 DENT 10.51 H9 1.00
+
4/89 DENT-7.05 H)
+ 6.30 4/89 DENT-15.58 H9
+16.60 4/89 DENT 11.43 H9
+ S.90 104 70 4/89 DENT 10,64 H9 104 114.4/89 DENT 5.04 H9 104 100 4/89 DENT 10.91 C10 105 49 4/89 DENT S.93 M10 105 61 4/89 DENT 5.44 H10 105
.71 4/89 DENT 15.98 H9 105 77 4/89 DENT 3.96 H9 C 6.10 106 60 4/89 DENT 5.10 C9 106 110.4/89 DENT 8.09 H9 106 100 4/89 DENT"'
6.95 C10 107 49 4/89 DENT 14.80 H10 107 69 4/89 DENT e.10 H9 107 101 4/89 DENT 9.43 M10 107 107 4/89 DENT 5.01 H!0
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?UTAJE RCW LINE OUTAGE INDICATION V A L '.J E 70LT: L<; TAT!ON
!NCHE3 108 50 4/89 DENT
...t; H10 108 60 4/89 DENT
".:2 H9 109 68 4/89 LENT 3. 8. n H9 108 100 4/89 DENT
!. '.. s i H10 12S 108 4/89 DENT e 47 C9 4/89 DENT 6.93 H9
+ 9.80 4/89 DENT 6.59 H9 4/89 DENT 5.47 Md
+19.00 4/69 DENT 6.01 HS
+19.70 4/89 DENT 5.85 H3
+00.70 108 110 4/59 DENT 5.30 H9 128 114 4/89 DENT 6.91 H10 128 118 4/89 DENT 6.09 C9
+00.08 4/89 DENT 15.09 H9 11.18 109-61 4/89 DENT 05.2t H9 4/89 DENT 6.03 H9
+14.40 4/89.
CENT 11.53 C10 100 63 4/89 DENT 5.40 H9 129 65 4/89 DENT 5.01 H9 129 69 4/89 DENT-30.15 H9 4/89-DENT 8.95 H10 129 79 4/89 CENT 7.70 HT
+16.30 4/89 DENT 5.55 H7
+05.10 4/89 DENT 18.01 HS 4/89 DENT 8.99 09 1.30
+
109 95>4/89 DENT 6.13 H9
+13.70 109 111 4/89 DENT 5.31 C9 130 60 4/S9 DENT 6.61 H9 130 60 4/89 DENT 10.53 H10 4/89 DENT 6.24 C10
~ 130 64 4/89 I'E N T 26.75 H9 130 66 4/89 CENT 10.94 H9 130 80 4/89 CENT 9.78 H9 i
i 130 84 4/89 EENT 14.61 H9 130 96 4/89 OENT 3.3i H9
+19.10 4/89 DENT 5.50 H9
+00.00 130 100 4/S9 DENT e.05 H10 130 106 4/89 DENT 5.39 H9 130 108 4/89 DENT 16.20 H0 130 110 4/89 D'ENT 5.03 H9 130 110 4/89 DiCNT 5.09 H9
+13.65 131 59 4/89 Dl:NT 7.15 H10 131 65 4/$9 Dl!NT 06.93 H9 131 83 4/89 DE:NT 5.47 H7
+10.00 131 85 4/89 DI:NT 10.07 H9 131 101L4/89 DENT 39.67 H9 131 105 4/89 DENT 13.77 H9 131 107 4/89 DENT 08.04 H9 4/89 DENT 03.30 H9 131 109 4/89 DENT-30.19 H9
. 131 111 4/89 DENT 17.01 H9 131 113-4/89-DE1T e.S9 H9 130 66 4/89 DE9T-10.67 M9 130 68 4/e9 D E.4 T 6.90-H9 130 74 4/89 DENT 11.50 H9 0.60
+
4/89 DENT 7.71 H9 4.80-
+
130 100 4/89 DENT 13.54 H9 130 100 4/89 DENT 06.95 H9
-130 104-4/89-DENT 00.90 H9 130-106 4/89 DENT 9.s6 H9
- 130 108 4/89 DENT
.10.00 H9 130.
