ML18093A858
ML18093A858 | |
Person / Time | |
---|---|
Site: | Salem |
Issue date: | 05/27/1988 |
From: | Miltenberger S Public Service Enterprise Group |
To: | NRC OFFICE OF ADMINISTRATION & RESOURCES MANAGEMENT (ARM) |
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ML18093A859 | List: |
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NLR-N88082, NUDOCS 8806020227 | |
Download: ML18093A858 (577) | |
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{{#Wiki_filter:Public Service Electric and Gas Company Steven E. Miltenberger Public Service Electric and Gas Company P.O. Box 236, Hancocks Bridge, NJ 08038 609-339-4199 Vice President and Chief Nuclear Officer May 27, 1988 NLR-N88082 United States Nuclear Regulatory Commission Document Control Desk Washington, DC 20555 Gentlemen: NINETY DAY REPORT - INSERVICE INSPECTION SEVENTH REFUELING (OCTOBER 3, 1987 - FEBRUARY 27, 1988) SALEM GENERATING STATION UNIT NO. 1 DOCKET NO. 50-272 This report is being submitted in accordance with Article IWA-6220(b) of Section XI of the ASME Boiler and Pressure Vessel Code. The inspection *and examinations outlined in the report complete the requirements for the first 10-year ISI interval. The attachment includes Form NIS-1, "Owners Data Report for Inservice Inspection" and Volumes 1 and 2 of the Inservice Examination of Selected Components at Salem Generating Station, Unit No. 1, prepared by Southwest Research Institute. Should you have any further questions, please do not hesitate to contact us. Sincerely, Attachment
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-- -:806020227 ::::::0527 P(tR ADOCK 05000272 p *oco I_
Document Control Desk 2
- 05-27-88 C Mr. D. C. Fischer USNRC Licensing Project Manager Mr. R. w. Borchardt USNRC Senior Resident Inspector Mr. w. T. Russell, Administrator USNRC Region I Mr. D. M. Scott, Chief Bureau of Nuclear Engineering Department of Environmental Protection 380 Scotch Road Trenton, NJ 08628 Mr. Frank G. Dolan, Assistant Director New Jersey Department of Labor and Industry P.O. Box 1503 Trenton, NJ 08625
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit l
- 4. Owner's Ceritificate of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit NIA.
- 7. Examination Dates: 10/3/87 through 2/27/88.
- 8. This report covers the examinations that were conducted during the 7th Refueling/10 year ISI Outage, thus completing the requirements for the first ten year inspection interval.
- 9. Components Inspected.
MANUFACTURER STATION OR COMPONENTS OR MANUFACTURER OR-INSTALLER PROVINCE NATIONAL APPURTENANCE OR INSTALLER SER. NO. NUMBER BOARD NO.
- 1 Reactor Combustion 67201 Head Vessel Engineering 67101 Vessel N/A 20757
- 11 Steam Westingbouse 1003 N/A 68-10 Generator Tampa Div.
P.O. Box 19218 Tampa, FL 33616
- 12 Steam Generator II II 1022 NIA 68-08
- 13 Steam Generator II II 1023 N/A 68-09
- 14 Steam Generator . " 1203 N/A 68-51
- 11 Regen. Sentry Equip. 4195-A4 N/A 385, 386, Ht. Exch. Corp. 7, 8, 9 387 Oconomowoc, WI Page 1 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASHE CODE RULES
- 1. owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Ce~itificate of Authorizacion (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 9. Components Inspected (cont'd):
MANUFACTURER STATION OR COMPONENTS OR MANUFACTURER OR INSTALLER PROVINCE NATIONAL APPURTENANCE OR INSTALLER SER. NO. NUMBER BOARD NO.
- 1 Pressur- Delta Southern 1011 N/A 68-8 izer Chemical Uniced Engineers Volume & & Construccors Control (UE&C) 30 Souch N/A N/A N/A Piping 17th St., Phila.
System PA 19101 Containment UE&C N/A N/A N/A Spray Piping System Mainsceam UE&C N/A N/A N/A Piping sys.
- 1 Volume Joseph Oat 1781-2A N/A 374 Control & Sons, Inc.
Tank Camden, N.J.
- 1 Excess Atlas Industries 850 NIA 701 Letdown Heat 81 Somerset Place Exchanger Clifton, N.J.
- 1 Letdown Atlas Industries N/A N/A 694 Heat Exchanger
- 1 RHR Heat Engineers & Sl5860-C N/A 122 Exchanger Fabricators, Inc.
Page 2 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS R~QUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1 *
- 4. Owner's Cericificace of Authorizacion (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 9. Components Inspected (cont'd).:
MANUFACTURER STATION OR COMPONENTS OR MANUFACTURER O~ INSTALLER PROVINCE NATIONAL APPURTENANCE OR INSTALLER SER. NO. NUMBER BOARD NO. Pressurizer UE&C N/A N/A N/A Relief Piping Sys. Reactor UE&C N/A N/A N/A Coolant Piping Sys Steam Gen. UE&C N/A N/A N/A Feed Piping System Safety UE&C N/A N/A NIA Injeceion Piping Sys. Page 3 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASHE CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1 *
- 4. owner's Ceritificate of Authorization {if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 10. Abstracts of Examinations:
1.0 Examinations were conducted by PSE&G as well as companies under contract to PSE&G. The following examination summary {Section 11) is a brief summary with further details found in the attached report and on file at the Salem Generating Station. Since nearly all inservice examination requirements can be found in Salem's Technical Specifications, This summary lists these requirements first arranged to Tech. Spec. paragraph number followed by applicable NRC circurlars and bulletins.
- 11. Examination S~ary:
1.0 Technical Specification 4.-0.5 - ASHE XI NOTE: The Inservice Inspections performed during the seventh refueling/ten year ISI Outage at Salem, Unit 1, complete the examinations required for the first . ten year inspection interval. The components were examined in accordance with "Examination Plan for the 1987 Inservice Examination of Salem Generating Station, Unit 1". Page 4 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. owner's Ceritificate of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
11 Examinations Summary (cont'd): 1.1 ISI Examination Southwest Research Institute (SWRI) under the direction of the Salem ISI Group conducted seventy-two (72) ultrasonic, twenty-one (21) liquid penetrant, three (3) magnetic particle, and twenty-eight (28) visual examinations. The examinations were conducted on se~ected welds or components of the following systems: A. Reactor Coolant including Reactor Vessel examinations utilizing the Par device, Control Rod Drive Housing exams, and Steam Generator Primary Manway Bolting. B. Chemical and Volume Control
- c. Main Steam D. Residual Heat Removal E. Safety Injection F. Steam Generator Feedwater Mechanized UT examinations were performed on the Reactor Vessel welds and selected Reactor Coolant piping welds from the inside surf ace utilizing the Par ISI-2 device and SWRI Fast Par equipment.
The mechanized UT examinations of the RPV were performed in accordance with the requirements of the 1974/Summer 1975 Edition of ASME Section XI and Regulatory Guide 1.150 Rev. 1. Page 5 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASHE CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Ceritificate of Authorization (if required) NIA.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
11 Examinations Summary (cont'd): 1.l(cont.) Since Salem Unit 1 will be satisfying the requirements of the 1983/Summer 1983 Edition of ASME Section XI for the second interval, the outlet nozzle areas were examined from the nozzle bore to fulfill the second interval first period inspection requirements of the 1983/Summer 1983 Code. VT examinations were performed on the RPV inte~ior surface core, support structures, core barrel, and upper internals with a remotely controlled submarine and SWRI's Par mounted camera. 1.1.1 During the ISI, certain limitations were noted and reported on CNF 1. 1.1.2 During the PT examination of the longitudinal weld 31-RC-1120-SLUO, three linear indications were found. These surface indications appeared to be the result of a lug used during construction. The indications were reported on CNF 2. After cosmetic buffing, SWRI personnel re-examined the weld and found no recordable indications nor any measurable decrease in component thickness. 1.1.3 The VT examination of bolting on valve 11SJ49 revealed a heavy concentration of boron crystals. This was reported on CNF 3. Re-examination after cleaning revealed no recordable indications. Page 6 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Ceritificate of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd):
1.1.4 Boron residue and heavy rust were also found during VT examinations of sixteen (16) studs and nuts associated with valve 1RH2. These results were reported on CNF 4. Re-examination after cleaning revealed light pitting, rust, and a tool mark. These indications were accepted "as is by PSE&G personnel. 1.1.5 During the remote VT examination of the RPV upper internals, residue from an adjacent cutting operation was detected. This residue was removed by PSE&G after verbal notification by SWRI.* The area was re-examined and no debris was found. No other reportable indications were found as a result of the MT, UT, or Mechanized UT. The RPV Closure Head Dollar Plate weld 1-RPV-6046B was not volumetrically examined. and will b~ rescheduled for examination during the *first refueling outage of the second interval. 1.2 Visual Examinations of Supports Stone and Webster Visual Examinators under the direction of the Salem ISI Group conducted visual examinations on one thousand-six {1006) supports. Several discrepancies were found, i.e., rust, loose nuts, improper load settings, etc. Work Orders were issued on all noted deficiencies to correct. Page 7 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plane: Salem Generating Scacion P.O. Box 236, Hancock's Bri!=lge, N.J. 08038
- 3. Plant Unic 1
- 4. Owner's Cericificate of Auchorizacion (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unic N/A.
- 11. Examinacions Summary (cont'd) :
1.3 Safety/Relief Valve Testing The PSE&G Salem Maintenance Departmenc conducted twelve (121 safety/relief valve liftset tescs on various systems. Three (3) of the valves tested were found to exceed the allowable limits. All were resec to their proper seccings and tested accepcaJ;>le. 1.4 TEN YEAR ISI HYDRO PROGRAM During the 7th Refueling/10 Year ISI Outage a to-cal of one hundred sixcy-nine (169) Hydrostacic tescs were performed. Sixty-four (64) Hydros were performed prior to the actual start of the Outage. Eighty-five (85) Hydros were scheduled to be performed during the Outage, but with boundary valve leak-throughs, pipe boundary leaks and retests after repairs and an addicional twenty (20) Hydros were performed. All Hydrostacic Tests were performed between the 6-ch Refueling Ou-cage of Salem Unit 1 (3-22-86 to 5-9-86) and the 7th Refueling/10 Year ISI Outage completion (2-7-88). All Nuclear Class I, II, III systems Hydroscatic test~ were performed in accordance with 1974/Summer 1975 Edition of ASME Section XI. Page 8 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASHE CODE RULES
- 1. owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1 *
- 4. Owner's Cericificace of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
11.-Examinations summary (cont'd): 2.0 Technical Specification 4.4.5.0 - Steam Generator Tube eddy current inspection. 2.1 Examinations were limited to the No. 13 Stearn Generator and were performed by Westinghouse NSID, coordinated by the Salem ISI Group. Results of the examinations are as follows: Extent of No. of Tubes Tubes with Indications (3) Exam. Inspected
< 20% 20-39% > 40%
Full Length. ( 1) 1152 11 10 2 "U" Bend ( 2) 69 0 0 0 Top of Tube Sheet (4) 406(*) 0 0 0 Total 1505(*) 11 10 2 (1) From tube sheet, hot leg side, to tube sheet, cold leg side. (2) From cube sheet, hot leg side, to top support plate, cold leg side. (3) Estimated depth of indication in % of tube wall. (4) Exams performed per Westinghouse recommendation per North Anna incident. (*) Sxl testing was performed on 406 tubes. Of the 406 tubes, 122 were also inspected using the standard bobbin coil probe and were included in the count of full length/u-bend tubes inspected per Technical Specifications. Therefore, only 284 tubes will be added to the total number of tubes inspected. Page 9 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVIC~ INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASHE CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. owner's Ceritificate of Authorization {if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd):
2.l{cont.) Three (3) tubes were plugged as a result of the examinations. Two (2) tubes were plugged because they exceeded the plugging limit per Technical Specifications and one (1) tube was plugged per Westinghouse recommendation for not having AVB contact. 2.2 Current Status of the Steam Generators At this time the total number of tubes plugged in the Salem Unit 1 Steam Generators are as follows: Generator # 11 12 13 14 Tubes Plugged 14 18 17 31 NOTE: In the Steam Generator's 11-14 the first five (5} and the last five (5) tubes in row 1 were explosively plugged because of a generic wearing problem on the tubes, due to the vibration of the tube lane blocking device. Prior to issuing this report, Unit 1 was shutdown for a forced outage. During this outage one tube, Row 1 Column 78 in 13 Steam Generator was
- determined to have a through wall indication on the hot leg side, 4.09 inches above the seventh support plate and was mechanically plugged. The table 'Current Status of Steam Generators' reflects this.
Page 10 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Ceritificate of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd):
3.0 Technical Specification 4.6.1.2 (a) Reactor Containment Type "A" Test. 3.1 Summary The Third and Final Inservice Containment Integrated Leak Rate (Type "A") Test for the first 10-year interval at Salem, Unit 1, was-performed during the 24-hour period ending December 23, 1987. The test was coordinated and directed by the Salem ISI Group. The test results indicate that the "as-left" Integrated Containment Leakage Rate, with corrections, for both the Percent Total Time and Mass Point methods of calculation are 0.039 and 0.043 weight percent per day of containment free volume respectively, at the 95% upper confidence limit. This is in accordance with the acceptance criteria prescribed in 10CFRSO, Appendix J and the Salem Unit No. 1 Technical Specification. The calculated "as-found" integrated containment leakage rate was also within prescribed limits with a leakage rate of 0.063 weight per ~ay. 4.0 Technical Specification 4.6.1.2 (d) Containment Type "B" (Penetrations) and "C" (Valves) Leak Rate Testing. 4 .1 Summary* The PSE&G Research Corp. under the field
- supervision of the Salem ISI Group, conducted leak rate tests on sixty-three (63) Type "C" Mechanical Penetrations, one hundred twenty-two (122) valves, fou~ (4) Type "B" Mechanical Penetrations and ~ixty-six (66) Type "B" Electrical Penetrations.
Page 11 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit l,
- 4. Owner's Ceritificate of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd):
4.l(cont.) The results of these tests revealed several Type "C" valves exceeding leak rate acceptance criteria, which were reworked to an acceptable condition. A total As-Found leakage rate of 61,772.5 SCCM was measured through all the containment penetrations (combined Type Band Type c tests) *
. After corrective maintenance, a total As-Left leakage rate of 61,463.5 SCCM was measured through all the containment penetrations (combined Type Band Type C tests). The high value for the As-Left leakage can be primary attributed to the As-Left leakage for valve 12CS48 which had a measured As-Left leakage of 23,700.0 SCCM.
5.0 Technical Specification 4.6.1.3 Cb) Elevation 100' and 130' Airlock Leak Rate Tests 5.1 Summary PSE&G Research Corp. under the field supervision of the Salem ISI Group, conducted leak rate tests on the 100' and 130' personnel airlocks. At this time the total As-Left measured leakage through the airlocks was 9080 SCCM. Page 12 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASHE CODE RULES
- 1. Owner: Public Service Elec'tric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Genera'ting Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Uni't 1 *
- 4. Owner's Ceritificate of Au'thorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd):
6.0 Technical Specification 4.7.9 (a) "Visual Inspection of Hydraulic and Mechanical Snubbers". 6.1 Summary Stone and Webster visual examiners assigned to the Salem ISI Group conducted visual examinations on one hundred-seventeen (117) mechanical snubbers and twenty-four (24) hydraulic snubbers. During the mechanical snubber examina'tion no deficiencies were found that would effec't operability. However, several were found with missing lock wires, minor rust, and attachmen't ends missing washers. Work orders were issued on these discrepancies apd the conditions corrected. Several minor union leaks were found during the visual examination of the hydraulic snubbers. These discrepancies were also corrected. NOTE: All mechanical and hydraulic snubbers were visually examined again at the end of the outage to assure all discrepancies were corrected, settings were proper, and no damage had occurred. Page 13 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric & Gas Co;, 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Cerit!ificate of Authorization {if required)
- 5. Commercial Service Date 7/1/77. NIA.
- 6. National Board Number for Unit NIA.
- 11. Examinations Summary (cont'd):
7.0 Technical Specification 4.7.9 {c) "Functional Testing of Selected Hydraulic and Mechanical Snubbers". 7.1 Summary - Hydraulic Snubbers Technical Specification 4.7.9 requires functional testing on 10' of the snubber total during each plant refueling outage. In addition, all snubbers which failed their previous functional test must also be functionally tested. Accordingly four (4) snubbers were tested {see below): 1 One {l) 200 KIP Main Steam Isolation valve (MSIV) hydraulic snubber. Two {2) 1000 KIP Steam Generator Snubbers (Rexnord). One Cl) 1000 KIP Steam Generator Snubbers (Paul Munroe). The tests were Performed by Wyle Laboratories using the API In-place Hydraulic Snubber Tester. All snubbers tested were found acceptable. Page 14 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Eleceric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Staeion P.O. Box 236.
Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Ceritificate of Authorization {if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd):
7.2 Summary - Mechanical Snubbers Technical Specification 4.7.9 requires funceional eesting on 10% ~f the snubber total during each Plant Refueling Outage. For each type snubber that does not meet the acceptance criteria an additional 10% of that type of snubber must be functionally tested. Wyle Laboratories under the direction of the Salem ISI Group performed the mechanical snubber testing on site utilizing the Wyle Model 150 Bench.Test Machine recently purchased by PSE&G. The first sample tested included a total of twenty-two (22) snubbers of which: A. Twelve (12) snubbers selected to satisfy the 10' Technical Specification requirements. B. In addition, all remaining PSA-1/4 and PSA-1/2 snubbers, seven (7) total,* that were not included in the 10% Tech. Spec. sample .were tested due to the previous failure record of these size snubbers.
- c. Three (3) snubbers that had failed prior functional test.
The results of this sample found no failures.
