ML17276A968
ML17276A968 | |
Person / Time | |
---|---|
Site: | Columbia |
Issue date: | 01/31/1982 |
From: | WASHINGTON PUBLIC POWER SUPPLY SYSTEM |
To: | |
Shared Package | |
ML17276A964 | List: |
References | |
RTR-NUREG-0588, RTR-NUREG-588 NUDOCS 8201260261 | |
Download: ML17276A968 (361) | |
Text
820f2b02b i 05000+97 820ii4 pOR ~OOC~ pDR PA ENGINEERING REPORT WNP-2 NUREG 0588 ENVIRONMENTAL EQUIPMENT QUALIFICATION REPORT PREPARED BY:
J.
6 .
L. Sullivan, L.
Lead Engineer, n ra.
quipment Qualification W.C. /- r3- Fz Technical Reviewer, W. E. Faraone, Lead Equipment Qualification APPROVED BY:
E. hoa l/z Iz. '.
s, Program Manager, Equipment Qualification I >(~
B. A. Holmberg, Man ger, WNP-2 ngineering-
TABLE OF CONTENTS VOLUME 1 PAGE
1.0 INTRODUCTION
1 2.0 CLASS 1E EQUIPMENT LIST 3, 3.0 ENVIRONMENTAL SERVICE CONDITIONS 5 3.1 NORMAL AND ABNORMAL CONDITION 5 3.2 ACCIDENT CONDITIONS - HARSH ENVIRONMENTS 3.2.1 . Temperature/Pressure Inside Containment 3.2.2 Spray 6 3.2.3 Radiation Inside and Outside Containment 6 3.2.4 Temperature/Pressure Outside Containment 7 3'.2.5 Flooding 9 3.3 MILD ENVIRONMENT AREAS IN SECONDARY CONTAINMENT 9 4.0 QUALIFICATION METHODS 11
- 4. 1 EQUIPMENT EVALUATIONS 11 4.2 TECHNICAL APPROACH 12 4.2.1 Equipment Inside Primary Containment 13 4.2.2 Equipment Inside the Reactor Building (Secondary Containment) 14 4.3 MARG IN 15 4.4 -
AGING 16
- 4. 5 DOCUMENTATION 17 5.0 QUALIFICATION RESULTS 19 5.1 EFFORTS TO DATE 19 5.2 ON-GOING ACTI VITIES 19 6.0 JUSTIFICATION FOR INTERIM OPERATION 21 7.0
SUMMARY
23
8.0 REFERENCES
25 APPENDIX A - CLASS 1E EQUIPMENT LIST APPENDIX B - ENVIRONMENTAL SERVICE CONDITIONS VOLUMES 2 AND 3 APPENDIX C - EQUIPMENT QUALIFICATION REPORTS
1.0 INTRODUCTION
The original equipment qualification requirements for Washington Public Power Supply System (Supply System) Nuclear'roject Number 2 (WNP-2)-were described in the PSAR. These requirements specified that NSSS equipment be designed to good nuclear industry practices and Balance of Plant equipment be qualified to IEEE 323-71. Initial equipment purchases were made to these requirements.
In November 1974, Regulatory Guide 1.89 was issued identifying IEEE 323-74 as the generally acceptable level for qualification of Class 1E equipment.
Based on construction permit requirements, the Supply System was not required to upgrade the qualification status of the equipment. A review was made to determine the impact of the revised requirements. Based on this review, it was determined that there was not a need for general upgrade of equipment.
NUREG-OS88 (Reference 1) was issued for comment in December 1979, to promote a more orderly and systematic implementation of equipment qualification pro-grams by the industry. It also provided guidance to the NRC staff for its use in ongoing. licensing review for new as well as for the near-term oper-ating license plants. The WNP-2 Construction Permit SER was issued prior to July 1, 1974; therefore, the basis for the WNP-2 review was the Category II requirements.
In February 1980, the NRC requested (Reference 2) that the Supply System perform a review of the existing environmental qualification program to identify the degree to which the program complied with the criteria and positions in NUREG 0588. Deviations from the NUREG were to be justified.
The Supply System provided contents to the NUREG in April 1980, taking exception to certain criteria and positions. Revision 1 of the NUREG was issued with answers and clarifications to the Supply System's concerns as
well as other concerns raised by the industry. Resolution of these concerns are still underway with a conclusion to be achieved as part of a planned rule making on this issue.
The Supply System has undertaken an aggressive equipment qualification pro-gram to assure all Class 1E equipment is qualified to NUREG 0588, Category II. All Class 1E equipment at WNP-2 has been identified. Normal, abnormal and accident service conditions have been defined for plant areas that could be exposed to a harsh environment. A detailed review of the available qualification data has been made for the equipment in harsh environments.
Actions have been initiated to upgrade the qualification documentation where deficient and to requalify components, when necessary. This report describes the methodology and summarizes the current status of the equipment qual ificati on activities.
Additional environmental qualification submittals will be made as qualifica-tion activities are completed. These submittals will document the actions that are being taken to resolve all qualification deficiencies and provide a justification for interim operation for equipment with deficient qualifica-tion documentation.
2.0 CLASS 1E E UIPMENT LIST A list of all Engineered Safety Feature Systems and associated Class 1E equipment was prepared. All parameters required to perform the qualifica-tion evaluations have been determined, including normal and accident opera-tional requirements, operating, time and manufacturer's data. The equipments locations have been verified to fully define the service conditions.
Class 1E was defined according to. IEEE 323-74 (Reference 3). The following definition was used:
The safety classification of the electric equipment'nd systems that are essential to emergency reactor shutdown, containment isolation, reactor core cooling, and containment and reactor heat removal, or otherwise are essential in preventing signifi-cant release of radioactive material to the environmerit.
Instrumentation for the operator to follow the course of an accident was, also defined as Class lE. This includes instrumentation identified as a result of TMI-2 Lessons Learned and Regulatory Guide.1.97.
Based on this definition, specific criteria were developed to determine the equipment that is Class 1E. The criteria and instructions for appli-cation of the criteria are contained in Reference 4. All plant systems were reviewed in accordance with these criteri a. The sources of informa-tion for the review were the FSAR, Technical Specifications, System Flow Diagrams, Electrical Diagrams and Technical Manuals. The review identi-fied the Class 1E equipment in each system by equipment number.
Additional operational data were determined during the documentation review. The following information was determined for each Class 1E component:
~ Use. The equipment use during accident and/or normal plant shutdown conditions. This field is based on the categorization of equipment suggested in Item 2, Appendix E of NUREG 0588.,
~5f F i . Th I lE<<i f i i or system, is required to perform or monitor. Safety f'quipment functions include emergency rea'ctor shutdown, containment isola-tion, reactor core cooling, containment heat removal, reactor heat removal and prevention of release, of radioactive material to the environment.
~ Re uired 0 erati n Time. The time a component is required to be functional or retain its pressure, integrity following a Design Basis Accident.
The application of these definitions and the codes used are fully described in Appendix A.
A plant walkdown was performed to determine the manufacturer's data for each Class 1E component. The walkdown included verifying manufacturer, model, serial number and location. These data were obtained directly from the nameplate for installed equipment. Equipment in the warehouse or on order was identified through applicable purchase and receiving documents.
During the walkdown, the location of the equipment in the plant was docu-mented to assist with the definition of the required service conditions and the calculation of the i ntegrated radiation exposure.
The operational, manufacturer's and location data for all Class lE equipment were tabulated and computerized. For the purposes of this submittal, the Class 1E equipment in primary containment and the reactor building are pro-vided. This list is included in Appendix A.
3.0 ENVIRONMENTAL SERVICE CONDITIONS The normal, abnormal and accident service conditions were defined for all areas of primary containment and the reactor building containing Class 1E equipment. The service conditions were defined as described below.
3.1 NORMAL AND ABNORMAL CONDITIONS The temperature, pressure and humidity ranges expected during normal opera-tion were defined. based on Reference 5 and 6. Abnormal conditions due to temporary HVAC failure are also defined in Reference 5 and 6. Appendix B presents the normal and abnormal conditions for primary containment and the reactor building.
The 40-year normal radiation dose is included in the radiation doses dis-cu ssed in Sec ti on '3.2.3 of this report.
3.2 ACCIDENT CONDITIONS - HARSH ENVIRONMENTS The primary containment and most areas of the reactor building will be exposed to a harsh environment following a postulated LOCA/HELB. A harsh environment is defined as:
I An area that, would be exposed to a significant increase in the maximum temperature, pressure and humidity during design basis events AgD/OR the total radiation dose (normal + accident) is above 10" rad.
3.2.1 Tem erature/Pressure Inside Containment The accident environments inside primary containment were defined according to Reference 5 and the WNP-2 FSAR (Reference 6). The accident profile, presented in Appendix 8, was determined from a General Electric analysis of the response of a BWR Mark II containment to a full spectrum of possible
LOCA/HELB. The accident conditions due to a main steam line break are enveloped by the specified profile. The margin of Tsat + 20oF has been included in the accident profile.
A plant specific analysis is being performed to assure that this profile is a conservative representation of the response of the WNP-2 containment.
3.2. 2 gS)~ra A demineralized water spray could be used in primary containment at WNP-2.
Spray impingement on Class 1E equipment in the vicinity of the spray header has been evaluated.
3.2.3 Radiation Inside and Outside Containment The accident radiation environments in the primary containment are being defined according to Section II.B.2 .of NUREG 0737 (Reference 7) and NUREG 0588, Rev. 1. The calculated accident environment is based on the most severe nonmechanistic design basis accident during or following which equipment must function. This includes consideration of the entire spectrum of FSAR Chapter 15 accidents which can lead to a degraded core condition.
The source term assumptions for postulated accidents are consistent with those defi ned in NUREG 0588 and Regulatory Guides 1.3 and 1.7. The source terms are calculated using the ORIGEN code (Reference 8)..
For the review performed in this report the radiation environment in the primary containment was defined per Reference 5. A plant specific evalu-ation is being performed to verify the adequacy of the GE equipment envi-ronment interface data. Reference 19 contains the methodology being used to perform'his'valuation.
The radiation environment in the reactor building is defined according to Section II.B.2 of NUREG 0737 (Reference 7) arid NUREG 0588, Rev. 1 and includes the sum of direct accident gamma dose, airborne gamma dose and 40-year normal gaoma dose. The airborne dose is conservatively based on the maximum primary containment to reactor building leakage rate.
Airborne activity in both the containment and reactor building was cal-culated using the plateout assumptions of NUREG CR-0009 (Reference 9).
The reactor building was divided into zones to define the equipment doses.
The worst target (Class 1 component with the highest dose) in each zone was then choosen. The total integrated dose (TID) to this component was calculated using the gAD-P5A computer code (Refer ence 10). This TID was used as the required qualification level for most equipment in the zone. In cases where a component was not qualified to the worst zone dose, component spec ifi c TID ' were calcul ated.
The methodology and results of the radiation evaluations are documented in Reference ll. Appendix 8 of this report contains a table of the radiation doses inside primary containment and the radiation zone maps for the reactor
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building. It should be noted that the reactor building radiation levels are
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six month integrated doses. Doses for equipment with shorter operating
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times were determined from the calculated packages in Reference 11.
The radiation levels in the Standby Gas Treatment (SGT) and Containment Atmosphere Control (CAC) areas are being redefined. More realistic pri-mary containment leak rate and air borne activity assumptions are being used. Preliminary results indicate substantially reduced accident doses in these areas. Final determination of the qualification status of equipment in these areas is awaiting completion of this activity.
3.2.4 Tem erature/Pressure Outside Containment Class 1E equipment in the reactor building could be exposed to two postu-lated accident types: a LOCA/HELB in primary containment or an HELB in the
reactor building. These conditions were determined from References 5, 6, and 12. As explained in Section 4.0 of this report, equipment is evaluated to the worst accident environment in which it is required to function.
A LOCA/HELB in primary containment would cause an increase in the reactor building s temperature and humidity. The maximum conditions have been defined as Tmax )50oF and 100K R.H. (Reference 6). An evaluation is currently being performed to determine the actual time/humidity profile.
The effects of all postulated high energy line breaks in the reactor building were determined. Breaks in the following high energy lines were considered:
26" main steam line (envelops feedwater line break) 4" RCIC steam line 6" RWCU steam line 4" RWCU steam line 4" Auxiliary steam 3" Auxiliary steam Temperature/pressure profiles were developed for all areas that could be affected by these breaks. These profiles are presented in Appendix B. The relative humidity was assumed to be 100 percent to obtain the maximum accident temperatures.
The accident profile due to a main steam line break in the steam tunnel was determined from Reference 5. The remaininq temperature/pressure'profiles in the reactor building were developed using the RELAP4 and CONTEMP4 computer models (References 13 and 14). Detailed modeling of compartments and fluid flow paths were made. Heat sinks were modeled using appropriate heat transf er correl ati ons.
safe shutdown analysis is currently underway for all postulated acci-
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A dents. The results of this analysis may modify the worst environmental conditions for some components. ~ At the conclusion of this analysis,
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additional component evaluations will be performed, if required.
3.2.3 ~Fl oodi o The top of the main vents from the drywell to the suppression pool are approximately 12 inches above the drywell floor. This is the maximum flood level since any excess water would drain to the suppression pool. No Class 1E equipment or connections are located between the diaphram floor and the top of the downcomer vent pipes.
The flooding due to postulated high energy line breaks in the reactor building is being evaluated. Upon completion of the evaluation, if any Class lE component is found to be located at or below the flood level, it will be relocated. If relocation is not feasible, it will be protected or qualified for submergence.
As required by NUREG 0803 (Reference 15), the effects due to line breaks in the Control Rod Drive system have been evaluated. No safety related equip-ment would be submerged due to a break in this system (Reference 16).
3.3 MILD ENVIRONMENT AREAS IN SECONDARY CONTAINMENT A mild environment is an area in which the maximum temperatures, pressures and humidity are not expected to chanqe significantly during or following design basis events. In addition, the cumulative radiation dose to equip-ment in these areas is below 104 rad (Reference 17).
Some of the motor control center rooms in the reactor building are classi-fied as mild environments. These rooms are isolated and serviced by Class 1 HVAC systems so the temperature, pressure and humidity conditions will not
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change significantly. Also, the total radiation dose (normal + accident) in these rooms is less than 104 rad.
The fol'lowing service conditions for these areas have been determined:
max
= 108 "
Pmax = atmospheric Radiation <104 rad TID 4.0 UALIF I CATION METHODS The purpose of the equipment qualification evaluations is to ensure that all Class 1E equipment will perform its safety function during its installed life and in the harsh environment following a LOCA or HELB. To accomplish this, the Class 1E equipment at WNP-2 was evaluated in accordance with the guidelines in NUREG 0588, Category II. The Equipment Qualification Reports in Appendix C summarize the evaluations that have been performed. Backup documentation and calculations are contained in vendor qualification files on file at the Supply System's offices.
4.1 EQUIPMENT EVALUATIONS The following steps are involved in evaluating the qualification of the Class 1E equipment:
- a. Data Collection All available test data and analyses were sought for the Class lE equipment. Data sources included the equipment vendors, the NSSS supplier (General Electric), the architect/engineer (Burns and Roe) and other utilities with the same equipment. Additionally, the Supply System is participating in the generic qualification activities of the BWR Utility Equipment Environmental Qualifica-tion Group and the EPRI Equipment Qualification Data Bank.
- b. Acce tance Criteria Definition The acceptance criteria to which Class 1E equipment qualification plans, tests and analyses are evaluated have been developed.
These criteria are based on NUREG 0588, Category II, and IEEE 323-71. The Supply System Engineering Procedure EDI-4.8, titled "Acceptance Criteria for WNP-2 Safety-Related Equipment qualification" (Reference 18), documents the criteria that have been developed. Section 4.2 of this report highlights the major points of the acceptance criteria.
c~ Documentation Review The qualification data are evaluated to determine whether the equipment is qualified in accordance with the acceptance cri-teria. Supplementary analyses are performed to complete quali-fication, when necessary. The Equipment gualification Reports in Appendix C sumoarize the evaluations that have been performed.
- d. Resolution of ualificati on Defici encies In cases where insufficient documentation is available, requalifi-cation is initiated. The requalification method is chosen based on a number of factors, including the available test data, the severity of the accident environment and the complexity of the component. Evaluations, such as analysis of the materials of construction and failure modes and effects analysis, are performed when required. Replacement, testing, shielding and relocation are also used to resolve qualification deficiencies.
4.2 TECHNICAL APPROACH The technical approach described below, contained in Reference 18, were used to determine the qua 1 if i cati on level of each component. They meet the guidelines in NUREG 0588, Category II, and in many cases are more conservative.
The selection of qualification methods is based on the severity of the acci-dent conditions and the function of the component. Two controlling types of harsh environments have been determined at NNP-2.
This j 1. Severe Harsh, environments environment is created by a LOCA/MSLB inside containment and is characterized by high temperatures, high pressures, high radiation levels, steam conditions, 100K relative humidity and demineralized water spray.
This condition is found only in the primary containment.
- 2. Moderate Harsh environments This environment is created by a steam line break outside containment and is characterized by High to Moderate temperatures', steam conditions and 100K relative humidity. High pressures, radiation, spray or flooding are not present in this environment.
These environments can cause adjacent plant area environments to change and produce harsher environments than would be present during normal operation.
Most of the Reactor Building will experience a change from its normal envi-ronment due to a LOCA in primary containment. With the exception of the .
SGTS, Hyrogen Recombiner, and the RCIC pump room which have high radiation
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levels due to processing containment atmosphere, moderate radiation, moder-
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ate temperature, and 1005 humidity characterize their conditions. Signifi-
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cant changes in pressure, steam 'conditions, spray or flooding do not occur.
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In conformance with f
Appendix E of NUREG 0588, all.safety related equipment that must function during a harsh environment has been classified. The specific environment that this equipment will experience has been provided in the Equipment gualification Reports in Appendix C.
4.2.1 Equi ment Inside Primar Containment In the containment, where equipment will experience the direct effects of a LOCA, a rigorous set of criteria was established. This approach was taken due to the severe harsh environmental conditions that occur. A complete sequential test (aging, radiation, temperature/pressure under steam condi-tions) was a required element of the documentation. Test data was evaluated to IEEE-323, 1974. The evaluation included verifying the qualified life, radiation exposure, steam temperature/pressure levels and duration were adequate to envelop the containment environmental service conditions. When actual test durations were less than the required period of operability, evaluations were performed to establish the test duration deficiency was adequately covered by a greater than required post LOCA test condition. The test results were reviewed to verify that the component met its required performance characteristics before, du'ring, and after testing.
4.2.2 E ui ment Inside the Reactor 8uildin Secondar Containment)
Most Class 1E equipment in the reactor building is not required to function for both the steam line break accident (moderate harsh environment) and the secondary harsh environment created by the LOCA inside containment.
For equipment in moderate radiation zones that must function during the LOCA but is not required to function to mitigate the effects of a steam line break, a less rigorous evaluation criteria was used. Analysis of material thermal and radiation capability was allowed. In most cases elevated tem-perature testing with steam conditions and 100K relative humidity testing data was available to demonstrate the components'apability to the thermal and humidity conditions. Missing in the documentation was information addressing the components capability to withstand the radiation levels.
Evaluation to verify that the material functional threshold levels were greater than the service conditions was performed to supplement the docu-mentation. This material radiation analysis was limited to equipment that does not contain sensitive transistor and integrated circuit solid state components.
The functional radiation thr eshold for a component was based on the material and functions of each non-metallic part. The applicable material property (i.e., compression set, elongation, etc.) was considered. In some cases the material functional threshold was found to be greater than the radiation level that first
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causes a noticeable change in the material (threshold level). ~ These cases were generally static applications such as gaskets and
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O-rings. ~
Naterial handbooks were consulted to determine the humidity susceptability of selected materials of construction such as gaskets and 0-rings. Test data was required for nonsealed electrically energized parts such as motor wi ndings and solenoid coils.
For equipment located in the Reactor Building high radiation zones previ-ously mentioned, radiation testing documentati on which demonstrates the components capability was required.
For equipment that must function during a LOCA and also function to miti-gate the steam line break accident, testing to the steam line break con-ditions was a required element in the documentation review. However, sequential radiation testing in conjunction .with the steam line break was 1 not a required element. Naterial radiation effects evaluation as described previously was allowed. This approach is acceptable because it is not required to postulate that both these events-occur simultaneously. There-fore, the steam conditions and the radiation conditions would not occur simultaneously but they are produced by separate accidents.
4.3 NRRG IN Nargin, or conservatism, is added to all aspects of the equipment quali-fication procedure. This is done to account for normal variations in commercial production of equipment and reasonable errors in defining acceptabl e perf ormance.
The qualification requirements were established using conservative assump-tions and analytical procedures. The incontainment thermal hydraulic pro-files contain the Tsat + 20oF margin. The reactor building thermal hydraulic profiles have been developed using conservative computer codes.
The required radiation doses were developed using conservative source terms, as discussed in Section 3.2.3 of this report.
A minimum operating time of one hour was used for most of the equipment that is reguired to perform its safety function within a short time into the event and, once its function is complete, subsequent failures are not detrimental to plant safety. In the specific cases where less than one hour was used, a system and component function evaluation was performed to determine a conservative operating time.
4.4 AGING The purpose of evaluating equipment aging is to assure that equipment will perform its safety function in an advanced life state during or following the hostile environment following a LOCA/HELB.. The program developed by the Supply System addresses this issue within the context of current aging technologies.
A qualified life has been determined for all Class lE equipment in pri-mary containment. The life is calculated based on accelerated aging test data and current analytical techniques (Arrhenius model, 10 C Rule).
Manufacturer's recommendations are also evaluated when determining a qualified life.
Aging of equipment in the reactor building will be addressed through pre-ventive maintenance/surveill ance programs. These programs will assure that all Class lE equipment in these areas will be capable of performing its safety function during and following an accident. Inspection pro-grams are being developed to track component degradation. Rebuild and replacement schedules are being established based on materials known to be age susceptible. Operating experience at other plants and manufac-turer recommendations are being utilized. Since the reactor building is accessible during plant operation, these activities will be performed on
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a regular basis. ~ Component degradation will be tracked and equipment
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upgraded as required.
Cormon mode failure of Class 1E equipment in the reactor building is an unlikely event, in any case. Accident temperatures are low and radiation doses are often below the damage threshold of the components. Therefore, the stresses on components would not be increased significantly to cause common mode failure of equipment in an advanced life state.
4.5 DOCUMENTATION The Equipment gualification Reports in Appendix C summarize the qualifi-cation evaluations that have been performed. Tests, analyses and other documentation used to demonstrate that each component is qualified for its application and meets its specific performance requirements are on file at the Supply System.
5.0 UALIFICATION RESULTS The environmental qualification status of the components identified on the
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Class 1E Equipment List (Appendix A) has been evaluated. The status of the
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evaluations is presented on the Equipment Qualification Reports in Appendix
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C.