110 4/89 DENT 5.03 H9
- 133 63 4/89
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- 133.
-69 4/89 DENT 9.de H9 133 99 4/89 DENT 10.04 H9
- 133 101 4/89 DENT ko.13 H9 133 103 4/89 DENT 14.29 H9 I
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.s.......
...... rin j
P!snt CAL 7ECT CLIE'?C 'Ul!! 0
- .+u n nars.::: 00 i
Cutager 4/39
)
..............................................................;UTAGE f
QUERY:
SC 00 PLO? CE T9 DES DENTED, ALL ELEVA!!000. 4 i
I ROW LINE QUTAGE INDITATION VALUE 7'Lil LXATION INCHEC l
133 105 4/89 DENT 3 7.. ! t Hi 133 107 4/S9 DENT
! S. 0 2.
133 109 4/89 DENT c.85 H9 133 111 4/89 DENT E.40 H9
+!!.51 6
134 64 4/89 DENT
?.00 H9 l
134 70 4/89 DENT 14.61 H9 1
134 78 4/89 DENT 5.79 H9 l
134 80 4/89 DENT
".36 H10 l
134 84 4/89 DENT 6.11 H10 134 88 4/89 DENT 6.83
.?
134 90 4/89 DENT 7.68 H9
+11.90 4/89 DENT 05.36 M9
+13.30 v
4/89 DENT 10.47 H)
+14.90 4/89 DENT 13.50 H9
+16.80 4/89 DENT 16.11 H9
+18.40 134 96 4/89 DENT o.69 C9
+15.00 4/S9 DENT 5.55 C9
+.7.40 4/89 DENT 9.49 H10 1.90
+
134 98 4/89 DENT 3.70 H9 134 100 4/89 DENT 9.83 H9 134 100 4/89 DENT 8.66 H9 134 104.4/89 DENT 15.90 H9 4/89 DENT 10.45 H9
-134 106 4/89 DENT 13.60 H9 134 108 4/89 DENT 5.41 H9
--135 4/89
-DENT 6.04 H10 135 85 4/89 DENT 8.94 H10 135 87 4/89 DENT 6.34 H10 135 97 4/89 DENT 18.09 H10 4/89 DENT 8.30 H9 135 99 4/89 DENT 11.34 H9
-135 10' 4/89 DENT' 9.07 H9 135 10' 4/89 DENT 5.90 H9 136 6
4/89 DENT 5.90 H10 i
4/89 DENT 9.08 C10 136 70 4/89 DENT 6.84 H10 136 80 4/89 DENT 17.51 H10 136 80 4/89 DENT 11.80 H10 136 84 4/89 DENT 7.97 H10 4/89 DENT 10.!? H10 136 86 4/89 DENT 11.44 H10 136 86=4/89 DENT 11.01 H10-136 96 4/89 DENT 6.53 H9 136 98 4/89 DENT 11.47 H0 4/89 DENT 5.75 C9 3.70
+
137
'69 4/89 DENT
?.07 DH 3.$0
+
137 81 4/89 DENT 9.93 H10 137 83 4/89 DENT 14.57 H10 137 85 4/89 DENT 9.54 H10 137 87 4/89 DENT 11.01 H10 137 89 4/89 DENT 00.60 H10 137 91 4/89 DENT 6.61 H10 138 80 4/89 DENT 10.85 H10 138'-
84 4/8?
DENT 15.13 H10.
4/89 DENT 14.10 H10 138 86 4/89 DENT 18.08 H10 138 88 4/89 DENT 01.49 H10 139 77 4/89 DENT 7.18 H10 139 83.4/89 DENT 15.60 H10 139 85 4/89 DENT 05.11 H10 139 87 4/89 DENT 30.9" H10 139 89 4/89 DENT 01.96 H10 139-91 4/89 DENT 03.65 H10 l
139 93 4/89 DENT 6.55 H10 1
4/89 DENT 5.34 H9
+11.30 l
4/89 DENT 10.48 H9
+ 6.00 4/89 DENT 5.38 H9 1.70
+
..___.______..____.__.m
?. u
...... res, eve.....,
vee, s................ <.e......
e.