~-
Page 15 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- l. Owner: Public Service Electric & Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit l
- 4. Owner's Ceritificate of Authorization (if required) NIA.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd):
8.0 NRC Circular 76-06 and NRC Bulletin 79-17 "Commitment to Examine and/or Flush Stainles Stee1 Lines Containing Stagnant Borated Water". 8.1 Summary 76-06 and 79-17 SWRI under the direction of the Salem ISI Group performed ultrasonic examinations on six (6) additional welds. Portions of Containment Spray, Safety Injection, and Chemical Volume Control Systems were flushed (and continue to be flushed) during the pump capac*i ty surveillance testing as per Surveillance Procedure SP (0) 4.0.5-P. The Inservice Inspection Group, under the directions of the ISI Engineer, conducted an inspection of all areas in the South Penetration and Auxiliary Building wherein the subject piping systems were installed. Other than minor mechanical joint leakage (which were corrected) no discrepancies were noted. Portions of the eve-operation System that do not contain sampling connections in certain stagnant piping are flushed by the Operationg Department in accordance with SP CO) 4.0.5-P. Chloride sampling and testing for chloride content of those samples of fluids in stagnant piping is conducted on a quarterly basis. During the past 18 months this program identified only two (2) nonconformances. The nonconforming piping was flushed and the situation corrected. This was verified by additional sample analysis. We will continue this sampling and analysis program as we have in thJ past. Page 16 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric &: Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Ceritificate of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
- 11. Examinations Summary (cont'd) :
9.0 NUREG 0578 - TMI Lessons Learned - Performing Service Leak Exams, measuring leakage outside Containment, and take Corrective Actions necessary to reduce leakage as low as possible on systems likely to contain Radioactive liquids in the event of an incident. 9.1 Summary - The Salem ISI Group performed service pressure leak exams on the Safety Injection, Chemical Volume Control, residual Heat Removal and Containment Spray Systems. In addition, PSE&:G Research Corp. under the direction of the Salem ISI Group conducted the Waste Gas System Leak Rate Test in accordance with Site Services Procedure M9-ILP-WG-l. There were no adverse findings in the examinations or tests conducted relative to this bulletin. 10.0 NRC Bulletin 82-02 "Degradation of Threaded Fasteners in the Reactor Coolant Pressure Boundry ot Power Plants". 10.1 Summary All Steam Generator Primary Manway and Reactor Coolant Pump Main Flange Bolting was visually examined in-place. None were found to have been degraded or have any boron buildup. In addition, surf ace examinations were performed on thirty-two (32) Primary Hanway Bolts using the Fluorescent Magnetic Particle Method. Results of the surface examinations were satisfactory. b' Page 17 of 18
FORM NIS-1 OWNER'S DATA REPORT FOR INSERVICE INSPECTIONS AS REQUIRED BY THE PROVISIONS OF THE ASME CODE RULES
- 1. Owner: Public Service Electric &: Gas Co., 80 Park Plaza Newark, N.J. 07101
- 2. Plant: Salem Generating Station P.O. Box 236, Hancock's Bridge, N.J. 08038
- 3. Plant Unit 1
- 4. Owner's Ceritificate of Authorization (if required) N/A.
- 5. Commercial Service Date 7/1/77.
- 6. National Board Number for Unit N/A.
We certify that the statements made up in this report are correct and the examinations and corrective measures taken conform to the rules ot the ASME Code, Section XI. Date ~ 2-- , 19 f:t:: Signed PSE&G owner By 4 /(~ Certificatate of Authorization No. Cif applicable) N/A Expiration Date tfllt CERTIFICATE OF INSERVICE INSPECTION I, the undersigned, holding a valid commission issued by the National Board of Boiler and Pressure Vessel Inspectors and/or the State or Province of New Jersey and employed by Lumbermen's Mutual Casualty Company, Long Grove, Illinois, have inspected the components described in this owner's Data Report during the period 10-3-87 to 2-27-88 and state that to the best of my knowledge and belief the Owner,has performed examinations and taken corrective measures described in this owner's Data Report in accordance with the requirements of the ASME Code, Section XI. By signing this certificate neither the Inspector nor his employer makes any warranty, expressed of implied, concerning the examinations and corrective measures described in this Owner's Data Report. Futhermore, neither the Inspector nor his employer shall be liable in any manner for any personal injury or property damage or a loss of any kind arising from or connected with this inspection. Date ~ I& . 19 it: ,,
~ ~ Commissions AJT373 "I National Board, State, Province and No.
Page 18 o-f 18
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AT SAL~E*Nl. .G.ENERAufN:G STATIO.N;,:-U.NiT 1 *
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VOLUME II APPENDICES (CONT'D) SwRi Project 1552 Prepared for
- Public Service Electric and Gas Company 80 Park Plaza P.O. Box*570 Newark, New Jersey 07101 January 1988 SOUTHWEST* RESEARCH INSTITUTE SAN ANTONIO HOUSTON
SOUTHWEST RESEARCH INSTITUTE p; 0. Drawer 28510 6220 Culebra Road San Antonio, TX 78284 1987*:1NSERVICE EXAMINATIO*N*--QF. *
.**'.:SELECTED .CLASS t AND CLASS 2 COM PONEN'TS 1
1 AT SALEM G**eNERATING'STATION,. UNIT ~ VOLUME II*
*APP-ENDICES (CONT'D)
- SwRI Project.1552 Prepared for Public* Service Electri.c;an"d:Gas Co.mpany 80 Park P.laza .-
P.O. 8.0><" 570 N.e~ark, New. Jersev; 07101 January 1988 Prep'ared by. Approw.d by .
/)MU[*~:. ~ . .
- ,,Project Manager**
* '1n*spection Engineering Section David F. Resow Acting Director Department of Engineering SerJices Nondestructive Evaluation Scieribe and Technology Division
- APPENDIX I INSERVICE EXAMINATION LIMITATIONS-FOR THE SALEM UNIT 1 REACTOR PRESSURE VESSEL
- 1. Introduction APPENDIX I INSERVICE EXAMINATION LIMITATIONS FOR THE SALEM UNIT 1 REACTOR PRESSURE VESSEL Some limitations to ultrasonic examination volumetric coverage were experienced during the 1987 Inservice Inspection (ISi) of the Salem Generating Station, Unit 1, Reactor Pressure Vessel .
(RPV) welds and components. These limitations are generically reported in the Examination Summary
- Table of this Final Report. The purpose of this appendix is to further define and quantify the RPV examination limitations as required by U.S. NRC Regulatory Guide 1.150.
SwRI ultrasonic examination procedures implemented during the 1987 Salem 1 RPV ISi met or exceeded the requirements of ASME Section XI 1974 Edition with Addenda through Summer 1975 and U.S. NRC *Regulatory Guide 1.150, Revision 1. These procedures, implemented as part of the SwRI Scan Plan, generally required examination of weld metal and 1/Zf adjacent base metal from four directions for 10 percent of weld length for all vessel longitudinal and meridional welds, 5 percent of weld length for vessel circumferen:tial welds, 100 percent of length of the flange-to-shell weld, and 100 percent of length for the nozzle-to-shell welds. The outlet nozzle-to-shell welds and inside radius sections were examined during the 1987 ISi in * . accordance with the requirements of ASME XI 83W83 Code to satisfy the First Period, Second Inter- - val requirements of the Salem 1 ISi Program. The 1983 Edition defines the nozzle examination , volume differently from the 74S75 Code.
- The examination volumes which received other than* full coverage as specified are *identified herein. Generally interface noise inhibited resolution capabilities at the sound-beam entry surface for .
about 1/2-inch depth for the 45- and ()()-degree shear waves and about 1-1/2-inch depth for the 0-degree longitudinal wave. This near-surface examination volume was examined with supplemental - 50/70-degree tandem beam search units which were cah"brated from the clad-to-base metal interface* down to the applicable 1/4T depth thus overlapping the 45- and CiO-degree examination volumes. Using this examination process, only two generic types of limitations were experienced during the** 1987 Salem 1 ISi of the RPV welds and components: (1) Component geometric interference with the scanning equipment, and (2) . Geometric shadowing of examination volumes.
- 2. Description of Limitations The attached Table 1 and Figures 1 through 3 detail the examination* coverage attained during the Salem 1 RPV ISi. Specifically, the tables quantify the coverage in* terms of percent of Code- -
required examination volume which was effectively covered with each beam component. The accom-panying figures graphically depict the location and extent of the limitations with respect to
- weld metal and associated base material. The computed values for percent coverage do not include any consideration for beam spread. The percent coverage values for the 45-, 60-, and 50/70-degree examinations are calculated based on depth zone of calibration as specified in the procedure. The 50/70-degree examinations should be considered as supplemental to the Code-specified 45- and 60-degree examinations.
- I-1
- The Lower Head Dollar Plate *weld, 1-RPV-4043, received a limited examination due to scanner interference from the in-core instrumentation penetration tubes. Proximity of the instrumen-tation tubes proh.J."bited scanning from two directions for indications oriented transverse to the weld
, '.>**":U~pl~e; ther,11f~r~t ..45-,'.~p. 60-degree beams were limited to single directional coverage at the extreme ~;.;.,, ,7ngs. of the* e~tio~ v9lum~. * *-:~' -:*,-,-, *, t... *. :*. ;' ,. . . " ..\ ~*. .., . ; . ,, ~.,, , ,. \ The. abrupt transition Of the lower shell-to-lower head Weld at the azimuth of Lower -. "'
- He~d Meridional Weld 1.::RPV-1043A caused some loss of contact during 45- 'and 60-degree scans with
- beams oriented for detection of indications parallel to the weld plane. The extent of coverage with this limitation is shown on Table 1. No such limitations were experienced during examination of Meridional Welds 1-IU>V-1043B through F. The straight-beam examination of all welds was limited
- due to sound-beam entry surface interface noise.
.... -r.
22
- RPV Circumferential Shell Welds "i,
" Except for 0-degree beam entry surfaee interface noise, no limitations were experienced during examination of the Lower Shell-to-Lower Head Circumferential Weld 1-RPV-10042, Middle Shell-to-Lower Shell Circumferential Weld 1-RPV-9042, nor Upper Shell-to-Middle Shell Circumferen-tial Weld 1-RPV-8042. Due to the transition at the Flange-to-Upper Shell Weld 1-RPV-7042, limitations were experienced during examination for indications oriented transverse to the weld plane. These limita-tions are quantified in Table 1 and depicted graphically in Figure L Examinations for indications
. oriented parallel to the weld plane were conducted from the flange seal surface without limitation. -:>supplementary scans were conducted from the shell side of the weld (beams directed up) and this * --~ - examination was also limited (above the weld) by the shell transition. Examinations of the Flange- ~':_**"_ ~o-Upper Shell Weld were conducted for 100 percent of the weld length.
2.3 RPV Longitudinal Shell Welds
** , With the exception of the inherent 0-degree beam limitations previou5ly descn"bed, no limitations were experienced during examination of the Lower Shell Vertical Welds 1-RPV-3042A, B, and C, nor Middle Shell Vertical Welds 1-RPV-2042A, B, and C, nor Upper Shell Vertical Welds 1-RPV-1042A, B, and C.
2.4 . Nozzle-to-Shell Welds The inlet and outlet nozzle-to-shell welds were examined from the vessel shell and from the nozzle bore. Transverse e:raminations performed from the vessel wall were limited on the outlet nozzle forging side of the weld due to the nozzle integral extension configuration. Nozzle configu-ration also shadoWed -the straight-beam and angle-beam examinations performed from the nozzle bOres as shown in Figures 2 and 3. These figures also showed that the 6-degree or 10-degree and
*- 45-degree beam examinations complement each other so full coverage was obtained by at least one of *'the* primary beams. - The Code-defined nozzle inner radius sections and nozzle bore regions were ..covered using SO /70-degree search units in the nozzle bores and on the radius itself in the case of - . 'the. inlet nozzles~. Table 1 lists the coverage achieved with each search unit beam component.
2.5 Closure Head Dollar Plate The Closure Head Dollar Plate Weld 1-RPV-6046B could not be located for examination. Approximately 26 inches, 16 inches above and 10 inches below, the calculated location of the weld 1-2
- (from drawing PSBP No. 138977) was buffed bright and etched with amoniu.m persulfate Jn an effort
-* to locate the weld for examination. The weld location effort subjecteH the' i)ers0nnel involved t9
_approximately 1,000 millirem of radiation collectively. 3.
.~*') - Limitations._ to coverage of ASME Code-required examinatiott voluiiies. ;'.i ~:
_ _ _ i_ ;:.i
.. (., ... *: *1::.C"" -~. *.,;~*-
Y,_..,~';f~,j,* :.,: were'
-~ **':' t1 .. '.;.
experleneeai'd~
- ~:
the Salem 1 RPV ISi examinations due to component configuration: and iliterfetetttec by vessef attach~ ments. These limitations are identified in the figures and table provided _in this appendix. Th~ limitations were minimized to the
- maximum extent possible by supplementing the Code-4efine,f examination techniques with the 50/70-oegree scanning i-' .- -,~-~ *:ii
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1-3
Table 1 RPV EXAMINATION COVERAGE Percent of
* :!.: .1Weld Description and Exam Req'd Volume Description of Limitation
-'-* _____Weld Number Angle Examined
.* .. *, RPV !&w!.lr He;!d W!<kls .:....;"::~ . ,., __.,I)ollar Plate Weld 0 75 0-degree limitation due to , :l,*RPV-4043 45 100 interface noise. Full 45f-60 100 degree and 60T-degree 50/70 100 coverage obtained in one-45T 68 direction. Two- direction 60T 79 coverage limited due to 50/70T 100 instrumentation tube interferences.
Meridional Weld @ 30° 0 75 0-degree limitation due to l-RPV-1043C 45 100 interface noise. 60 100 50/70 100 45T 100 60T 100 50/70T 100
~~- . ."! ::..d.*r, .:T*
Meridional Weld @ 90° 0 75 0-degree limitation due to l-RPV-1043D 45 100 interface noise. 60 100 50/70 100
~
45T 100 60T 100 50/70T 100 Li:.,!,. Meridional Weld @ 150° 0 75 0-degree limitation due to l-RPV-1043E 45 100 interface noise. 60 100 50/70 100 45T 100 60T 100 50/70T 100 (. ~ . ,:r _;:;_. MeridionaI*Weld-@ :210° 0 75 0-degree limitation due to l-RPV-1043F 45 100 interface noise. 60 100 50/70 100 45T 100 60T 100 50/70T 100 1-4 *
- Weld Description and Table 1 RPV EXAMINATION COVERAGE (Cont'd)
Percent of Exam Req'd Volume D.eseription of Linlitation ,:~ Weld Number An~e Examined *: .
*.~ -Meridional Weld@ 270° 0 75 *"_;; ~degree limitation_due to 1-RPV-1043A 45 91 interface noise. 45-degree 60 92 and* 60-degree limitation :~y 50/70 100 due to liftoff at shell4to-45T 100 head transition.
60T 100 50/70T 100 Meridional Weld@ 330° 0 75
- 0-degree limitation due to 1-RPV-1043B 45 100 interface noise.
60 100 50/70 100 ~'.'.. 45T 100 60T 100 50/70T 100 Rev ~ircumf~r~ntii!! Sh~U W~ls;b
- Lower Shell-Lower Head 1-RPV-10042 0
45 60 50/70 45T 60T 83 100 100 100 100 100 0-degree limitation due to interface noise.'i*:*; :* ' 50/70T 100 Middle-Lower Shell 0 83 0-degree limitation due to 1-RPV-9042 45 100 interface noise. ... .U' 60 100 5oi10 100 45T 100 60T 100 50/70T 100 Upper-Middle Shell 0 83 0-degree limitation due to 1-RPV-8042 45 100 interface noise.* . ~. ' *n: 60 100 .\* '*:5'c : 50/70 100 45T 100 60T 100 50/70T 100
- 1-5
Table 1 RPV EXAMINATION COVERAGE (Cont'd) Percent of
...:Weld Description, and. Exam Req'd Volume Description of Limitation Weld Number An~e Examined FlaDge-Upper Shell 1.5 (from 100 0-degree limitation due to 1-RPV-7042 flange) interface noise and scanning 5.7 (from 100 interference by shell taper.
flange) All shell-side examinations 12.5 (from 100 limited by shell taper. See flange) Figure 1. 0 80 r:- ! .. 45 (supplemental) 81 (,()(supplemental) 83 50/70 62 45T 42 60T 42 50/7C1f 42 REV !&g&itl!din§I Sh~ll W~IQ§
. ; .~ _; : ~
Lower Shell Vert.@ 105° 0 83 0-degree limitation due to l~RPV-3042B 45 100 interface noise. 60 100 50/70 100 45T 100 60T 100 50/70T 100 o~ ~ . t.:L *. Lower Shell Vert. @ 225° 0 83 0-degree limitation due to 1-RPV-3042C 45 100 interface noise. 60 100 50/70. 100 45T 100 60T 100 50/70T 100
.', 1 .~*i* l :*
{",'. Lower Shell Vert.@ 345° 0 83 0-degree limitation due to l*RPV-3042A 45 100 interface noise. (,() 100 50/70 100 45T 100 60T 100 50/7C1f 100 I-6 *
- Weld Description and Exam Table 1 RPV EXAMINATION COVERAGE (Cont'd)
Percent of Req'd Volume Description of Limitation -* Ws;lg Nl!!!!Qs:r Angle Examineg ..,.,.;..,- : !i;' Middle Shell Vert. @ 60° 0 83 0-degree limitation due to *:- 1- P -2042B 45 100 interface noise. , ' 60 100 50/70 100 45T 100 60T 100 50/70T 100 Middle Shell Vert.@ 180° 0 83 0-degree limitation due to 1-RPV-2042C 45 100 interface noise. 60 100 50/70 100 45T 100 60T 100 50/70T 100 Middle Shell Vert.@ 300° 0 83 0-degree limitation due to .,..~F 1-RPV-2042A 45 100' interface noise. f~. *"*; 60 100 . "!. .*~\ . 50/70 100 45T 100 60T 100 50/70T 100 Upper Shell Vert. @ 7° 0 86 0-degree limitation due to 1-RPV-1042B 45 100 interface noise. _;: .*.- 60 100 "* ~ 50/70 100 45T 100 60T 100 50/70T 100 Upper Shell Vert. @ 127° 0 86 0-degree limitation due to 1-RPV-1042C 45 100 interface noise. *,.. 60 100 ... ' 50/70 100 45T 100 60T 100 50/70T 100
- 1-7
~,.*:*:weld Description ~d Table 1 RPV EXAMINATION COVERAGE (Cont'd)
Percent of Req'd Volume* Description of Limitation
* - * ... Weld Number Examined Upper Shell Vert. @247° 0 86 0-degree limitation due to 1-RPV-1042A 45 100 interface noise.