5.1 EFFORTS TO DATE i
All of the installed Class 1E equipment and most of the equipment yet to be installed has been identified. The available qualification documentation has been obtained and reviewed for this equipment. The reviews, supple-mented by engineering analyses, have determined that most of the components meet the requirements of NUREG 0588, Category II. None of the components failed the qualification testing; but, in some cases, it has been determined that there is insufficient documentation to support complete qualification.
These cases are being resolved as the qualification evaluation is completed.
The method for completing the qualification is included on the individual Equipment gualificati on Reports in Appendix C.
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5.2
~ ON-GOING ACTIVITIES Evaluation and requalification of Class 1E equipment at WNP-2 is continu-ing. The following activities are being performed:
~ gualification documentation is being obtained for recently identified equipment. This includes equipment being procurred to address Reg. Guide 1.97 concerns.
~ LOCA tests have been completed on teqminal blocks. Test speci-fications are being developed for five other equipment types.
~ Evaluation of fourteen (14) BWR NSSS generic instrument types is in progress.
~ Certain components, such as limit switches, solenoid valves and motor operators, are being replaced with components qualified to IEEE 323-74.
~ Where required, motor control center rooms are being shielded from direct radiation to make them mild environments (TID <104 rad).
~ A preventive maintenance/surveillance program is being developed to address equipment aging.
~ The impact of NUREG 0803 on the equipment qualification program is being evaluated.
In addition to the activities to resolve component specific qualification deficiencies, the Supply System is pursuing a number of generic qualifica-tion activities. These activities, which are being performed to keep
'abreast of the current equipment qualification technology, include the foil owing:
~ The Supply System is a member of the EPRI Equipment gualifica-tion Advisory Group. The Supply System is also participating in the BWR Utility Equipment Environmental gualification Group.
~ All new Class lE equipment located in harsh environment areas currently being ordered are specified to be qualified to IEEE 323-74 and 344-75.
~ All IE Bulletins, Circulars and Information Notices are being reviewed to determine their impact on the WNP-2 equipment qualification program.
6.0 JUSTIF ICATION FOR INTERIM OPERATION To obtain an operating license for
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WNP-2, the Supply System has been noti-fied that all safety-related electrical equipment shall be reviewed using
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NUREG 0588, Category II, "Interim Staff Position on Environmental gualifica-
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tions of Safety-Related Electrical Equipment", as the'asis for determining the adequacy of the safety-related equipment's documentation. Furthermore, the NRC staff has informed the Supply System that any corrective action determined as a result of this review must be completed before a full power license will be granted.
I The Equipment gualification Program for WNP-2 is in process and,,as demon-strated by this report, many components have been shown qualified by exist-ing documentation. However, it is unlikely that all safety-related electrical equipment will be fully qualified before desired start-up of WNP-2. Therefore, a Justification for Interim Operation (JIO) of WNP-2 will be performed and submitted at a later date to provide a basis for operation.
It is expected that this interim operating period would not exceed one refueling cycle. ~
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This study will
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evaluate the following six safety objectives:
- l. Emergency Reactor Shutdown
- 2. Containment Isolation
- 3. Reactor Core Cooling
- 4. Containment Heat Removal
- 5. Core Residual Heat Removal
- 6. Prevention of Significant Release of Radioactive Material to the Environment
- 21.-
The primary systems and equipment necessary to achieve these six safety functions have been identified and are provided herein (Reference Appendix Safety Function Data field).
The basic design of WNP-2, which incorporates the BWR industry design prac-tice of defense in depth, diversity of functi on and separation of divisions, provides other means of accomplishing the six safety functions. The JIO for WNP-2 will evaluate other means that can be used and determine the degree of influence of harsh environments on these alternate systems and equipment.
Preliminary investigati on on WNP-2 and studies of this nature by other BWR plants of similar design provide confidence that this evaluation will show WNP-2 can achieve the six safety functions identified above without comple-tion of the full qualification prog'ram prior to full power operation. In the event that this evaluation also shows that some equipment requires qualification prior,, to full power operation, qualification programs will be scheduled and completed consistent with the full power operating schedule.
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7.0
SUMMARY
This document summarizes the evaluation of environmental qualification of Class 1E equipment in WNP-2, performed in accordance with NUREG 0588, Category II. It provides a summary of the Environmental gualification Program that is being undertaken by the Supply System. The program will ensure that all Class lE equipment will perform its safety-related function during normal, abnormal and postulated accident conditions.
The present status of the evaluation is as follows:
II
~ Normal, abnormal and accident service conditions in primary con-tainment and the reactor building (harsh environments) have been defined. Flooding is currently being evaluated. The humidity in the reactor building due to a LOCA in containment is also being reevaluated. Radiation doses in primary containment and the SGT and CAC equipment areas are being reevaluated to reduce conservatisms.
~ All Class 1E equipment has been identified by the tag number. The location and manufacturer's data for most of this equipment have been determined.
~ The qualification status of identified Class 1E equipment has been determined. The status of some equipment not installed will be determined when additional data is received.
~ Actions have been taken to resolve qualification deficiencies.
2792 Class 1E components have been identified. gualification data has been evaluated and a qualification status has been determined for 2662 (95K) of these components. The status of the equipment evaluations is as follows:
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~ 1997 components are qualified to the environmental service conditions
~ 171 components are being qualified by modification of the environment
~ 108 components are being replaced or purchased qualified
~ 51 components are being type tested
~ 297 components are being qualified by engineering evaluations or testing.
~ 168 components require additional data to determine the qualifi-cation status The qualification status of each component is described on the Equipment gualification Reports in Appendix C.
This report documents the current status of the environmental equipment qualification program at NNP-2. Additional submittals will be made as qualification activities are completed.
I
8.0 REFERENCES
- s. NRC Office of Nuclear Reactor Regulation, "Interim Staff Position on Environmental gualification of Safety-Related Electrical Equipment",
NUREG 0588, Rev. 1.
- 2. NRC Division of Project Management, "gualification of Safety-Related Electr ical Equipment", letter from D. F. Ross (NRC) to Operating Licenses Applicants, February 1980.
- 3. The Institute of Electrical and Electronics Engineers, Inc. (IEEE),
"IEEE Standard for gualifying Class lE Equipment for Nuclear Power Generating Stations", IEEE Standard 323-1974; 1974.
- 4. EDS Nuclear Inc., "Review of lE/1M Equipment Lists for Safety-Related Systems", Project Instruction No. 7, Job No. 1140-001, Revision 3, October 12, 1981.
5.~ General Electric Environmental
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Design Specification No. 22A3008, R ev i si on 5, April 1977.
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- 6. Washington Public Power Supply System, "WNP-2 - Final Safety Analysis Report".
- 7. NRC Office of Nuclear Reactor Regulation, "Clarification of TMI Action Plan Requirements", NUREG 0737, Rev.,0, October 31, 1980.
- 8. ORIGEN, "Isotope Generation and Depletion Code", RSIC Computer Code Collection, Oak Ridge Nati'onal Laboratory, Updated September 27, 1979.
- 9. NRC Office of Nuclear Reactor Regulation, "Technological Bases for Models of Spray Washout of Airborne Contaminants in Containment Vessels", NUREG CR-0009, 1978.
- 10. gAD-PSA, "Point Kernel General Purpose Shielding Code", RSIC Computer Code Collection, Oak Ridge National Laboratory.
ll. EDS Nuclear Inc., "WNP-2 Shielding Evaluation", Report No.
01-0740-1152,'evision 0, April 1981.
- 12. Washington Public Power Supply System, "WNP-2 Subcompartment Temper-ature and Pressure Analyses for High Energy Pipe Breaks in the Reactor Building", Memo ED-CDS-81-05, May 27, 1981.
- 13. Idaho National Engineering Laboratory, "RELAP4/MOD5, A Computer Program for Transient Thermal Hydraulic Analysis of Nuclear Reactors and Related Systems", Volumes I and II, ANCR-NUREG 1335, September 1976.
1
- 14. CONTEMP4/MOD2, "A Multicompar tment Containment Systems Analysis Program" TREE-NUREG 1202, February 1978.
- 15. NRC Office of Nuclear Reactor Regulation, "Generic Safety Evaluation Report Regarding Integrity of BWR Scram System Piping", NUREG 0803.
- 16. Washington Public Power Supply System, "Supply System Response to NRC SER Issue - Pipe Breaks in BWR Scram Discharge Volume", Memo
- 0. Vosburgh to C. D. Taylor, December 30, 1981.
- 17. EPRI, "Radiation Effects on Organic Materials in Nuclear Plants",
Report NP-2129, Project 1707-3, November 1981.
- 18. Washington Public Power Supply System, "Acceptance Criteria for WNP-2 Safety Related Equipment gualification",,Engineering Instruction No.
EDI-4.8.
- 19. Washington Public Power Supply System, "Interim Shielding Evaluation Radiation Report", letter No. GO-2-82-24 from G. D. Bouchey (WPPSS) to A. Schwencer (NRC), January 11, 1982.
Appendix A contains the following information:
~ Class 1E List Users Manual: a description of the use fields and A.l
,abbreviations on the Class lE List
~ System Code List: a list of system abbreviations used on the Class lE Equipment List
~ Component Table: a list of the component abbreviations used on A.14 the Class lE Equipment List
~ Class lE Equipment List
I WNP-2 lass 1E E ui ment List Users Manual: Description of codes used on the Class 1E list Column Desi nation Descri tion
- 1. CONTRACT The contract under which the equipment was purchased.
The contracts beginning with 02 and Contract 59 were with the NSSS supplier. The two-digit contracts are for equipment purchased through our A/E and the three-digit contracts indicate equipment purchased through contrac-tors at the construction site.
- 2. COMPOSITE NO. The composite, such as instrument rack or valve, on which a component is located.
- 3. EQUIPMENT NO. The equipment piece number (EPN) is listed. It is com-posed of the system designation (a complete list is enclosed), a component code ( list enclosed) and a unique identifier.
- 4. MFG Manufacturer: Contains the code prepared for the indus-try by Southwest Research Corporation indicating the com-pany who manufactured the equipment. In a few cases where the manufacturer has not been determined, the sup-plier's code was put in this column until the manufac-turer has been determined.
- 5. MFG MODEL NO. The manufacturer's model number. In the cases where this has not been determined, General Electric purchased part drawing number or other applicable information is s upp lied.
A. 1
The Qualification Identification is a six-digit number indicating a file which contains all the qualificat',
documentation for that EPN along with summary forms plant walk-through records.
Level assigned to equipment. An identifier which will permit the sorting of the 1E/1M list into major pieces of equipment, instrumentation and subcomponent parts.
Level 1: Class 1E/1M composite equipment which requires qualification of the overall assembly. Each composite piece of equipment will be identi-fied with a unique Equipment Piece Number (EPN) and will have the symbol
"+" added to the end of the EPN. Motor operated valves would be listed's composite equipment with a level designation of 1.
Other examples would include the diesel ator skids, pump skids, air handling units, filter/dryer assemblies, air compressors, etc.
Level 2: A Class 1E/1M component or instrument function which requires individual qualification.
The instrument function is described by an instrument loop which could include a sensor, a switch, an alarm, an indicator and/or a controller. Whenever an instrument loop is identified as Safety-Related, the sensor will receive a Level 2 designation and all other instrument loop components will be designated Level 3.
A.2
Example 1: For a motor-operated valve, the valve body, valve motor, and external limit switches (if they have a Safety-Related function) are all Level 2 components.
Example 2: An instrument consisting of a flow element, flow transmitter, flow switch and flow indi-cator would have the flow element as Level 2 with the other components as Level 3.
Level 3: Any 1E/1M instrumentation component not included in Level 2.
Example: A flow transmitter associated with a 1E/1M flow element would be designated as Level 3.
Level 4: A subcomponent of a class 1E/1M component.
. Example: Internal limit switch to motor operators for valves,'ropping resistors, pressure trans-mitter circuit boards, wiring, indicating lights, etc.
- 8. EC The Class 1 action that a piece of equipment or a system is required to perform or monitor, that makes it Safety Related.
J A component may provide one or more of the safety func-tions listed below.
'Smbol Function A. Emergency Reactor Shutdown including SCRAM Signals and Reactivity Insertion.
A.3
~Sibol Function B. Containment Isolation I
Bl Primary Containment 82 Reactor Building C. Emergency Core Heat Removal
- 0. Containment Atmosphere Control E. Core Residual Heat Removal, including Long-Term Cooling F. Prevention of the Release of Radioactive Material to the Environment G. No Active Safety Function but a Passive Integrity Function H. Emergen'cy Electrical Power Systems, AC and 0 Instrumentation to Follow the Course of, an Accident Compartment Heat Removal for Equipment Oper-ability or Personnel Habitability
- 9. PLANT LOCATION The location of the component within the plant by build-ing, el evati on and coordinates.
A.4
10.~ Q.S.
~ Qualification Status (second column) indicates the envi-ronmental qualification of the equipment. The following list shows the meaning of the codes used.
A - Acceptable, thermal aging completed B - Acceptable, thermal aging being covered by surveillance C - Acceptable, not installed D - No documentation in files Being requalified by modification of the hard-ware or the environment M - Being requalified by analysis N - 'ot Acceptable, requalification method not yet determined P - Purchasing qualified replacement R - 'ot reviewed T - Being requalified by test The first column shows the seismic qualification status.
- 11. F/0 HOURS The time, in hours, a component is required to function t
following an accident.
- 12. EQUIPMENT A description of the equipment function.
DESCRIPTION A.G
- 13. DRAWING The plant PAID .on which the component appears.
- 14. USE Contains codes which describe equipment use during a .-
dent and/or normal plant shutdown conditions. The USE field is based on Item 2 Appendix E of NUREG 0588.
The "USE" input field is a two-digit field. The first digit shows the equipment operability requirement for accident mitigation and the second shows the equipment operability requirements for Hot or Cold shutdown conditions.
X X The equipment is not required before, during or after an accident.
Example: Equipment in this category provides no act e function, but may provide a passive func by containing radioactive material outside the Reactor Building. It need not be qualified to demonstrate operability, even under non-accident service environments.
Equipment that will experience the environ-mental conditions of design basis accidents for which it must function to mitigate said accidents, and that will be qualified to demonstrate operability in the accident envi-ronment for the time required for accident mitigation with safety margin to failure.
A.6
Equipment in 8
this category is required for accident mitigation of accidents analyzed in the FSAR. This includes: pumps, valves, electrical equipment, instrumentation to follow the course of an accident, etc.
Equipment will experience environmental condi-tions of design basis accidents through which it need not provide an active function for mitigation of said accidents, but through which it must not fail in a manner detrimental to plant safety or accident mitigation, and that will be qualified to demonstrate the capability to withstand any accident environ-ment for the time during which it must not
, fail with safety margin to failure.
Equipment in this category must not actively fail in a manner detrimental to plant safety, e.g., a motor operated valve that is normally shut would be categorized as a "2" if its inadvertent opening would be detrimental to plant safety. Equipment that provides only a passive integrity function on a potentially contaminated system will be categorized as a "2" and will have a "G" placed in the "EC" column.
Category 2 will include all manual boundary, integrity, test and root valves which may be exposed to post-LOCA and radioactive drain systems components (FDR and EDR).
Equipment that will experience environmental conditions of design basis accidents thr which it need not function for mitigation said accidents, and whose failure (in any mode) is deemed not detrimental to plant safety or accident mitigation, and need not be qualified for any accident environment but will be qualified for its nonaccident service environment.
Example: Equipment in this category is limited to the 1E/1N equipment in the "harsh environments" which is Safety-Related only to prevent the release of radioactive material and will not be exposed to'ost-LOCA radioactive fluids.
This category will include the components of the Reactor Water Clean-up System downstr of the second containment isolation valv Equipment that will not experience environmen-tal conditions of, design basis accidents and that will be qualified to demonstrate opera-bility under the expected extremes of its accident service environment. This equipment would be located'outside the Reactor Building.
Second Digit X X The equipment is not required to operate to shut down the plant during normal conditions.
A.8 4
The equipment is required to operate for Hot Shutdown only during normal plant conditions.
The equipment is required to operate for Cold Shutdown only during normal plant conditions.
The equipment is required to operate for both Hot Shutdown and Cold Shutdown during normal conditions.
A.g
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1 0 3 0 )72'N+T)fo2~",, g,.g.-"'... 'p," ":.; T;-.. ),. ~.--.'=~,,gi, 'g>>.'-..~' ",1324 ..
71 0
CAC HR-1 A+ CAC EHC 1A C332 SA213<<7317 S.ST ,'09007 2 1 0 0 09 2 R, 580 HT/6 ~ 6 ~ R604 AB 1320 A C 71 CAC HR f84 - "' ": CAC'E4C+flf - ",~."-C3$ 2'P'f511213'3kf, 845m" '<" '"k~ill90bf >>: v."-'g'lV:-' "0 -'-: -"
2 0 37 KM FREHEATER -
N551 -" E2 1 0 71 2 0 ;
~ ".'.'..,.'-,",."R,:5/3.,Ni5)$ 1$ ',;. 'j~-'= .'.'R60%.~'Ag~g": j,- -"P:;=-'.':";.".,@ 5R"l;.":...*, 432d: .
124 CAC EKO IA/FCV 1206 NH91 %10001 2 1 0 0 09 2 0 R 575 Le9/Sod R611 AN 1320 71 .CiC-EKO~ia - ".'-"." '..I 206;,'.. -'4S5i6(7gF3La~,-.-'.='=:,',:=-.:;, iiOd 02 "".'::--.'.2 .::..:;4 .0 '=.-:..., .. 33 4
..3... 0 8551 F2 1 0 I
='->> *';
~A 2 0 W
,. R 510 0 ~ 8/6 ~ 5 .','," H2E2L18 j..ii:-".">> ..
-.=- R509 '-='= AN
'H6 '." ---',..; -
~,.;,, -.=: 4820
. 1 0 71 CAC EHO 2A 1206 NH91H2070F3L2 110001 2 1 0 0 P N 2 0 R 578 No5/6 ' AN 1320 1.2 i
4 12A CAC EHO 2A/FC'0 l206 'hHkfal%002F2218 ifddOI 2 0 0 P Y" R5II~3L 2 0 lLM8 .As2LY>M Gl 1 '551 1 0
~-f
y ff ~ 1>>ff 4)>>>> ~ ~ ~
MASHINofON FOSLf5 PdllEIl SUPPLY SYSTEll CONTRACT LV EC COflPdkirE NO'"';"
OESCRIFTION
": 't& k~i':-
-taUIPN>>EAt -AO>':: ','FO)>-"~'."=.+@F4'tl'dd(C.%8i;g,;'-=.-"',;:-'>6Ib ;;,.'-PEST '-.'t.;-'ANL":-". F/0.'-':
DRA1IINO
'i"":-I SL---'i II C'REA, USE
>> t:-'QUIPHENT foal" Hl.....
CAC 0 IR9 2 0 R 573 N~S/Yi '="-g."'"'"'.'~,-'7 "-'!-".s'".'i gN"'-'. ' :" ~ '-"'- ="" =:'"'-4320.,"
42A CAC EHO 28/FCV 1206 NH91III002F2118 110001 2 I 0 0 09 P Y 2 D R 563 6eS/Nc5 AN 1320 71 cite,, EHQ '3$ .'.*"206, ',"N$9i)2D70F362, '.'"'..: '"-.;-.-,'.itogd4'~.' 2,'I-'-: =-. f'.o.' ...., '- 33 P H D
N 554 012 1 0 12A C F 2 R 493 N~ 6/)w - w-".-.:"-" " "N206 c,-."'-'-'A ',='=".;:.'.;".<<"~'",'t'~>>,',,"'~>t -" '-","" ".'-."*-'":Tp=",'I 20""
71 2 0 CAC EHO 38 R 573 NoS/Teh,:.
1206 NH91H2070F362 cc AN
~ 110001 21 00 432oh 33 42A chic-Ego-38/F(g.'-";-"-'ik06"";.tlfl644)OEPlit8--'.4:..-'-.:"',;$1 004"~";;4',.i,=';; 3;5",,'-.'-.-',.-.,>. '.., 09' P Y NSSI C6 1 0,
~ =-
71 CA~EOI 0 I-' '- ~
2 0
-w s '.-w wg
~
'ct'~ <<t<4+ +t iC <<+r>>'~ >>>>ff t " t. <<gt 'tlap +~c4>>>> <<&~A>>+'Q 9 ~V" 42A CAC-EHO IA/FCV chic-'EHo-'48 1206' NH91iI1002F2L 0 110004 2 1 0 0 O9' Y 2 0 R 195 8 ~ 2/N ~ 6 R2$ 4 AN 4320 71 ~ ";" -..'I2to h':= NH%2 .'":;."",'- '.".:=:;,"..", k,'=';"-'-';- iio05i':"'. -;".-;, '"".R."1" ",;"',-'5;a "-'-'-."'1 2 0 1 0 42A CAC /F I 2 D R 193 Nsh/6s0;",. ~ .- '='.-,.- R206 'Afl ",-'. ~., -':.'; .;;.,t ~.'- .'<.'",; t,'I'$20 li 0 2
CAC KHO-SA/FCV 572 1206 6/6oS NH91HIOTOF3L16 110001 2 1 0 0 09 P Y R N~ AN 4320 N FI 71 CAC 'HO-58/FCV,. 1206 flH9104070032i6 ii0604,' 1 . 0,0 'P 2 0 R 57$ H ~Sly>5 =
, , Ajh NSSI F2 1 0 0
MASHIHGTON PUBLIC PO!ICR SUPPLY SYSTCll
~ 4 wwa COilPCSITC jl0>> IIF64 ."- ~ '-"-" ""; "'fD-'... TEST 'llL. l/0 .I
=L CO 4EEJ.KEJIBfJ.
EDUC l3llENT EOUIPNEliT DESCRIPT IOii H0i
~Ljl~rHMORAMIh6
-. DKL-R ,
Uakr.
Tll HL
/ USE 2 0 R 572 II ~ 6/645...
-p554. 4i << ~ =
' . AN 1320 1 0 71 CAC EHO-68/FCV I206 RHSIH1070F3216 110001 2 1 0 0 09 P Y 2 0 R a73R5/75 All 1320
/ '4 71 3 0 E-CP CAC/HRIAW J
C)C>>NiC-67i . Soho 50-tbiaOQ)AAi: i4500) ' 2 i ll U 0$ F Y PIC FCR CAC FCV-6A ll551 F12 1 0 3 0 FIC FOR CAC-NCV>>68 R 577 ll~ 5/cob,.
'i581
'."F4
~ '$604 p-
=:
AT
-'.* .,-,: %320 i 0 71 3 0 E"CP CAC/HRIA+
0 6 F CAC FS 6A R
llh22 576 ll ~ 2/5 ~ 7, DCA/1 20llA/D X2 X3 8601 AH 151002 '.