..,...........m.
i Plant CALVE!!T CLI7rs tlN T 2*.4 u. b rsre..:rt 22 i
Outage 4/89 l
QUERY: $G 20 PLOT or TUBE 2 LENTED. ALL ELE */A!!0tl0. 4c?? ;UTAqg r
P ROW'LINE OUTAGE IllD IC AT!0 tl VALUI YOLTE LOCATIC1 INCHE2
)
4/89 DENT t.?? H9 140 76 4/89 DENT 10.44 H10 140 80 4/89 DENT t.11 C9 4/89 DEtlT 13.54 H10 140 82 - 4/89 DEtlT
&.71 H10 140 84 4/89 DENT 00.!3 H10 4/89 DENT 9.06 Hic 140 86 4/89 DE!!T 30.97 H10 140 88 4/89 DENT 09.66 H10 140 90 4/89 DENT 24.92 H10 140 90 4/89 DENT 17.63 H10 TOTAL TUBES FOUND
=
545 TOTAL INDICATIONS FOUND 748
=
TOTAL TUBES IN INPUT FILE =
8519 TOTAL TUDES INSPECTED 8491
=
i i
?
i n
?
s s
-e, e
e m.
,-,---.wr,w..r y
e.
m s v re-'tu-
-+emw---
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e ~ 9 e - = v i y-m-g ew-iy - -- -
-y v wagew ww t e _ g+ -recum-r,---+-wg-g-wwy' v+ mm i y ' y yw*--w-wr-4
STEAM GENERATOR 22 I.
List with Plot of Tubes Plugged During April / July 1989 i
i 0
Steam Generator #22 Tuben Plucced Durino the 1989 Oqt;.agn i
ROM LINE REASON FOR PLUGGTI{G 25 63 Eddy current testing indication of 36% wall loss originating on the outsido diamotor of the tube at C3 + 6.90 inchos.
34 38 Eddy current testing indication of 95% wall loss originating on the outside diamotor of the tubo at i
HTS - SF + 6.00 inchos.
34 94 Eddy current testing indication of 36% wall loss originatin on the outsido diameter of the tube at DH + 0.00 nchos.
35 75 Eddy current testing indication of 28% wall loss
[
ot.iginating on the outside diamotor of the tubo at DH + 0.00 inches.
f 58 22 Eddy current testing indication of 51% wall loss originating on the outside diameter of the tube at VM + 0.00 inches.
t 58 98 Eddy current testing indication of 85% wall less originating on the outside diameter of the tube at HTS - SF + 0.80 inches.
(
i 64 52 Eddy current testing indication of 38% wall loss f
originating on the outside diameter of the tube at VM + 0.00 inches.
i 81 23 Eddy current testing indication of 49% wall loss originating on the outside diamottr of the tube at VM + 0.00 inches.
i 86 74 Eddy current testing indication of 44% wall loss l
originating on the outside diameter of the tube at i
HTS - SF + 0.60 inches.
[
94 26 Eddy current testing indication of 3C% vall loss
[
originating on the outside diameter of the tube et VM + 0.00 inches.
[
l i
I r
t
_.,,. -.,. _ - -. - - -. _ _ _. _ _ _.. _ _.... ~... _ _ _ _ _.,.. _. - _ _ _..
SG 22 PLOT OF TUBES PLUGGED. 4/89 CUTAGE PLAti?: CALVERT CLIFFS Ur IT 2 GOiERATCFt 22 OtITAGE:
4/89 t = KECH-M (101 TOTAL TUBES
- 8529 TOTAL TUBES ASSIGrerD : 10 8W DE8 sr4ys (a)
- 7
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Out. ape 4/89 QUERY:
SG 20 PLOT OF TUBE 5 P L U G G E T.,
-t.
00TAGE
.......................................'f9.......