60 100 50/70 100 45T 100 60T 100 50/70T 100 Nozzle-to-Shell Welds and Inside Radius Sections Inlet Nozzle @ 67° 6 (bore) 94 6-degree and 45-degree bore 27.5-RPV-1140-1 45 (bore) 98 examination limited by 50/70 (bore) 100 nozzle configuration. See 50/70T (bore Figure 2 0-degree shell and IRS) 100 examination limitation due
--~ ... 0 (shell) 86 to interface noise.
45T (shell) 100 60T (shell) 100 50/70T (shell) 100
- . . .tr.Wet Nozzle@ 113° 6 (bore) 94 6-degree and 45-degree bore
. * .. t<::J::"'i7.5-RPV-1130-1 45 (bore) 98 examination limited by 50/70 (bore) 100 nozzle configuration. See 50/70T (bore Figure 2 0-degree shell and IRS) 100 examination limitation due 0 (shell) 86 to interface noise. 45T (shell) 100 60T (shell) 100 50/70T (shell) 100
. : Wet Nozzle @ 24 7° 6 (bore) 94 6-degree and 45-degree bore -;;~ .:z :27..5-RPV-1110-1 45 (bore) 98 examination limited by 50/70 (bore) 100 nozzle configuration. See 50/70T (bore Figure 2 0-degree shel).
and IRS) 100 ex3mination limitation due
..;._"">cJ** ~~4 **< I ,.
0 (shell) 86 to interface noise. 45T (shell) 100 60T (shell) 100 50/70T (shell) 100 1-8 *
- Weld Description and W~lg N!!m~r Exam Angle Table 1 RPV EXAMINATION COVERAGE (Cont'd)
Percent of Req'd Volume Examin~d {)escription of Limitation <~ Inlet Nozzle @ 293° 6 (bore) 94 6-degree and 45-d~gree bor~* 27.5-RPV-1120-1 45 (bore) 98 examination limited by 50/70 (bore) 100 nozzle configuration. See 50/70T (bore Figure 2. 0-degree shell and IRS) 100 examination limitation due 0 (shell) 86 to interface noise. 45T (shell) 100 60T (shell) 100 50/70T (shell) 100 Outlet Nozzle@ 7° 10 (bore) 96 Bore examinations limited 29-RPV-1140-1 45 (bore) 98 by nozzle configuration. 50/70 (bore) 100 Shell examinations Hm.ited ; 50/70T (bore by Integral Extension and IE) 100 interference. See Figure 3. : 0 (shell) 40 0-degree limitations due to 45T (shell) 46 interface noise and Integral .. 60T (shell) 46 Extension interference. 50/70T (shell) 46 Outlet Nozzle @ 158° 10 (bore) 96 Bore examinations limited 29-RPV-1130-1 45 (bore) 98 by nozzle configw:~~on. ~*; 50/70 (bore) 100 Shell examinations limited - 50/70T (bore by Integral Extension and IE) 100 interference. See Figure 3.
- 0 (shell) 40 0-degree limitations due to 45T (shell) 46 interface noise and Integral 60T (shell) 46 Extension interference.
50/70T (shell) 46 Outlet Nozzle @ 202° 10 (bore) 96 Bore examinations limited 29-RPV-1110-1 45 (bore) 98 by nozzle configuratjon. 50/70 (bore) 100 Shell examination8 limited 50/70T (bore by Integral Extension and IE) 100 interference. See Figure 3. 0 (shell) 40 0-degree limitations due to 45T (shell) . 46 interface noise and Integral 60T (shell) 46 Extension interference. 50/70T (shell) 46
- 1-9
Weld Description and Table 1 RPV EXAMINATION COVERAGE (Cont'd) Percent of Req'd Volume Description of Limitation Weld Number Examined Outlet Nozzle @ 338° 10 (bore) 96 Bore examinations limited 29-RPV-1120-1 45 (bore) 98 by nozzle configuration. 50/70 (bore) 100 Shell examinations limited 50/70T (bore by Integral Extension and IRS) 100 interference. See Figure 3. 0 (shell) 40 0-degree limitations due to 45T (shell) 46 interface noise and Integral 60T (shell) 46 Extension interference. 50/70T (shell) 46 1-10 *
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\ \ \ \ \ \ \ \ \ \ £ *-----' -\------ ((]- 45° L!fi1! TA T!ON.5 §- I 0° R L L I /VJ I TA TI 0 N 5 If§- 45°( 10~ L/ftl!T/1 T!ONS H
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APPENDIXJ SCAN PLAN TEXT, COMPLETED PARAMETER RECORDS, SCAN SHEETS, AND EXAMINATION TABLES
SCAN PLAN FOR MECHANIZED ULTRASONIC EXAMINATION OF SELECTED COMPONENTS AT SALEM GENERATING STATION, UNIT 1 Final Scan Plan SwRI Project 17-1552 Prepared for Public Service Electric and Gas Company 80 Park Plaza P.O. Box 570 Newark, New Jersey 07171-
- September 1987 Quality Assurance
TABLE OF CONTENTS VOLUME I--SCAN PLAN WITH APPENDICES
- 1. INTRODUCTION . 1 1.1 Purpose 1 1.2 Scope 1
- 2. PARAMETER RECORDS, EXAMINATION TABLES, AND SCAN SHEETS 3 2.. 1 SwRI Scan Plan Parameter Records 3 2.2 SwRI Scan Plan Examination Tables 6 2.3 SwRI PaR Scan Sheets . . 6
- 3. GENERAL EXAMINATION TECHNIQUES 8 3.1 Scan Increments 8 3.2 Angle Designations . 8 3.3 Examination Methods 8
- 4. DEVICE CONFIGURATION PLAN 11 4.1 PaR Device . . . . . 11 4.2 Device Configurations 12
- 5. IMPLEMENTATION . . . . . . . 13 APPENDICES A. Parameter Records, Examination Tables, and PaR Scan Sheets
- ii
- 1.1 Purpose 1.1. l
- 1. INTRODUCTION This plan provides the information required to perform mechanized ultrasonic examinations of selected areas of the reactor pressure vessel and adjacent piping at Salem Generation Station, Unit 1.
1.2 Scope 1.2.1 This plan is prepared in accordance with Southwest Research Institute (SwRI) Nuclear Projects Operating Procedure V-FE-101-4, nPreparation of Mechanized Scan Plan,n and satisfies the require-ments of SwRI Procedures NDT-700-11, -Rev. 7, "Mechanized Ultra-sonic Inside Surface Examination of Ferritic Vessels Greater than 2.5 Inches in Thickness,n NDT-700-11, Rev. 8, "Mechanized Ultrasonic Inside Surface Examination of Ferritic Vessels Greater than 2 Inches in thickness, 11 and NDT- 700-10, Revs. 3 and 4, "Mech-anized Ultrasonic Examination of Austenitic Pressure Piping Welds." 1.2.2 The information specified is that required to perform mechanized ultrasonic examinations of the welds and adjacent base metal from the inside of the reactor pressure vessel, examination of_ the reactor pressure vessel nozzle inside radiused sections (IRS)/ inside corner region (ICR) and piping welds from the nozzle bore,
- 1. 2. 3 using Fast PaR Model ISI-2 Inservice Inspection Positioning System (Device). For each mechanized ultrasonic examination, the SwRI Data Acquisition System will be used for observing and permanently recording the results.
This plan was generated from information and drawings obtained from the December 1975/August 1982 Salem 1 Mechanized Scan Plans*. The information provided in the plan is limited to the parameters available at the time of writing. Parameters deviating or omitted from the plan must be provided on site preceding the examinations. Prior to the commencement of any particular examination, all applicable parameters must be defined and recorded in the appro-priate Scan Plan Examination Table and text. 1.2.4 For the mechanized examinations of the reactor pressure vessel, the information provided is limited to that required to perform examinations of the following areas: (1) Outlet Shell-to-Nozzle Welds and Inside Corner Region (!CR) (From Nozzle Bore) 29-RPV-1110-1 (202°) 29-RPV-1130-1 (158°) 29-RPV-1120-1 (338°) 29-RPV-1140-01 (22°)
- 1
(2) (3) Outlet Shell-to-Nozzle Welds (From Vessel Wall) 29-RPV-1140-1 (22°) 29-RPV-1130-1 (158°) Inlet Nozzle-to~Shell Welds 29-RPV-1110-1 (202°) 29-RPV-1120-1 (338°)
- 27.5-RPV-1110-1 (247°) 27.5-RPV-1120-1 (293°)
27.5-RPV-1130-1 (113°) 27.5-RPV-1140-1 (67°) (4) Inlet Nozzle Inside Radiused Section (IRS) 27.5-RPV-1110-IRS (247°) 27.5-RPV-1120-IRS (293°) 27.5-RPV-1130-IRS (113°) 27.5-RPV-1140-IRS (67°) (5)
- Longitudinal Welds l-RPV-2042A, l-RPV-2042B, l-RPV-2042C (10%, 10.9" each weld) l-RPV-3042A, l-RPV-3,042B, l-RPV-3042C (10%; 10. 9" each weld) l-RPV-1042A, l-RPV-1042B, l-RPV-1042C (10%, 9.9" each weld)
(6) Circumferential Welds l-RPV-9042 (5%, 27 .2") l-RPV-8042 (5%, 27 .2")' l-R_PV-10042 I (5%, 27.2"), l-RPV-7042 (100% from vessel wall, 33-1/3%, 179.5" from flange seal surface), l-RPV-4043 (5%, 16.47") (7) Meridional Welds (10%, 6,9" Each Weld) l-RPV-1043A, l-RPV-1043B, l-RPV-1043C,*l-RPV..:1043D, l-RPV-1043E, l-RPV-1043F (8) Elbow-to-Safe End Welds (Only From Safe End Side) 27.5-RC-1140-4, 27.5-RC-1130-4, 27.5-RC-1120-4, 27.5-RC-1110-4 (9) Safe End-to-Nozzle Welds 27.5-RC-1140-5, 27.5-RC-1130-5, 27.5-RC-1120-5, 27.5-RC-1110-5 (10) Noz.zle-to-Safe End Welds 29-RC-1110-1, 29-RC-1120-1, 29-RC-1130-1, 29-RC-1140-1 (11) Safe End-to-Pipe Welds 29-RC-1110-2, 29-RC-1120-2, 29-RC-1130-2, 29-RC-1140-2 2
- 2. PARAMETER RECORDS, EXAMINATION TABLES, AND SCAN SHEETS The Scan Plan Parameter Records, Examination Tables,and the SwRi PaR Scan Sheets (Appendix A) provide necessary information about the examination ~reas,sequence of examinations 7 device configuration, and examination and calibration param_.,.
eters. In conjunction with the requirements of V-FE-101-4, "Preparation of'* Mechanized Examination Scan J;'lan," the following required information is pro"' vided in the parameter records, examination tables, and scan sheets with sup:.- plemental remarks and special instructions where necessary. 2.1 SwRI Scan Plan Parameter Records 2.1.1 Examination Parameters
- Site Name. Identifies the site where examinations will be performed.
- Project No.
\*l.
SwRI Project number for the examinations.
- Exam No. Identifies the numerical sequence of each examina-tion.
- Weld No. This is the weld identification number .
- Component. Identifies the major system where examination/is to be performed such as Reactor Pressure Vessel or Steam
- Generator.
- Subassembly. Identifies the specific area where examination is to be* perfo?:med such as Lower Head or Middle shell. .-
- Procedure/Rev./Dev. Identifies the procedure number, revis-ion, and, if applicable, deviation number .
. * *scan Path Sketch No. Identifies the*scan path sketch which illustrates the specific area being examined. A complete listing of the Scan Path Sketches is located in Appendix E of Volume II. Blueline drawings are provided in Appendix E of Volume III. ~ Cal. Blk. No. UT calibration block number to be utilized
- during the examination. A complete listing of the applicable UT calibration blocks to be utilized during the examinations is located in Appendix D of Volume II. Blueline drawings are provided in Appendix D of Volume III.
- Device Dwg. No. Specifies the applicable SwRI device drawing number. Appendix F of Volume II contains a listing of all applicable device configuration drawings, and Appendix G of Volume II contains a listing of miscellaneous drawings.
Bluelines are provided in the respective appendices of
- Volume III .
3
2.1.2 Calibration and Device Parameters NOTE: The following-.information may or may not appear under "Calibration and Device Parameters," depending on the type and method of examination to be performed.
- Weld. Loe. Location of the weld in respect to vessel zero reference.
- Vessel Dia. The diameter of the vessel inside surface at the examination area.
- Wall Thickness. The thickness of the examination area. This dimension is required to permit the computer to calculate the proper number of scans to cover the examination area. It is derived from customer supplied drawings.
- , .. X-Start Pos. The scan mode device readout counts for the start of the scan when scanning axially to the weld.
- X-Stop Pos. The scan mode device readout counts for the end of the scan when scanning axially to the weld .
*t~~
- Cal. Blk. Thickness (In.). The thickness of the UT calibra-tion block to be utilized for the examination.
.~f Nozzle Azimuth. The location of the nozzle to be examined in degrees from vessel zero.
Weld Length. The length of the weld as calculated at the weld centerline .
- Weld Diameter. The diameter of the weld as calculated at the weld centerline.
- Nozzle Bore Diameter. The diameter of the nozzle bore being examined taken at the point of the last scan.
- Offset (Piv. to RPV C/L). The distance from the Reactor pres-sure Vessel centerline to the module pivot point w_ith the horizontal boom device readout at zero counts.
- Hoist Position. The calculated distance from the hoist zero reference point to the nozzle centerline.
- First Cal. Reflector. The distance from the calibration surface to the first calibration reflector, measured perpen-dicular to the calibration surface.
- Second Cal. Reflector. The distance from the calibration surface to the second calibration reflector, measured perpen-dicular to the calibration surface.
4
- Third Cal. Reflector. The distance from the calibration surface to the third calibration reflector, measured perpen-dicular to the calibration surface.
- Exam. Angle #2. The examination angle for instrument #2 for nozzle-to-shell examinations from the bore, normally deter-mined by the inside taper of the nozzle. <<,*.
- Beam Dir./Beam Component. The direction of the search unit sound beam relative to the examination area.
- Inc. Dir. The direction the increment device is moved during scan incrementing.
- Start Pas. (FM. C/L). The increment mode device readout counts for the start of the examination.
- Coverage in Inches. The distance in inches from the first"to the last scan .
. _* Noz. Blend Radius. The radius of the nozzle blend area. ._,,
- Naz. Type. Type of nozzle being examined (Inlet or Outlet).
- Lower Head Radius (In.). The radius of the lower head from the tangent point .
- 2.1. 3
- Lower' Head Rad. Pt. Cin. Below Ref.). The dimension from~:
vessel zero reference to the lower head tangent point. X-Y Conversion Parameters NOTE: The following information may or may not appear under ":X-Y Conversion Parameters" depending on the type and method of exami-nation to be performed.
- Inches per Degree. The number of inches in one degree of X or Y movement.
- Degrees per Inch . The number of degrees in one inch of X or Y movement:.
- Inches per Count. The number of inches per device X or Y 0 movement counts.
- Counts per Inch. The number of device X or Y movement counts per inch.
- Counts per Degree. The number of device X or Y movement counts per degree .
- 5
2.2 SwRI Scan Plan Examination Tables General information such as that presented on the Parameter Record is listed (i.e., site name, project no., weld no., etc.). In addition, the following is also presented:
- Weld Type. Identifies the type of weld such as nozzle-to-shell, nozzle-to-safe end, etc.
- Scan Type. Indicates whether the examination is for indica-tions oriented parallel with, perpendicular to, or radial to the examination area.
2.2.1 Calibration Parameters
* 'Transducer Size. The search unit piezoelectric element size for that instrument.
- Freq. The frequency, in megahertz (MHz)/ of* the *examination search unit for that instrument.
- Nom. Beam Angle (Deg.). The nominal beam inspection angle for that instrument.
- Beam Component. The direction of the search unit sound beam relative to the examination area.
- Sweep Distance. The sweep distance on each instrument in inches.
- Cal. Nodes/Sweep Dist. Calibration nodes or response and metal path for each instrument.
- Gate Settings. The start and stop gate settings for each scan for each instrument.
2.2.2 Module Parameters
- X-Y OFFSET. Prescribes the distance the centerline of the search unit is offset from the centerline of the module in both X and Y dimensions. It may be either a plus or minus and is measured in inches.
- Module Configuration No. Module configuration number as referenced in Appendix B.
2.3 SwRI PaR Scan Sheets 2.3.1 Parameters
- Scan Inc. (In.). The distance the module is moved prior to each scan.
6
- X-Function. The mechanical device used to move the module axially to the weld.
- Y-Function. The mechanical device used to move the module perpendicular to the weld.
- Dir. Direction of scan movement".
- Y-Pos. The Y-mechanical device readout counts for each scan when scanning axially to the weld. ...
- X-Start/X-Stop. The scan limits defining the st:art and s{op counts on the X-mechanical device readouts for each sca:n when scanning axially to the weld.
- X-Pos. The X-mechanical device readout counts for each scan when scanning perpendicular to the weld.
- Y-Start/Y-Stop. The scan limits defining the start and stop counts on the Y-mechanical device readouts for each scan when scanning perpendicular to the weld .
- 7
3.1 Scan Increments
- 3. GENERAL EXAMINATION TECHNIQUES During the mechanized ultrasonic examination scans, a minimum overlap of 25 percent will be used with SwRI Procedures NDT-700-10 and 700-11.
Search units used during the examination will have the following maximum scan increments. Maximum Sea~ch Unit Size Scan Increment 1.00" (l"O 0.75"
- 0. 75" (3/4") 0.56" 0.50" (1/2") 0.37" NOTE: For the 50/70-degree inside radius examination from the inlet nozzle bore, the increment will be 0.10 inch.
3.2 Angle Designations
' For the purpose of this Scan Plan, unless otherwise indicated, angles between 40 and 60 degrees shall be refracted shear waves, and oth~r angles shall be straight-beam or refracted longitudinal waves.
.**: 3.3 Examination Methods Ultrasonic examination methods to be used are as follows: 3.3.1 The circumferential, meridional, and longitudinal welds will be examined from the vessel wall with search units producing 0-degree longitudinal waves (UTOL) for detection of laminar reflectors which affect interpretation of the angle-beam .. results .. 3.3.2 The circumferential, meridional, and longitudinal welds will be examined from the vessel wall with search units producing 0-degree longitudinal waves (UTOW) for detection of reflectors in the weld
. and adjacent base material.