2 1 0 0 1320 09 F Y 71 p
E t:P CAC/HR18+
CAC F$ 68
'<<t lll22: 4'DCjf(1 205K/DX2-;=.'"- ~,'. -
154002 .. 2 1 0.0, 09 F FLOM SIIITCH FOR CAC FCV>>68 N50e Fh 1 0
,220 3 D
>> +
a
>>F R-555 S.e/H.S: =-, - .---...Ra * - - '."-'-
R)84,, -.dii '-
FT TO CAC-Fjc iA ',
220 E IR 68+ CAC FT>>18 R369 IOPS022T0003PB 156002 1 1 0 0 33+
3 0 R 551 Bo2/Ha t RA 1320 FT 0 CACAF 220 E IR 674 CILC~Fi 2A R369" 10PCD22T0003PB .
~ ". '56002 1 1 0 3 3 FT TO CAC FIC 2A N 551 611 1 0 t
220 E>> R>>6 + CAC F 3 D -R 551 Bo2/HIZ RA 4320 FT TO CAC FIC 28 SSil4 05 1 0 220 E- IR-66+ CAC-FT 3A 6080 512203 156002 1 1 0 0 33+
3 0 R 501 H~ 8/5 ~ 5 RA FT TO CAC FIC-3A $5 220 C<<tR 63+ CAC FT 38 R369 115 IDPSD2270009PB i56002 '1 1 0 0 3 D FT TO CAC FIC 38
~3tt4 43L3..3 05 Jl4. ~ 4 1 0
MASHINBTON PUBLIC POllKR SUPPLY SYSTEll MHMKQR Q Jt
'O I
CONTRACT COHPCSITE NO ~ KQUIPIIENT NO',, RFO -",,';:< ..:llFB '=ll00kL".'h3'C'~)-'- i::-"",'. ziti ':=', '-
TEST>> . '4k' ',.'F/D "C LV I;C ECUIPHENT OESCRIFTICN
~kM~CkI1QBAMINO OR
'JLSUI RR" '~Ikk~BE=M tL03ULS
- ~
USE FRED AÃMBhCt TN IlL ,
s 220 E" IR 66+ CAC F 4 6 +
3 D FIC<<4A R 501 Ne/545,-'-.,~':.-p~)~c~';, ~-'.":~~',.-Rg'~ "-';.~:=- - .." "-
4320 ~
FT TO CAC 0
220 3 0 E IR 64+ CAC FT 18 R
R369 501 No6/5+1 j '44. + f <<<<pjl" . g+ 4 1151 DPSD2270003PB
~ L4<
RA.
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156005 "LE 4,-F'j IE,,
14 '0 g 't- ,
4320 33+ N I~
i,,
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li 0 50 IN H20 0 50 IN H20 N554 F14 2 0 3
71 ....
8 M4 MSDI.~ - R 578 X-.5/rih;,.',-;;-',."":,.:--R604-.";.~'-,,YA..;. -=" - -,.';,-'-=. --, '~.;" .- ..:1320.
0 50 IN H20 0 50 IN H20 CAC HR 141 CAC-FT-6A I 20 1 386 156004 2 1 0 0 09 F Y 3 0 R 575 k ~ 5/6+6 R604 AA 4320 F+ TO CA~C F <<674 71 3 0 CAC-'HR<<184 ,CAC-FT-'68 "...- 'f204.;-- .-.384'.--."-.~;: = .'-'- ".=';. ',<<"'-:-:.~,,"- .-" f $ 6004 .".,'-'~'.0 i'.i~j.,0.h,"-:.=,,:.. -
' 09 F ~ Y F T TO CAC FC 678 llSS4 Fh 1 0 71 CAC<<HR<<4+ 4 D
FT TO CAC-"FIC 674 R- 576 II ~ 5/646 =,,';*;- "..'.";;i -'.
'il554 604.,"-;:AA"~,,",'..<",'" -q7'",~".~..-,>> ~,
'f12 $.-.';. '...;.'- -'.:. ';-;;-.":-:-. '.".,=. ';.;:;-'...'.,-
~. "-'320" 1 0 71 CAC HA IB+ CAC FT-78 1201 386 156004 21 00 09 F Y 3 D R 576 II~ 5/To 4 R604 AA 1320 71 3 0 FT TO CAC E CP FIC 678 C4C/HRlA4 LEVEL INO ~ SMITCH IN CAC HS 1A CAC<<LS"lA ", .
~5.
II551
~5k~
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Dih
Al&.1 207009 '" -, 2,'1..-', -,D ~ P';,'-=:
1 0 LEVEL INO ~ SMITCH IN CAC 'NS-18
'320 FSS4 03 1 0 71 D
120 1 571 k+5/6 ~ 6 386 R601 AA 209002 2100 4320 F Y 0<<50 IN H20 0 50 lk H20 l'551 013 71 0
CAC &R IB+ "
'AC LT 18 I 20 4 386 209002 '2 1 -
0 0 F Y 1
R 574 RA5/744 . R604 AA 4.2 0 50 Ik H20 0 50 IN H20 F551 1 0
WASHINGTON FU POWER SUPPLY SYSTEM MR EC ECUIPHENT DESCRIFTICN, DRAWING USE 2 0
-<<<<< .IIKJ.l CAC~ R 912'18 ,,>>;-.-<<:R604-,",,:i', Al-;,.;;."
572 HS/6i6,~', "% .'. -, --, ',. '-
~, . '320 '
25HP/7A MOTOR FOR CAC FN 1A I
71 CAC HR I 8+ CAC-H 18 ll120 '5D12173 213048 21 00 09 2 0 R 572 HS/7 ~ 4 R601 AA 1320
~<<HPCIILHRDIILDULSd~
41A 2,
CAC VO li ='200:-
5'-: ~mi
. SPB-000-5/0)64 H551 F7
-';..",,.",22i41i
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= .'1 1,;;.'0.0 .'-
1 0 N
$ IA NULLI '".--'-'- '-=
R.487 VAO/6sd,.,".,., "-. R206-.,'.=~AA=."'.-'-;-, *+ - ., '... 1320.
i 0.
. ~
hl A CAC V 0-15 L200 SVB 000 5/056A 221011 1 1 0 0 35 Y 2 0 R 570 0 ~ 8/6 ~ 8 R509 AA 1320 41A ClC~HO"17 35
.2, .0 k 551 CT 41A 2 0 R '558 M~ 2/7ii ..=:-".-'.5 ~--R60h'; AA,.'-;:= z.-;.-,!j .,;"..,;~':..:4320= '.-.
414 CAC MO"4 L200 . SHB-000 5/056A 221011 1 1 0 0 35 2 D R 195 M~ 2/7 ~ 8 =
R206 AA 1320 41A 2 0 CAC'MO-6:,'.
~.15J.L2009/
= 'HB '
000'/056A',."'.
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M554 . C10, . 1 0 71 CAC PT 6BA+ CAC-PS 68A 8422 DCA/4 20HA/0" X2-X3 256012 2 1 0 0 09 F Y 3
0
><<-<<P~lllJI <<~~ ~
R 576 V~ 2/5 ~ 7 R604 AN 1320 I i '0 "
. 3 71 D
PS CAC PT TO 6884 VOIST SCP le CAC-PS 608 FROV. COOLER
~.:.Ti r.u.8..0, M422 DCA/4 20M'/DX2/X3 V554 E3
>604~
= 2S6012 ~ 2 0 3
1 0
~ 09 F ..
oa ~ nev << ='
WASHINGTON PUBLIC- POIIER SUPPLY SYSTEIt E
CONTRACT LV EC COHPCSITE 40 ~
sAFEgy~UNc~ntL EQUIPHENT DESCRIPTION EOUIPIIENT NO+,.
- ~
HF6 Pt Ati DRAttINQ
~
00 - . '-
llfg <OBEL'"-.,=;,-:=-.=".'.0*IO,
<< '="'
'EST' ., 'EN);,:;
C '.~85F/0,, C USE
. FttEO h%NBtttLY
- tN;ttL ~
71 CAC~P-1A+
.,g,,~','R'g: ItiSJ6i6<<'P,"'-",.g4'~<<Pj~~.,~e jilh)~~-.L<< ';'.:",;,"."'; '.:<" '",".-."; h520"
';,'-':tgh5$ ~ I'l4" '~"I;,f :%. ",*", -'."'-:-" .-:-;; ....2
~
0 50 FSIG FOR CAC FN'lA -'=,",-',-';I -.
." ~ .:.'-",-"; 0.
3 71 G
CAC>> BR~1 8+ CACOEPY 18 R iS I20h,'86,"-,:,";
tt.5/7.4: ',. ""," . '-,",-; ii '-259006 h320 0=&M% 0 4 w e 71 CAC-hR-IA4 CAC-Pi-68A"': '.-.'20h -'- tt54;.", ". '- -
";X'/," "259006 =.
.3 0 PRESS TRANS ON CAC ItS 1A 855 h D12 1 0 71 CgC ~- +
0 PRESS TRANS ON CAC HS "18 -;, q
'.65($ .<<;6b) , -~('g ,"" -.'",..;.* .'/. <<'-; -..'.t!,".'v,,"i~' .- i 0 71 CAC HR-1A CAC~R/I hA 8015 50~7h0320CAAAI 271001 3 0 R 577 Ite2/5o7 T h520 CURRENT RESET CAC R A
'- ";::- i'iphOCAa'ai.:.=,,-:-:,':;."'Binary':.;".j-;-:.'='"'=.";.",.'-,.-"-,'".'.
71 E CP~CAC/HR18+ .'""
I CAC,R/I .48 .. Bbi 5"-;'4" 3 0 H2 RECOHBINER OUTLET TEIIP II55h Eh 1 0 E-CP-CAC/ R A+ A 3 0 ~ <<<< -
R 572 =
ItJ6/6 ~ 5-<<-'hl '-"'-'..".g '-":..i"'<< '-.'-¹~~-:,-g~<<~.-'<<",. <<a'Ij" *,:e~",,"',',$ 520
="
C'l E~CP~CAC/HRIA+ CAC Rt.Y CR6A A109 3 0 R 572 H~ 6/6 ~ 5 h520 RELAY 71 E~CP CAC/HR18+ =
CAC RLY CR68', x A109,,',',, >>=,'"','<<',, "g'".,'< ',"',, <<<<ai';>+,"-...~ <</ -',,'"-g "q *", ',
RELAY 1 0 21$
3 0 C AC II 1,~A R h75 4.59 ~40M.<<LC R206 hei/9e3 = ItH 4520 CONTROL RELAY Fntt CAC~FCV~I A E5i9/1501i 1 0 210 CAC PP TB/R363+ CAC-RLY 18 A500 RA225 052-CP 295011 3 0 R h75 Non/0 ~ 3 R 206 RH h320 CONTPCL ReLAY FCR CAC~FCV" 18 218 3 0 CAC~PF TB/R36ht CONTRGt. RELAY FCR CAC-FCV 2A CAC-RLY 2A R
A502 475,.N<<l /9 ~ 3.
RA225 052 CP E 519/1 RZ.g.g, . RH.
285011
"~
6l I
CONTRACT 3
19 21$
Ec 0
ColtPttlsiiE tIOS.'.-
', EOUIP RENT DESCRIPTION
';-',+
CONTROL RELA9 FOR CAC, FClt PS CAC PP TB/R364t
". 'r'.;
CAC RLY 3A
'LSHIADilttt P~ue EroukVliENt Nd>~ .".-RPD j'.;;~NF4: hlf5k'~kttkg "'"g',"-
- R..415" r.
'--lL'. -j~l'@P.
~, ORAMINQ Baft: SuPPLy: SYSTfll:
=, .',
j'hfdf:"',;TAIT'. -:: AKL;"j lfo018j3~ '=,."::r+i~"'<<l~ilII30$=t'I~',tt'+ 'j.'7W"-'~:'= ";"'. ",
-~A500.'- ',"
5l+15Hf '4~m-.~'-~,'"-".ib'. 'g.g~,"
A%225 052 CP" . =:~.-,,".... 283011 Neil)43:i'-.",'.'j j"~~.:,
" j ~.;,. "~ '.-'"4320 - ""
--~g~. g='.ji~'='~..',.'.;-~.0 D...,
~,
C USE
~ . PREO r g."';,
Tg.
'=
HL;
~
I
,'O 4
3 0 475 gkh6;<<.," Rft 4320 R
~,
218 cAC-PP'-"TO)36'4.;: -clt'. ALf',je; '.,".i.'.-,$ Do""";,'(kg,p5g~4f,',~"", 'Q>~ "a$ Qjf'(gQ~""-.~gC""~~-',"'t:.',~-;>--.".'-"'"'.-':-~'.:."I~-,","'-'-',,' ";.. ',
0 CONTROL RELAY FOR CAC-FCV 38 E519/15H4 ~
~
~ 4 0
C 3 0 218 0
R A504.
415.Kel/9i3'. =.,
~ RA225~052~CP,,
~ R208
'83011
"-;.Rll <... ' . '820 71 E CP"CAC)HRil+'"~4 -'Cklt~IlL)~44(i2$4;~.';A500j~:.~%'$65~)5(Ck".;~. ". g'-)lIgfig.'..P~r~$ ~~f', gi"-O'SIX~<< ~-.';W-';"~ZAP"'solt .',- *,- .
4i6yFCV 1/t4A 519/13/15 Y'NTLK CAC V CACHR 1A E 1 0 AC ~ I
"',",P~)75',K<0/Bigs ~-'%> jPlt'! ~>$ 246'ySiV$ g;W(@~~V~~<.ig;'>~/li~+'i>~~-;"~-'$320, -..; .
CONTROL Rki;qY" FOR CAC~F)lt~je.-:-;=- "-'=:. ".',. "ki4eiff"'-'-'"-:-'-'-."-"'"4~1~=.-'-'y"=~.-.-"-<<;":""4i""Pi+"-'= '-'-- '1 tt
'1 E CP CAC/HR1B+ CAC RLY 48/1234 A500 RR225 D52CP " .. ':; 283411 2 1 D.or 09 3 0 R 415 Kso/8+3 --, '= R604 .. . AB 4320 ~-
KIIILILV-E" CP~CAC/HRikf. "., '.CAC~fbS~IA.-,';",r:-i.tti09'-.. NIlikl4-;>>-~'H~; ~ ';y'pl+-,-.-i;,:-,fjed02 ~~zj"-",~pi~.;.z:-g'~'y, "~-'.'-".", ',.".;**- >- , ~
.0 TINE CELAY FOR INST ~ QARR UP 0
" h. +
3 0 TINE OEL4Y Fotl- IlllST bkRR~UP . '='-;,', - . '-"'. ~='"'.,: '.',:" .*: '..;,.:-", r ., -" -,,".', ~' ~....,'",. ", * '
71 CAC HR IA+ CAC~TE~IA 7165 80500 339046 2 1 0 0 09 F Y 2 0 R 577 Hos/6+6 R 604 AB 4320 TE r E F I~IA I 71 CAC~HR" iAA CAC>> TE" 1A1 7165 80500 339006 2 i ~ O 1 ., ~
8 KLD tb.52&. 6 INPUT TO TERP RECORDER 1A F554 E13 2 0
, ~
0
~ . 5 = - << I<<P P<<NP l NTNA
~~A~~~N~S~IPk ~~~j+r&~P PNICti &V-5+ 5 ~ . II'<1 ~s 5 r, A QASHIk674N FtIBLIC.POliER SUPPLY SYSTKH CONTRACi
..LV 11'A~C
~AFmi FjIIISisu EQUIPMENT OESCRIFTION C AA CAC
'. "'.-:: 'eLAMDHQuh""='-'"'--.-
CONPaSliK- NO.,:.;-'-: EaU<<ibHENT pi~-":. =>'riia'I'.-"'(~: ":tiki;".)di7Z7"-,
I
. CRAIIING
'-"=-"'--"==:~
5
- >-.:-'C
'SE iA'-',"+f-;~ bfO::.:.,@ fE'ST --'-.;"'-,'AtII;,~~gF/O;,'<'6.-" FRNE0-.:-,;,-fA;;.;(L.--,:
. iENiEiATBAE ELEiiENt ali Ci C'E-.Ni E'-E!i,~ ';;., 'QEigL.Ilk.N'""$~-.-":IPT'" ""-::+'--'"::-"-~.".!'-'<<:."- -""5 ii 71 CACiCRilA+
2 G F
TEMP E ENENT 0 CAC E C 71 C(C CR-jia;,"-,.>>.P~4 CAC'Tk'l,. ~~>~'~>~+9 Ejg+ '~' ~ . V~+~~(~~"-++"'>>5'-i~ "f<~'~'-'-'/>~~JT'-'=
5
~!+;., F 2 0 TEHP ELEHENT OM CAC-ENC-1A ~
H551,, - 011 * .".'., ~
.'.','1 2 0 CAC CR A4 I'iHP EiENENTrak CkC-'.AC'-."i'A'-""".'.~j '~". = -'.-'"-.'>5P5fW~;)jh.'%"- "~~i-.-"-.~+>~":~~~'~ i"~~ "7p,'..';.,;,g~.';-.'":;;.,;.,:.=;" -0"- -..-=-:. -.
71 CR-ll+ IA6
"." ",I<<,lO; .339018,-
CAC -
CAC TE T165 POi001 13714149. 2 1 . 0.0. F Y 2 G R 573 H~ 3/6oh "' 1320 TEMP ELEHE T ON ClC
'C'"i ~-"i"ij",';'i',",':;;;"",;:,".:..".-'.'
71 i AC-Cii-'iAA:::;,'.. ',',. -".,Ci<<Cjt'5-.'i AiT'.;,', ':."-"',.I'a,"5;-"BO<<-,riELA't'i~iiiiq'.I";"-'.-.g4fiii'i5" 2 G TENP ELENET ON OUTLT OF CAC KNC-1A H551;Olh 2 0.
71 2
71 2
71 G
0 C~AC CAC 5 5 INPUT TO TEHP RECORDER cAc cR 18+ *.5 .; 1;;
l TEHP KLKHENT Of Sdp TFJl05 glCEBFk~f 6 5'4;;"g<<AI'5 p NR-18+, CAC>>TK 181, R 580 M ~ 5/Toh, H
=
'604.
<<5If)HJ5/7'Ah p,Wp"5"., ~<'r"f<<g 0$ )j9)5)p'+'~ j-'5<<,"=(5+'F~~y'QL'r4'r'A'-p'rr'5'Ag t -'h320 Y"'$55) gj~'5$ $ )~jg<<>~: APT<<EE,':"'v<<.. ro'as~'r'~+) '=)A~A'rrI"~)~y"".,.~(. "~" pic.;~
T165; 80 00 - .:
5 cic~TK.I82,';p ='yI-->>.Ti65'<,-'.,<<ij;y~r.",j'~ ~j.-.';-~<-"-:~:,A)~~)r'-.Ppr+~:;:.API><~i AB '--
339006,
~
... 2 1 '
'2 0.
1320 5'"',
-. P-'1',
f"-B"-c'4;;tIg~".""E~<<-'.,,',",","=p'5,.
".<<"- =N 0 ( ..
09 F 2 0 TEHP ELENENT ON CAC ENC 18 H 51 E3 2 0 I
71 CACRCR 18+ 183 2 G * . -'. i *'-'; i8-'..',
T 65 576=,Ho3/TN2'45 ",.'-";.'.-"-""""'.:;.T"r' 8<< "->'. 5" >'-<<"-5<< '".'<I'<<~<.',"";";,5,";,'.=.'$320; 5 tENP'KLEHENT ON 'Cic-EHC ~ I . "--',,5554 .-bf; "=.'.:-;,',;.;;-::..', =.-'",.;-.:,';:;;.::,'-"; .,=,-'..', -
-':, ;=.2 5.
18+
B~ 21 00 71 CAC CR CAC TE 181 7165 F Y 2 G R 576 MD 3/To2 AB 1320 TEIIP ECENENT ON CAC ENC IB II555 71 CAC~CR~18+ CAC TE"185 T 165 2',1 0 0. . 'F *, Y' 2 G R 576 MASIT~
TEMP ELEMENT ON CAC ENC 18 IE 551 02 2 0
t t':tf
" 8ASHIHDT'Dh"'IIu8 V<VttfttaI,V< 8 IV ttVV QKll SUPOLV 5'lHCll ".