ROW LINE OUTAGE IrlDICATI0tl VALUE V '.; L t S L9C A!! Cil I M C H E.:
25 63 4/89 PLUGGED M E C M HTS-PT 4/89 PLUGGED MECH-M CTS-PF 3.i 00 4 / 5 's PLUGGED MECH W HTS-PT 4/89 PLUGGED MECH-W CTS-PT i
34 94 4/89 PLUGGED MECH-M HTS-PT 4/89 PLUGGED MECH-W CTS-FF 35 75 4/89 PLUGGED MECH-W HTS-PT 4/89 PLUGGED MECH-W CTS-PT 4
58 22 4/89 PLUGGED MECH-W HTS-PF 4/39 PLUGGED MECH-W CTS-PP 58 93 4/89 PLUGGED MECH-W HTS-PT 4/S9 PLUGGED MECH-W CTS-PT 64 52 4/89 PLUGGED MECH-W HTS-Pr 4/89 PLUGGED MECH-W CTS-PF 81 23 4/89 PLUGGED hECH-W HTS-PT 4/89 PLUGGED MECH-W CTS-PT 86
._7 4 4/89 PLUGGED MECH-W HTS-PF 4/89 PLUGGED MECH-W CTS-PT 94 26 4/89 PLUGGED MECH-W HTS-PF 4/80 PLUGGED MECH-W CTS-PF TOTAL TUBES FOUND 10
=
TOTAL INDICATIONS FOUND 20
=
. TOTAL TUBES-IN INPUT FILE =
8519 TOTAL TUBES INSPECTED S491
=
- (
F 1
v.,-
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-,,,y
._.. _.=_.-.......-.._.
l 4
I P
L i
t STEAM GENERATOR 22
.1 4
J.
List with Plot of all Tubes Plugged l
f f
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.M CT2-PF 11 5 1 - e>.f e 7 t
- n.,,, t. e, w r... u.
1
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i e
1/87 PLUG 0ED ME7H-W C T.* - P r 13 30 3/37 PLUGGED MEGM-W HTS-PT
.jo, P
- n., a r. D
,a. r... u.. y..
m.._e.Py 20- 146 3/87 P Lt'G ;ED METH W H!I-PT 3/37, PLUGGED CT3-Pr 7
M, E H - M.s, 1
e 10/a P,.,Li. c e n.,
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r
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25' 63 4/89/
PLUGGED MECH-M HTf-PT
-4/89 PLU7GED MECH-M CT3-PT 29 129 11/82 PLUGGED MECH-W HIS-PF i
11/82 PLUGGED MECH-W CTS-PT i
31-121 3/87.
PLUGGED MECH-W H!s-Pr i
3/87' PLUGGED MECH-W CTC-P i
32-68 3/87 PLUGGED MECH-W HT3-PF 3/87 PLUGGED MECH-W CTS-PT I
34+
38 4/89<
PLUGGED MECH-W HTS-PT l
4/S9 PLUGGED MECH-W CTS-PT l
3 4./
70 3/87/
PLUGGED MECH-W HTS-PF
- i 3 / 8 "1 PLUGGED MICH-W CTS-PT 34 76 10/85,'
PLUGGED MICH-W HTS-PF r
10/85 PLUGGED MECH-W C'*E-PT
- t 34 94 4/89.
PLUGGED MECH-W HTS-PT I
4/89.
PLUGGED ME0H-W CTS-PT 35 '.
75 4/39 PLUGGED MECH-W HTS-PT l
4/39 PLUGGED MECH-W CTS-PT i
3 5 v.
91 05/84.'
PLUGGED MECH-W H*E-PT
+
[
05/94 PLUGGED MECH-W CTS-PF 36<
90 3/87+
PLUGGED MICH-W HTS-PT 3/87 PLUGGED MECH-W CTS-PT 37 / 89 3 / 9 7, /
P, LUGGED MECH-W HTS-PT
... c H. a, e.... o. r 3/a.
P U w-, t.,
w.
y 5 5,. 139 10/85, PLUGGED ME H-W HT2-PF g
10/85~
PLUGGEL MECH-W-CTS-PT 6
5 6 <, 90 3/87, PLUGGED MECH-W HT2-PF 3/97-P'UGGED MECH-W CTS-PT I
58 20 4/39-PLUGGED MECH-W HTS-PF l
4/89 PLUGGED MECH-W CTS-PF L
58i 98 4/89-PLUGGED MICH-W HTS-PT
}
- 4/99 PLUGGED MECH-W-CTS-PT s
64 52 4/89 PLUGGED MECH-W HT2-PF 4/u9 P ' U cs > m
- u. r.c. u.. w 4..e. o.r a
c-s 76v 88 3/87-
-PLUGGED MECH-W HTS-PT v
3/87 PLUGGED MECH-W C*'5-FF 80 84 3/*7-PLUGGED MECH-M HTi-FF 3/87 PLUGGED ME0H-W CTS-FF 81 23 4/89-PLUGGED MECH-W HT2-PT r
.. e - u...A.