3.3.3 The circumferential, meridional, and longitudinal welds will be examined from the vessel wall with search uni~s producing 45 +/ degree and 60 +/-2-degree shear waves (UT45 and UT60) for detection of reflectors oriented parallel with the weld and adjacent base material. 3.3.4 The circumferential, longitudinal, meridional, and nozzle-to-shell welds will be examined from the vessel wall with search units producing 45 +/-2-degree and 60 +/-2-degree shear waves (UT45T and UT60T) for detection of reflectors oriented transverse to the weld and adjacent base material. 8
3.3.5 The circumferential, longitudinal, meridional, and nozzle-to-shell welds will be examined from the vessel wall with 50/70-degree refracted longitudinal waves to detect underclad cracking and flaws in the near surface area of the weld and adjacent base material. All scanning will be done parallel with:the beam com-ponent direction for the circumferential, meridional, and longitudinal welds. 3.3.6 The inlet nozzle-to-shell welds will be examined from the nozzle bore utilizing search units producing 6-degree refracted lon-gitudinal waves and 45 +/-2-degree shear waves for the detection of reflectors in the weld and adjacent base material. 3.3.7 The outlet nozzle-to-shell weld and the integral extension areas will be examined from the nozzle bore utilizing search units pro-ducing 10-degree longitudinal waves and 45 +/-2-degree shear waves for the detection of reflectors in the weld, adjacent base mate-rial, and the nozzle integral extension region. 3.3.8 The inlet nozzle inside radius section will be examined from the nozzle bore with 50/70-degree refracted longitudinal waves to detect underclad cracking and flaws in the near surface area ~ between the tangent point and the point along the nozzle bore as defined by Section XI as the extent of the required examinatibn area. .=:. . 3.3.9 The outlet nozzle inside corner region (ICR) will be examined
._from the nozzle bore with 50/70-degree refracted longitudinal::.
waves to detect underclad cracking and flaws in the near surface
*area between the tangent point and the point along the nozzle~
bore as defined by Section XI as the extent of the required examination area. " 3.3.10 .The elbow-to-safe end and safe end-to-nozzle welds will be
*exami:n!'!d from the nozzle/pipe bore with search units producing 0-degree longitudinal waves (UTOL) for detection of laminar .
reflectors which affect interpretation of the angle-beam resurt:s. 3.3.11 The elbow-to-safe end and safe end-to-nozzle welds will be examined from the nozzle/pipe bore with search units producing 0-degree longitudinal waves (UTOW) for detection of reflectors in the weld and adjacent base material. '~: 3.3.12 The elbow-to-safe end and safe end-to-nozzle welds will be examined from the nozzle/pipe bore with search units producing, 45 +/-2-degree and 60 +/-2-degree shear waves (UT45 and UT60) for detection of reflectors oriented parallel with the weld and adjacent base material. 3.3.13 The elbow-to-safe end and safe end-to-nozzle welds will be examined from the nozzle/pipe bore with search units producing 45 +/-2-degree shear waves (UT45T) for the detection of reflectors oriented transverse to the weld and adjacent base material . 9
3.3.14 3.3.15 The vessel-to-flange weld will be examined from the vessel seal surface with search units producing 1.5-degree, 5.7-degree and 12.5-degree refracted longitudinal waves for detection of reflec-tors in the weld and adjacent base material. The nozzle-to-safe end and safe end-to-pipe welds will be examined from the nozzle/pipe bore with 50/70-degree refracted longitudinal waves to detect underclad cracking and flaws in the lower
.-_ one-third area of the weld and adjacent base material.
10
X-Function. The mechanical device used to move the module axially to the weld. Y-Function. The mechanical device used to move_ the module perpendicular to the weld. Dir. Direction of scan movement.
- Y-Pos. The Y-mechanical device readout counts for each s~an when scanning axially to the weld.
- X-Start/X-Stop. The scan limits defining the start and stop counts on the X-mechanical device readouts for each scan when scanning axially to the weld.
- X-Pos. The X-mechanical device readout counts for each scan when scanning perpendicular to the weld.
- Y~Startty-Stop. The scan limits defining the start and stop counts on the Y-mechanical device readouts for each scan when scanning perpendicular to the weld .
- 7
3.1 Scan Increments
- 3. GENERAL EXAMINATION TECHNIQUES During the mechanized ultrasonic examination scans, a minimum overlap of 25 percent will be used with SwRI Procedures NDT-700-10 and 700-11.
Search units used during the examination will have the following maximum scan increments. Maximum Search Unit Size Scan Increment 1.00" (1"0 0.75" 0.75" (3/4") 0.56" 0.50" (1/2") 0.37" NOTE: For the 50/70-degree inside radius examination from the inlet nozzle bore, the increment will be 0 .10 inch.* * , 3.2 Angle Designations For the purpose of this Scan Plan, unless otherwise indicated, angles between 40 and 60 degrees shall be refracted shear waves, and oth~r angles shall be straight-beam or refracted longitudina~ waves.
'!..i.'*
Examination Methods Ultrasonic examination methods to be used are as follows: 3.3.1 The circumferential, meridional, and longitudinal welds will be examined from the vessel wall with.search units producing 0-degree longitudinal waves (UTOL) for detection of laminar reflectors which affect interpretation of the angle-beam results. 3 . 3. 2 . The*. circumferential, meridional, and longitudinal welds wil 1 be examined from the vessel wall with search units producing 0-degree longitudinal waves (UTOW) for detection of reflectors in the weld "and adjacent base material. 3.3.3 The circumferential, meridional, and longitudinal welds will be examined from the vessel wall with search units producing 45 +/ degree and 60 +/-2-degree shear waves (UT45 and UT60) for detection of reflectors oriented parallel with the weld and adjacent base material. 3.3.4 The circumferential, longitudinal, meridional, and nozzle-to-shell welds will be examined from the vessel wall with search units producing 45 +/-2-degree and 60 +/-2-degree shear waves (UT45T and UT60T) for detection of reflectors oriented transverse to the weld and adjacent base material. 8
- 4. DEVICE CONFIGURATION PLAN 4.1 PaR Device 4.1.1 Guide Pin Location (1) The. PaR Device shall be positioned using guide pins .-,.
installed in stud holes No. 44 (206.6°) and 12 (343.3°),;: Stud hole No. 1 is at 270°. (2) The ultrasonic target shall be located on the foot of the PaR Device, which is placed over the guide pin in stud hole No. 12 so that the target center is 8 inches above the sur-face of the vessel stud flange surface. 4.1.2 PaR Hoist Reference The vertical "zero reference" position of the PaR Device hoist
- shall be the vessel stud flange surface which is 8 inches below the center of the ultrasonic target. ~ ,_
4.1.3 Vessel and PaR Device Boom Rotate 0-Degree Reference
*~ - .-~*;
Vessel 0-degree coincides with the centerline of the ligament~ir between studs Nos. 14 and 15 which, viewed from above the vessel,
- 4.1.4 is, ,16. 69 degre*es clockwise from the ultrasonic target center .
Horizontal Boom Zero Reference The horizontal boom zero reference is 45 inches from the outer~ edge of the boom flange face, to the centerline of the PaR Dev~~e Vertical Mast Assembly. This dimension will be fixed with the. 1 ***
*::r.:£ horizontal boom fully retracted (00000 count) . .::::*.. .! .. ' ~ . 4.1.5 *Pivot Boom Zero Reference The pivot boom zero reference position is 90 degrees from the PaR Device vertical mast assembly.
4.1.6 Nozzle Horizontal Boom Dimensions at 0 (Zero) Count (1) The outer measurement of the nozzle slide assembly is
*76 inches.
(2) The module pivot point of the nozzle slide assembly when attached to the horizontal boom is 73 inches from vertical mast centerline .
- ll
4.2 Device Configurations (Illustrated in Appendix F. Volume III) (1) The Seam Weld Insp~ction Assembly is attached to the Pivot Boom with the SwRI Rotator for examination of the lower head-to-lower shell weld, the meridional welds, and the lower head-dome weld. (2) The Seam Weld Inspection Assembly is attached to the Horizontal Boom with the SwRI Rotator for all examinations from the vessel wall except those welds listed in configuration No. 1. (3) The Nozzle Inner Bore .Assembly is attached to the Horizontal Boom with the SwRI Rotator for all examinations from the inlet and outlet nozzle bore. (4) The Flange Inspection Assembly is attached to the Horizontal Boom with the SwRI Rotator for examination of the vessel-to-flange weld from the flange seal surface area. 12
- 5. IMPLEMENTATION The Scan Plan shall be implemented as written and approved. It should be recog-nized that' onsite conditions may necessitate changes from the Scan Plan.
Changes may include but are not limited to PaR Device configurati'ori, examination sequence, or gate changes. Any changes to the examination requirements, ex:anii-nation coverage, or calibration requirements shall be reviewed and approved.:. by the Manager of the Mechanized and Automated Examination Section, or his desig-nated representative, and a representative of Public Service electric and G~s
- Company.
It will be the responsibility of the mechanized examination team supervisor(;to implement the requirements of this Scan Plan and to assure that necessary modi-fications and/or deviations are documented according to Paragraph 1.2.3 .
- 13
- APPENDIX A PARAMETER RECORDS, EXAMINATION TABLES, AND PaR SCAN SHEETS
APPENDIX A PARAMETER RECORDS, EXAMINATION TABLES, AND PaR SCAN SHEETS Index Exam Module Beam No. Examination Area Exam Angle Config. Component 1 Meridional Weld l-RPV-1043C @ 30° 0,4S,60,S0/70 SOB ccw 2 ,Meridional Weld l-RPV-1043C @ 30° 0,4S,60,S0/70 SOD cw 3 Meridional Weld l-RPV-1043C @ 30° 0,4ST,60T,S0/70T soc UP 4 Meridional Weld l-RPV-1043C @ 30° 0,4ST,60T,S0/70T SOA DN s Meridional Weld l-RPV-1043D @ 90° 0,4S,60,S0/70 SOB ccw 6 Meridional Weld l-RPV-1043D @ 90° 0,4S,60,S0/70 SOD cw 7 Meridional Weld l-RPV-1043D @ 90° 0,4ST,60T,S0/70T soc UP 8 Meridional Weld l-RPV-1043D @ 90° 0,4ST,60T,S0/70T SOA DN 9 Meridional Weld l-RPV-1043E @ lS0° 0,4S,60,S0/70 SOB 'ccw 10 Meridional Weld 1-RPV-1043E @ 1S0° 0;4S,60,S0/70 SOD cw 11 Meridional Weld l-RPV-1043E @ 1S0° 0,4ST,60T,S0/70T soc UP 12 Meridional Weld 1-RPV-1043E @ 1S0° 0,4ST,60T,S0/70T SOA DN 13 Meridional Weld l-RPV-1043F @ 210°, 0,4S,60,S0/70 SOB ccw 14 Meridional Weld 1-RPV-1043F @ 210° 0,4S,60,S0/70 SOD cw lS Meridional Weld 1-RPV-1043F @ 210° 0,4ST,60T,S0/70T soc UP 16 Meridional Weld 1-RPV-1043F @ 210° 0,4ST,60T,S0/70T SOA DN
- 17 Meridional Weld l-RPV-1043A @ 270° 0,4S,60,S0/70 SOB ccw 18 Meridional Weld l-RPV-1043A @ 270° 0,4S,60,S0/70 SOD cw 19 Meridional Weld l-RPV-1043A @ 270° 0,4ST,60T,S0/70T soc . UP 20 Meridional Weld l-RPV-1043A @ 270° 0,4ST,60T,S0/70T SOA
- DN 21 Meridional Weld l-RPV-1043B @ 330° 0,4S,60,S0/70 SOB ccw 22 Meridional Weld l-RPV-1043B @ 330° 0,4S,60,S0/70 SOD cw 23 Meridional Weld l-RPV-1043B @ 330° 0,4ST,60T,S0/70T soc UP 24 Meridional Weld l-RPV-1043B @ 330° 0, 45T, 60T, S0/70T SOA DN 2S Lower Head-Dome Weld l-RPV-4043 0,4S,60,S0/70 SOA DN 26 Lower Head-Dome Weld l-RPV-4043 0,4S,60,S0/70 soc UP 27 Lower Head-Dome Weld l-RPV-4043 0,4ST,60T,S0/70T SOD. cw 28 Lower Head-Dome Weld l-RPV-4043 0,4ST,60T,S0/70T SOB ccw 29 Lower Shell-Lower Head Weld l-RPV-10042 0,45,60,50/70 SOA DN 30 Lower Shell-Lower Head Weld l-RPV-10042 0,4S,60,50/70 soc UP 31 Lower Shell-Lower Head Weld l-RPV-10042 0,4ST,60T,S0/70T SOD cw 32 Lower Shell-Lower Head Weld l-RPV-10042 0,4ST,60T,S0/70T SOB ccw 33 Middle-Lower Shell Weld l-RPV-9042 0,4S,60,S0/70 SOA DN 34 Middle-Lower Shell Weld l-RPV-9042 0,4S,60,S0/70 soc UP 35 Middle-Lower Shell Weld l-RPV-9042 0,45T,60T,S0/70T SOD cw 36 Middle-Lower Shell Weld l-RPV-9042 0,4ST,60T,S0/70T SOB ccw 37 Lower Shell Weld l-RPV-3042B @ lOS 0 0,4S,60,S0/70 SOB ccw 38 Lower Shell Weld l-RPV-3042B @ lOS 0 0,4S,60,S0/70 SOD cw 39 Lower Shell Weld 1-RPV-3042B @ 10S 0 0,4ST,60T,S0/70T soc UP 40 Lower Shell Weld l-RPV-3042B @ 10S 0 0,4ST,60T,S0/70T SOA DN 41 Lower Shell Weld l-RPV-3042C @ 22S 0 0,4S,60,S0/70 SOB ccw Lower Shell Weld l-RPV-3042C @ 22S SOD cw
- 42. 0 0,4S,60,S0/70 43 Lower Shell Weld l-RPV-3042C @ 22S 0 0,4ST,60T,S0/70T soc UP A-i
APPENDIX A PARAMETER RECORDS, . 'EXAMINATION TABLES, AND PaR SCAN SHEETS Index (Cont'd) Exam Module Beam
.No. Examination Area . ** . Exam Angle Config. Component 44 Lower Shell Weld l-RPV-3042C @ 22S 0 0,4ST,60T,S0/70T SOA DN 4S Lower Shell Weld l-RPV-3042A @ 34S 0 0,4S,60,S0/70 SOB ccw 46 Lower Shell Weld l-RPV-3042A @ 34S 0 0,4S,60,S0/70 SOD cw 47 Lower Shell Weld l-RPV-3042A @ 34S 0 0,4ST,60T,S0/70T SOC UP 48 Lower Shell Weld l-RPV-3042A @ 34S 0 0,4ST,60T,S0/70T SOA ON 49 Middle Shell Weld l-RPV-2042B @ 60° 0,4S,60,S0/70 SOB ccw so Middle Shell Weld l-RPV-2042B @ 60° 0,4S,60,S0/70 SOD cw Sl Middle Shell Weld l-RPV-2042B @ 60° 0,4ST,60T,S0/70T SOC UP S2 Middle Shell Weld l-RPV-2042B @ 60° 0,4ST,60T,S0/70T SOA DN S3 Middle Shell Weld l-RPV-2042C @ 180°
- 0,4S,60,S0/70 SOB ccw S4 Middle Shell Weld l-RPV-2042C @ 180° 0, 4S ,' 60**, SO /70 SOD cw SS Middle Shell Weld l-RPV-2042C @ 180° 0,4ST,60T,S0/70T SOC UP S6 Middle Shell Weld l-RPV-2042C @ 180° 0,4ST,60T,S0/70T SOA DN S7 Middle Shell Weld l-RPV-2042A @ 300° 0,4S,60,S0/70 SOB ccw
<;., S8 Middle Shell Weld l-RPV-2042A @ 300° 0,4S,~O,S0/70 SOD cw
. S9 Middle Shell Weld l-RPV-2042A @ 300° 0,4ST,60T,S0/70T SOC UP
!;~.60 . *. 61 h62 ')j 64 63 6S Middle Shell Weld l-RPV-2042A @ 300° Upper-Middle Shell Weld l-RPV-8042 Upper-Middle Shell Weld l-RPV-8042 Upper-Middle Shell Weld l-RPV-8042 Upper-Middle Shell Weld l-RPV-8042 Vessel-Flange Weld 1-RPV-7042 0,4ST,60T,S0/70T
0,4S,60,S0/70 0,4S,60,S0/70 0,4ST,60T,S0/70T 0,4ST,60T,S0/70T 0,4S,60,S0/70 SOA SOA soc SOD SOB soc DN DN UP cw ccw UP
'!:'. 66A Vessel-Flange Weld l-RPV-7042 0,4ST,60T,S0/70T SOD cw
. 66B Vessel-Flange Weld l-RPV-7042 0,4ST,60T,S0/70T SOD cw ,,. 67A Vessel-Flange Weld l-RPV-7042 O; 4ST, 60T', 'S0/7ot* * *
- SOB . ccw 67B Vessel-Flange Weld l-RPV-7042 0,4ST,60T,S0/70T SOB ccw f 68 Upper Shell Weld l-RPV-1042B @ 7° 0,4S,60,S0/70 SOD 69 Upper Shell Weld l-RPV-1042B @ 7° 0,4S,60,S0/70 SOB ccw 70 Upper Shell Weld l-RPV-1042B @ 7° 0,4ST,60T,S0/70T SOC UP 71 Upper Shell Weld l~RPV-1042B @ 7° 0,4ST,60T,S0/70T SOA ON
*'*:.72. Upper Shell Weld l-RPV-1042C @ 127° 0,4S,60,S0/70 SOD cw . 73 Upper Shell Weld l-RPV-1042C @ 127° -0,4S,60,S0/70 SOB ccw ;,'74 Upper Shell Weld*l-RPV-1042C@ 127° 0,4ST,60T,S0/70T SOC UP .: 7S Upper Shell Weld l-RPV-1042C @ 127° 0,4ST,60T,S0/70T SOA ON .'f. 76 Upper Shell Weld l-RPV-1042A @ 247° 0,4S,60,S0/70 *SOD cw above nozzle Upper Shell Weld l-RPV-1042A @ 247° 0,4S,60,S0/70 SOB ccw above nozzle 78 Upper Shell Weld l-RPV-1042A @ 247° 0,4ST,60T,S0/70T soc UP above nozzle . 79 Upper Shell Weld l-RPV-1042A @ 247° 0,4ST,60T,S0/70T SOA DN .
above nozzle A-ii
APPENDIX A
,. . PARAMETER *RECORDS I . EXAMINATION TABLES I AND PaR SCAN SHEETS ;.,~
Index (Cont'd) Exam Module Beam
..liQ_,_. Examination Area Exam Angle Config. ~,omponent 80 Outlet Shell-to-Nozzle (Computer) 0,45T,60T,50/70T lOB :.:.,,. cw 29-RPV-1140-1 @ 22° *,...;,
81 Outlet Shell-to-Nozzle (Computer) 0,45T,60T,50/70T llB t.:-; ccw 29-RPV-1140-1 @ 22° ,._ (j. 82 Inlet Nozzle-to-Shell (Computer) 0,45T,60T,50/70T lOB cw 27.5-RPV-1140-1@ 67° 83 Inlet Nozzle-to-Shell (Computer) 0,45T,60T,50/70T llB :.* ccw 27.5-RPV-1140-1@ 67° 84 Inlet Nozzle-to-Shell (Computer) 0,45T,60T,50/70T lOB _.,..cw
-~
27, 5-RPV.:11'30-1 @ 113° 85 Iniet, Nozzle-to-Shell* (Computer)
- 0,45T,60T,50/70T llB ., CC'W 27.5-RPV-1130-1@ 113° 86 Outlet Shell-to-Nozzle (Computer) 0,45T,60T,50/70T lOB .~
'l,.j cw 29-RPV-1130-1 @ 158° 87 Outlet Shell-to-Nozzle (Computer) 0,45T,60T~50/70T llB CC'W 29-RPV-1130-1 @ 158° 88 Outlet Shell-to-Nozzle (Computer).** 0,45T,60T,50/70T lOB C'W 29-RPV_~lllO-l @ 202° 89 Outlet Shell-to-Nozzle (Computer) .* 0,45T,60T,50/70T llB ccw 29-RPV-1110-1 @ 202° 90 Inlet Nozzle-to-Shell (Computer) 0,45T,60T,50/70T lOB C'W 27.5-RPV-1110-1@ 247° 91 Inlet Nozzle-to-Shell (Computer) ,0, 45T' 60T 50/70T I llB ccw 27.5-RPV-1110-1@ 247° 92 - ,, ..