~ < V P t V f ~
g ~ < ' = gP V jh 4
,.- TH;Ht = ='
TA-Ft '-
7 QA- i~ s '. ~
2 0 TEMP ELEHEHT ON C$ C'l{C~iB - .- ~ ,~.""'v$ 35$ ~~O)T'~l~,~P'v'<>>-'-i;.-:kq <jan~'< ~ ~ =,~vq.- t-.t ~'f . -,.'."'~i! . ~ ~~>> 4. 0 a~~ < t<,. ~ ,0 71 CAC CA~18+ CAC TE 18'7 '7165 F0+00(,13$ 109 ',"
2 Re3/Ta2,;.".I '-.~l;jP;=">>, ~>
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~D71 Clcv HR-18+ CAC-TE 68 HOISTLRE SEPTR 18 HI TEMP SHUTQOMH T 165 80500 tf 551 E13
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'- -:- .,- -1 3 02C12 CRO-HCU-2227 CRO-SPV-1182227 A610 HV4901052~LI 2 4 R 522 LS/Gal ' ~ 0., ZCE~O.QS 02C12 CRD-HCU-2231".- .: CRD-SPV-Ii82231*,-:. i610'-'". IjVA90$O52~4'".<<. '.; >"'::.-'."=.;.=L'-.i-:.:;.'=-'-;:,~ -."-',-: -';;,-.,:=',;."; ...2 4 N SCRAN SOLENOID PILOT CRD V 1260127 Il528 02 1 3 2 A SCRAH SOLENOID PILOT CRO-V 1264127... =9,: ..R528. I.,D2 '; ',:g;.~.~'q-..',:.- '-',,'.g"P/.i.'.J",=-'. "';-g,'..I; -'Lj -,;, 1 02C12 CRO SPV 1182239 A610 HVA904052~J, 4 k<EhlLM.KHRIKZILQLXERJLL R 522 K2/8<<l ii0 02C12 CRO-HC0-2243':: :;- ".Ckb-SPV~ii822A3.',> l610,.3- 'HVAb458k~J".' >>P v'~ 2 A SCRAH SOLENOID PILOT CRO V 126C127 H528 02 1 3 02C lg CRO~ C ~ 47 R 2 4 SCRAH SOLENOID P)LOT CRD V,1268127 g<<'=2 I'ji ",N528-O'..'.D2 02C12 CRO SPV-1182251 A610. HVA901052 J 2 4 SSJ34JLKJXB9 L~~UL3L1Zk4 R 522 K2/8 ' A 1+0 . 02C12 CRO HCU"2255 --'-,'." CAO SPV,I1182255 A610, - '.HVA90405k .4. .Z. A. SCR>>fl SOLRVOIO PILOt CRO 9 126 ~ LRI H528 02 1 3 02C12 4 SCRAA SOLENOID CRO"HCU"2603 PILOT ~ CRO CRO V"126C127 SPV R 4462693 522:K2/844,: 4636 " ': 'K528 ."."=.':P- -.;L,."L "'">'h,'-6.6 IIVIOII~ 962 6 D2 .'" ".: ..' i ':.* ".~ '"'"' " " - '<< "".-- 'I'40 ~ 9 i3 2 4 R 522 L5/8 ~ I 1 ~0 S~ RA 0 0 0 R ENCL 843 02C12 CRO-HCU-260 7 CRO SPV 1182607 A610 HVA904052 J 4 ,R <<2k L.ZL8<<M SCRAH SOLENOID PILOT CRC V 1264127 8528 D2 E l'>>!~gg ~<<v wmg~va(<<vlvgP, g<<tQ <<<<<<eve>> ~ w y m <<y<<<<<<wM~m> % r" w 0 l << '<<<<<< ~- 'a* HASHINDTOA PUBlIC POQER:SUPPLY SYSTEK 4<<<< ~ / gfRHEl CONTRACT CONPCSITE NO, . '. EQUIPI'ENT NO',"::. RFet:;- .:,'-.- K<<P4. ItaDit.'P5';";;=-;.-'.:.hi;.'".:,"YES<<i-. = "ATlL"', .. /0;C,'ltE Ttl, HL>'. EC EOUIPKENT DESCRIPTION DRAIIINQ . USE 02C12 2 A R 22 LSlgoht'v";.~'".>;;-<<'~""I<<, "-<<,~~'7~'!'A <<"-'*4 =;'=-.' ".."-;- ";- -". ' I~0 ~ ~ SCRAN SOLENOID,,PILO1'RIT V 1264127 ...'..'-;.-'+>::"N528'"i Eked.-"'g l I >:';Q.":-'~ -.,'-"."'.= '",""= '. " -. "'.'...".- - ..';'.:, i. 8 02C12 CRO-HCU-2615 CRD-SPV-1182615 A610;: HVA90h052 "., '-. =."? ' 2 A ~ 0 SCQAH SOLVED ~OQO+]t~QC 7 02C12 CRO HCU 2619-'-'. * ='RD SPV "ki8261)":-khitf '>-'AV156~0S2-"dg "<. ~'."=S'l<".<y'.-g-" "~~ "',,:.";,::'- ', ~".'- 2 A SOLENOID PILOT CRD-V 1264127 R'528.-02 ~ '<< "', a, '!'CRAN 1 3 02C12, 2 A R,522'5/Bah =,-':, .'."=:.";";.".'-'~i'Y+"'A'.;, '".".-- ':<.:;,.>>'.<< "..". '- '.- :;-";=',:=" ~ 0." SCRAH SOLENOIO PILOi CRD-(-Iceii27 .='. -;,i. 'IIS2B : D2 g';-'"-.<<.'..'..-"l,',=,'-":,".,'";;,- ":- '*.;,;..",."',,,-"'.='.>>-'-,;-,-*',:4 3 ) 02C12 CRO HCU-2627 CRO-SPV-1182627 A610 - HVA904052 J A R 522 L5/Bah A 1 ~0 02C1 2 . <<CRO HCU 2631 r<<<<c CRD~SPV~ 1 1 82631'+A610 vP', HV/90465&g J<<'~et +P gJ" c ";<<< i j' 'n + ~ 2 A SCRAN SOLENOID PILOT CRO V 1264127 '528 '2" 1 3 CQO~HCU Q RB . ~ SCRAK SOt EilOfO PILOT CRO V i264127:,>>, ~ >- "",.:K52h <<>> 02 '~~i~~ '~4'~"jr~g<<.~~ gI'~';~'~j>>s '-.!ij.".'.<E ".',..";<<j'.;: " '- 1 ~,, " ~ 02C12 CRO-HCU-2639 CRO SP V 1182639 A610 HVA901052 J A R 522 K2/8 ~ h isa SCRAN SOLENO 0 P 0 C O-V- 64 7 02C12 CRO-HCU-2643 '- . CRO-SP&1182643 " . Il6i0- '," HVk90h052~J "'-"-.',.j, -', 2 A ',~~"-'CRAN SOLENOID PILOT CRO-V-1264127 K528 02 1 3 02C12 2 C2C12 A CRD HCU~2647 CRD SOLENOID'.PILOT CRD~V 1264127 HCU-2651 CRO SPV R 11826Sl 522<<K2/Bit A610 V KS28 ~ ..h HVA901052 J D4 <<c.:." .'."",'i'; 'A ' .'"=;; . ". ".'-'..=<'. -,'~0.;" .-.'.",.*.<<~'-,. ~,,',, .,..;.1 'CRAN 8; 2 A R 522 K2/ah A 1 ~0 SCRAH Spl.ENOTD Pll.CT CRD-V-1264127 8528 02 02C12 CRD HCU 2655 CPO SPV 1182655 A610 Hvk901052 J KP/84~ -0 2 A R 52/ SCPAN SOLENOID PILOt CRO V>>1264127 H528 02 vr \ V ASH INGTON FU 6IIE$ SUPPLY SYSTEH CONtRACT LV COHPOSITE NO ~ gA~y~F~ r 'OUIPlIENT Nbo,'FG = = ~ LARLMChli 'llFG HODEL ROC ~, '.:: OID i ~ . TEST ANL;. F/0 C AG FREa TH HLi EC EOUIPHENT OESCRIFTION DRAQING USE 0.2C12 CRO CU 65 C 0 P 2 4 R 522 K2/81$ ';",', .-":-':,"C,-c "'=';' Jr'"g:.> -, SCRAH SOLENOID PILOTv CRD V 1264127-.;:-.0 r;I:;..'H5kk-.: ;b2 ';:+=,".'c.'-.-'='-.,-...:;,, 28 02C12 CRO"HCU 3003 4610 ';IHll490I052~J 2 4 CRD SPV 1183003 R 522 L5/8 ~ C..:,. "=-':". -, . " h 1~0 02C12 cRD HcU"3007;.,<< '" ~ cAD sPv 218300 7':-"".i62'0'" ~pvZ50)ov5$ ~4,..>'"j';-,'."q~!/r."..";:-'"-.',"";;:,:,'.0'.":;---'='<<-'--'--..:."::=-:-.: -:"-=."- . 2 4 SCRAH SOLENOID PILOT CRO V 1264127 H528 02 = CROv C 2 02C12 4 SCRAH SOLENOID PILGT CRO V CRO-HCU-3015 ~ 1264127 '-' *.". H558,". 02 .".-";;' ~,;-;:; ""..; .', ".--:- .;"-." .-'.-=','.'.;-, -'.,'1 3 CRD-SPV 1183015 $ 620 HVA90I052 J 4 R 522 L5/8oh 2 ~ 0 0~Crit CC 0 0 0 Ov C2C12 CROoHCUo3029;'-'...: CCRD SP V, 2283029'"." A620'.-.",HVA904055~il~ <~ ":i"-'~-'-".";'=,0'., <<">>.i,'.;-.c'.": -i;q 2 A SCRAH SOLENOID PILOt CRO V 1264127 H528 . 02, 1 3 ~ 0 ~ *, 02C12 CRO<<HCU 302 ' , 2 4 SCRAH SOLENOID pILOT CRD"9 1264127 ..;g= '~..q':"5525~0055 ..<<'iy.",~iP<<=,~( '>"I'0"'>~4 '=",'-'+W~lr "<-'jar ~ 02C12 CRO HCU 3027 CRO-SPV" 1183027 A610 HVA90I052"J ' 2 4 R 522 L5/8oh A 1 oa-SCRAll40/ENO C 02C12 A CRO HCU 3031 ~ CRO SPV 1183031620,, HVA90I052~<<'J",;;-z,'.'";",-','",." ". '"=:,j- '='l -" 00-SCRAH SOLFNOIO PILOT CRO" V-126C127 H528 02 1 3 SCRAH SOLENOID PILOT CRD V R 126C127 522.K2/8oh .'.'=: ' 8528 D2 =I':,-." .- -'A '* .'-.-',:;-= '" .. Ioa r 02C12 CROoHCU 3039 CRO SPV 1183039 A610 HV490I052&J 1o0 02C12 CRO HCU 30I3 CRO SPV-1183043 4610 HV490I052 J SCRAH SOLENOID PILOT CRD-V-126C127 R 5Z.Z K?L6. I H528 02 1 3 CONTRACT 02C12 2 A EC COMPOSITE CRO HCU 3047 SCRAM SOLEttOID HO ~ ECUIPMENT DESCRIFT ICtt RO PILOT CRO"V S ~ KOUIPMEHT NO V QQlL44 i266127 ~ ~$ g Q >>J VASHIttGTDIIt-PUBLIC.NOMEN SUVPLT .SYSTEH HFOi " "<<.,HF8 1~IOOEli'NOi.;. DlIAttIttO, '; .." "OIO'---.>> ll52b-'+'02~"4; + ":;,>.',",'-:;4,""",' ~ '-'=y -'ESf- "..<<'..AttL '.r <<<<g- '.- F(0," ' >> ]40m,:>> USE '," FREa Cchakc '--.;til'L" ') 02C12 SPV-1183051 2 SCRAN +0~00 CRO - g] A610 R 522 K2/8 ~ 4 ~,' '., ;'HVA90h052",U ":":t"."'",,' * = ~ ~ 1 ~ 0. 02C12 2 02CI? A CRD<HCU~3055 C~ SOLENOID s CRO~SPV<]183055, PILOt CRO" V 1266127 A 610 ' = HPlkdklf 52< J N528 = 02.::,: ~s <<'<<<<5 ~ - I>>'CRAH 1 3 SCRAh SOLENOID *P)LOT<<CRD~V~i266]27-;:,'- '.'t<<.t)I@8.,~".g '<<".'>j,>:c"',~;<<<<~j>> "." g'='*,<<j'<~~..'~-;.'<<~<<",>,'"j '.~','*<<<<::.<< ~ << . 02C12 CR 0>> HCU-340 3 CRO SPV 1183103 A610 HVA904052~J 2 A C A~ R 522 L5/8oh . , ~ . -'.A 1 ~ 0,. ~ -'". 's 02C]2 CRO HCU 3107 O-SPV-.]183407,.-: 610,:-,-:"HVAO)052;J';~"-=j"t'"", .P';-.';=-"l.-=;-'.':--;-':...=:..-;::.~'j A SCRAN SOLENOID PILOT CRO-V-126612T N528 D2 -, 1 3 C2C12 CRO<<<< CU~34 RO>> 2 A 'CRAM SOLENOID 'PILOT'(RO V~1'268127," ".<<~~< 'a~<<<<t<<- jl8'fd%Q'i ig Pg'i,",s '*I g) t<<ltt'" f4iwjjgj<<>><<<<<<cl'",'4 ~.",6 q, <<+ <': . 4 3 ~,, -, 0'2C12 CRO-HCU 3415 CRO"SPV 1183115 A610 HVA901052-J 2 R 522L5/8 ~ 4 ' ., A;, -' I~ 0 SCRAM SOLKNOID FILO C 0>> ~66 02C12 CRD~HCU~341$ - '-'" *.'CRO SPV+]183419 -. A610 ~ <<'V$ 901052";J ' ~""."'~".x""'-">>'< 2 A SCRAH SOLEttOIO PILGT CRD V 1266127 N528 02 1 3 SCRAM SOLENOID PILCT CRO"V"1266127 fi525 bh, ~9 92C12 CRO HCU 3127 CRO SPV 1183127 A610 HVA901052 J 2 A R 522 L5/8oh 1 ~0 <<Cll<<<<<<LE<<<<~DPI~CCPO II XV81RZ 02C12 2 A CRO HCU 3431 CRO-SP V-1183131 II 52~2/Qo+ A610 HVA'901052 J ,0 SCRAtl SOLENOID PILCT CRC V 1266127 M 28 02 -0 7=f<<, 'ASHIN6TON ~ V f PUB <f J '+ 'Ul(R:SUPPLY SYS'EM 8 I + iW tl<<'8, 0
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- TEST . ANL ,, F/0 , C USE
; FRED 0.2C12 8LSBL11H. I'2C12 SCRAH SOL'ENDIO PIlOT CRD-V"1264127 '. ='.-'"-'"-; <<f1525:-. -.Dk'jj~~~~g .'s:-~>~, 'g'-"-:".'." --I .=" ~ .= '.,--. -".'"- ~ = .. l.3 2 D CRO HCU 3139 ~ CRO SPV 1183439 'A610 ':, QVA904052~d'4.~/,- SPV<<li83198 ="461!T'".l 'MltA0$65 4 2 ~ D2Cl2 CRD HCU-3113:,'. SCRAN SOLENOID ~;. CIAO PILOT CRO-V 1264127 N 528 D2 = 92C.I? 2 A ~$ SCRAM SOLENOID "I iLOf CRO 0 'L26$ 127 g '.' li528 Py 01 y~+ p* <> <we +>>> + t,< <, '+ +g" j+ 'y~ 'wP "', y w 1 '3 02C12 2 A CRO-HCU-3451 CRO SPV 1183451 R A610,'; 522 K2/8 ~ 4 HVA901052 J; ';....., ~ 160 02C12 CRD HCU"3155.';"-"=- CllO SPV 1183155-'.:-A610.'-, 'HVA904052 0-.- 'i"."'~"-':;";."':;,-".:-'.;'," 2 A SCRAH SOL'ENOIO PILOT CRO" V"1264127 . N'528 -. 02 9.2Cl C 0" A SCRAM SOLENOID PiLOT.CRO lI"i264127.<,-.-'"= g! fl52h; ~~Of j~'~<":j jr..':.g-'.-.,",q 'i;-.:.";:.'::.'~~';;;.'-'"c'.>'-4~>>,,'-:" '-'. 02C12 CRO"HCU 3803 CRD SPV 11838D3 A610 HVA90%052<<0 ' A +C~Agg D 522 L5/8 ~ 4 ., ~ ' ~ 1 ~ 0-. 02C12 CRO HCU 3807 =,- ',. 'CAO'PV 1183807* A610;.. flVP90$ 0ii2-'"i.":;"='=;.,""-".--.":.--;"---'::~"".,;"-", .2. SCRAN SOLENOID PILOT CRD" V 1266127 N528 02 1 3 02C12 CRO<<HCU<<3811 SPV" 38 A6 5 -4 2 A SCRAM SOLENOID CRO PILOT CRO<<V<<1264i27, ', 1 R 522 L5/8 ~ 4 * "%528 .- -.-, ~,-: - ~,- A;- ~, .=: '. -a= -, ~,.'60 P . D2 02C12 CRO-HCU-3815 CRO SPV 1183815 A610 HVA901052 J 2 A R 522 L5/8 ~ 0 i>>0 SCRAM SOLENOID ILDT C C - $ 661 02C12 CRO<<HCU 3819 CRO-SP V<<1183819 A610 HVA901052 J B %22 L5lJ~'l SCRAM SOLENOID PILCT CRG V 1266127 H528 02 p 'I 6 ~ ~ 4 = ~ PUOLIC POWER SUPPLY SYSTEM .. ~PR "I'ASH1NGTUON 6 i G ~ CONTRACT NOD '.-.,", R6UIPRENT, N01-"-'.HFGi:.'-,."-l'-llf6'OQEL3tl0l'4j;:".',',3",".Oib ".';3'TEST;"-."ANL",-. F/O':', C 'YFREQ LV OHPCSITK '" ' -""...' TH,HL':-, 8 RS~QCU RC SRFCY~YFURC XRR EC ECUIPMENT DESCRIPTION ORAVING '. . . USE 02C12 CRD RCU 3883 CRD SPY I~IS@I 66 85 2 A SCRAH SOLKNOiO lSILOT CRD V 1462127;=--~.'".~'->'. ','tl(25.4Plf2" ~~-.Pg~'-' "I ~C * ' = ~" ~ ' ' 3 62C12 2 A CRO HCU SCR A~HO~0 3827 0 ~ CRO-SPV-1183827 R 'A610~'3 522'5/dol,-g:R<~'.Fe > HVA'944052 Ji~<< '8~ . I'".->;.;.>.,fl:7~,"r ~ .. ' i ~4 b 02C12 CRO-HCU-3831. --, "='.CRO-SPV-1183831 .,'.4610~",".48VA5'lloyd>>fi.>~:;7=.<-.~:-.;:l;-.-'~.':.~~..".'.-" -..-';~: ..:-=,;::.'~:---::-I:.<<Y,:--3 '."- "., 6~ 2 A SCRAH SOLENOID PILOT CRO-V-1264127 H528 . 02 1 3 6 02C1 2, C~DM SCRAM SOLENOID- PILOT CPD V"1264127 '-,'. >> ', I'.--.'; A52it PY",52 ~;.-'. jgFP'~..~""."F."333, Y,'".'"-.. --"- -.I":.. '-'<'-'~6;,~'-"Y""!'r= '<<36.:3=-'--- "~ I ~ 1 3 02C12 CRO-HCU-3839 CRD-SPV 1183839 A610 HVA904052<<J 2 A SCRAM SOLENOID PILOT RD 64 R 522 = K2/8>>l .,3. ~ 3- .: ~ '- F,, 1 ~0 ,0 02C12 CRO<<,HCU-8843 "':-"-. i CRD=SP V-'1183843':.j"A 610: ~ 'llVA90 f6 JRi<<'J" g'4+-. -'Rc 2 A SCRAH SOLENOID PILOt CRO-V-1264127 H 528 '2 1 3 02C12 A CRO<<HCU 3847 CRD <<~~TA <..R,522: K2/Sih 8 SCRAM'OLENOlO=.PILOt-,CRO<<Il 1264127 g..c."i: 5 LS<< 02C12 CllO HCU 3851 CRO SPV 1183851 '610 HVA901052 J A R 522 K2/Sol 1+0 SCRAH SOLENOID PII.O CRO-V 64 7 02C12 2 A CRO HCIJ 3855 -,, -: CRO<<SPV<<1183855 Pc A610 -; HVA90l052<<J; SCRAll SOLENOID PILOT CRO<<V 1264127 H528 02 1 3 02C12 CRD-HCU-3859 CRO- PV-U~~A , 0 2 02C12 A SCRAM SOLKNOIO CRD<<HCU<<4203 I - PILOT (RD<<V-i264312$ SPV-1184213 , . RS28'-'- 02 .<< .-."; -'- ~., -,' ';,;-, -'-".. ~ ',, - 1 3 CRO A61C HVA904052 J 2 A SCRAM SOLENOID PILOT CRO<<V 1264127 R 522 L5/8 ' A 1 o0 H 528 02 02C12 CRO HCU 4207 CRO"SPV-1184207 A610 IEVA904052<<J A R 522 LS/8 4 SCRAM SOLENOID PILOT CRO-V-1264127 is528 02 Q I ,* 6 =NASHINSTON AB NER.'5UPPLt SYSTEM yRP~~ Tr f ., ~ R ~ F ~ = v ~ .."'IFO: IIODEL.IIO,,::, '", 'Qfll I ' 6 CORTRRCT COIIPOSTTE IIO " EODfPRERT IIO: 'RFG .'fEST ~ "SIIL.. FFO C PRES, Tll HL." EC EOUIPMENT DESCRIPTION 8 DRANINS USE C(CI2 C aI A 2 A SCRAM SOLENOID PILOT CRO~V 126$ 127 ':'6" ;.6525:~';.02". PT, R"4 <<".",~~':"'," '. - '" =, - ";-'., ' 3 02C12 CRO SPV 1184215 A610 ~ : HVA904052 2 A 1 ~ 0 02C12 A CRO~HCU"4219 '..;CRD SPV i1842I9 RA610;--',',AlA9h4552>:>Et< ~-'+ 'HT~~" '- "-"*T ~'I P "-' ~-"R *' " SCRAM SOLENOID PILOT CRO V 126$ 127 MSZB " 02 1 3 02C12 SCRAM CRO HCU SOLENOID,PILO't CRO"V 126$ i27; 4227 CRO-SPV" 1184227 =," ., A610 . -,55kb,'-'D2:.'.."~" ".'-;.-",: ',,'," " ':..'," HVA904052-J, =" ~-.p",,',";,: .",,'-, .; ', 1,3 0 2 A ~ R 522 L5/So4 = ': ":... . ~ A 1~0 6 02C12 .2 A CRO HCU, 423i ';:,,",CRO SPV,1184251'A610 -, -HVA904052~J 'L",- ~ "~w=P ~+ F'~g 'RG~ c '" =+'>+ q<<~-.- FG j.. SCRAM SOLENOID PILOT CRD-V-126$ 127 ,M528 02 1 3 02C12 2 OZC12 A CRO~HCU 4235 SCRAM SOlEKOIO, CRO HCU 4239 PiL0$ CAO CRD PV 184 V"i26$127; ..; CRD-SPV"11S4239 5 A 4610 0 A I .55ZB'-".."02,: HVA904052 J <<J 2 A R 522 K2/8 ' 1 ~ 0 SCRA~SOLENO P 0 0 V ~$ ], ~O 02C12 4 CRO HCU 4243 .'. CRO SPV 1184243 A610 RJf2 - ~ 4 ~ I SCRAH SOLENOID PILOT CRD-V" 126$ 127 H528 02 I 3 o 02C12 2 A CRO HCU 42 SCRAM SOLENOID 7 R ~ P PILOt CRO-V-i26$ R 127; 522 .KZ/SoI""',." '* -':.. '5528 '= g.,r ",'...A .I Okc .-. -,'"; "- E;,', ." i0 ar "rR 02C12 CRD HCU-4251 CRO-SPV-1184251 A610 HVA904052-J 2 A R 522 K2/SKI 1 ~0 SCRAG SOLEIIOI~OP ~LCT C 0-O RS ~ I 8 0 02C12 CRO HCU 4255 CRD SPV~II84255 A610 HVA904052 J 2 A SCRAH SOLENOID PILOT CRC-V B 522 ifE2/8 I 126$ 127 H528 02 I 3 I ', 'P SS ~ ' OSP Q" F.- 'P+ IPPR '>l. OIPP TV ~POPO'O<>>C/ S < ~ "P O ~ O Q NASH INGTON . PUBLIC- POQER SUPPLY SYSTEIl ~r'ONTRACT GOHPcs!TE No '*,. '0URIPKENT N04 '-'-'NFG4' ',-'.'.,NF6.'RdDEU.';TIES;; - '="l"..;QfD "';,- .'.fh't'- --. L'NL '-";- i)0 'c: LV. EC EGUIPHENT DESCRIPTION -'O'OP ""'*". DRAMING '= '";. (RED ~ fll; HL' O USE 02C12 CRO HCU 4259 CRO 5 V" 11 425 A A 4 SCRAH SOLENOID PILOT CRO~V-1266I27 <<>>o . P',og.";I/526'"""'50.'~ ~<<P'+>/-'