- e...e. e e.
.<., S.9 P +.u c, <s D
r w.
81, 85 3/87.
PLUGGED MECH-W HTS-PF 3/87 PLUGGED MECH-W CTS-PT 8 1.'
97 05/84' PLUG;ED MECH-W HTD-PT
{
05/84 PLUG 1ED MECH-W CT3-PT i
8 2.C 96 3/87.,
PLUGGED MECH-W HTS-PF j
-3/97
= PLUGGED MICH-W C*S-PF 86 74 4/S9 PLU G :;ED MECH-W HTS-PF k
4/99 PLUG 7ED
. E T H -- W CTS-PT
- }
88-28 10/85.
PLUGGED M E.: H - W HT".-PF t
10/85 PLUGGED MICH-W CT3-PF t
94 26 4/S9 PLUGGED M I 'H -W HTS-PT t
~ - ~
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u R0W LI'.lE QUTAGE I!JCICATIO!!
.' A L '.J E....
7 > L T.. '. C A !! >!!
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PLUGGED M E C H '. '
H T '. - P F 3/87 PLUGGED MECH-W CTS-PF TOTAL TUI1ES FO U tJ D 25
=
TOTAL INDICATIOi10 FOUfJD 7
r l
tt I
i s
i n.-.
APPENDIX III STEAM GENERATOR INSPECTIOtt INFORMATION A.
Steam Generator Support Location and Nememclaturo B.
Steam Generator Tube Sheet Pattern and Numbering System C.
Eddy Current Inspection Acronyms
(
A.
Steam Cencrator Support Location and Momemclature 0
S TE AM G E N E ll A T O R S CCNPP IC2
~l vi s tic a n Hot. cot o Ltc surroels
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/
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l ALL wtasuntututs Aer c/t t o c/ t 39 i
on tuet Suppoets l
l
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4 ces urs
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Flows Contacting Supports Above 6th TS ftOWS NO OF $UPPorif 5
$UPPOftf DESIGNAtlONS t-9 8
vu I
10 35 3
DH VM. DC
~
l 36 65 6
H6. H7, OH. VM OC. C7. C8 74 59 9
VH. H8. H7. DH. VM DC. CF. C8 VC 901t$
9i H9 VH. He H7. DH VM, DC C7. C8 VC. C9 114 140 13 H10. H9. VH. H8. HF, DH, vu. DC. C7. C4. VC, C9 C 10
B.S/G TUBE SHEET PATTERM AND MHBERING SYSTEM f..._.__,__._____..__
o.
snou ->
f 2 R R R. 2 5.
- R 8 E R E R R R 3 E E R S V R R C 2 2 2
- i e i. i i.. i i. e i 433 mmu aos
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99 If? PI WI 4MI 0 4 ' tf> A NW WYW WfG **
C. T2DDY CURPENT IJL1PECTION ACPONYMG DNT DENT PI4 PLUG PV PERMEABILITY INC INCOMPLETE RT RETEST RES RESTRICTED RBD RETEST BAD DATA DI DISTORTED INDICATION UDS UNDEFINED SIGNAL INF INDICATION NOT FOUND SQR SQUIRREL PID POSITIVE IDENTIFICATION NT NO TEST CU COP?ER FIX FIXTURE TP TEMPLATE PLUG BLG BULGE IDI INSIDE DIAMETER INDICATION IDV INSIDE DIAMETER VARIATION INR INDICATION NOT REPORTABLE SLG SLUDGE XHR EXTRA HARD ROLL RTI ROLL TRANSITION INDICATION APT ABSOLUTE POSITIVE TPACE NDD NO DETECTABLE DEGRADATION i
NRH NOT ROLLED HOT l
l NRC NOT ROLLED COLD 5/88