- Inlet Nozzle-to-Shell (Computer) 0,45T,60T,50/70T lOB cw
'27.5-RPV-1120-1@ 293° ,*',
93 Inlet Nozzle-to-Shell (Computer) 0,45T,60T,50/70T llB ccw 27.5-RPV-1120-1@ 293° 94 Outlet Shell-to-Nozzle (Computer) 0,45T,60T,50/70T lOB cw 29-RPV-1120-1 @ 338° 95 Outlet Shell-to-Nozzle (Computer) 0,45T,60T,50/~0T llB *.:;"" CC'W 29-RPV-1120-1 @.338° .:.; 96 Inlet Nozzle-to-Shell (Bore) 6°,45°,50/70 12 To*. Vessel 27.5-RPV-1140-1@ 67° C/L 97 Inlet Nozzle-to-Shell (Bore) . 50/701' 12A C'W/CCW 27.5-RPV-1140-1@ 67° 98 Inlet Nozzle-to-Shell (Bore) ~ 6°,45°,50/70 12 To Vessel 27.5-RPV-1130-1@ 113° C/L 99 Inlet Nozzle-to-Shell (Bore) . 50/70T 12A CW/CCW 27.5-RPV-1130-1@ 113° 100 Inlet Nozzle-to-Shell (Bore) 6°,45°,50/70 -12 To.Vessel 27.5-RPV-1110-1@ 247° C/L
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EXAMINATION PARAMETERS 2.PRO~ECT N=.=17-1552 4.WELD N0.=1-RPV-1043F 6.SUEASSEM8LY=MERIC @210 DEG 7.PRDCED~RE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NC.=DSK3052740 9.CAL.BLK.N0.=5-CSCL-42-SAM 10.DEVICE DWG.NO./CCNFIG.NO.=D30=2266 CALIBF:ATION AND DEVICE PAF:AMETERS
- 1. WELD LOC.=210
- 2. VESSEL DIA.=174
- 3. WALL TH!CKNE8S=6 Li-. :<-sr;:;t=::T r-=*os. =~,~11,8/ ~
- s. X-STDP F'!JS. ::::~ 20,tJ7 ~
6.~ELD LE~GTH~139 7.SEAM COMP. CCCW=O,CW=1!=0 9.DOLLAR PLATE WELD DIA. CIN.)=98.82 10.LOWER HEAD RAD!USCIN.>=88.625 11.LCWER HEAD RAD.PT. CIN.BE~DW REF.l=325 Y-CONVERSION PARAMETERS C:*'="*::.
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X-C~NVERSION PARAMETERS
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CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 / .=i,1._. F~En. 2.z: ~HZ. -~ '7= ',..!L:"."
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EXAMINATION PARAMETERS
=.PROJECT NC.=17-1552 4.WELD N0.=1-RPV-1043F 6.SUBASSEMBLY=MERID @210 ~EG 7.PROCEOURE/REV/D~V=700-11/7 8.SCAN PATH SKETCH NO.=DSK30527~j 9.CAL.BLK.~0.=5-CSCL-42-SAM
- O.DEVICE DWG.NC./CONFIG.NC.=D3C52266 CALIBRATION AND DEVICE PARAMETERS
- 1*
2.
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WALL TH!CKNESS=6 DIA.=174
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X--ST{',f'.ff F'CS. =~ i/.S/ X-STO!= :-*os.==~-;+ .zo,o7 6.~EL~ LENOTH=139
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7.BEAM COMP. '.CCW=O,CW=1l=1 9.DOLLAR PLATE WELD DIA. CIN.>=98.82 10.LOWER HEAD RADIUSCIN.l=SB.625 11.LOWER HEAD RAD.PT. CIN.BELJW RE~.l=325 Y-CONVERSION PARAMETERS
!~C~ES P~R JEGREE=
X-CONVERSION PARAMETERS
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FREQ. 2.25 MHZ,
- o CAL. ~mDESiS\iEEP CIST.
INST.N0.4 I 50170 GATE D~S. SE7T!~*ES
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EXAMINATION PARAMETERS 2.~ROJECT ND.=17-1552 4.WELD N0.=1-RPV-1043F 6.SUBASSEM8LY=ME?ID @210 DEE 7.PROCEDURE/REV/~EV=700-11/7 8.SCAN PATH SKETCH NO.~DSK3052740
- 7* .. C;~L E:L:< .. J\lC. =5--*:ECL..--i=~-2--s~;;r*/t lo 10.DEVICE D~G.N~./CCNFIG.N0.=03052266 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=210
- 2. VESSEL JIA.=174
- 3. WALL THICKNESS=6
=1. >.:--ST PiRT ?OS. =10. Y 9"1 0Jt:. <=- **1 ~-,..,F 1 *-*oc r:.,~ _,7 ,.,.~,.~v~ ....J * :*,-*::=.I Li r *-J:* =~ :_;1_:; J- /l(,,A..I'~
6.~ELD LENGTH=69.27 7.BEAM DIR. CDN=1,UP=0)=0 S.CAL.8LK.THICKNESSC!N.l=5
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EXP;t-"1 I i'~AT I c~~ F*Ar~Ai~1ETEF{S 2.FRO:ECT N0.=17-~552 4.~ELD N0.=1-RPV-1043F 6.SUEASSEMBLY=MERID @210 DEG 7.PROCEDURE/REV/DEV=700-11'7
*, 8.SCAN PATH SKETCH NO.=CBK305274C 9.C~L.BLK.N0.=5-CSCL-42-S~M 10.JEVICE DWG.NO./CCNFIG.NO.=D30522~6 CALIBRATION AND DEVICE PARAMETERS
- t*.JELD LOC ==21. C
- 2. VESSE~ DIA.=174
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- <-S7t\F:.T FOS. =~ ~fJA!::. /3.oo@
'.'5. X-STCF' 1=*0s. = ~ ~/.OtJ (l,4¥-
6.WELD ~ENGTH=69.27 7.BEAM DIR. CDN=l,UP=O)=l B.CAL.BLK.THICKNESSCIN.>=5 9.DOLLAR PLATE WELD DIA. <IN.l=98.82 10.LOWER HEAD RADIUSCIN.l=SS.625 11.LDWER HEAD RAD.PT. CIN.EELOW REF.l=325 Y-CONVERSION PARAMETERS Ctrn1r7 Z /l/OU* 8 7 INC~CS P~R JEGREE= -I *::- !
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CALIBRATION PARAMETERS It~ST. !"~O. 1 / 45 INST. \lC. 2 I " .-. C'!..) F?I~. ?..25 ~HI. - ...
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1i) INST.N0.4 I 56170 DES. CA;.. ~~:CE2'/SWEE? DIST I SViE SETT:NSS CAL.NODE:/S~!~E? DIS-:- I :::~.; ~
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EXAMINATION PARAMETERS l.2ITE NAME=SALEM 1 2.PROJECT ~0.=17-1552 4.WELD N0.=1-RPV-1043A 6.SUBASSEMBLY=MERID @270 DEG 7.PROCEDURE/REV/DEV=700-11/7 S.SCAN PATH SKETCH NO.=DSK3052740 9.CAL.BLK.N0.=5-CSCL-42-SAM 10.DEVICE DW8.NO./CONFIG.NO.=D3052266 CALIBRATION AND DEVICE PARAMETERS
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=6
.:'.t c:::
- <--STf~FT FOS. == 1~ //,81 f),U::..
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6.~ELD LENGTH=l39 7.BEAM COMP. CCCW=O,CW=l>=O 8.CAL.BLK.THICKN~SBCIN.l=5 9.DOLLAR PLATE WELD DIA. CIN.)=98.82 10.LOWER HEAD RADIUSCIN.)=88.625 11.LOWER HEAD RAD.PT. <IN.BELOW REF.l=325 Y-CONVERSION PARAMETERS
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5. X.--STAF:T F'OS. =10 * .14Si~ X--STOP F'OS. =::~::;. g,::, ~1.00~ 6.WELD LENGTH=69.27 7.BEAM DIR. <DN=l,UP=Ol=O 8.CAL.BLK.THICKNESSCIN.)=5 9.DOLLAR PLATE WELD DIA. CIN.)=98.82 1 o" L.OtLJER !4E;~\D Ri::-~r) r us (Ir*~" ' ==BS .. 625 11.LOWER HEAD RAD.PT. CIN.BE~OW REF.l=325 Y-CONVERSION PARAMETERS
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EXAMINATION PARAMETERS 1.SI~E NAME=SALEM : 2.PROJECT NC.=17-1552 6.GU8ASSEM8LY=MERID @330 DEG 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052740
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- 1. '-'JELD LOC. =330
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FREQ. 2.25 MHZ.
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EXAMINATION PARAMETERS 2.PROJECT ND.=17-1552 4.WELD N0.=1-RPV-4043 6.SUEASSEMBLY=LOW HEAD-DOME 7.FROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH ND.=DS~3052747 9.CAL.BLK.N0.=5-CSCL-42-SAM 10.DEVICE DWG.NC./CONFIG.N0.=03052266 CALIBRATION AND DEVICE PARAMETEES
- 1
~ELD LDC. CPIV.POS.l 56
- 2. VESSEL DIA.=172
- 3. WALL THICKNESS=6
- 4. X-START PCS.=135
- 5. X-STOP POS.=155 6.WELD L~NGTH=310.48 7.BEAM DIR. CUP=O,DN=l>= 1 8.CAL.BLK.TH!CKNESSCIN.>=5 9.DOLLAR PLATE WELD DIA. CIN.l=98.82 16.LOWER HE~D RADIUSCIN.>=88.4 11.LOWER HEAD RAD.PT. CIN.BELDW REF.l=~:s Y-CONVERSIDN PARAMETERS
~NC~ES P~R DEGREE= 1.54 DEGREES PER !NCH= .61 X-CONVERSICN PARAMETERS
1 . * ~ _:;-* - =.! l ... ~ '** .: "' EXA;vt
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TF:MiSDUCER SIZE 1 i:l FREQ. 2.2: MHZ. TSANSJ'JCER SIZE l I~ ~~~:. :.:: '*'.~Z. SEAX CO~PON~NT ON SWEEP D!Sii\NCEZHI. ! Z~ CAL.NGDESiSWEE? DiST. BAE SETi:NS3 CA~.NGDES/SWEEF DIS7. l/S 1. 75 SCAN START SiQP ii8 2.55
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EXAMINATION PARAMETERS
!.B:TE NAME=SALEM 1 4.WELD N0.=1-RPV-4043
- 5. ::::G1F'ONENT::::F:P\!
6.SUBASSEMBLY=LOW HEAD-DOME 7.PROCEDURE/REV/JEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052747
*, 9.CAL.BLK.ND.=5-CSCL-42-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052266 CALIBRATION AND DEVICE PARAMETERS
- *. WELD LDC. CPIV.POS.> 56
- 2. VESSEL DIA.=172
- 3. WALL THICKNESS=6
- 4. X-START POS.=135
- 5. X-STOP POS.=155 6.WELD LENGTH=310.48 7.8EAM DIR. (LJP=O,DN=1l~ o-8.CAL.BLK.THICKNESSCIN. l=S 9.DOLLAR PLAT~ WELD DIA. CIN.)=98.82 10.LOWER HEAD RADIUSCIN.l=88.4 11.LOWER HEAD RAD.PT. <IN.BELOW REF.>=325 Y-CONVERSIOr-J PAEAMETERS
!NC~E2 PER DEGREE= 1. 54 .-,~*-*
i- :=.r*.._ X-CONVERS!ON PARAMET~RS
CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.NO.:: FREU. 2.25 ~HZ. C~L.~OD:3/2WEEF" DIST.
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EXAMINATION PARAMETERS 2.~sc:ECT N0.=17-1552 3, E \ PYI ICJ. =27 4.WELD NO.=!-RPV-4043
. 5.COMPONENT:RPV 6.SUSASSE~BLY:LOW HE~D-DOM~
7.PROCEDURE/REV/DEV=700-11/7 9.CAL.BLK.NC.=5-CBCL-42-SAM 10.DE~ICE DWG.NO./CONFIG.NO.=D3052266 CALIBRATION AND DEVICE PARAMETERS
- ~- WELD LDC. CPIV.POS.l 56
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- 4. X-START POS.=121.43
- 5. X-STOP POS.~155 6.WELD LENGTH~310.48 7.BEAM COMPONENT CCW=l,SCW=Ol=
8.CAL.BLK.THICKNESSCIN.l=5 9.DOLLAR PLATE WELD CIA. <IN.)=98.82 10.LOWER HEAD RADI~SCIN.)=38.4 11.LCWER HEAD RAD.PT. <IN.BELOW REF.l=325 Y-CONVERSION PARAMETERS
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INST.N0.3 I 0 DEG. !NST.N0.4 I 50/70 DEG. TRA~iSDUCER SIZE 1 iN FRE9. 2.2S ~HZ. TRANE~UCER SIZE FF:E~. 2.25 ~:-!Z. 10 B'.;Alt COXPONE1ff = GATE SETiiN65 CAL.~ODE5/SW~EP ~IET. ua t.2S START STOP 2 T'!"'".
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EXAMINATION PARAMETERS 1.SIT= NAME=SALEM 1 2.PRCJECT NC.=17-1352 4.WELD N0.~1-RPV-10042 6.SUBASSEMBLY=LOW SH-LOW HEAD 7.PRCCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052741 9.CAL.BLK.N0.=5-C3CL-42-SAM 10.DEVICE DWG.NO./CONFIG.NO.=D3052266 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=342.6
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=6
~. X-START POS.=20
- 5. X-STOP POS.=48.1 6.WELD LENGTH=546.637 7.BEAM DIR. CCW=l,CCW=O>=O 8.CAL.BLK.THICKNESSCIN.):5
- 9. LOWER HEAD RADIUS C!N.l= 88.6
- 10. LOWER HEAD RAD. PT. CIN. BELOW ~EF.>= 325 X-CONVERSION PARAMETERS INCHES PER DEGREE= 1.51 DEGREES PER INCH: .65
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i
*-. -. ~ ....... - .* r;* .. -. -
5--*CSC~- -- . :~!-2-~3A;**~: *--*.'".":-.':::-*--,.**- CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 I 6C) DEG. TR~NSDUCER SIZE 1 IN t:'R£Q, 2.25 ~~HZ. SilEEF OISTHllCE'.Hl. l 20
~3ATE SE'iT: ~t8S START 2.5:: ~
ll ~ 1. 75 STOP 1/9 I ~TJP C'., 2/6 I . c:
.J ... 1-15 2 10 3/8 I 7.5 1-1: \lliT!"'U .1u l*..,11 i NCTCH 10 5!8 8. i 5/3 12.5 ********************************************************~*****~*******
\ INST.N0.3 I 0 DEG. IN3T.N0.4 I 50170 DEG. TR?~*2i:ECEP. SIZE l !N FREQ. 2.25 !'!HZ. TRH~~SJUCER S!ZE 1 Bi FREQ. 2.25 ~HZ. SEA~ CQMPmiElH Si. BEAM SilEEP DISiA~l:WN. l ::J 2£f!M CCMPG~ENi c::; CAL.NG~E3/8~EE? SATE 3EiTrn65 CAL.~m:E/S~EE~ nrsT.
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).. /T /f.1 0 ,<.It. y ************************************************~*********************
MODULE PARAMETERS INST.1 INST. 2
+ 1 .. 5C I ~*J.
1 Y-CFFSET -1.125 IN. +1. :!.25 r;*. ~ .. .:) I~--~*. . MCDUL~ CSN~!GURA7!~N NC. 508
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- SCAN PLAN PARAMETER EXAM .. f.JO.