~~,'~ So'~~~'.SR'6'-.'-~'..<< ";'P ". - CR'." - ~ .. i 3 0 02C12 CRO HCU h607 CRO"SPV 1184607 A610 o HVA904052>>J 7 ~ 2 A R 522, L5/Bi4 " "w .o:;.".'.: .,<<,A->'.,zF.' i<<0 ,4 >> 02C12 2 A SCRAP SO~COO SCRAH SOLENOID 0 P LO PILOT CIIO CRC V ~ cRO-Hcu-461i'; '-'",.=;;ciao-sl;ivii84611*::.'A6i 1266127 "-.'; -.-'hek90kd52~J~"4;",-:~", ." ~,,-,;-.'.8"-'y.'".,';-.,",- -: ll528 D2 ~ ~= .,i: - .. o ~ >'-.'-""-"-. ',""':;"-',.-::,=::,.';-..='-: -'- I 3 4 O-02C12 CRD<<HCU 4615 CRO '.c;," SPV I "R 46 A6 - l 04 RPJ 2 A ,"CI R 522 L5/BlhI:"-:",",:";:;-.. ",Ss,"-'-',Pi'*".i ~-.:i<,'jA,;<<","-""-.",~<~.".."gP'*'~i .'."-~'.,'<<.: ";"".. it0;- SCRAH SOLENOID PILOT CRO~V 1266127-02CI 2 CRO HCU 4619 CRO SPV 1184619 A610 HVA904052~J 2 A R 522 LS/8<<4 . . ' . I~0 02C12 CRO<<IICU 4623; 'PD'PV fi8462$ ':.' A610'.o:.AVA90'4052>>J'"'~<<o,'s ".o.",-o '<<Pe~~. ':-~.'-,"Io "'~s "'~~,.'".'+:":yc /I. ..2 SCRAH SOLENOID PILCT V-1266127 CRO H528 = 02 P SCRAH SOLENOID PILOi'5RDR V I1266127.":-': .,'-'.";h506,;-',;.'.=DC j Q 02C12 A CRO>>HCU 4631 'RO SPV 1184631 A610 '. R 522 KZ/Boh O'IIA904052 J I~.' A . -.* -, . Iso SCRAH SOLENO 0 P LO RO>> +66 P
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2 4 SCRAH SOLENOID PILOT CRO V 1266127 H528 02 1 3 I 02C12 2 A CRO HCU 4639 SCRAH SOLENOID CRO-SP V-1184639 PILOT'RO ~ V 1266127 A 610 R. 5Z2 KZ/Byh . HVA904052- <<8528 02.. J .'A '.'. ',...:,.,", - 1 3 02C12 CRO HCU-4643 CRD-SPV 1184643 A610 HVA904052~J 2 A SCRAH SOLENOID PILOT R 522 K2/8 ' 1 ~0 0 CRO V 1Z66127 F 2 D 02C12 CRO HCU 4647 CRO-SPV" 1184647 A610 . flVA904052-J 0 2 A E &5~2&<<M SCRAH SOLENOID PILOT CRO V-1266127 H5ZB 02 1 3 llASHINGTON PlJ8 VER,SUPPLY SYSTEH coNTRAci LV.. EC coHPOsITE Nd' Sl~F~~L EOUIPKENT kauiP'RENi No DESCRIPTION ~ - ' <'= ",-'KFe ".-'.:-";.-*;HP'e"hdPEf;;Nos'"-,.'*,-, L~ ~ DRAUINQ ~"--"'" "~" -'- '"'-* '.",;.aio:.-," - T'EsT -,', Ahl:.',.-., f'Io..'- -'-' " '= ~ 0 C USE FRED , TH. HL-I 4 ~ .~RO~ ~ 02C1$ 2 4 SCRAH <OLENOIO PILOT CRO" V 126$ 127 R ~ 22',K2/864 - '"1.'"'EC '-.""'.>.-"i99>P.".;;=-'. ',:,f!528;~',D2:,~g ~l: )'j-'-'.~-,.~~.'., sL"."""'"":~ ". ->'-'= ' '",;- -", -;I'+0 ~ '~ I 02C12 CRD HCU 4655 CRD-SP V-11 84655: A610;;, HVA901052" J' ',.s,". ~ ". 2 4 1 ~ 0 ',4 02C12 A CRO HCU 5011 -; CRD SP V li85011 .: A61'a ~-:."'HV457) 4'A2"-.'J","" ""-,"+;;":-'-';'!.-',;..'-'-".";';-'- SCRAH SOLENOID PILOT CRO V~126$ 127 H528 .,: D2', '. ~ '. '. ~ 1 3 QkCl. 2 A s R H soLENQID-P1Loi,,iRo.'-tI-i2ei127.". "'i.,",,, R528'"'".-62:: <<p,".>>: "',;",;,-~-."",'z-':. gj., -.:,".;g,.".;.".'",.'!','",'"';.,' e C2C12 2 4 CRO HCU 5019 CRD~SPV~11 8501 9 R A610 522 L5/8+4 ~ HVA904'052~J ~'; i..'.. '- ~ ~ -* f+0 02C12 CRD HCU"5425 "'""RO SPV-; 1185023".-'Jlef 0 i>..; HVA90h052AJ '- P A SCRAM SOLENOID PILOT CRD-V"1264127 h528 . D2 %.2C12 o g 2 4 scRAH soiENoio PiLoi 'CRD-v-i26a127."=.." N821.; D2 ',';.".-'.',.-,:,,-".."."';-'.~. ~'.'.,'c','",' ; 0 02C12 . CRO-HCU 5031 CRO SPV 1185031 A610, HVA901052 J 2 A S R 522 K2/8ih A 'I +0. 2 CRO HCU 5035 ..'; C~O S~V 1185035: Aefo'i.,=flV~~O SCRAM SOLENOID PILOT CRONY 1264127 H528 D2 1 3 2 A SCRAM SOLENOID.PILOT CRO V 126$ 127 R 522 K2/844 = ".; =':'.; ...'.~.'.'-. "H528 .=02 ..~,' ':: . '-".--'~ ..',~-'='; --.=- . ",I . oo ": .,""~ i3 02C12 CRO HCU 5043 CRD SPV~I 185043 4610 HV4904052 J 2 A SC~4H 0 No R 522 K2/8 1 0 02C12 2 CRO-HCU 5047,,CRO SPV 1185047 A610 HVA901052 J 0 4 R S2Z lP~8i4 SCRAM SOLENOID PILOT CRO-V-1264127 M528 02 1 3 PNPPN P,NI LITP I 6~ d5 6 ~, + NN 6%PP N. I C )(CP 262$ ~ *66 I6 V 6 .~ 6 P.T S ~ P H~ VASHINBTOk PUBLICIPOVER SUPPLY SYSTEN CONTRACT CONPOSITE Nd . EOUIPNENT NO',NF6;,-"'-."-'NIfB,HORDE'l.'-'Hdl-..;.'," -;-<<.-aiO '-.- - TTi Si'-'-.,;..ENL'", -"'/ff, '.. LV gAF~EY FllgCJQO+ ' -:" LA/ A C " FREQ EC EOUIPNENT DESCRIPTION . DRAVIN6 . I ', '-. 02C12 2 CRO HCU SOS 'RD ~V ] I. ~ ~ USE A -.~ 6-;, '2 '"85201 .2'",52~."-;N4'~(~ ~'~v .'--",'.':6 '-"-. g'. '- ~;; SCRAH SOLENO)D PILOT.CAD~V 126!127." ~~yg>'~~~. - = ~ $ 3 02C12 CRO~HCU 5115 CAD-SPV 1185115 '.'610 ~ "-HVA901052 J-. '--'-". ';"."+ 6.-' ~CRA~OEQO 0 CR ~ <<A . "~- 1 ' 02C12 CRO HCU-5119'"" 'CRO SPV 1185119.':A610, HVA901552 Rf;'>/""~6."-"-" 2 A = SCRAH SOLENOID PII.OT CRO V-126C127 fl528 02 . , ~ ,. ) .',',, i. 3: SCRAH SOLEN)10 PILOT CRO V 1268127 '.'.'"hbZB'7,';;b2,.-=",-~-'~~:-,";.'<'".'..':;,.:; .",,.--,':".."..;,'.,".,',""~.-'.-,,'>.-.N,"....;-,,'. 02C12 2 A CRO HCU-5127 CRO-SPV 1185h27 R 522 LS/Bah A610 'VA901052 J ',;.-'" ' ...*: A ',. - ~ 1~0 SCRAN <OLENO 0 P LO C 0-V- 6C 02C12, CRD'CU 513K-',<2',, SP) 1145481-' A6i ",'HffA901682~2f ~j<<"4;-" ~ CRO - = -;:i:..g,:.-".:-,22 J<< 02C12 SCRAN SOLENOID PILOT CRO V 126CI27 34 . H528 ~, 02 ~, . 1 3 CRD HCU 5135 CRO 1 A 2 A PIRO'RO" V 126CI27' ',:-'(I .$ 5)8: -"b)NRi"'2-j'+~i-~'( ,'"~'.,-,','2 '",.=,, j SCRAN SOLENOID "-.. w>'-,'.":"2+!; '~Oft=,'- -., ==. 02C12 CRO~HCU~Sh39 CRO SPV 1185139 A610 HVA901052~J ' A R 522 K2/8 ~ 1 ~ i+0 SCRAH SOLENOID PILOT CRO V 126C127 f25 02C12 2 A CRO HCU 54h3;RO, . "=N CAD SPV 1185143'l,'. 'I'A6t0 2 j'j:,HVk904452 '8 )'"',',ijRI ~ 62,~>',.'-'N l'6 661 '. O', 2IPP SCRAH SOLENOID PILOT CRO V"126C127 . N528 .02 " 1 3 62C12 2 A 02C12 SCRAN SOLENOID CRO HCU 5819 - ~,'. ",.' PILOT CRO~V 1268127 CRD SPV 1185819 R S22 K2IBihT ~2 - = '= A610 . N528 HVA901052~J 02 '- '- ." -. - '.. "..."-2;"-=-A--C.",:PI.'-N' i.=;2'-'.f .. . =-, '. - . '." ":.;; 1 ~ 0, - -' ' 3 2 A R 522 LS/8 ~ 4 1 ~0 OCRLII IOLONOIO PILOT CRO-2-1266121 N52 D2 I C2C12 CRO HCUiSB28 CRO SPV 1185828 A610 HVA901052 J 6 2 A SCRAfl SOLENOID PILOT CRO V 126AI27 2 222 LOIIL~ f2528 02 / Q NASHINBTON PUBL NER. SUPPLY SZSTEH 4 '., .. ~g ':. ~ ) CONTRACT .LV... EC COHPCSITE NO ggK~/RCIL ECUIPHENT DESCRIPT ICN EOUIPHENT NO MFGi;,- ' HFG ORANING AOOEl.'<<0 ~ .,'- '.-.:... .OIO,- = TEST;=,, ANL:-;>> *:"- F/0 C USE FREO,, t>>URA TH IIL, ', CI Q2C12 2 A SCRAN SOLENOID PILOT CRO" V<<1268127 t ",',,"=;-'tlhkk."'--'M,.4+>>-; io0 >>;<<-- ~ ,', ~ G2C12 CRO- CU"5831 A610- / 'HVA904 2 ~>>~9 A ieo= 02C12 CRO-HCU-'5835 '-".'-',-'CRO-SPV-.1185835'A610+;-"',Htll'l0'55,"rf ':"'/t 4 .. 2 A SCRAH SOLENOID PILOT CRO V 1268127 -H528 '. ~ D2 >>) QRC,12 CfN o 2 A R 522,K2/Bal>>;,, ;.;-.~-'-;;, >><'~,":-.s,.',~'<:l A-.:<<."-;.'.'-' "" '..="': '-.-, --.=' SOLENOID PII OT.CRO" V'266127 ..- -." -'-;:., Il528';0 Ii0.'-='CRAH 0 02C12 CRO-HCU 5813 CRO-SPV" 11858%3 A610 HVA90A052<<d ' >> A AH 0 0 R 522 K2/8 ~ 0 h 1 ~0 ,0 02C12 CRO IR 34; "",.',;-'. '-CRD<<SPV<<9. ';>>: l."A>>$99>>;., HT$ '32)2)'>>t, 4<</ + .':..)P: .";<<P'r'ruj';tJ m-".'f />>', i >>g',". 2... A I+5" SGLENOIO CAS TO CRD"V-10 ll528 D12 1 3 02C12 / CRO CU 9 ':., " ..'- 522 A LS/8 ~ I "r'">~'~r'~>>/* ">>'=' '>> '"t'"". '-"' - 2 G ~ 5+SOLENOID MITHORAN EXHAUSt VALVE-,...=- . . / G,,///,.iii ",', ".'-'-.- /.'i.-,'.'-,.-~'- ",",-X --'- g,-'- -/t;)'.,;= "=--, >>~ <<~.. '<<- 0320 --: -.;, i ; 0 92C12 CRO HCU-0223 CRO-SV 120/0223 A610 HVA1709662A 2 0 R 522 L5/8 ' 1320 <<>>SOLE>>0>> A A A o 02C12 CRO<<HCU 0227. ""C)O SV"120/0227.-";.'.A610-','VAiTdd662A.~.',"~- <<,"'-..>>>> "..'>>':~".:; ,0 <<5% SO LEND IO NI THOR AN EXHAUST VALVE !e 02C12 CRO-HCU-0231 - 0/ G 1 3 0 CRO>> 1 A Q ~LLi35fJi2 2 G R, 522.L5/Bsf .-O 4320 ~ 5"SOLENOID VITIIDRAU EXHAUST VALVE - 0 >> i 3 0 02C12 CRO HCU-0235 CRO SV 120/0235 A610 HVA1709662A 2 0 522 K2/801 R 1320 ~ 5~SOLENOID VITHDRAN EXHAUST VALVE G 02C12 CRO" HCU 0239 CRO-SV-120/0239 A610 HVAi709662A 2 G R 522 52LO..< ~ 5" SOLENOID VITHORAU EXHAUST VALVE G 0 'SE t O ~ Ff .aak-F " a 'OOhC.~. FaOFP Al'W OF,.1 ~ ~;ta-O O,.i+a h OC ~; a, Ml SH INGTON PUBLIC "POMEh .SVPPLf SYSTEN CONTRACT LF . =, COMPOSITE HO ~ 'OUIPK>>ENT OOFCJ+FOOCQOO . EQUIPMENT DESCRIPTION ~ . " ~ NO a MFG QLAIC~COf ".'".tlF4 lIOOEL NOoi ".-'.. ORAMINQ "... '..- ." '" 'l '". --:-'OIa' tEST '.'bad..='/0 "':" k*'l OJIQ 'C C FREd TH HL 2 02C12 G ~5 SOLENOID MI)HDRAM EXHAUST VAL'IlE ihC, CRD-HCU-0615 CRD-SV-120/0615 >>a Ch~oaC+.'."0 ral A610; HVA1709662A-j-'a '.h'F.'ahc,ah'a )'-+'+ 'a, +~'a'cgaaaj~CC>>'k a " v 2 G R 522 L5/8eh. g,4 ~a~: .-'~~>caa-j~>-'cq8: ~ ~ ~O~F . ~ . 4320, SOLENO 0 M H IM E HA~ A 0 ~ 02C12 CRO HCU 0619' -,'NACRD-SV-i20/06i9,';=.X610, -.,"'.HVkffb06%24"'.,;,"4-.q4". - .-a'..-'."."".-"':.;:;>>'.,-".";-';-' a" '*'k a .1 ~ 5" SOLENOID MITHORAM EXHAUST VALVE F . ~ ~ . F k ~ 1 3 OOCCO 2 G CJLODLC kM.MS Q "VALVE/,/l,';O >'a" -",'F'~"'"'~ "-;=~, l '..-..;.; l 45 "SOLENOID MlTHORAM EXHAUST -~ - '~.,~F,F.'.'~",,-; ~='..".",',-',O,- ~':.",, I 3 02C12 ACRO SV 120/0627 A610 HVl1709662A 2 G R 522 L5/8 ~ h . ', '-.".-'.- . -.;S - 4320 ~ o~ooc o~o alf I 02C12 G CRD HCU 0631' " 'kp SV 120/0651 'al610O., flVA'f709665A+>+F', ~ 5" SOLENOID MITHORAM EXHAUST VALVE, ~ 6:. a 02C12 CROiHCUaa0635 CROOFSV 0/06 5 A 0 ~ l 6 0 2 G k-.'-., Ik R 522 K2/8)h""j k,k," gL+Fk $ O+ OOCC+Jl- F. ' j/OB qj>>C~>i,k/4- F>>h '~" "yakaka gr~P-a>>O'a', 4'qaFk kk J5"SOLENOID MITtlDRAM kAIA'US) 'SALVE..: .: - O~C'. '~"'.""'='~F"'-;"V"'---"'.-'~, ~l~-""-'j-'-'~ '-"> i"'o O y'32P 4'. ~ -.i 3 02C12 CRO HCU-0639 CRO SV"120/0639 A610 HVl1709662A, hh ' G R 522 K2/8oh B 4320 ~5 SOLENOID MITHORAM EXHAUST VALVE ~ 02C12 CRO'HCU 0643 - F .CRD SV f20/0643;,$ 610 . HVki7di66)i"'"-""-- '; -. " 2 G K~/1 ,'~5g ~ 5"SOLENOID Ml THORAM EXHAUST VALVE 1 3 02C12 CRO HCU 0647 CRO SV 0/0647 4+60 2 G .5"SOLENOID MITHDRAM EXHAFUST R. 522 K2/Bwh VALVE.: -, S '- - '~-- - -..-- 4320 = 0
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02C12 CRO HCU 1011 CRO" S V-120/1011 A 610 HVl1709662A G R 522 L5/8oh 4320 ~ 5"SOLENOID MITHORAM EXHAUST VALVE G 02C12 CRO HCU ipi5, CRO"SV 120/1015 A610 HVA1709662A 2 G R 522 L5/8oh ~5 SOLENOID MITHORAM EXHAUST VALVE G 'IR( e '(A.A A( ( R(VO(( EX"'(.( ~ ( A A I ~ - ~ ,t :~ I QASHINGTEN'tllB MEA SUPPLV SISTER 2 I 0 CONTRACT CONPGSITE NO .; ,'tFGJ"..- .: EOUIPRENT NO - HFO Hkl5EL~~~N4il- - - '., ",QfD", . :-fEST "".'AL-'...~. F/4 ', C ',FltEO TH," HL" ~ EC EGUIPHENT DESCRIPTION ORAMING ( 2 USE 22CE2 CIEO- C - - - EEEEITEO ~A -S.SOLEtiOIO MiiHORAM EXHAUSi VAI.VE.='., '~-'.e,=;:.'-.-.<.",<<...'."..-,'-,;~'--.=:,-;.,>.-..-'..-.-.,'<.-'.-...,'"----.'-.,-, -=.'-'.=',.-. ".-,, '..-i 3 ~ ~ 02C12 CRD HCU 1023 CRD SV 120/1023 '610 ~ "HVA1709662A';:~'.'-.": . 2 G o5"SO EttD 0 R 522 L5/Bi4: ~~,::~'~ ."2':!2'(I'RP!2~2(T,". B>~'O'-2' 1520. M T DRAM E AU VA VE - = -. C~'-'-~:;:V"-'"~ '<.'~~~'~" 3 02C12 CRO HCU 1027,-(. * .ACRO-SV 120/1027"-A610 2'"; "'HA(7lt4655A'""'~~1 K<<.~'";"~-"+'~4>>'"-":".' -~- ""'" ' "~ ' G ~ 5" SOLENOID MITHORAM EXHAUST VALVE '0 ~ g'--:. 2 3 02C12 CRD~ C C~RO~ 7 A 2 G QITHORAM'.E)tAttUSf VALVE,='EE(', =," ~xl'j '".;, '",+"'<,'a E'.,(.g '5+SOLENOID 02C12 CRO HCU 1035 CRD-S V-120 /1035 A610 HVA1709662A G 5~ R 522 K2/Skh .'- A " '-"B .' -' 1320. 02C12 CRO~HCU~1039 <<( CRD~SVR(120 /1039 . A 61 0 '2'Vlif09662A o~w'P"-w~j.('2(- -~g>(T RT(~'I ...' .2'"(2/('A(l ~ ~o tA~'~R(t(A'~('~. G ~ 5"SOLENOID MITHORAM EXHAUST VALVE 1 3 02C12 C D-HC - 1 A ~ 5"SDLENOIO MITHDRAM EXHAUST .VALVE ~,,'.-':;;..; pe,~-,t". ~~',"-'2 02C12 2 G ~ CRO 5" SO HCU NO 101T RA CRO SV A 120/1017 R A610 522 K2/0 ~ II ,,'," HVA1709662A B 1320 02C12 CRD HCU 1051'.'- CRO"5V-100/1051:. o'640;" "HVX47496624 2 0 ~ 5"SOLENOID MITHDRAM EXHAUST VALVE 1 3 02C12 G 02C12 ~ 5"SOLENOID MITHDRAM EXHAUST VALVE . CRO HCU 1111 R 522 SV-120/1111 L5/Bih ~, 0 " -A g,-,'" "= B ';.',""-; ~ "."..-...,,",;, .-, ""'",.;1320 = 8 CRC A610 HVA1709662A 2 G R 522 L5/8 ~ 1 1320 O AOAEOOI~OOI RARA~REX ROOT V~AXE G 0 02C12 CRO HCU 1115 CRO SV 120/1115 A610 HVAi709662A I 2 0 ~ 5" SOLENOID IIITHDRAlt EXHAUST ~VZ LSJX~h VALVE G 1 3 0 o' I er 0 ~ +4 ROSE Ivv" ' 4 FI'Frr'v (%4 q ~ . 4 Tl. @ 'F. MASHINGTON FUBt.fC POMER SUPPLZ SZSTEN CONTRACT LV COHPOSITE No, SAFEJ~TUECTE OIL EOUIPI'ENT Now,.HFGq'," =.,NFG. NdOEL. Nb,,, 4fd .. 'EST,,- ANL ,F/C C FREQ TN HL'C" LC EPUIPKENT DESCRIFTION ORAMI NG 0 F ~ USE 02C12 CRO HCU 1419 2 G ~ SiSOLENOfO 1320 QITHORAM EXHAUST VALVE 02C12 CRO HCU 1423 CRC-SV"120/1123 A610 r HVA1709662A -" 2 G R 522 LS/Bah 4320 .....~EEEEILO 02C12 2 Gs CRO~ H CU"1127 CRO S V"120 112 f ';A610' 'VAI100565$ -"'~"'4'-0, '~">', - '.", ~ 8 ~ 5~SOLENOID MITHDRAM EXHAUST VALVE CRD - / A 0 0 ~ 5 SOLENOID MITHORAM EXHAUSf VALVE,,0 1 3 02C12 CRO~HCU 1435 CRD SV 120/1135 A610 HVA1709662A 2 G 522 K2/Bah 8 0 ~00 0 II T 0 Alf R IS20 V~IIV E IUS VA VE 4 02C12 G CRO HCU 1139 CRD SV~i20/1439 A610 'VAf700450k ~S SOLENOID lllTHDRAll EXHAUST VALVE 1 3 02C12 CRO~CU~ 443 OR 2 6 R522 K2/Ba) ',-. .. -,4( ".,:- 5 .' - ' -' .. '320 STSSO LEND IO MfTHDR AM EXHAUST VALVE '1 3 02C12 CRO HCU 1417 CRO SV 120/1447 A610 HVA1709662A a 2 G ~0 "0 ~OI~ AM R S22 K2/Bah . 8 1320 jo 02C12 CRO HCU 1451 CRO SV 120/1451 '610 2 G ~ S"SOLENOID MITHORAM EXHAUST ~~2Jf2L8 VALVE I~O 02C12 R 0~20 /Q5~A1 o 2 G ~ 5"SO1ENOID MfTHORAM EXHAUST VALVE R 522 K2/8 ~ I 4320 ~ 1 3 02C12 CRD HCU 1803 CRO"SV 120/1803 A610 HVA1709662A 0 2 G R 522 LS/8 ~ 4 I 4320 ~5~SOLENOID MITHDRAM EXHAUST VALVE G 02C12 CRO" HCU-1807 CRO-SV 120/1807 A610 HVA1709662A 2 G R~~LS I ~ 5"SOLENOID MITHDRAV EXHAUST VALVE G 1 3 0 kc ' 8 N( ~ VASHINGTOA PUBLI ER SUPPLY S'YSTEH LV... CONTRACT COHPOSITE NO ~ 3dEEIXJJJHCI.I. . EouiPKENT No ~ ',NFL "'".'.'I'.F4 "-'QiiaDEL'b~ ';-'. ": -,";-"BIO '. "-. TESi "=- APL '..", 1-/0'NLJ.OChi1QN C FREa TH Hl. EC EGUIPHENT DESCRIPTION CllBhC. k l k BRAVING USE ..02C 2 I G 2kLURl M Ck k ~5 SOLENOID )ITHORAM EXHAUSt VALVE ':. -" '-~ -'g -'-'k"f'~~ "k~- I 3 02C12 CRO HCU 1815 CAO-SV-120/1815 A610.;. ')HV$1209652A'!"~=. ~' G !kkkl-'kkkkkllkkkLkkikkkkkkk " ' ~: ":'"..".'.'- '-> ~ '.i.k ' h320 02C12 CRO;HCU"1819 . CRO-SV-I 20/181% =-A61 O.-r.'.)V'Pgfg)662AP~".-'~( ~4:",!-'-'.'; <:.. g..... t4 ~ 5"SOLENOID MITHDRAM EXHAUST VALVE 6 O2C12 2 G ~fULH - ~2 ~ 5~SOLENOID VITHDRA'M EXHAUS) VALVE.,;,:k,6 . ~-',;='"-"+k~w~v-....".".C --'k'-g~ ~ .'-,"'~ --"",... ": ",. - '";,:. 1 3 02C12 2 G CRO HCU 1827 CRC-SV-120/1821 R A610 522 Ls/8oh .. HVAI109662A, ~ - '. "" *'. B h320 02C12CRO HCU f831::'-,CRD SV.120/1831 461 0,,'. 'VA)f4$665XP.' c-"'" -'.',j'" i.2U 2 G ~ CO-C--- 5~SOLENOID VITHORAM EXHAUST VALVE / R ~ 522 K2/8sh~ 6 ~:~~'.':.;.."*=: k,-~~;"'~.>-: B 'g-.".',=~',. .,'-'..'.'>k ' '320-1 3 0 ~ 5" Sot ENOIO MITHDRAM EXHAUST VALVE ' 0 -'" .""-'-/g~P.'--'i."--'- ."'.kP -"" ' -. - ~: ' " = I 3 02C12 CRD HCU 1839 CRO SV-120/1839 A610 HVAIT09662A- , Q 2 G R 522 K2/ah IH 4 B h320 ~ ~ . ~ 5" 0 D V RA g <Ck ~ 02C12 CRO-HCU-18h3,,CAD SV;120/18h3 . A610',. -'HVAIT09662l,: * "=",' ' '. ! ' ~ -, G ~ 5~SOLENOID MITHDRAM EXHAUST VALVE 0 1 3 I 2 G R 522 K2/8 ~ h' -=, '.*;- .'~. * ---,.B .- 'h320 .s~soLENOID, MiT'HDRAM EKHAUsT vAl.vE .'. =' 02C12 CRO HCU 1851 CRO-SV-120/1851 A610 HVA1709662A 2 G R 522 K2/ah ,~o~El o ~IBQBAk~MUX~AL" 02C12 CRD HCU 1855 'RO-SV-120/1855 A61G HVAll09662A .. 2 G 52K K2L8+.h .S.SOLENOID MITHORAM EXHAUST VALVE G 0 0 e h ' ~ ! ">>h ~g>>gq>>>>,h>>'Ahh>>P'gg~P '~ >>, h>>'Ph >> . MASHINGTON P08LiC PdMEII SUPPLT SYSTEh tP~LkS~~lllIBKS I CotlT ACT COHPCSITE NO ~, . EQUIPHENT NO ~,"" ".'lFGa".',"",.hl'6 >~HOOEY., HOi-"-.=:-',~ OIO, .:*;.'EST'. ~':=AliL ' F/0 " C FRE4 - TH Hl.; EC EGUIPHENT DESCRIPTION ORAMING '. ~ USE 4 02C12. ~CO~C~U- +59 - 2%llkl~61 1 2 G ~ 5"SOLENOID MITHORAM EXHAlJST VALVE ' ':.',h" <".",'$ ."I~A'Zj'~. h>>=', ~';.">>'.><;""., " 02C12 CRO HCU 2203 CRO SV 120/2203. A610 ~ '." '.HV 170'9662A:. I '>~ ~ 2 G ~ 5" SOQEQJD 4 I DRAM A R E 522 LS/8 ~ 4 ' - -0 '..'j .", ~'= ~i~t>>r! >>>I>>>>>>, 8 5-c ~ ~ 4320 02C12 CRO HCU-2201'*".;-I- CRD SV '120/2201 s" 4610 "~'~ QVkf'f0966~gg+dp+Pgk. ' 2 G G, 5" So LEND IO MITHOAA'4 EXHAUST VAl.VE 6 . ' ' ~/~$ 3 ~ C2C )g C ILO Jt+IL2.~ 19 2 "'>>'-, ',.'. -"-'-'.'.. = c-522 LS/8 ~ 4 h '. l,",, *.'.:;;":-""":"-'w-" i .-.-;8 ":";"" '"I""'. 7" .'.",w ",'~".I-,,III320,! ',. 'h ~ R o5 "SOLENOID 'MITHDRAM EXHAUST VAI VE>>',! )"6'i-~'~I-.t,'.~>>./'gc.y~~>.',< P~,-(.-." '<,~,- -~-;:, j'~.,-"~x.- -',:h,.: ',.;-h>> i 3- 4 02C12 CRO-HCU-2215 CRO"SV-120/2215 A610 HVA1709662A 2 G R 522 L5/8 ~ 4 - 4320 02C12 CRO HCU 2219,':,-~: .-'CRD SV 1 20/2219',.'A610"'<'Vkif096631C':1'4 0 0 ~ 5"SOLENOID MITHORAM EXHAUST VALVE 02C12 C~O~ C~2 Ul 0 2 G ~ 5~SOLENOID MlltlDRAM EXHAUST -' 522 1 5/Gyi" jh, PA '"g +',!~ ", m w~x+j~.:8 i')"v;'hh ~ hh h",Pa>> P'.>>h I>>h.'l >>.',>:.','>>h h 4320'2C12 2 G CRO HCU ~ 5"SOLENOID 2221 CRO MITHORAM EXHAUST VALVE SV~120/2227 R A 610 522 LS/8 ~ 4... HVA1709662A 6 8 4320 02C12 CRO HCU 2231 -. '.,"CRO SV 120/2231 . A610 A-.- 'PVAif09662K: l- j~;,":;-~',<<'.-,,-, 2 G ~ 5" SOLEtlolo MITHOAAIt EXHAUST VALVE 6 1 3 02C12 02C12 0 CRO HCU .5"soLENolo CRO HCU 2235 2239 MITHDRAM ExHAusT CRO-SV CRO SV h 120/2235 vALvi'. 120/2239 R A61 522 K2/8 ~ 4,,';-=.Ti~" A610 HVA 10 66 G HVA1709662A A -': .';-";.--'~. 8 ~,>>',,'; "4320 1 3 2 R 522 K2/8 ~ 4 4320 ~ 5" SOLE~ODM+~TDRAM EXHAUST VALVE G 02C12 CRO HCU 2243 CRO-SV-120/2243 A610 HVA1109662A 2 G ~ 5" SOLEtloIO MI THORAM EXHAUST VALVE .Lt AZ2. X2EBM 6 3201 3 0- VEA>,p<a>> ": 0 ~ Jr'0, A, >'<< >{EAR<<'0<< '0'<{0>20> ~ . ~ ~ < 0 ', ~ QASHINGTD R SUPPLY SYSTEN L12CS2 COt)TRACT COHPOSITE NO ~ .." KOUIPHKNT NOo". -' " HFGo -'- ',-- ';SF4;AdlfEL"'ND~ >I',=,".,'"= ..'-'OIO O', TES'I,; .:."lNL'... Ff 0, "'C FRED TN . HL. . KGUIPHENT CESCRIFTICN, Leizi.eCMD ':-'= '- ORAQING 'C USE 'VUTW~W 000EAE. I 020>~ll-HEIL220 - - EILl220JM G o5 SOLENOID QITHORAM EXH lJST VALVE .'"A ><< .0 "'--'0{6 ji ~I'A,'"~>C'.0'lc Eying " 'A~>lo'{I ~l ii"';~V;.<', .<<j 0" 'w. o'"'-IE>0 '", ', ', I 3- '2C12 CRO HCU-2251 CRO-SV-120/2251 A 61,0. HVAIga9662A .y.. I~ 2 G R 522 K2/8oi I320 o~oklQEI IA 02C12 cRD HcU 2255 '. 2 c)D>>s vol 20 /2255"'HASID r<<>>< 'flVAI70kf82k~i~~ "~~'{HE p'20<<" .<g>EII +<'">Et,;, '>I;"."<> I<<r'. 'p>>>+" +~ "~> '<,00<':'< 2, G,. ~5 SOLENOID MITHDRAM EXHAUST VALVE 3 2 G ~ 5"SOLEttOIO MITHORAM EXHAttST VAl VE." ';*. "';,8l ."-'02'.< . <<.'PCc>{.--.'."..,"';; ". y'"." """0 02C12 2603 120/2643 HVA1109662A CRO HCU CRD SV A610 . 2 G R 522 L5/Gol " " .-=" " B 1320 ~ o A 02C12 CRO-HCU-2607 I,'". i IECRO SV 120,)260 7" .-'A61 ': 'r<<HV)i't09662A.", .:- i~~.:~{'-'.-.'-'",0-;;. ',O > 0~
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~ 5"SOLENOID VITHDRAM EXHAUST VALVE 1 3 I 0 2C 2 I G ~A+~EX 1 ~ 5oSOLENOIO IlITktORAM EwtHlUST 02C12 CRO HCU-2615 CRO SV 120/2615 A610 HVAIT09662A.,: ' G R 522 L5/8 ~ 4 B 1320 ~ $ "StU f 02C12 CRD HCU 2619, ', .'CRD SV 120/2619* A610>>' HVAi'llt9662A';-".;,.'='t.: - .-;,'" .~,';0,:;. 2 .*;j-'.; ',W.'0'"-; ."-:,P 2 G Lemma ~ 5"SOLENOID MITHDRAM EXHAUST VALVE 1 3 t{2C12 2 CRD HC~623 C 0- - 9 i.>g~~a~~tkLTtK6 "L5/Otal' I'I '" " A320 G R 522 > - ~ =I B'5" SOLENOID VI THORAll KXHAUST VALVE ~, ~" 02C12 CRO HCU 2627 CRO SV 120/2621 A610 HVA1709662A 2 G R 522 L5/8 ' 4320 ~ 0"SOT~ERR 0 IIETHORAII EXHAUST >ALOE 6 02C12 CRO HCU-2631 CRO-SV 120/2631 A610 HV41709662A ~ 2 G R o2+L5ggo 4 ~ 5"SOLENOID VITHORAV EXHAUST VALVE G 4 MASHINGTON PUBLIC SOMER.SUPPL/ SZSTEII jS~Q A NO'.,'. CONTRACT EC COHPOSITE EGUIPHENT DESCRIPTION EGUIPHENT.NO .'6 ~ -.'. RFGo-,'5-I- ."' '.AfCvlldokf.'-.'NOi; ';-',""'- i.OIP*,-,'ESt.,'. DRAMING - ANL:: "F . USE . FRE0 -'-TN
- HL 5
02C12 CRO HCU 2635 CRO SV 120/2635 A610 VA1709662A R 522 K2/841 w~')Ao I; 2~~@>c'c ~0'5~~ B "4 "'-Rw=.", c -."" ' ..:",4 )320 ~ 5"SOLENOID QITHDRAM EXHAllST VALVE: - '- "0 .':W'Rs;"~c~'-"-4'="v45'- ~ ~ 02C12 CRO HCU 2639 CRO-SV 120/2639 A610 .-',-HVA1709662AJ~.".,5'~,.: G ,5"SOIEIIOEO OEVRORA~VE 4lt I VAEV .: ..'..' ~ ': ":I""'I: 1320 02C12 2. CRO HCU 26A3;" .- -.'CRD-S'V 120/2613 '~ 4610'/""".'jjVAf7556424c~". I '.ET"cR'"'fy~'j c. ~.'.'4' '- ".,' -=,: . ~ 5~SOLENOID MITHORAM EXHAUST VALVE 0 1 3 02C12 I 2 G ~5 SOLENOID MXTHDRJiJ-kfttfAUSTE VALVE." -.. '.-"','.-"0';-"~,'"."; "" .".l+ 5";:-'~.:.;:"-"I ';";.,'.:.-'-;;- ';. 02C12 CRD 5 V "120/2651 A 610: ~ HVA1709662A' 2 G R 522 K2/8sl *- ', ~ << .4>>',." . B 0320 5 II 4 ORAII ~ 4 . 5 .'SOEERO 02c12 cRD HcU"26"5 '='".', cRD ~ 4 sf"i20/2655 ~ . A610'.:.,"(Qjf6566N'4,;. 2 G ~ 5"SOLENOID MITHORAM EXHAUST VALVE G,,EE ..-.::..', ~ .* ~ . -,,, 13 02C12 CRO HCU 659 C 0 ~ 5"SOLENOID MITHDKAlf EjtHAUST VALVE,~ ~ . 5-'r,""..'",0:~p.IA~~'-'<-~- ~4".'p:.SAA"4~5-'-.!vklSSE~O,VA;p~,(..>'~~rp-".',j>>'- ~ ;:;~'2C12 CRO HCU 3003 CRO SV 120/3003 A610. HVA1709662A -. , 2 G 'R 522 L5/8+4 . "-.;..-':"..-"-:" " = .B ' " '4320 ~ 5"SOLENOID QITHORAQ E AU VA E 0 02C12 CRD-Hcu-30o7 =-; -.;cRti-ski-42o/3oo7,'6io- .'.Hvit759662A.,;;~q.;= '.:=,-,--~-,z=--:..',,i ~';:;-'::.";<""4>=.:;..--'-';-;.,::- 2 G ~ 5"SOLENOID QITHDRAM EXHAUST VALVE 0 1 3 02C12 2 G CRO~HCU~3011 ~ 5"SOLENOID ERS"sv MXTHORAQ EXHAUST VALVE Iso/5~446 R 522 L5/84< ';.:.; 0 AT 66k '. 5-;c"::'";"'-;~ '" =""'-:-Eg" '..; -'- ". '; ',=",-', ~ -~-'-" " '.--*. '."'-: . -0320 i .-"-., 3 02C12 CRO HCU 3015 CRO SV 120/3015 A610 HVA1709662A 2 R "22 LS/A % 1320 ~ 5~SOLENOID QITHORAQ EXHAUST VAL E 6 02C12 CRO HCU 3019 . CRO SV 120/3019 A610 HVAI709662A 2 G R 5+/ L5/8m~ ~ 5~SOLENOID MITHDRAM EXHAUST VALVE 6 0 4 QB ) S CONTRACT ...LY . -~CI~BS-2 G EC COHPOSITE NO 'SCCIlLSIIBCY2 ~ EOUIPHENT OESCRIFTION 'OUIPt'ENT CISLRlLSSSIBIL'~ 5 SOLENOID "MITHORAM EXHAUST VALVE' NO ~,':" -. illSHINCTON t" HFG " Fui KFC" DRAMING f 2 ',;.,i ~j4',~~;~ciy'lgj,.>>'aY="PL P ~ ~ " 0 SrSTEii 40OEL"45".';..-"-'".. 9 - diO," '; '.; 'j'>>',.'- ". ~BS~SSllS TIESt '.2 'Ahi'" - t'iIO - .=' .C" .- FAEO ~CCBBBCY USE 'H ~ H 02C12 CRD HCU 3027 CRD SV 120/3027 A610 c,:HVAR709662A f",,",.: ., :,' C' 2 G 522 L5/844 ""s -'>'g 'c,.B,';"2'7 4'" A B, 4320 02C12 CRO HCU-3031 ." ":":.CRO SV'120/303? -'.;A6id>'-'; HAIjbYI652l~~~3~++'-~.'-'- -" ~5~SOLENOID MITHORAM EXHAUST VALVE 8 BCI2~29-2 G 'R 522 K2/894 'i'> -t ~,"-= "'YL""'"B: ->".LI '-' '~ ~ I=-" ~ '4320 65~SOLENOID MITQORAM 02C12 CRO HCU 3039 CRO-SV-120/3039 A610 HVA17096'62A 2 G 8 R 522 K2/8 ~ 4 ' 4320 I 'I 02C12 CRO HCU 3043 "-, 'SO '120P30I3 .".A6i0,-";;:ftV)i'75Ph85A,.".,'ci:-,,'$WOB ~. G ~ 5~SOLENOID ~-,.CYRO MITHORAM EXHAUST VALVE 02U. 2 G ~ 5"SOLENOID QITHORAM EXHAUST VALVE ' '- '-2 '6 '" .'. '~""'-~"'>>"~ ' ">>" '" .:.".;.-','~<< '4Y,I/'~""s .',-.-.',>> ' C 8 02C12 CRO HCU 3051 CRO-SV-120/3051 0 2 6 A 610 522 K2/F 4 HVA1709662A R 4320 )0 02C12 CRD HCU-3055 ~ -';.CRO SV-120/3055 A610 AVAIf09662A'","', g.. G ~ > fL52 ~ 5" SO LEtt0 ID MI THOR AM EXHAUST VALVE 1 3 U?U.2 Q - - ElL tt G R 522 K2/8e4 8 432O ~ 5" SOLEttOIO MITHORAM EXHAUST VALVE, ' 02C12 CRO HCU 3403 CRO SV 120/3403 A610 HVA1709662A G 522 L5/8 ~ 4 4320 2= R SSMKLUt9 0 02C12 CRD HCU 3407 CRD SV 120/3497 A610 AVA1709662A 2 .0 ~ 5"SOLENOID MITHDRAM EXHAUST ~I~2 VALVE LBCB G 1 3 ~ ~ . - '5+44 5 f,5.4.'~ 4 V W"P '44~25 tRR Y3 'ORR"454442444,~ Q t 'I 4 'ASHINGTON, PUBLIC POKEgt SUPPLY 'SYSTEII KMO~LA~E EQIHRHER AI~LLLL2CB~ CONTRACT CONPDSITE NOs ' EOUIPHENT MO '. IIFGJ'- - =:" -'.-'HFO'IIODEL,Nd~'.;-;',.;, .;.'.aiO:.