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EXAMINATION PARAMETERS 2.PRCJECT ~0.=17-1552 4.WELD N0.=1-RPV-9042
- 5. [fJi'iF'Jt,iENT=RF"v' 6.SUBASSEMBLY=M!D-LDW SHELL 7.PRDCEDURE/REV/DEV=700-11/7 8,, SCAN PP1 TH St< ETCH NO. =DSf<30S27 L12 9.CAL.BLK.N0 .. =9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- ~. WELD LOC.=236.12
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS. <DEG.)=20
- 5. X-STOP POS. <DEG.)=40 6.WELD LENGTH=546.637 7.9EAM COMPONENT CDN=l,UP=Ol=l 8.CAL.BLK.THICKNESSCIN.l=9 X-CONVERSION PARAMETERS INCH~S PER DEGREE= DEGREE3 PER INC~= ..Lr.:"
EXAM NlJ. 33 CAL.ELK.NC. 9-CSCL-54-SAM CALIBRATION PARAMETERS INSi.N0.1 I 45 DEG. INST.N0.2 / 60 TRANSDUCER SIZE 1 IN FREQ. 2.25 MHZ. TllANSJUCER sm: 1 rn FREQ. 2.25 :~HZ. SWEE? D!STi\NCE WI. I 20 BEAi'! CJM?Ol-iENi JN SUE~P DIS7ANCEt:N.1 40 CAL. iiOBES/SWEE? OIST. SATE SEiT!NSS CAL.~ODES/SWEEP DIST. GATE SETT!:JSS liB ":'
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l'-1 SCAN START STOP 1/8 I 4.S5 s;:p Ll'J 6.: 2/8 I 9 3/3 I 9.4 1-44 14 3/8 I 13.5 1-H 2
!iOiCH I t2.5 NOTCH I 19 518 I 15.7 5/8 I 22.5
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EXAMINATION PARAMETERS 1.S:7E NAME=SAL~M 1 2.PROJECT N0.=17-1552 4.WELD N0.=1-RPV-9042
- 3. C:JMF'ONEi\!T=RP'.1 6.SUBASSEMBLY=MID-LOW SHELL 7.PROCEDURE/R~V/DEV=700*-11/7
', 8.SCAN PATH SKETCH NC.=DSK3052742 9.CAL.SLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=236.12
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS. <DEG.)=20
- 5. X-STOP PDS. CDEG.l=40 6.WELD LENGTH=546.637 7.BEAM COMPONENT CDN=l,UP=O>=O 8.CAL.BLK.THICKNESSCIN.)=9 X-CONVERSICN PARAMETERS r-,r---1 r c:..~.. 1.a 51 JJCGr~EES I\!CH=-= .. ,::,5
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- F~2CED~RE!FEV'DEV 700-1:/7 VJELD TYP'::: i'J;:::.;-:
I I *- C~~.SLK.NO. 9-CSCL-54-SAM DEVICE DWG.NO./CONFIG.NC. ~30~22S7 CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 / 60 TRANSDUSER s:zE 1 iN FREQ. 2.25 i'\HZ. BEAM CDXPCNENT UP S~EEP DISTANCEWi. i 20 SEAM COM?GNENT UP
- , CAL.NCD:S/S~EEP D!S7. GATE SETTINGS :AL.~~ODES/St4EE? ~~ST.
1/2 3.15 SCAN Si ART Si OP l/2 I 4.55 1;:i
~ ~'-- 6.2 2/8 I 9 3/8 9.4 1-44 2 14 3.'8 I 13.5 2 NOTCH 12.5 NOTCH 18 5;'8 15.7 5/S 22.5 ****************************************~*************************~***
INST.N0.3 I TRANSDUCER SIZE 1 1N 0 DEG. FREQ. 2.25 MHZ. SEAi! CD:1PONENT ST. BEAM SWEE? DISTANCE (Hl. i 20 INST.N0.4 I 50170 DEG. TRANSDUCER SIZE 1 IN FhEQ. 2.:5 ~HZ. CAL. ~mrESiSWEE? DIST. GATE SEiT!NES CAL. NODES/SWEEP DIST. GHTE SSiT!NCS i/8 SCAN srnRT STOP ;. O!V. 2/8 I 4.5 --------------------------- 2 .,,. D!'J. 3/8 I 6. 7 1-44 Jf'~ 6.5 3 4 or 1
;. H4 7 DIV. *-re & () Fr [JJ./L. ~ ~ ~
5 nrv. 6 DIV. t-.lltV ~Nt.Y "
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MODULE PARAMETERS INST.:!. INST.2 !i\fST.3 I!\ST. 4 X-OFFSET +1.125 IN. --1.125 If'.J. I:**-~.
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=*1-"!L::.:.:..;*i 1 EXAi71. t'-iO,. 3S EXAMINATION PARAMETERS 1.SITE NAME=BALEM 1 2.PROJECT N0.=17-1552 4.WELD N0.=1-RPV-9042 S. C01'1Pot-~ENT=F:F'\I 6.SUBASSEMBLY=MID-LOW SHELL 7.PRDCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEV!CE DWG.NO./CONFI3.NO.=D~052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=236.12
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=8.6
- 5. X-STOP POS.;4Q 6.WELD LENGTH=546.637 7.BEAM COMPONENT <CW=l,CCW=Ol=l 8.CAL.BLK.THICKNESSCIN.)=9 9.FIRST SCAN IF NOT 1 =O 10.LAST SCAN IF LIMITATIONS=O X-CONVERSION PARAMETERS
!NCHES PER DEGREE= 1.51 DEGREES PER INCH= .65
PROJECT NO.
- 7 -155=
SLl8ASSEM8LY M:D-LJW SHELL SCAN EXAM NC. 3S
-:-- l'.':"". -= ,;_ - * ~~QCECLPE/~EV/DEV 700-11/7 WELD 7YPE ,-* ,-, ..-.*. r --* ,.,.....:-- .::.,_.:**:i *, . ; 1-*.::.. ._;_,. *~ *. *-' -
C~L.2LK.NC. 9-CSCL-54-2AM CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 I 6(j DEG. FREQ. 2.25 MHZ. TRANSDUCER SIZE ; rn FREQ. 2.:25 ~HZ. 9E~M COMPONE~T CW SWEEP DISTANCEIIN. l 20 BEAi'! COMPONENT CW SWEEP D: S! A1iCE (! ~;. i 4G CAL.NDOES/S~EE? D!ST. GATE SEH!~6S CAL.tiODES/S~EE? nIST. i1s 3.15 SCAN Si ART STOP t/8 4.55 SCAN 3iGF
~ '" .:.::i 6.2 2/8 I 9 3/8 I 9.4 1-20 2 l4 3/B **13,5 HO 2 NOTCH I I"~'"' " 0:
NOTCH lB 5/8 I 15.7 SIB ,"
....Lt&-1..J INST.N0.3 l TRA!iSDUCER SIZE 1 IN 0 DEG.
FREa. 2.25 MHZ. 3EA~ CO!'!PONENT ST.BEA~ SilE:'.F OISTANCEml.) CAL.NCDES/SwEEP DIST. SATE SETTittSS 20 INST.N0.4 I TRANSDUCER SIZE ! IN BEAi'! COMPGNENT C~ CAL. NODES/SliEEP om. SiEE? 50/70 DEG. FREQ. 2.2: DIST~liCE'
~HZ.
IN. l
- i/8 2/8 I 2.2:
4.5 SCAN START SiOP
,,;. . DDIV. .i. .J r*J
- ST~RT STU~
3/8 I 6.7 8.5 3 I 4 DIV. 1-20 ! DI!./. 7 ~!V. 4 I 5 DI'l. 5 ::: D!'v.
*******************************************************************~*~
MODULE PARAMETERS H*~ST. 1 INST.2 INST.3 :NST.d X-OFFSET *-1.~0 IN. -*1. 5C IN. -1.50 IN. Y-CFFSET ~:.125 !N. **~1. 125 rr*.J. ***.
*~ :.
MCDULE cs~~IGURATICN NO.SOD
- FAEAMETERS
- ; *--* *'
- _t.:-*=""": '.,
~.
_c .-
!/E~D L_OC. 236 .. 12
- 31::*:;;\J I i**~C .. ( I r**.i. ) <; 75 ( CTS. ) 75 WELD LENGTH 546.637 X-FUN=TION - EDOM ROTATE SWRI ROTATOR 27000 SC;C,i\! L IF~
1
¥-POS X-START X-STOP ...' :=v.1 r-:,..,~.' '"""\ - ....::....;:.oa..::... 86C:r 4000 ..., CCL**J 22937-1:.i()()(j 860 *-' CW 23012- 860 4000 4 ::::c~*J 23087~ 86('.i 5 .Cl.:J *I"":" .. I.--: ...::..~1..LQ.:.' 860 4000
- S c::L**J 23237- .i'.J.000 860
- t Ci.J 23312. 860 4000 0
CCL*J 23387- 4000 860 9 Cl*J 23462- 860 4-000 10 CCLiJ 23537- 4000 860 11 Cl,.i.J 23612* 860 4000 1 ~2 CCloJ 23687- ~1000 860 13 Ct.i.J 23762 ... 860 4000 14 CCL*J 23837- 860 15 cw 860 4000 I
.l_z:;; c::\'l 23987- 1:f.(i00 860 ' *7 .l. cw 24062- 860 4000 c CCl*J 24137- 4000 ;.'...J 860 1 0 c;*J 24212- 860 4000 2C 1 CC~*-i DATE ( 03.if\lcv,81 !
- SCAN ?LAN PARAMETE~ -:-:, .
~=-~-
EXAMINATION PARAMETERS 1.SITE NA~E=S~~EM 1 2.PROJ~C~ N0.=17-1552
- 3. E>c::iM r-.m. =3b 4.WELD N0.=1-RPV-9042 5" co~1F*or\IENT=F~F*~/
6.SUBASSEMBLY=MID-LOW SHELL 7.PROCEDURE/REV/DEV=700-11/7
*, 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=236.12
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=20
- 5. X-STOP POS.=51.4 6.WELD LENGTH=546.637 7.BEAM COMPONENT CCW=1 1 CCW=O>=O 8.CAL.BLK.THICKNESSCIN.>=9 9.F!RST SCAN IF NOT 1 =O
- i.O. LAST SCAN IF LH1ITATIOt"*!S=O X-CONVERSION PARAMETERS
"'1:;:;._
~**
S~EASSE~ELY F~ L ~-- .. . : M:D-LOW SHELL L* *. j EXAt-1 1'40. 36
.:__ j **.; *-. -..:** -:** .-. -::--** *~.- . :::: ,-. ..... *** i::..- *-*.***-. ~-* ._:,*._;._. _:.._ __ ..::_. .
CALIBRATION PARAMETERS Ii'isT. r~o. 1 / 45 DEG. DiST. NO. 2 I 60 DEG.
?REJ. 2.25 MHZ. TRANSDUCE~ S!ZE l r~-! FREJ. 2.2~ ~~z.
BEAM CG:~?ONENi CCt:: SWEEP DISTAtiCE Wl. l 20 BEAM CDl!PONENT CCW E~~EEP DIST~~i~£t:N.: 4;:: CHL.NGDES/S~~E? D!3T. GAiE SETi:NSS C:~L. ~lGDESiS~E~f' DI Si. STOP 4.55 1 /0 I 3.15 STiiRT 118 .;. i .;~*
;./1,,1 2/9 I Ii , ,, ~~
J...*~ I I 9
\;';. I 9.4 1-20 2 14 11e 13.5 1-20 19 ~*;; ~,., ... ~ ..
1,;;1,,r, I 12.. 5 !{QTCH I t8 5/8 I::" 7 I l-.J1 I 5/8 I 22.5
****************~*********************************************~*******
INST.N0.3 I 0 DEG. INST.N0.4 I 50170 DEG. iRANS:UCER SIZE 1 lN FREQ. 2. 25 !'!HZ. TRANSDUCER SIZE ! IX FP.EQ. 2.25 ~HZ. 3EAM W!PGNEHT ST. BEAM SiJEE? DISTANCECN. I 20 BEA!'! :DMPONE~H CCW Si-JEEP DISTA'.iCE '. ! 1i. i .:i C~UHl!lES/S\IEEP DIST. SATE SETilNSS CAL. NODES/S\4EEP ns:. :':II. ... ,. Jh d:.
....... ..,"l'V*""C ~t. j i .:..~:: ...
- a .,.......,c:w ....... ::
... START STOP ~
SCAI~ 2 DIV. ..Ii.;, 2/8 'too.I --------------------------- 2 I 3 DIV.
.Y~ r :v.
3/8 6.7 1-20 flrW-. 8.5 3 4 I I .4 DIV Div. 1-21) 1 DI!/. 7 IC& OFF ~ 5 I w 6 DIV.
************************************************************~******~**
MODULE PARAMETERS Il\IST. 1 It*-JST *2 lo I~--iST. 3 X--CFFJE~ ~1.~0 IN. +i .. so r:-. . 1 . **- ~ .. 5(:: ::t*).
-~-1'" 12s r;\_'.. ' .~-.. ....:-; ... ---------------------~---------------------------------------
FARAMETEHS WELD _u~. 236.12 X-FUNCTICN - 80CM ROT~TE SWRI R07~TOR 9000
- '.3C:;r"i D Ir:;.: Y-POS X-START X-S~OP
.. .__. .,**.; 5140 ~ i:c~~J *-* c:..1.J 5140 .4. i::;c:;J 23(;8"7- 51 lf(:; 2COO ...J ::v.J 231 t:.2, 2C )CJ 11 5140
- .::* CCllJ 23237- 514() 2000 7 =~*J :23312- 2000 5140 8 CC!J.J 23387 - 514() 2000 9 CL1J 23462- 2000 5140 1 () CCl1J 23537- 5140 2C)0C)
'... 1 CLi.J 23612- 2000 5140
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~ = cw 239 l 2 - 20(H) 5140 1.6 CCl1J 23987- 5140 2000 17 Ci..J 24*0.!;;2* 2()(;() 5140 1 i3 CCl*l 24137- 51 i{.(: 2 1:)00 ~ *~ ci.1.; 24212 - 2q(H) 5140 20 cc:;J 1"',l'\ ..,.,.... ,. Q'J
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CALIBRATION PARAMETERS Ii'~ST. NO. 1 I 45 DEG. INST.N0.2 I DEG. T~~NSDUCER SlZE l !N ~qE~. 2.25 MHZ. P"'""--"
!"'"'\:.~ * " .-.~ ..::~~:i .. .c *~ .'.:1.!..
S~E~? D!STA~~CE\IN.! GAT~ SE:TH~SS
- /B 3.15 SCAN START Si DP [!::I 4.55
~L1;C 2:a 6.2 2/8 I 9
- 1a I 9.4 1-19 2 14 3/8 I 13.5 1-19 NC7:H I *l'1.;.,,J0: NGT:H 18 S/8 I 15.7 5/8 22.~
INST.N0.3 I 0 DEG. INST.N0.4 ! 50170 DEG. TF.Ar~S~UCER S! !E FF.E9. 2.25 ~EZ. TRANSDUCER SIZE 1 IN FREQ. 2.Z: ~HZ. BEA~ CGMr'GNENT ST.BEAi'! S~EE? DIST~NCElIN. l 20 BEA:1 CClffQNE~T CCW CHL. ~iG~ESi:3WEE? DIST. SA TE 5E7i rnss :AL. :iODES i SiiE? ~I ST. SATE SETT!NES 1/8 2.2~ SCA~ STCP 2 OIV. SCAN 2!8 / 4.5 2 l 3 n.J '!'I'
*v I ! 6.7 i-19 B.5 3 4 DIV. 1-l 9 IC<,. OF!=~ "'. ~T'!I 4 "' li*'*
5 6 n:v.
- ~******************~*****************************~*~********
MODULE PARAMETERS INST.1 INST.2 I~,!SL 3
":'" ~ I -1. !.25 Il"i. *~*1. 125 Ii'~. 0 i..**! .. + 1 .. 5() I ~.i. +1. 5C* I~~~. ~*** 1 .. ~SC* I>~ .
MODULE CONFISURA7ICN NO. 508
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~- :r.J 23E(!()- 10240 11754 ..::; C::::\~ *-:?r. -:rr:- ....:..-..:*C / 11754 1 ;J241:** ._j- *' =~ J 2395~::- _10240 11 75~1 8 C:C',iJ :: . :~ ::) 2 5 ... i J.
1,._I'-'* 7C::.:'l 102il(J S? C:V-J 24: (:.i:)- 102*,lO 1:754 10 sc:*,; .-.. ..... -r.=- 4'tl. /.:J- 11754 1 (;24(;
; *1: 24250- 1 (:12*!.1-0 11754 12 CCV*J :"24325- 11.754 10240 2.3 CH 2.L:.4;)c)_ 102,4-() 11754 ccw 1 .q. 2~.475,.. 11754 10240 'l ':::: ~ *..J C*J 2.:1-55(:1- 1024C 11754 1 L. ccr; j 1 2 1-1-625 .. 11754 10240 17 C~*-J 24700- 1 (J2-~1-<) 11754 l.O cc:.~ :2 1+775- 11 75'~ 1(j24C) 1 ,.? c:i~J 2435C)-' 1 C24C1 11754 - -* . *r ."::::. I . ~* ~--~(e" . . YY\I u~~ ~ *r-r !::.*'le.-' ;::: 't ' n_,. . I I Q..,.., \ l " * "
L-E' ..-, , _,.,..
'/C.L.. ', JJ, DP;TE *'.D.1 , /JJ,87 :
- ~XAr~. ~*IO. 38 EXAMINATION PARAMETERS 1.S=TE NA~E=SALEM 1 2.PROJE:T N0.=17-1552
- 3. ':>'.AM r-n. =38 6.SUBASSEMBLY=LOW SHELL 7.PRDCE~URE/REV/JEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.DLK.N0.=9-CSCL-54-SAM 1 C. :'E\/I CE DV.;G. 1'10. / CONF IG. NO. =D30S2'.26 7 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=105
- 2. '/ESSEL Dir:i. =174
~. WALL THICKNESS=9
- 4. X-START ?OS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.SEAM COMPONENT <C~=1~CCW=Ol=l 8.CAL.BLK.THICKNESSCIN.>=9 9.Y-START IF LIMITATIONS=O 10.Y-STOP IF LIMITATIONS=O Y-CON,VERSION FARAMETERS DE2REE3 PER !NCH= .65 X-CONVERSION PARA1*1ETERS
- . . *.-.;
- ~r
... ,**!:_.r*1c..=*
... -....* : - .--~*- , __ ,_: *\.*... *~* .* ii... *1-..,, ~ ':._ .- ,-. **-:- **(.:* ..---* .. r-:*
CALIBPATION PAR~METERS INST.N0.1 I 45 DEG. INST.NG.2 I S~EEP DI:7M~CE ~ !~L. J 20 s;;r: s:r:1~~ss ', 1/8 ~
.J:.
fl:'
~-J SCAN ST~Ri STD? t 10 4.~5 . . . . J'"l"I ;j:.,.;!"'
i.iiJ 2/8 6* *14 2/8 9 3/3 9.4 1-19 2 -J/w*i:; 13.3 2 11 NOTCH f ~
,;,,L.w c:: NGTCH 10 5/8 15.7 s;s 22.5 *~*********~********~****************************************~********
INST.N0.3 I DEG. INST.N0.4 I 50170 DEG . 0 TR~~JSDUCER SIZE FREQ. 2. 25 MHZ. iRAHSDUC£R S!~E l rn FF.E~. :.25 ~HZ. B~AM c~MPaNENT sr. EEAM SWEE? nrsT.~NCE (IN.) 20
- AL. NGDES/SilEE.:l nm. SATE SE;T!NS3 CAL.NG~EE/S~~E? n!S!.