- =-- TEST,"',;;-ANL";..: F/O',. ' < C F E TII ge EC EOUIPKENT DESCRIFT ION ORAKING 0 . USE HL'2C17. 2 G ~ 5"SOLENOID KIJHDRAQ EXHAUST VALVE R 522 L5/014 '4, g,~. "'-." -~~'.24 .~ *'::::~~<~34 "B -.":~ o -" -- " ";; .'-i;4 1320',, 4~".'~'0""~,eg~t-'3',R~ct~~c~~i~4P<"..~~~.":wA~.'.445.-;3::"',;"'~5't~';".'-~ttt",i.,' Ry ~ 02C12 CRD-SV-120/3115 ','A610. , HVI1709662l,'";.;".'= 'll', ",'." '- 13 2 G I~ 1320 '522EBIKQ OIJOlllUULFJOCRO~L 02C12 CRO~HCU~3419 '; '; CRO~SV~IRI0/34i9 .-;A6(5 -'".~."+Zffgk "t0%3EA2&j)+>" '274+"<<'Rc'~'~~'~+-4 4~'4'.". -'5<<".+"-='"~"-"~ 24 * ..2 G ~ ~ 5"SOLENOID KITHDRAK EXHAUST VALVE ttt4 1 3 02C12 Qg~ 2 G 02C12 2 G 02C12 ~ 5"SOLENOID IIIfHORAK CRO HCU CRD-HCU 3427 343i'-'.-". 'CRO CRO SV 120 SV /3127 R .i20/343f. A610 522 L5/Boh -;' HVA1709662A '.OAGI 5:,;:.HVlf709h62It".",2, '~~'~;=".- '. ', '. 4 4 '~.."-.-:.'-'":-"-",'.;;*-,".'~"-,'.;;-:>'.;.'-; 4320 2 G ~ 4 ~ 5"SOLENOID KITHORAK EXHAUST ICRCI2 CIAO~ 5 '5"SOLENOID,KITHDQAK EXHAUST 02C12 2 G ~ CRO 5" SO HCU EN 3139 IO A CRO-SV-120/3139 A'4~ A R A610 522 KZ/BO4 HVA1709662A - '.," - 8 1320 I 02C12 CRO~HCU 5443:,-... 'Rb SV-120/3143- 'A610 .- . HVAE709662A "(~+g.', '-*,'. '. -"-. ".'--"- 2 ~ SiSOLENOIO KITHORAK EXHAUST VALVE 1 3 5RC!2 CR0 RC 3442 QLLZRQ9~6l!L MUllIILlfdi2 G . ~ ".-;." ".', .;=.'"./,2-'.'- .5.SOLENOiO kffHORAII EXHAUST VALVE R 522 KZ/014 .-,'- G .... ", ",: .",'.-'. 2'~ ~ -...* ." '- "',-'-'.:-" ".- 2" c~:.22 . 1320 . ~ - ~ .,; , lS 02CI2 CRO HCU-3151 CRD SV-120/3151 A610 HVA1709662A 2 6 R 522 K2/0 ~ 1 1320 ~ 5"SOLENOID VITHORAV EXHAUST VALVE G 02C12 CRO HCU-3155 CRD-SV"120 /3155 -A610 HVA1709662A 6 ~ 5" SO LENO IO IIITHORA'K EXHAUST VALVE R 522~2/eo~ G ~ 0 '0 ) 4 <<&E>>A&h'ASHIf 'h 'v P. v ~ <<q"h&hhyg>> I c t 4 dh'oe - aA' e a eh<<>>hr NGTON PU OMER"SUPPLY SYSTEN Vgy y ta'OW Eh ClPF~ .&.h JAS AG 7 CORPOSITE NO SAFK~FggC~+lL'C &'ONTRACT EGUIPKENT NO 'V HFG "- 'HFO NODELC NO . OIO . '. -'fEST .. ANL '/0 - . C 'RED TN HL EGUIPKKNT DESCRIPTION ORAMING USE 0 2C12. CRD~CQ-3 XR,~OT&3L12klALLL~SLD.~LYk1MRQi ~ 5iSOLENOID MITHORAM EXHAUST VALVK '.-'- '6.'~(-E.'I'9::- .='- "' ' .-" "-. "- '. "- * - '=- ." --. ~ 1 3 CRO HCU 3803 CRO SV-120/3803 A610 'VA1709662A -" '2C12 2 G 6 R 522 L5/8 8 4320 a5 22&EIIQCILIIEI525&ILEEH&lldLJI&L 02C12 -'RD~HCU 3807 CRD~SV~120/3807 A6i0.",'V3i109652A ,2, 6. ~ 5~SOLENOID MITHORAM EXHAUST VALVE 6 $ 2212~&PMCII-55~&IL&IL&2$ /5&~61/I 2 G ~ 5 SOLENOID MITHORAM EXHAUST VALVE R 522 ~26222&6& LS/8et- -.;-,'-,= 6 -.:";i . :;-c-B,E' ic~'~ j~h&c. ~+ 2' -, ~,,'; " = ' 1320 'i ~ hc ". -'> 2 i& h' 'g~~,,i'."e, ~ - 'i 5, .'.~gy>>= - w '6' 1 3 02C12 CRO>>SV 120/3815 A610 HVA1709662A ' 2 6 R 522 L5/So4 " ~ 8 4320 ~%'NLKH9JR VIIHQEklLENikllSLPL 02C12 CRD HCU 3819 ~ CRD SV. 120/3819 'A610.'.': HQAI7096/62il.l/." fL522%5lM% ~ 5~SOLENOID MITHDRAM KXHAUST VALVE 6 1 3 02C12 2 6 C 0 CU <<Q-12] Qg~lgg R, 522 L5/8~$ gg .:.,6 ~ .-":...;.'." '>; 5'~~ad.dl'='" 8 hd'I ~h".'0 *=i'" 1::,:": '-' ' SOLENOID MITHDRAM EXHAll&QT VALVE:, ', 0 .='~~-'.- "-.'"';"-. 2,.'6/--"'"-~ 1520.. 02C12 CRO HCU 3827 CRD SV 120/3827 A610 HVA1709662A 2 G R 522 L5/Sel I520 ~ %~SOJKNkGLMIIHRRloLENQSI YAL 02C12 3831 S'ROiHCU CRD" SV 120/3S31 A 610 HVAt749te2i ":g-"..'.'."';::".-." -'-~,' 2 G R 52~2/8$ % ~ 5~SOLENOID MITHDRAM EXHAUST VALVE 1 3 . IQC12 CQP-QCP-5&2~&2=&ILI2&/5555~&I~P&2225&6 R 522 K2/Sol 15206 ~ 5 "SOLENOID MITHDRlM EXHAUST VAI.VE 6 1 3 02C12 CRO HCU 3S39 CRD SV-120/3839 A610 HVA1709662A 2 G R 522 K2/Sol B %320 ....B e5 SOLKN03O~IJ5D~MggHlU&lf VALVE G 02C12 CRO HCU 38h3 CRO SV 120/3813 A610 HVA1709662A 2 6 B 522 K2/8$ .$ ~ 5~SOLENOID MITHDRAM EXHAUST VALVE G Jl~ CLASMEXQllIBSQKLI MASHINGTON PUBLIC POMER-SUPPLY SZSTEH ~ r AXF~LLL2C8~A6 ' NFB',;=.:.; )FlJ "'- "."fEST '" I.O... '-."; "..",',AIL'-;:.,o-Fi0r - - JU!~~IUIR~CCUBAC1 iH ~" NUOQOELgk01'";:"., DID - Oll CONTRACT COKPOSITK NO OAFCIK.FUNCILON EQUIPMENT 40 PLANO..LQCA11IIN ~QIIIL' '"SR~PINS': ~ C FRKO ~ HL EC EBUIPKENT DESCRIPTION ORAQINB USE O 0 ~ 22CI2 2 6 02C12 2 G . CRO-HCU-38SL CBQ~~QL3S~SIP.~OALISSAS ~ 56BSOLENOIO MITHDRAQ EXHAUST'ALVE CRDoHCU 3851 . R OPS CRO~SV~120/3851 R 522 K2/8o4 KAIO'I A610. HVA1709662A ..:U!1:'B.'. 8 j'. 4320 4320 1 3 ~ 5~ SQlEN9KkJlIIHNh. E.KHhQSLJQ 02C12 CRD HCU-3855 -"' CRO SV~120/3855,' "A610 ", HVA1709642l --;, 3,"~,;,-;,," ",-":.; -',~g-, ." 2 6. ~522 K2j8' 5~SOLENOID QITHORAM EXHAUST VALVE G 1 3 .62CIR 2 G 02C12 CIIO NCILL639 ~ SoSOLENOIO ~JLLRP2362% MITHORAM EXHAUST R VALVE, SV-120/4203 522.K2/Si4 26lg A610 . I IUSLIIISS r Ct ..g"'.-Iog, '~",;,".',",'S>LR',.-- ., ~~3,".:Flr gr'.=,'";6-."',-.-,'6, 4320-6'.."-','-'., HVA1709662A .;;.",~ ~-: ..;, '..,,:.-.",-; ! -. ~ . - ~ ~ 1 3 2 G R 522 L5/8 ~ 4 L.B 4320 e5 NLENIlLMUHDRhM~hUSLJthLVX 02C12 'ROoHCU 4207 - CRD~SV~120/4207,.'-'<<'Jl610 '. )Vlli709662l'.g -'--~.;",",;~~~'~ ""' .'-;.'-. ",-",6':":,;-'*~,-,..*:. 6 ~ 5og SO LEND ID QI THOR A M EXHAUST VALVE 6 1 3 O2C12 CRO=NCU&21 ~gg~gggggd~f lg~iggliggg62 i5 SOLENOID QITHORAQ EXHAUST tl)lLVE .'". - ', ~ ',2'"-.'s",",";,":~ >.'-<~'P~~;:.,"'RD 02C12 CRO HCU 4215 CRO SV 120/4215 A610 HVA1709662A 2 6 R 522 LS/8o4 8 4320 65~SOLKN0$ 0 QQQDRAM KgfAU~SVhLVE ' 02C12 CRO-HCU 4219 . - CRD SV i20/4219 A610 . HVAR'fb9662lt,,g;,6.=~2~.,",g.: ',t ='..-,.'...:,- .~ 2' ~ SoSOLENOIO QITHORAM EXHAUST VALVE 6 1 3 OACI2 CIIQ IICU~623 CBO Og igOFOR23 ~ !jig ~ALLS266 4320- ~ SSOSOLENOIO MITHORAM EXHAUST VALVE. 6 i3 02C12 CRO SV 120/4227 A610 HVA1709662A 2 G R 522 L5/8 ' 4320 02C12 CROoHCU 4231 CRO SV-120/4231 A610 HVA1709662A 2 G R. 522 K2/8 ~ 4 320 1 3 e- ~ SSASOLENOIO MITHORAll EXHAUST VALVE r r 'I =- MASHINeTOh'.Pu aMERh'SupPCY S*T'StEtt J h hh N tto,'IFB c ~ coNTRAcl, cOHPOsITE Noi: EDUIPKEtlT .,' '"" ". ttF05 ttdoEL'- Nhf'.'.-'";..',-.-:;ttio'-':": (,'TklsT;-,-."-: ItHL,,F/d; = 'AEa ;:T'tt .HL ~ W EC EOUIPKENT DESCRIPTION DRAMlttB ~ USE .2 2CCR=CRIL RCll&23~ICLRIL&2&282~&C~IRI&2!LI&& '5<SOLENOID uiiitnihtt Er'XHAUSi VAt.VE" .: -,;.2';-'..tt .'~.';,j."~'"~yq~-":," '~":-"-,"-I '":4,=.(':.",-,.".",;":-.,';-'.5 02C12 CRO HCU 1239 CRO-S V-120/e239 A610;., Hvhf709662A'."f: 5 2 G 1320 a5~ SD LENllitLRIIHQRAILEXHQlsi~ 92C12 CRO HCU-120."'. CRO-SV 120/k2I3& '610,'. "";ffVAiN944A'<':ii:","-"-'.;.:.",.'-;-.=.=. - -..:- 2 6. ~ 5&RSOLENOIO MITHDRAII EXHAUST VALVE . 6 '. - ..' ' 3 02C12 ~RR=ttQLd~~R - - S'il ~diItlRQ2I2 2 6 R: 522 X2/tt'o I: ',': <','.&I ~ I "'j::,"IJA+",'-q B" ".;,'=.."38'";-'h, ...,2'"P', "i';, ";1320 02C12 2 G ~5 soLENOID MIT40AAM Ex)AUsTR vALttE," -.': CRO HCU 1251 CRO SV I20/1251 'R A610 S22 K2/8&1 ', '",6','..."'.. HVA1709662A -, ":"-'4."..0;".'"-'-""; ll ~" &J."2 '"". ' 1320. 02C12 CRD HCU 4255 - '" hCRO 'SV~f 20/12hS 'A6fol'; ':HV4if09652AC;'5 h.h r 4~~~ r 2r'h '\ Ir 'hr ~ l&5 8 h "~"" "r-*'..2 ih-h.': rJ r- -h 6 -rh r *= ' . ~ g 2 ~ 5~SOLENOID Mll'HORAM EXHAUST VALVE 6 ~ . 1 3 2 6 ..5&RSOLEHOIO ilITHORAM EtlHAUSt VALVE r R 522 K2/8 ~ 4 ~2 = ~ 'R ...':- .';: .:;..."~...= ~,. " "~ =';""- '" -'~2'2-"'"<2' ., ".; .....=-.:--',.-.;;., 2;4320. -- 1 3 02C12 CRO HCU 1607 CRD-SV-I20/160T A610 HVAf'T09662A 2 G R 522 LS/Be% 1320 ~SQ LENOLR~RRNLEXttdlt~hL r 'RO h 8 h 02C12 CRO+HCU 1611 120/4611 , A610= HVA1709662A SV R'~LB G;. G ~ 5~SOLENOID UITHDRAII EXHAUST VALVE ~o 21 0 ~ 2 - ~ S~SOLENaia ItiTHDRAM EXHAUST VALVE '.522 LS/861 " 6 - ' 8 "" ~ '*'- '. ~ 1320 ~ 02C12 CRO HCU i619 CRD SV 120/8619 A610 HVA1709662A 2 6 R 522 LS/Bet 1320 ~S SOLENO+D MITHORAII EXHAUST VALVE G I 02C12 CRO HCU 1623 CRD SV"120/&I623 A610 HVA1T09662A
- 2. G IL522 I 5/8 8
~ 5~SOLENOID MITHORAM EXHAUST VALVE 6 1 3 Q I .. VASHINGTON.PUBLIC POVER SUPPLZ,SVSTEA. .4 '.CLASEXE,EHUIEHEHE'dJR -. - ' ':C ~AG~ 0 COIITRACT U':"'" ""':-" 'ONPOSITE IIO'::i:..'EOUiPHEHCTTNO.'-':Ilfi.",::=:::..;.IlfaKOUOEL 'L. IIIU'-'-'"" KO,':,::"-.'.:-'610=;:;i I TEST ' "-"" %0' "'"" '""" .'LNL"'FIO ":--' FRia,.;: 'Tll.;HL::. ', ~ 3,: I EC . ESUIPIIENT OESCRTPTTON . . : ORAIIANO USE I OS ~ ~ 02C12,'CRD 120/h627 ~, 'i HCU<<I627 CRD SV < A61~0. jQ 66 0 05+SOLENOID QITHDRAQ 'EXHAUST VALVE ~ ';:-'- ",.;',C.-~;~,"~ -'; .P'P'. -.'>."-~'"A'r ".-.': .A':, ',~ ."."=;,-" - ~,"'f.- =,k 6 6 02C12 ~ CRO-HCU-h631 'RO SV-120/h631 '+.A6IOA-~HVA1709662A....2;;0-... 1 320. ~ 5" SO.LE@02.Q NDNRAV~tLAM3I YkLYE " "- tA I g 02C12 -'RO~HCU0h635 = =CRO SV 120/h635. Av>iA610di>;--."HVAiQ9682A '~"',rz~.".'"Ir' 2 0 ~ 50SOLENDIO VITHDRAM EXHAUST VALVE ~ 0 ='3 'ACAS~ROQCU22S~IULEE 22REASRR SALS .; 5~SOLENOID.ifiiHDRAV EXHAuST VALVE .:;;.'.-.. 02C12 'RO HCU-h6h3: ' ~ CRD-SV-,120/16h3 =- A6100> HVA1709662A 2 0 R'522,'X2/80h:> S h320 OMAEHEIIAIIMEILAHEL'JId >'.~.'-ARIEALUI 02C12 'RD HCU h6hZ. "";d'"'. CRO SV"i20/h6hZ 'al610 "-', HVAiZ09862(>."'Yjd'"s>>",' " " 05~SOLENOID QITHDRAQ EXHAUST VALVE 8 ~ . ~ 1 3 2 G ~ 6 - -" ' . - . R.522. K2/8+O'. P 'k'q,."- ~ ".~,","i""".yd>." .8 '-'P>'EA.-;c'.""> ='-'~';.:",".>>'.T'",'>;;,~~ ""<<h320:. '5~SOLENOID uITHORAV -E'XHAUS) VALVE,;q..P .;--";,j5 -',.-" -;,".;'-"="-,- =.;".2"';.',.";;.":"g;.$:,;:~:=";:(.",'-. ""'"-;;=,-..=.,~'..;.-'; .';;,"'-;,~ =; - ='-.'-, i3 .': . 02C12: 'CRO0HCU h655 CRD SV 120/1655 'A610 HVA1709662A
- 2. 0 R 522 X2/8 ' h32D 02C12 CRD HCU 5011 '..-". ,-CRO SV<<420/5011 "> A6102oj-'- AAITtl9662A .g >,":".,'."-.>- .."-IP, '>>-.I>~,.;.g'-.~,-';;:.')L',fr~==.=.l 'c-"
.. 2... G I ~ 5"SOLENOTO VITHORAII ENHAUST VALVE 6 2 G: : ' '; - -:d
- 050SOLENDIO VITHDRAQ EXHAUST VALVE-
~ . ',.; R. 522 L5/80h -., 6 ~ '.,;>-'- -: '"';:-'.- 8 ",t'>'-',.s"'-~rg-:>" ' - c'h320 1 3 02C12 CRO HCU 5019 ". I CRO SV-120/5019 ~ A610 . HVA1709662A 2 G R 522 L5/80h h320 ~ 5"SDLENOIOT VITHDRAV EXHAUST VALVE . 6 02C12 CRO0HCU 5023 CRD~SV 120/5023 '610. ~ HVA1709662A 0 B R 52/ L5/804 h320 ~ ~ 50SOLENOID llITHORAV EXHAUST VALVE 0 Ol . ~ I Q r I CONTRACT. ~ CORioSITE ND;:! EauiiKENT Ndi - MASHINB'tdk'P '"'HFei ., .. HFCIHdiIEL'hoc', b4ER SUPPLVESYSTEH E 4u O 2>> .aio',. fEst - = ANL 'F/o ': C G 2 FREa,"Til-..HL I ~ EC EQUIPKENT DESCRIPTION ORAMINQ - C' USE 2 Q 2 G .5 R 522 L5/Bgh - >>" >>A Aj.;Ai e'. ! 'A'EIL Lr B -,r'r" r, ~ - - -" =* ' '320- '.-.'.1 A 2 2 soLENOID MITHDRAM EKHAUsf vALvE, - -=:8:..',.= -..;.,'.'-~~"=. =,-"-; ." = .., . 3 02C12 CRDiHCU 5031 CRO SV 120/5031:A610 HVA17096&2A:P 2 8 R 522 K2/Sil -';;"-':.." -; ~ ':.:,.~rB , l320 !~ 5+e~EQ ~DA)~QAQ$J+ 0' ',el, '!. 02C12 2 G CRO HCU 5035 'RO ! SV 120/5035; A&10i>'HVA%709662A,'j;2,-. ~ 5~SOLENOID MITHDRAM"EXHAUST- VALVE !. , 2 3 R" 522'K2/8 ';.:;,,;";" -'E~'o':--":;~+>> "' ..'S-".,'B ',.a. -,2,;".'. .'I-'-'.: -. -ol3203 4 i5~SOLENOID MITHORAM'EXHA'UST,VALVEjl =A ~ Er- ~ . - 2 0 A . ~ . 02C12 I CRO~HCU 50l3 CRD SV 120/50l3 'A6102 HVA1709662A; ~ ~ 2 8 ~, ~ ~ ~ ~ . R'22 K2/Soh 8 l320 ~ 522SOLENOIO M 0 A A 02C12 'RO~HCU 50h7 * ", -'CRD~SV~i20/5047+'a'.A&10 ~ ~ HVAI7b96&2Iq=".:i,;-:."'".>>'.'-' 2 0 ~ 522SOLENOIO 'MITHORAM- EXHAUST 'VALVEE' 2- ~ .e 1 3 ~ IIEEL~AIOME - ' IL1222222I~ALIL~LEELI 2 ~ 0 ~ 5+SOLENOID MITHDA)M:E)tHAUST VALVE '""" . R 522'.K2/Bhh '-j: ~ 0:.'"'I "" ., "'~i-"- ', ': '; "' .L '. -.'-- I,-,.A:- -",- . ~ ' 3 02C12 . ~ CRO>HCU 5115 2 . CRO>>SV 120/5li5:A6102 HVA}709662A 2 G 2 522 L5/Bol 2 R 4320 O~O~EOO 0 OLLILOEAg QflLAIIE~IA 2 02ci2 CRO HCU 5l19 ~ CRD 'SV"120/5li 9 'A616: HVA1709662A -'. 2 G ~ 5~SOLENOID ~ - . ~ARJ.5Lae -0 MITHORAM EXHAUST VALVE 3 0 2 ~ G ~ -! ~ - 2,;. -; ~ 8 SOLENOID",MITHORAM EXHAOsf VALVE 2 r- ~ ~ R2522 L5/Bol .'.l320- , 0 - ~ CRO HCU 5127 r'2C12 CRO SV 120/Sl27 " 'A610 H V A1 709662 A 2 8 2 R 522 L5/Bah l320 .E.ao Lao!Lao fILLILOJlail Elflfaflat EIAELL 02C12' CRO HCU Sh31 CRO~SV"120/5431 A! A610 . HVA1709662A 0 B 522..K2/Bah i52OSOLENOIO MITHORAM EXHAUST VALVE 0, 0 ~ 'LJ' t A. - 3 ~ o>> RQASHINOTON PUBLIC. POMER SUPPLY SYSTEN 6 La::-".'. CONTRACT. - CONPOSITE;NOi,; 'IEQU)PHENT. NOi -*. "HFQi":- -:"""flFQIllbOELA'Oi" '-: '-QIO,-'- ."'. TEST: '. .:.&L&lla'Loc&1&os~oo~s'slso~s~ssass 'AtILL ', F/0 - ki.-,= 'FREQ .Tll .HLl ~ 'l '. &Aoaa&J'.Ilacizosl'- - EC EOUIPNEllT DESCRIPTION . - 'ccaasoa.: ORAQIN6 , USE t ~ 4 ~;- '"523~&OQ&JR&/32&~OA&~IUAL&2266 52C12 Css IICU '0 2 6 ~" "
- R 522.'K2/Bil" ='i a'1
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- CRO SV 120/5139 "A610 ~ HVA1709662A. '.