~rn START STCP 2 w'6'f1 2i8 I 4.5 ")
3 J:'J. 1"Q
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MODULE PARAMETERS il'.lST.1 Tl'\IC-:-9
~ l*-t.._, I a ._ INST.3 I t*--'ST. LJ.
Y.--Cf='t-St:T + 1
- l 25 IN. *-1.125 !~'~~ IN.
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,.-f ('"*~ j**) -:::!* l(J '*.J r~ . f:l) !)-. o*-i ,-; -4 .,..-1 T-! ..-*I ***i -*-! -:-~ rl
- SWRI SCAN PLAN PARAM~TFR EXAr1.i'-~O.
R~Co~= 39 PROJECT NO. 17-!552 EXAMINATION PARAMETERS 1.SITE NAME=SALEM 1 2.PROJECT N0.=17-1552
- 3. EXP11'1 l'~O. =39 4.WELD N0.=1-RPV-30428
- 5. COMPONENT=RP'J 6.SUBASSEMBLY=LOW SHELL 7.PROCEDURE/REV/DEV=700-11/7
*, 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=105
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.BEAM COMPONENT <DN=l,UP=O)=O 8.CAL.BLK.THICKNESS<IN.>=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS= 0 Y-CONVERSION PARAMETERS INCHES PER DEGREE= 1.51 DEGREES PER INCH= .65
;.,~w SUBASSEMBLY LOW SHELL i; .... / -~ ' *=-=:*...._.*
EXAM r.io. 39
.i *-;....:.:.. *'-- ""--- * *~* ~** ~.. ,. ~ :~. . . *-* .
CAL.9LY_NC. 9-CSC~-54-SAM CALIBRATION PARAMETERS INST.NO.l I 45 DEG. INST.N0.2 I 60 CEG. T~A~SDUCER SIZE 1 IN FREQ. 2. 25 MHZ. iRANSDUCER SIZE 1 !N F~E:1. 2. :s '1;.{Z I BEAM COMPONENT UP SWEE? DISTMlCEml. l :o BEAM CD!'lPONEtH U? S~EE? JET iUICE '.: N. : ~0 "CAL.NCDES/EWE:? DISi I GATE SETTrnGS CAL. NODES/SWEE? ~IST. BATE 3ETTI'iE3 1/8 3.15 SCAH START STOP 118 "' * .J:i
~ ~-
2/8 6.2 2/8 9 3/8 I 9.4 1-19 2 14 3/8 I 13.5 1-19 2 .. t-ICTCH I 12.5 ~JOTCH I ta 5i8 I 15.i 5/B I 22.5 INST.N0.3 I TR~NSDUCER S!ZE l IN
£E.~:1 COllPCNE~i CAL. NGDESiS\iEE?
0 DEG. FREQ. 2.25 MHZ. ST. 3E:i~ SilEE? DI STANCE CIN. l 20
~!ST. GATE St:TI~SS INST.N0.4 I 50170 DEG.
TRANSDUCER SIZE l IN BEAi'! CDi':PONENT UP CAL. NGDE5iS~EE? DI ST. FREG. S~Er 2.25 ~HZ. orsrn1m IN.; 5 liS SCAN 2TARi STGP 2 ~ I'J, SCAN 27CP 2i3 ! 4.5 2 .;, m*.
/ 6.7 1-19 ~~8.5 '?
I 4 DIV. 1-19 1 DIV. TCG- a> FF 4 I 5 £i!!J. fWJ:- .. 6 DIV
- MODULE PARAMETERS I~\iST. 2 INST.:.::;
X-OFFGET +1.50 IN. + 1
- 5() I~*~. +i. 5C 1 Ii\l ..
i
-- l. ..
c:",*,.
*-*-~
i° L. !
.* ;-..11" Y-OFFGET +1.1=5 !N. -1. 125 ::: N. IN.
MCD~LE CONF:G~RAT:8N NC. SOC
- ~~CJECT NJ.
PARAMETERS 17-1552 ~I- ... r**:;::-
~)A f ~ /(153 lJ . ::: '*.-;-:::: Z /'J O\.J'. 87.*
WAL~ THIC~NESS 9 LEl\iGTH 1 ::)7 X-FUNCTION-HOIST S~RI ROTATOR 18000 Y-FUNCTION - BOOM ROTATE f::CP1J*.i DIF: Y-POS X-START X-STOP REMAF;f:::s 1 r::~~-~ 1 l)(i/7 ~ .232C*C1 2633C 1 2 ;JF' 232(~(:i 3 D>J 1 (> ~ 73 - 232CH) 26330
.:~~ :JF* 1 ()221.. 2633(~ 232(J() '.5 DN 2633<)
6 UP 1f)317- 2633(j 2320C) 7 DN 10365 - . 23200 8 UF' 10413* 26330 23200 9 C;i\i 10461- 23200 '.2633\) 10 IJF' 1<)5()9* 2633<) 232(i(: 11 Di'**l 1 <)557
- 232CH) 26330 1~
..::. UP 10605* 232C 1( ;
13 DN 1 (~653- 23200 2633()
- 14 UP 10701. 26330 232 :)C) 1
'.i. C" ._I DN 10749~ 232<)(; 26330 1.~ UF- 1 10797- 2633(> 2320~) ~ 7 D~*! 10845- 232(i0 26330
- !.:3 UP 1089:::... 26330 2320<)
Vi' Di'l
- EXAM. ~-lO. 4()
PROJECT NO. "7-~35= EXAMINATION PARAMETERS 1.SITE NAME=SALEM 1 2.PROJECT N0.=17-1552
- 3. EXAM ~~O. =40 4.WELD N0.~1-RPV-30428
- 5. CCMF*o1***iENT:::;f:F'V 6.SUBASSEMBLY=LOW SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELC LOC.=105
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.BEAM COMPONENT CDN=l,UP=0)=1 8.CAL.BLK.THICKNESSCIN.>=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS= 0 Y-CONVERSION PARAMETERS INCHES PER DEGREE= 1.51 DEGREES PE~ INC~:
SUE<t,:3'3E!"*1BL Y
- .::int:.L:_
EXAM NO. 40 t**IEL.~ i**JO" i -;:-.;~F!..)-3*:*~-!~.::E 7C0-1:!./7 '*/EF,-. sc,;r..; -;-y::::*:= ....::~ CAL.ELK.NO. 9-CSCL-54~SAM DEVICE DWG.NO./CCNF!G.NC. 2~052:67 CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 I 60 DEG. TRANSDUCER SIZE 1 IN FREJ. 2. 25 MHZ. 7RANSCUCER SIZE 1 HI FnE~. : *25 ~fl:. BEAM CO!'!PJNENi ON SiiEEP DISTANCE!IN.l 20 BWl COMPON~Ni DN. SiiEEP D: 3TANCE; I~<. i .:o CAL.NODES/S~EE? DIST. SATE SETTINGS CAL.N~DES/SWEEP U!Si. 1.I*
'R 3.15 sc~.N STARi SiO? l./8 j 4.55 SCAN START 2/8 I 6.2 2/8 f '1 3/B I 9.4 1-19 2 14 3/8 I 13.5 1-19 2 NOTCH I 12.5 NOTCH l.8 5/8 15.7 5/B 22.5
'\: INST.N0.3 I 0 DEG. INST.N0.4 I 50170 DEG. l IN FREQ. 2.25 ~HZ. TRANSDUCER SIZE 1 !N ST.BEAM SwEE? DISiANCE(!N.l 20 BEHi! C~M?Ot1E~ff D:i CAL.NODES/SiiEE? DIST. SATE SETTINGS Cl\UlODES/SilEEP DI5T. GA~E SETTINGS 118 2.25 SCAN START STOP . D!V *
~
II~ a* w i 4.5 --------------------------- 2 / 3 orv. 3/8 I 6.7 1-19 ...r-.:z..~ 8.5 "!'
*J 4 DIV. 1-t9 : o:v. "'! !"* T ~ f I .l.il.f1 .,* ' 5 "f!J TCG r:;µ a/It- c:
iJ.i.'tt
.: DIV. ********************************************************************~*
MODULE PARAMETERS IN2T,:::: X-OFFSET -1.50 IN. --1. 50 IN. Y-OFFSET -1.125 IN. +1. 125 I!*) .. ..) MCD~LZ CCNFIG~rAT!GN N0.50A
SWRI PAR SCAN SHEET
- PAF:AMETERS N/t+ .... i-,
i"*i'-'. i - .. :~ 1-: *... -- ; ......... ...: t.)~SSEL. DI::-~. 1 7 t~. X-FJNCT!CN-HC!ST . Y-FUNCTION - BOCM ROtATE
\r'-f-='!JS :<-START X-ST'.JP 1
DH 10<)77 - 2197() 251 ()::)
.-, 2510()
k UF' 2197C)
~3 Dt*. ! 10173 - 2197C) 25100 /I *-i* ui=* 10221 - :251()() '2197r:)
C"
~* DN 10269 - 2197(:; 2510() *=:* UF 10317~ 25100 21970 7 DN 2197() 251(H) a UP 10413- 251 (H) 21970 s* DN 10461 - 21970 251 1:)<)
10 UF' 10509- 25100 21970 1i J. DN 10557- 21970 25100
~ 2 UP 10605- 25100 21970 1 -=!" DN 1C)653- 21970 ***1 25100 14 UP 10701- 25100 21970 *L ._J e
DN 10749- 21970 25100 1a UP 10797- 25100 21970 17 DN 10845- 21970 25100 *'
. .J.~
1*~ UP 10893- 25100 21970
*~
1
.l. *=t DN 10941 - 21970 25100 REVIEl;ED BY ~"'-IY\B~LE</EL l 1L. l DATE l 03,}Jo~ 971
- PROJ~CT NC. 17-'~~~
EXAMINATICN PARAMETERS 1.S!7E NAME=SALEM 1 2.PRCJECT ND.=17-1552
- 3. E/Ai'1 ~;o. =41 4.WELC N0.=1-RPV-3042C
- 5. CCt* iF'ONENT=f.:P'v' 1
6.SUBASSEMBLY=LOW SHE~L 7.PROCEDURE/REV/DEV=700-11/7 S.SCAN PATH SKETCH NO.=DSK3052745
*, 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1.
2. WELD LOC.=225 VESSEL JIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.BEAM COMPONENT CCW=l,CCW=O>=O 8.CAL.BLK.THICKNESSCIN.)=9 9.Y-START IF LIMITATIONS=O 10.Y-STOP IF LIMITATIONS=O Y-CON'v'EF:S!ON PARAMETERS r*. !::" *-:-: r_"".'* c- i=- - ., .-=: J.~ :_ L-:::
_.._. .._:~, *.;,__~-- - .. ~ I r\IC:~**!= * *-**-J X-CONVERSION PARAMETERS
~UGASSEM8LY ~.f.-j LOW S~ELL EXAM ~lO. 4:i. *-**:- ...... *~:*.~ . .. ---, *--* *--- _.=::..
- ~~.SLK.NO. 9-CSCL-54-SAM -- --* .* *, *:-_- .--, **~ . -.
L... *-*' "-. ***- .~ .. ...:. ,-:.:; : CALIBF:ATIDN F'ARAMET:::F:S INST.NO.! I 45 DEG. INST.N0.2 l 60 DEG. TR~~~SilUCER SIZE 1 IN FREQ. Z.25 ~HZ. TRA~fSDUCER S!!E : !~~ FR::a. 2.:s ~sz. S~EE~ D!S!ANSEIIN.l 20 S~EEF DIEi~NCE * :N.) l=' CAL.NOD!S/SW:E? ~iSI. SHiE SETT!NSS CAL. NODESiSi!EEP Dl ST. 1:'8' I 3.15 SCAN START STD?
- 10 11w 4.55 2/B I 6.1 .....
*?/C i 9 3/3 I 9.4 H9 2 14 3/8 13.5 H9 NOTCH I 12.5 tiC"'"CH I 18 518 I 15.i 5/B 22.:
- ~
INST.N0.3 I 0 DEG. INST.N0.4 I 50170 DEG.
!RANSDUCE~ SIZE ! IN FREQ. 2. 25 ~HZ. TRANSn~CER srzE 1 rN FREQ. 2.:5 MH:.
BEAM CQMPGNENT ST.BEAM SWEE? DISTANCE(lN.l 20 BEAM C:!':?CNEilT ::~ CAUIODES/S~EEP D!Si. SATE SETTHISS CAL.NGDES/SilEEP o:sT. 1/8 I 2.25 SiART STCP 2 D!IJ. 2/B I U 2 ,,-r DIV. 3/8 I 6.7 1-19 ..;.-.z.GJ?-a.5 ~
*J 4 DPi.
IC(.. OFF~ 4 i 5 DIV. 5 6 D!V. MODULE PARAMETERS INST. 1 INST.2 X-CFFSE7 -1.:25 IN. 0
\' *~~C-f-"FSET +1.50 IN. + :. * '3=.:** I H. -**II ~ODULZ CC~FIG~RAT!ON NO. r.=:,.-**D *_.} ~-* ;_1
.-.=* ~- --~ ,___: ,; .J. ... _ '.'.:---=- -r F'AR~METEF:S AJ/A V-F~NCTION - BOOM ROTATE SWR! ROTATOR 9000 X-FUNC7~GN - ~0:2r '3C~~~f\I [:: I ;.:;~ X-POS Y-START Y-STOP < ;_.v*J 235<)(: 1 .. 2224() 23755 ..::. CCL< 23575 - 23755 222"~-() .,. 2365() - - DJ 222*<'.!*0 23755 .q. ccv; 2'.3725 - 23755 22240 5 CVJ :238(i()- 23755 6 c.i:v.; 23755 2224*C) '"1 CV-! 2395()- 22240 23755 '-' CC~L1J 23755 2224.()
r**. 24:i.()()r 2224() 7 Ct'-J 23755 1
~ 0 r:cw 24175- 23755 2224.(;
i 1 Ci J 1 2425<)- 222.:'.1-() 23755 *-:'* 1 ......
..i. -=!"
CC.~!,i..J
'_.V*J 23755 2224*()
22240 23755
.l. q :::c~11 2L!-4 7*5_ 2~3755 15 C!;J 24550- 222ll() 23755 J. .::::. ::[~i,iJ 22240 ..." -:; 1:~ . .! 222.q.() 23755 .L ::3 ;.::;C[.LJ .24775.. 23755 22'.240 ,.' 9 CLAJ =4850- 22240 23755 RE'l:EWED BY~IY\B~ \LEt..iEL ( DATE ( o~ ~-1;n
- *. ****.. .-:f.7
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EXPt1*~:. ~*l'J i !:::.:.: *-r .E:: y..-- * ..,.......,
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II
~2 EXAMINATION PARAMETERS 1.SITE N~ME=SALEM l 2.PROJECT N0.~17-1552 3,. E /: .:1\'"1 1*-..~;] .. =*4::
4.WELD NC.=1-RPV-3042C s :1 i= c~ :*,.*: ;=: 0 r*-. 1E !'~ T ::= F~ p 1*-) 6.SU8AS3EM8LY=LOW SH~LL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745
*, 9.CAL.SLK.~0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.NC.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1
- L.
~*JELD VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-S~ART POS.=235
- 5. X-STOP POS.=248 LDC. =225 6.WELD LENGTH=107 7.BEAM COMPONENT CCW=l!CCW=Ol=l 8.CAL.8LK.THICKNESSCIN.l=9 9.Y-START IF LIMITATIQNS=O 10.Y-STOP IF L:MITATIONS~o Y-CONVERS!ON PARAMETERS tb1?1p Z. /VO V, 8 (
- (*. :c:'.-:ES F'E?.;~ I)C.:!3J~EE--= ~,. S1 DEGRE~S PE? !NCH= .~3 X-CCNVERS!ON PARAMETERS
-: *--~;.::**~E :3 ;*-*;:::.t*.: c:J1_1~.i-r=
- c1 1 !::J!JNT:3 .=*~F~ I(.ii:'.-~= ~ Oi:)
5~8ASSEMBLY LOW SH~L~ EXAM NQ.
- 42
=~~.3~K.NO. 9-23CL-54-SAM ..-.-- *.i,:::.- **- . *-**
CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 I 60 DEG. F~EQ. 2.25 MHZ. CAL.NODES/SWEEP DIST. SA"!"E SETTI:\SS CAL.NODES/S~EEP ~IST. 1/3 3.15 SCAN START l/B I 4.55 2/S I 6.2 218 I 9
.,.!,, I 9.4 '.-19 2 14 3i9 13.5 ~* 0 NCTCH I 12.5 NQiCH I tB .,., C' 5/8 I 15.7 5iS I '-"-* J *******************************************************************~**
INST.N0.3 I 0 DEG. INST.N0.4 I 50170 DEG . TRAN3DU:ER S!ZE ! lN FREG. 2.25 MHZ. TRANSDUCER Si ZE 1 i~4 FREQ. 2.25 ~HZ. BEAM COMPCNENT ST.SEAM S~E::? DISTANCE (HI. l 2') 3EA~ CO~PO~ENT CW C~L.NOJE3/S~EEP DISi. SATE SE\i mes CAL. NODES!E1JEEP D!ST.
!!8 ~ ,,.. ..... w SCAN
- START STCP 2 D!V. SCAN START S"!"CP 2/8 4.5 I 3 OiV.