2 6 ~ Ra 522.K2(8ot '" ~ 1320 <5".SOLEHO.IO~OLdiLEXHdU3I~Ut 02C22 'RO HCU 51%8'"' '.'-" ~ CRO SU~f20)5143,3'61 0 "~1 -'HVAIft705652i~,y.-:;.-..-.";.'..'-..='-',.'-" 2 6 oacaa, 2 6 02C12: ~ 5~SOLENOID.MITHORAM ~ eao=scv=&&a~so=suxass&s&~saa O 5LOSOLENOIO MITHORAQ EXHAUST CRD0HCU 5819 EXHAUST VALVE "3 ' CRO~SV%120/5819 522 K2/Bo% '-. VllVE'...: A610: 3 8 ~&a&ass 6 '.-...,;;.-":, 2 3 ...;. '"t. A-..A-;" w'"I '-,,~-;.-.I . -,'6- '= ".'. '320A '-' 2 =--.-'*:: 1 3 1 5 2 6 R S22 LS/Bil 'Vl1709662A- 4320 * ~ 5<S9g~P gggOOljLFgfdMQ" 3 A 02C12,'RO ~:2 6 - HCU-S823. -- ~ 5UASOLENOIO QITHDRIM EXHAUST VALVE 2 "CRD SV '.-120/5823 = ~23.K( '", A610.=3 1 3 6, .lAAC'L2 f C&O~ILOS~~~&llss&aa'&61 *. ~ 52&80 END ID 'QITHORAQO EtIHAUST6 VALVE-'As -'-., I
- c. R: 522>>LS/8g4 02C12 CRO HCU-5831 ~ CRO SV~120/5831": l610 a ~: HVA1709662A" 2 6 ~ - - . -
R 522.X2/Bib 1320 ~ 5~89LFHOItL3IXXgQMILEXlihQS1V4LV t 't '-: HVAf'td916h2AU i'i.'.: A 02C12 R. a ~ CRD HCU 5835 I ~ 5"SOLENOID VITHDRAQ EXHAUST VALVE '622 CllD k4 120/583S -".A610,. Mal&I 6 32 1 3 II2CIR, 2 6 ~ CRO MCU 5&32 5" SOLENOID IlITHORA4 ~ ~ '-Cs~t-1226&&33 EXHAUST VJ(LVE - R 'A6AO~AAI&26 '22iK2/Bol ~ 6 .',", - 1 A320: -' 3 02C12 CRO~HCU 5813 CRO SV 120/58%3 A610 HVA1709662A 2' ~ S~SOLENOIO QITHORAQ EXHAUST VALVE R 522 X2/Bet 1320 '0 02C12 : CRO HCU 0219 CRD SV 121/0219 =A610.. I HVA1709662A R 52k J4LB.~< ~ 5 SOLENOID INSERT EXHAUST VALVE 6 1 3 0 0 O MASHINGTON ER SUPPLY SYSTEH
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CONTRACT COHPOSITE'NOi. "4,; .. LV EC SRFEIK.BINOEZO E&UIPIIENV OESCREPVION EQUIPHENT NO ~ ~ HFG LONIJ )lk4lloOELiflOe ORANING OIO -""- '"I': --..', "TEST,'-'.-'.AHL " Fia' C = 'REQ 2 USE ~ ~ 42412 2 6 CROMCILRRZ~RILRVM22222'~~III e, .-"... 5 SDLEHOIO;INSERT EXHAUST VALVE ~ ~ '. -, ~vk12222& R" 522&LS/8eh -, v- ~ .'~-'-'w:.~'.',"~>> -' 6 ';". "". =,-;:;".,i:;;; -'". jF,,"~ .,;":;l, '; . - - .',. h320& 1."3 02C12 CRD HCU"0227 ~ CRO-SV" 121/0227 A610."; HVA1709662l;.". 2 G R 522 LS/8eh .- L.- ~ e.. . -'& 8 h320 SDRRENO1OUNSERLERRRUSLJf&L ~ El ll2C12 2& Q. 'RO flCU II231 'RO SV 121/4231 i&1O."..llViZVOV&&2k:: -; 2:,;, ~ ~ 5SRSOLENOIO INSERT EXHAUST VALVE 6 1 3 2 G* ~ " ~ . -'.': '5INSOLENOID'INSERT'XHAUST'.VALVE,;.e = -R 522 K2/8eh ~ - '.;" ~ 6 ':; '-;" "'.=~-'- l ~.:"'-.vv;- .,',=, .OF ,-.' .'-,'-- 3' ~ ." . ~ ""- h320. - 1 3 e<R = ~ "&V 02C12 ', CRO~HCU-0239'i CROeSVe121/0239 ""fA610:: ~ Q 'R 522'K2/Qih 8 ~ .5 SO LLNMLINSKRKJJflRQSEJtA VALVE'VA1709662A 02C12 2 4 ~ CRO'HCU 02h3 ~ 5eSOLENOIO . ~ !INSERT EXHAUST '~1JIZIJI ";,CAO"SVei21'!02h3. 3:" AGID@ :AV4709e62'A, '""---'--:-'--""-.""-'320. 1 3 VI 02C12
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QRP l '~6-vl -, .<,,, P, . ..Rv 522.LS/8eh, 610 ~utafZaiam ." ..-<< -1'-Pic ~ -"3 ';PS' ' ' v, = "', '320 SOLENOID- IHFSERT EXHlUSf VALPE. -.-', 'y; C ',-: N',';; .; 2 U ..'-"&-'-,".:.,'."-...',P'.." .:";.,-;,='., -. '-'=,"--"; ",."-: i'3 ~ 02C12 "=> 'CROeNCU 0619. CRO SVe121/0619 "&A610~ 'VA1709662A Q 2 G R. 522 LS/Qe4- b. h 320 e~$ kEEMQIjLIl5ESI EXHNiLMALV 02C12 ':'RO HCU 0623, CRO SV"121/0643 "lA6107':, HVAi7b9662A .t '~-'"-'-.'. -" '-."".-'-'>>-'-'-"'=' 2 5&NSDLENOID IHSERT EXHAUST 'VALVE ' Ol 1 3 .. 42412 MllP NCU ORR~RILS! &VII&&21 ~II~IVOZIOR&O 6 LS/Gih, ~-,1;- -- ~.,;"=;.,= ' -,-. oj 522 . R ' 8 h3201 ~ 5RRSOLENOIO INSERT'HAUST.VALVE . ~ 4 I 3 02C12 CRD HCU-0631 CRD SV 121/0631 A610 HVA1709662A ~ 2 6 R 522 L5/8eh h320 ~ SeSOLfNOIO~NSESJ EXtJAUSJ VALISE 02C12 CRO HCU 0635 CRO SV 121/0635 A610 HVA1709662A .2 6 R 522. K2/8eh eS SOLENOID INSERT EXHAUST VALVE ~ << 0 VASHINGTON PUBLIC.POVER,SUPPLY>>STSTER Pkamc CRtu25: I -'2~262;uS~ CONTRACT LV. -'C CON<<POSITE NOa EGUIPIIENT. DESCRIPTION K4UIPllENT NO>>t !'!'I '"..'-"RF44'= '-'; j>> IIFB:tIOOEL')lOi',";.'-, g"'OIO'j:.:-:.'"tiST'>>," ANL'..., F/0-, C','RR4 BRAVING -. -,..., ~ - "- ', - ~ -, USER )'.. Tg-. HL>>,- '320 .02C1R 2 4 0 ~ ~5 SDLKNOIO INSERT EXHAUST 'ALVE " 'I'<<'60'4l q,'qj'Ci662<e<<!4~v<<<<3'yg>>~,'+j << 'i~.220; .'., - ~6 . ', -'. =' "" -1 ' 3 02C12 CROeHCU 0613 CRO SV 121/0613, A610.. HVA1709662A.: ~ ~ G R 522. K2/Be1>>.'-- "-'."~g'" 2~/, >, ".:S I~ Se 59 LKJtO IILIBKRLSXHAJlRLJthLV <<cR CRDeHCU 0617= 'llDVVSit<<6121/06lt '!'2C12. )A6ilt'"-"'<AVAXV594621~6.6'+ Q 6 2 .+ 2 .0. G: 62c22, . ~ SeSOLKNOIO cso-RcuUILll INSERt EXHAUST VALVE CELMRII222LMC F222. "'- . 4 >>\ <<, ~ ': "" ';; -.."..;.",'"-"','.';-'320 1 3 4,, 2 R 522 L5/841 '-'";. .4'-,";,'.';;.=--".*"..B. 5 S5LKNOio IHSERTCKRHAUSt'VAL'VE .',.-- - l.";j, .:.'.,"<'.'.-,-.-'..j'.;- .-"..-,'.;.:->; ;.'".=,-. ': - i ~ I 02CI2 CRD HCU-1015 -, ~ CRD SV-121/1015 A610 HVA1709662A 2 4 . '6 R 522 Ls/8.1 a -. 1320 02C1g CRb'CU 101'0 t"<<",-'," CR6 "SV 121/1019 ~PA650 0"<< "4VAi740662A~(.; "'-'. 'vg'6>>=-':5"-~'. "-. ~ 2 G " 'e5 SOLENOID INSERT EXHAUST VALVK ) 2! ~<<~<<g'QQf' I'" .<<e <<+6~54 <<<<<<6<<v "6<
> RI6 ve+, 4 0<< !" 1 3 <<=-".-", ", 2 <<<<g I<<2 -'<< )<< .-' lc, ~~ '" R>>522<<L5/Be/" ~<<~ '-<<" I 6"-~ G ~ ~ -'4.-" <<6>641>> v~ Q. "*.".' .>'.-", "<<,'2 1320 ' ,.5 .: SalENOIO INSERi EXHAUST'-VALVE - . . -,, "..'". 1 3 \' ) 02'C12:! 2 G ~ CRO HCU ~ 5>>SOLKNO 1027 'RO"SV 121/1027 "A610 LOOlLSQT E¹US~Qlg'2C12 .' <<R2522 L5/8 ~ 1 2'HVA1709662A ": - ~ 8 1320 'ROeHCU'1031 ' "" 2 G *', - - ' ~ . CRO SV"121/1031'2"; A610'"6 '- '<2 <<"' ~5~8/Pjg ~ A VAI704682A 02.;.> '*=<< .! ! "'. .",':: .~ 'SeSOLENOIO INSERT EXHAUST" VALVE 4 II26$ 2 I I 3035 'R~020 21ll055 6620~06LVVV60>>l 2 ~ 8 .'...5" SOLENO/O'INSERT! CR0 RCV ~, . - R 822 k2/Be1 . - ".,- ~ ..=. B -=. 13204 EXHAUST - VALVE -'I~ I 3 02C12 CRO HCU 1039 CRO SV 121/1039 A610 HVA1709662A 2 0 . ~ SeSOLENOIO INSERt EXHAUST VALVE R 522 K2/Be1 0 1320 0 G : 02C12 CRD HCU 1013 CRD SV-121/1013 A610 HVA1709662A 0 2 4 R 522 k2/861 ~ 5eSOLENOIO INSERT EXHAUST VALVE G 1 3 . 0 Q 1 MASHINGTOH PU OQER SUPPLY ~ SISTER 6 N~Lh CONTRACT COIIPOSITE HO'QU/PHENT HOi . IIFGo - -HLFd'HObEL-'.HO. -,. 'OID . TEST *.; AHL = P'/0 C . FREO, ~ EC EBUIPHEHT DESCRIPTION 0 ~ DRAMIH6 USE EDMD2U103~6lO~Dthi18fifi2 1 2 6 , R 522- K2/844 -".;-- A., ~ -'.,Wc-3 ~ . ":,,'Rr "-3 6 '.'---'B,~,"6,> ...1', = ~" >> 8"" --.1320 ~5 .'0 'g,"-.".;,<.'"- ",'-.'-'". >> "~: i3 1'S SOLEHOID INSERT KXHAUSt VALVE. " '=-,', >:.>>":- " ', '. =" .".- ~'0 0 02C12 CRD HCU 1051 CRO SV 121/1051 A610. ~ HVA1709662A,;. 2 6 ASKQJJLJ! ISCSL88888 SLJIAL R 522.K2/Gil ~.;;; ..i.'2 ..
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Q R '522 K2/Sel ~ "' R 032a.- - e&~kOLNOItLQIIHQRhlLQLQ~ALM ip I " / - CR5> HCu IOf i 1 02C 4 W. ',t '..4O Sit'j 42/id ji "I "': rA k 0 Sg <<gi/kitch(45)f ~ 'i" i', ".'-::~ ".>" , '~.-'-', '--.-." '".- "~~.',. -"-,-,-',=;. - * . .- ,0 ~ - *, .-;;,. =:, -, - 5~SOLENOID. 'QITHDRAQ-'DRIVE-VALVE " 6 1 3 ~ s ~ r' - r s 0 'R. 522-L5/Sl'4 ', .tl, ~ R;.,": = ':;g'.;.-'t',)',8;i".-'R~ec ~R'.,".-:;.'-. PZ","A-.r 432)R". ',*'.-, -'- *" ".f 3 0 ~ Z e J~SOlENOID, IIITHORJtQ':0527E'VALVE,r;"..'r'~ --'""-" 4 E,',.-" =$ . "-.'" ~.': . ~,;""=-",-'".'"ts'R '.<<7,"-~'~- -" . "'"-.'"""-"'-.".-~': ". 02C12 E >- CROiHCU~f 019' CRO SV~f 22'/1019' A610. HVA1709662A "'RO f023 ' 02C12 llCU '5+SOLENOIO VITHORAQ DRIVE'VALVE 'CAD ~ Sit~f22/f023 5224MB.U% A610:.; AIIAk709662A 6 ~ 0 ','=:, . kASHINSTONQUSLIC POVER.LSQPPLY'bYSTEH I I 4 n LV . ~, -:cONtRlot." 'OHP05)tl-'80g'4.:~* 'k50ihl(kkt-.tioI ~..'>4 fi F44';.-i -,l;.'~ f'4.'N55kL'-584;".'"-~,<",.~~ SA+J~PLlN+bLO/ .. 2 ..-~.~.~.:4" <',-1 '. g$ ~QQ DRAliIRO, '~ ~s-'~~~.- ' '~.= 5'~i'~<<. 536,~ - =-. dl EC KSUIPRENT DESCRIPTION . ' USE ~ 00 02C12 I 2 0 CRO CU 202~CO -.'. ". ~ ~ ~ 5+~2/L R:52 IL5122 4'1 2 0 ~ %'.:4;<-;"..>:.-"",': !,":.."" "+. 4:,0 i:,*4'Ill+I&'1I'VR '~~ PE"'Uji:ff'fRL; "fj"'."i"44 ii': "'!j L'"UIO<:',:l..l;,;, .;;, ii-',':; R32I!." ~'320-5 SOLEN010 "VL}NORRO OIILOE OLLVE . . '".',.'..7'"'.I. 5'-, 02C12 ~ ~ CRO HCU 1031 ~ CRO SV 122/1031 i'-A610> 'HVA1709662A!',I > -.'0," "- .: '. 2 44 k 9 2 6 * ~ Rs 522 L5/SW - ~... '-"<<: 5 *:. UIJSULJS 02C12 2 6 6 > 4~ CRD~HCU '=' 2 I~ 4,,4 1035/".".~ ~ It0'0 5 SOLENOID QITHORAII DRIVE'VALVE" 000 . CRD~S9~422'/4038:foi'Attf 0~P~, QADI)f78053I))MX'->Of>$ -0RIff 4'> "4- 4 .R>> 522 K2/SA ~ g ."'O . , SLo41~42 4 SIff434'UWC'tf'w >."'".P++P/+~~~~0%+ 3~< bfl~'~~0'40~ 4 04 i iP"'f~.,~~-"~w->~"'~'+-'";V'>~wQ;. 4Uf>> JGI4""0 0~'SACR- iW + .fflhLS1.OIL "Lf ~P% 'U'-'f'g 'i w" 4'4320 3'4'4 ~ '" ~"-..L.c-.:,"4- ' GVI~ .4.4. 1 3 ih<SOLKkOID <<rfHPAAO bRIVk;OALVE;.>>..-,;5-'0-4~q.-,s'ffhgL+fg~-Jg~(AP=C+fg~) gg>Cg . = 1 2 (L47cg,,+" 4)g~<<4< Rlyf.l.4, g PRfff f 3 4 02C12 10l3 ",' HVAXT09662A;; .CRD KCU SV-122/ioh3 ~ CRD R-A610 -. 2 6 R 522 K2/8 ~ h Vl-:" ~ " . B h320. , 'V, 02C12 CRO'HCIJ 11001:;:-,<,'.-'ho 152/IE54't'"-.>>'61O~j, LfllfHh96541~$ 6 SV '.~g ~.i-.- -.'."WW(W>-,g,o~g 0 i!+.'.2 ',g< 0, ~ 5~SOLENOID'VITHORAV DRIVE VALVE ', ~3 '6 -~ ~ .'3 " "'" 1 3 Il -0 ~ 02C12 2 6 i5+soLDloroNrf/DRAfl'ogrlELvltL90.'<<'~i4 CRO HCU" 'SiSOLKNOID. Vl ilof HORAV DRIVE VALVE CRON SV 122/iho I ~ . R. ~ 522 4 j:;;f'4';.g A610." L5/Sik c I'r~4,"343"'we~q@ HVA T09662A,-
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",,f~".; . p<<g~"'pj,'$+!~~~0 B .. '; ~, ~ ~ 5 - -,2 ~ p goR j, 2 h326so 02C12 ". CRb~ HCO $ hii-,'.'. 'RD~S P~i24/ilail"w'.161 0 0., ~~gv4$ 50642Ai~~,--~0.~~"'L.";"-"-gag'-:Oval'~j~P>>;; > WZ j 'gf Il.'-.g...'-- 2- 6.. 4'2C121! , ~ 502SOLENOIO VITHORAV DRIVE'ALVE 6 1 3 ~ II 0 02C12 2' "," " .. CRO~SU-L035~CO=SIL32QLOLO SSLII l JBRI1(22!i2 .L,' 5 soLENofo:,QjiHbitAR oRIVE.v'ALyk-- --,:, '- '0 >> " ".", R'522'L5/Shh '3 ":+j ORf'f('1 Uc If <2 4425,' ', ',:,0 1 0'2 ~=", L',. ' ",',"= ';',.".'-.",'-h320" -. -..0 -'-'- --. -,,'. -, ;.','i'-;-.'.-.-;;.".,': ',"', .,'. -;'--- i3 2 6.24 U,t CRD~HCU '" 'o523SOLKNO+D ',.; Ihi9 ~ 2 -. ,. ~ - - I'. 2 ~ CROGOSV ~ .; 122/1119 R 5221,L5/8 'A614 ~ HVA1T09662A ~ l320 VITljDRA~4'OR VE VALVE 02C12 ~: 'RbSHCU~ih23 " " ~ CRO>SV "122/ih23; 'I A610 ". HVAiT09462k 1' 0 ~5 SOLENOID'ITHORAV DRIVE'ALVE 1 3 ~ Q .. h rrr < h ",+ )',- h ! . 2 ./ !!, y frar f>> >'=+.. MASHINBT8I,'RIBLRC<<POMEh'SUPbLf .'kVSTEII <<(>>p/ 2 Ir>>rp~gp ~ 4 ii/frr' i raii. jr ' r ~ ~ CONTRA'CT;, 'C COitPOSf N- ND . i iii ' EGUIPRENT DESCRIPTION '."*l" k'sufi ftEAT,-. Hti". -.<ikey: ~ ORAMIll6- 'i:"':-- .~ "" -:: -'B" ':: i &,i.::.",SFR5OKt~N01";.= ~W."4--'.";-Oifti;-"',='-tEkf'; )k1.-"~i" H8 = .'C!;=--'4kbea~', Bsai:-"" -'SE ""::: .Tg . H'i.='- 05 ~ -,B ~ ~ ,aac!2 .',>>:"i,:.'I:""f .'an=can=tese 2/BL>>arne/sai~af '- Sii52 She alan/2 2,, aria I,.ti ii 2 B ', ..., 2 ha2 .1 aa!!iiain'itiiilsi4i ailiaa sic!i;:,-".-';i,-:"-.~!If,,5p'cr'"ia'C.,",pr/>>f';- / 'i- >~ jrht't:i'"%rag ;l'~.'-p~; BLB
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A2/Bi4-~'.. -":<<pjp: ail~ >~<<'f~r'~>"~'.".82:.~+A'2 ~2>>~q.i.-$ ~p +;","-'.'~L'g+".,"-."< h324>'.2'! ~".,',, '~ p>>"g4 <<~wag>> B>>>yv;~B- <<<B~: At.>4y>>.a .fat =. <<.' gp~~'p:,y:g<<<e!M~'/~(-,.f:,-f 32 ~ 2 4 << t ik 2 t " 5 .rr 'r. '.."+Bf',!ala "gird/w~t~j~~Jraf 2+ilfas +>>~P rr N~+w~.'. ~NYR,'tV@,<<ac Ji heal'Rr<<~h +w ~ 2 02C12 f'RO>HCU~IBhT aS~>Dj.EMIQ+IJNRUUlJlB~ALJt CAOBBSV~122/18hT R - '2 522 K2/BR4i A610! w 'VAi749682A '; - * ---'"; lf h520) 0-02C12 " 'RDIHCU !XBSi",i;;"- CKDB Skfc22!'/ib5f'tf'A610pf ~pf(~kjl(9622kgfg: 'g 0 2 .6 SBBSOLEKOID 'MITHDRAM DRIVE VALVE -1 3 caela 6~ ~sa Bc&SILO '"."- BABA>>22/1: * 'e "- "'>R-S 2 ' ai~lssillLlfis 2/Bih '"r:-">><< '->>""2 --'ataf "'-;-' 5 SDLENOIO llITAORJlM *DkiVE-ski VL lf ."'-.','" ':-, '-'::'",:,: .-"."-; '."; '-":.-"-; - ".,;--::.-'";.;-= ==.'.;, if 3 ,0 02C12 f CRO HCU'859 = i CRO SV-122/18S9 '610 'VA1709662A h320 ~ 5~SOLENOID QQJH~DAlJ QRI.VQ+ALVE, 02C12 t CRD~HCU 2205 'lio S V~122/2283. "A610 ILSXRJA/8~4 ,HVA1109642A h.32 ~ SBBSOLKMOID QITHDAAM DRIVE'VALVE 6 1 3 0 4 J tt<< Vi $ >>V A<<<<2%) g>>Rg,rr q>>t+>> ~ ~ L ,. ~ 2l!ASLHINSTbll!HJ OOLli'hQ pif..if%feA ~>> t LTJ aPi I I ~M iiit:: i I I <<'22 I'i'-::::Vv':',:III>> I 'lI iE!I!'tP!i tti'"::::.i I tli'-.,'!Ilt!I,'I".::;"-'.i'jtt 'l l 'It! t .-2, LL ti VLt ~. Ekt 0..., ~ -~ L :Z>> 2 ~ 02C10 CR(LHC ti, i5DTSOLKHOItt QITHOllk 02C12 -, CRO HCU 2211, ~ ~ CRD SV 122/2211. RA A61DTj '.WVAIV05662A:, 522.L5/Qi) !','~-"gtg~.gj~~ ~ -,~; ~j~iR~-gtf ti.kT<<',>><, h3254 02C12 . .Gj'D 'ROIHCU k2!15.' - CRO~LSV'i22I2214'i':4610M ')4 f~V~~4P "H+ . 2 SDDSOLKNOID llITHORAQ DRIVE VALVK 0- 1 3 2 e5+SOLKHOID NIfHNAQ:OLIVE>>4'tttLOBW'-"',L>>'>> .'D '-Dg Mvf ViL'"g ~<Pi'k<<'A<<<<RDIOLj<$>~+~+q~>> jV mDV>TDD,,DREM",Prt>>E,Og j~."~~ Dt ~LIE .. i '3"="-, " - ~ I CRO"HCU'2223 ' 'CRD 02C12 2 0 ~ SV 122/2223 - RL522'L5/di4 A&102'. HVAiTO'$662A 2" "'... 8,' - ' h320. 02C12 ' ~ I I t. ~ t, -CRD>HCU~222f Y;,"'r, HMT t Ih)' Ert jg 2'e>> DIIIT lit <<L4'. '>> . g9 I&+ .g g L+$ RR(f t*L>>A<<.-x P tt~ dP >DTAAT+v<itt ~ <<, P+E $+IID IQLPVt+>>>>>>LOtt>> !CRD~84~122/2527;='fiA6iOF<<e'HVAft09662ky4fi $ 4j-',~~+@A+9iITL@>@C-;~~:=t'A-"~'-".=-;~~'=.--".LLI.<p",;r,.r* -, -, +LV '5"SOLENOID QITHORAQ'DRIVE'lVALVKI- .... 20 1 3 DRcl~tlMLHE . i5"SOLKHOkO QkTADRkQ OhiVR VALVE -:'='e,'"o~"'- . 0:I+~~~~'.P@.-'g/M--T-+~@")P~-'gPPg.'.D+s,>~TV-"-g ~~> g"~ P"~<<; .~='"T~.<tie 02C12 0 ~5 'RO HCU 8OLKKQI{Ql 2235 CRO SV 122/2235 0 R'522 k2/So6 ' A610, -'HVAOO'9&62A't .' ">>v- S - , = '325: 02C12 " CRO~HCLl~2239'* '.)- CAO~SVO f22/2239'J'A610e>> ">> flVlifb)AHA j -'",'j'>>gt '.,". '4)+'" g'j',IL'TL-. Pt,".'.l 2~ ~5 SOLKHOID MITHORAQ DRIVE VALVE 0 1 3 l, ~ ~ .-5 Syi.EHnID QiiHnkAV OARivk:.9ALVK . 4;;'--..",';.'". '- -'.'= "..=,'-'--""."=-'-;-'-';,.5,"."',,",--"-'-';:-:.- 2: 02C12 'ROLLHCU 22hl CRO SV 122/22h7 A610.. 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