3i8 6.7 1-19 -i- e.5 ~ I 4 crv. I. - .1
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1 DIV. -
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z, G> ~ ! 5 O!V. 5 6 D!Y.
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MODUL~ CCNFIGURATION NO.SOC
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SWRI SCAN PLAN PARA~ETER r**. 1c; . EXAM.NO. 43 R~SDR~ EXAMINATION PARAMETERS 1.SITE NAME=SA~EM 1 2.PROJECT N0.=17-1552
- . E>'.P1M ;*.m. =43 4.WELD N0.=1-RPV-3042C
*, 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1 . l;JELD LDC. =225
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.BEAM COMPONENT <DN=l,UP=O>=O 8.CAL.8LK.THICKNESSCIN.l=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP !F LIMITATIONS= 0 C'&mf7 ZNOV. 87 Y-CONVERSION PARAMETERS INCHES PE? ~EGR~E=
~ .1. !:,.- -I w ._; l.
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l.
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T:\!t1snuc::R sm 1 rn FREQ. 2.25 ~HZ. TRANSDUCER S!ZE 1 IN FREa. 2.2~ ~~z. BEA~ C~MPONENT UP SWEEP nISTMICE\rn.l 20 C~L.NO~ES/SWEEP DISi. s.m SETTI~GS 1/8 1.15 START STOP 1/9 4. s:;
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'910 2/6 I 9 3!3 I 9.4 i-19 2 14 3/8 I 13.5 1-19 NGTCH 12.5 NOTCH I 18 5i8 15.7 5/9 I 2:.s
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~
3/8 6.i 1-19 ~ 8.5 3 4 DIV. 1-:9 1 DIV. ..,.
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4 . 5 D'"'. 5 6 DIV.
*****************************************************~*****~*~********
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EXAMINATION PARAMETERS 1.2!TE NAME=SALEM 1 2.PROJECT N0.=17-1552 a.WELD N0.=1-RPV-3042C 5, COMF'G:'lENT=RFV 6.SUBASSEMBLY=LOW SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.NO.=D3052267 CALIBRATION AND DEVICE PARAMETERS
- 1 * \*JELD LDC. =225
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.BEAM COMPONENT CDN=1,UP=0>=1 8.CAL.BLK.THICKNESSCIN.l=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATICNS= 0 Y-CONVERSION PARAMETERS INCHES PER DEGREE= 1.51 DEGREES PER INCH= .65
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EXAMINATION PARAMETERS 1.SITE NAME=SALEM 1 2.PRCJECT ~O.=l7-1552 4.WELD N0.=1-RPV-3042A s . *: u*::= :J !"*ENT =F:r"*/ 6.SUBASSEMBLY=LOW SHELL 7:PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CON~IG.NO.=C3052267 CALIBRATION AND DEVICE PARAMETEHS
- ~
1 VJ ELD LOC. ==3L'r5 VE3SEL D:A.=174
- 3. WALL THICKNESS=9
- 4. X-START PDS.=235
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=~c~~s PER DESREE~ 1.51 DESRE~S P~R !NCH= .65 X-CONVERSION PARAMETERS ~~C~ES P~R COUNT= .G1 COLl~rs PE? INCH= :c~
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INST.N0.3 I 0 DEG. INST.N0.4 I 50170 DEG. TRANSDUCER SIZE 1 !N FREQ. 2. 25 MHZ. TRA!iSDUCER SIZE l IN FREQ. 2.25 ~HZ. 3EAM cor:PO~ENT Si.BEAM SWEEP ~!3DNCEtIN. l 20 BEAi'! CS~PGNENT C~~ S~EEP D!2iA~~CE~:~J..: 5 C~L.NCDES/SWEEP DIST. GATE SETiili8S CAL.NODES/SWEEP ~:S7. 3ATE ~ETTINGS 1ow:Q '! 'IC: SCAN START STOP I 2 D!t/. src=* Z/B I 4.5 --------------------------- "
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X-OFFSET -:.125 IN. -i** 1 .. 1. ::5 I~--~ la
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EXAMINATION PARAMETERS t- ' -:* - ..,.. 1.S!TE NAME=SALEM 1 4.WELD NO.~l-RPV-3012A 6.SUBASSEMBLY=LOW SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LDC.=345
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.B~AM COMPONENT CCW=l,CCW=Ol=l B.CAL.BLK.THICKNESSCIN.>=9 9.Y-START IF LIMITATIONS=O 10.Y-STOP IF LIMITATIONS=O Y-CONVERSION PARAMETERS
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INST.N0.3 I 0 DEG. IN3T.ND.4 I 50170 DES. TRf.NSD~CE?. CAL.NCDES!SWEEP SIZE l IN nr~~ FREQ. 2. 25 MHZ. SATE SEiTINES CAL. NCDES/S'.lEE? DIST. 1 cw FREJ. 2.2S SAT~
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EXAMINATION PARAMETERS 1.SITE NAME=SALEM 1 2.PROJECT N0.=17-1552
- 3. EXAM i'*lO. =47 4.WELD N0.=1-RPV-3042A
- 5. COMPONENT=F.:F*\J 6.SUBASSEMBLY=LOW SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH ND.=DSK3052745
', 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1 . 1.-<JELD LDC. =:345
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.BEAM COMPONENT CDN=l:UP=O>=O 8.CAL.BLK.THICKNESS<IN.)=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS= 0 Y-CONVERSION PARAMETERS r-: .-.-,
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TRA14SDUCER sm 1 IN FREQ. 2. 25 MHZ. !N FREG. 2.25 :!HZ. BEAM COMP~NEN.T U? SWEE? !: I STANCE ml. l 20 BEAM CC~PGNENT UP
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1/S '
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~QiCH I
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INST.N0.3 I 0 DEG. INST.N0.4 I 50/70 DEG. TRA!IS!!UCER SIZE l iN FREQ. 2.25 MHZ. TRANSDUCER SIZE 1 !N ~REQ. 2.25 ~HZ. 3:.A~ CG~.PONEllT ST .3EH!1 S:4EE? OISiANCECiN. l 20 3EA!'\ :O~SONE!H l!? SWEF D157ANSE\:~~. i 5 CAL.MODES/SWEE? D!ST. SATE SETiINE3 CAL.NDDES!S~EEP DIST. SATE SETT:~~GS 1/8 I 2.25 SCAN START STOP 2 D!I/ *. SCAN . 27QP 2/8 I 4.5 2 *~ ~!V.
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I..,, i_; ~ EXAMINATION PARAMETERS 1.SITE NAME=SALEM 1 2.PROJECT N0.=17-1552 4.WELD N0.=1-RPV-3042A 6.SUBASSEMBLY=LOW SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=345
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=235
- 5. X-STOP POS.=248 6.WELD LENGTH=107 7.BEAM COMPONENT CDN=l,UP=O>=l 8.CAL.BLK.THICKNESSCIN.)=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS= 0 Co-n?f' z /uo l/. 8 7 Y-CONVERSION PARAMETERS INCHES PER DEGREE= DEGREES PER !NCH= .65
E'.~AM NG. 48
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~~~.SLK.NO. 9-CSCL-54-SAM DEVICE DWG.~C./CONFIG.NO. C30S22~7 CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 / 60 DEG. T~~NEDU:~R SIZE 1 iN FREQ. 2. 25 ~HZ. SE~ CC1'4PGNENi DN SWEE? DI ST ~NCE ml. l ~*-' SES~ CG?1FCNENT DN GATE SETT!NSS t ;;i i.iw 3.LS SCAN START 1/8 4.5~ Z/8 6.2 3/3 9.4 1-19 2 14 3/3 13.5 ., N".,.~**
'..i! ... !"1 l2.5 NOTCH !. 13 ~/3 '" -
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- 1. WELD LOc.~1so
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- 3. WALL THICKNESS=9
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X-CONVERSION PARA~ETERS
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- 1. WELD LOC.=180
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- 3. WALL THICKNESS=?
- 4. X-START POS.=126.16
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- EXAM. r-l:l,. 55 EXAMINATION PARAMETERS 1.B:TE NAME=SA~EM 1 2.PPCJECT N0.~17-1552 4.~E~D N~.~1-RPV-2042C 6.SUBASSEMELY=M:D SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=180
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=126.16
- 5. X-STOP POS.=139.16 6.WELD LENGTH=107 7.BEAM .COMPONENT CDN=l,UP=Ol=O 8.CAL.BLK.THICKNESSCIN.>=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS~ 0 Y-CONVERSION PARAMETERS ('~ Z, ,lf/tJt/. c£ 1
.*Q !N2HES PER DEGREE= 1.51 DEGREES PER INCH= .65
l7-155:=
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EXAM NO. 55
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CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N8.2 I 60 !:E3. TRA~E~UCER SIZE 1 !N FRrn. 2. 25 MHZ. TR~~SDUCER SIZE F?.£1. :.1S ~'.-1:. BEAM C3i'!PONENT JP 1 SitEEP !1 ISTANmrn.1 20 BEAM COMF'!JNEtH UP SH TE SETi I~~95 110 "I IC'.
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SETTIN6S INST.N0.4 i 50170 DEG. TRANSDUCER SIZE l IN 3EA?1 CCMPQNENT LiP CAL.NGDES/SWEEP ~!ST.
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GATE SETTINGS 5 118 2.25 SCAN START SiOP 2 DIV. START 2/8 4.5 2 3 DIV. 318 6.7 1-19 "!
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4 I 5 n~v. w { 6 DIV.
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MODULE PARAMETERS I ~*~ST. 1 INST.:2
>~-**CFFSET + 1 . 5<) I~-~. +1. SC I\I. -* .1. .. sc~
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1 D~*! 17577 .12316
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EXAMINATION PARAMETERS 2.PROJECT N0.=17-1552 4.WELD N0.=1-RPV-2042C
- 5. C]MPIJNENT=F.'.Pl..,.
6.SUBASSEMBLY=MID SHELL 7.PR8CEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.~DSK3052745 9.CAL.BL~.N0.=9-CSCL-54-SAM
- 10. DE'IICE m*JG. :-.m. /COl'-IFIG. NC. =D3C52267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=180
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=126.16
- 5. X-STOP POS.=139.16 6.WELD LENGTH=107 7.BEAM COMPONENT CDN=1,UP=OJ=1 8.CAL.BLK.THICKNESSCIN.)=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS= 0 Y-CONVERSION PARAMETERS INCHES PER DEGREE= 1.51 DEGREES PER INCH= .65
SUBASSE~BLY MID SHE~~
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118 I -.'1.lw SCAN START STOP 118 4.55 2CA'i 2T:~R: I 6 ., 2/8 3/2 I 9.4
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57
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EXAMINATION PARAMETERS 1.S:T~ NAME=SALEM 1
- 2. 0 ROJECT N0.=17-1552
- s '* c:cr* 1FDi'*~C:r\.~T::::;RF:'.,/
1 6.SUSASSEMBLY=MID SHELL 7.PROCEDURE/REV/DEV=700-11/7
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{; T!-l St<!;:TCH \"-.10 ;::DSJ<.3(i527 ~1-~ n 9.CAL.SLK.N0.=9-CSCL-54-BAM 10.DEVICE DWG.NO./CONF!G.NO.=D3052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=300
~. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=126.16
- 5. X-STCP POS.=139.16 6.WELD LENGTH=107 7.BEAM COMPONENT CCW=l,CCW=Ol=O 8.CAL.BLK.THICKNESSCIN.)=9 9.Y-START IF LIMITATIONS=O 10.Y-STOP IF LIMITATIONS=O Y-CONVERSION PARAMETERS
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X-CONVERSION PARAMETERS c::::Jr*. :-:-s r- ~~.'. .. , ;,-***!__ i ! ..- ***
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CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 I 60 DEG. 1 IN FR£Q. 2.2: ~HZ. TRANSDUC:R SIZE cc~ S~EE? DISTANCE (IN.} ~,"; 8EAM CGMF'O~ENT *""'"" 1.,,:..di ":'*.'
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- . CD>1F'ONENT=FF/
6.SUBASSEMBLY=MID SHELL 7.PROCE0URE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1
- L*JELD L!JC. =300
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=1:6.16
- 5. X-STOP POS.=139.16 6.WELD LENGTH=107 7.BEAM COMPONENT CCW=1,CCW=Ol=1 8.CAL,BLK.THICKNESSCIN.)=9 9.Y-START IF LIMITATIONS=O 10.Y-STOP IF LIMITATIONS=O Y-CONVERSION PARAMETERS Com{' 3 )/9t1.. B7
!~:CHES PER DEGREE= 1.51 DEGREES ~ER INCH= .65 x-cmNEES I ON PARAMETERS
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CALIBRATION PARAMETERS INST.NO.! / 45 DEG. It~ST.r*~0.2 / DES. FREG . 2.25 MHZ .. SWEE? D1Si'AUCE(IN . 1 20 GMi~ SETTINGS 1/8 SCAN START f I~
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2/5 2/8 9
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INST.N0.3 I 0 DEG. INST.N0.4 I 50170 DEG. TRANSDUCER SIZE 1 !N FREQ. 2.25 ~HZ. iRANSDUCER SIZE
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;.;:: Sii1RT ST:JP 2 01~*. SCAN 2/8 4.5 ~ ... 3 .!"!***
tH~*, n .,, 3/8 b.7 8.5 3 4 *./l v. 'i - ;.'~' ~
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EXAMINATION PARAMETERS 1.BITE NAME=SALEM 1 2.PRCJECT N0.=17-1552 4.WELD N0.=1-RPV-2042A 5 .. COMF'ONENT=RP'v 6.SUBASSEMBLY=MID SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.ND.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1
- l;JELD LDC. =300
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=126.16
- 5. X-STOP POS.=139.16 6.WELD LENGTH=107 7.BEAM COMPONENT CDN=l,UP~O>=O 8.CAL.BLK.THICKNESS<IN.l=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS= 0 Y-CONVERSION PARAMETERS I/Pf.
INCHES PER DEGREE= 1.51 DEGF:EES L,ICH= .6C~-
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- _ * -
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Y*?c! ... 1..) 7(;(\-~::. .. '7 .. :-: . '. :.:: ~.:. *.*._:_ CAL.B~K.ND. 9-CSCL-54-SAM CALIBRATION PARAMETERS INST.NO.l I 45 DEG. INST.N0.2 I 60 DEG. TRANS~UCER SIZE 1 iN FREQ. 2.25 MHZ. iRAN£DUCER SEE 1 rn FRrn. 2.'.:5 ~\H:. BEAM CCr-!?O~~E~iT U? SWEEP n:sTANCE\IN.i 20 BEAM COMPONENT UP SWEEP D:S!ANCEl!~.I ~O GATE SE!TIN5S 118 I ..), 1:i
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SCAN START STOP 118 I 4.55 S7ART 218
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I 6.2 I 9.4 1-19 2 14
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3/8 I 9 13.5 1-19
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I 12.5 I 15.i NOTCH 5i8 I 18 I .,., =
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Il'JST. NO. 3 TRANSDUCER SILE l I:i BEAM CGMPaNEN! ST. BEAM I 0 S~EE? [)EG. FREQ. 2. 25 ~HZ. DISTAN:rnN. l 20 INST.N0.4 TRANSDUCER S: ZE l IN BEAM COMPONENT U? I FREQ. 2. ZS 50170 DEG. M~:. CAL.NODES/SWEEP D!Si. SA TE SETTil!GS C~L.NQDES/SwEEP DIST. GATE SET"'.'INGS 1/8
,.,~
SCAN START STOP 2 DIV. SC?.N START 215 i 4.5 --------------------------- ~ I. f 3 DI!J. 6.7 1-19 I 4 DIV. 1 DIV, ~ ., Tl* 3/5 /
~@ 8.5 3 4 i 5 D!V. ; l:.t.v.
5 6 D!V. MODULE PARAMETERS 1 T!o\!l"""T
.i.l*i*.=. I.., *f J. INST.2 INST.3 + 1. 50 IN. + l. 50 IN.
Y-OF~S~T +1.125 IN. -*1. !'.:S I\!. (::
~DDULE C8NFI2URA7!2N NO. 50C
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- 3;:::*;*:~*t:\! I ~. . iC'" (I >I=- . . * ~75 <CT::;. ) 48 >JEL.D L_;:_::;*.;:~iT'.*-l ., . -.,--.,
\ *-~=;._Jr-*-iC7 I Cd':--!-iO I t~T ~WRI ROTATOR 13000 Y*-FUi.*4CT I lJ:i - E:Jor*.-1 \"".!.-' .......-.*...-.-. ..,...,__ ! ;.. ; i t:..:
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'...'-C: ~--* X **-:~3TP~;:;~T X-*STiJF' S'.Ei"'l~;F.:;::::3 1 I)!'-~ 2*:?577 ./ 12316 15446 ~. ..::. u:=* 29C:.25 / 154*l6 12316 3 DI\! 29673/ 12316 15446 lj. !JF' 29721 ,,/" 1544.~ 12316
- 5 Dr*-4 2?769 / 12316 15446 6 lJF' 29817/ .15*+46 12316 7 DH 298.:'.:.5/ l.2316 15446 8 u1=* 29913 / 15,!J.46 1231.6 7 Dt. .i 29961 / 12316 15-<'.JA6
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1 () L!Fi 15446 12316 11 :c,~. I 12316 15446 1 ,,
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1;3 UF' 3.:)393 1544-6 123}.6
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1 c;:* DN 3C'4 1t 1./ 123::. 6 15446 REVIEWED <>-U" "r (LEVEL< 'TI: r,c,Tr. ( 0-:i~ ,l'-L> _, I o I '- *
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1-..;,:.::i: ...:.:. SCAN PLAN PARAMET~S r<::.. ~- -_*:- -*- *:
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EXAMINATION PARAMETERS 2.PROJECT N0.=17-1552 4.WEL8 N0.=1-RPV-2042A
':.'3. COMF'Ci..iENT=--=F>:P'v' 6.SUBASSEMBLY=MID SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=JSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.NC.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=300
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9
- 4. X-START POS.=126.16
- 5. X-STOP POS.=139.16 6.WELO LENGTH=107 7.BEAM COMPONENT CDN=1,UP=0>=1 8.CAL.BLK.THICKNESSCIN.)=9 9.Y-START IF LIMITATIONS= 0 10.Y-STOP IF LIMITATIONS= 0 Y-CONVERSION PARAMETERS INC~ES PE~ DEGREE= 1.51 DEGREES P~R INCH= -~=
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=AL.SLK.~G. 9-CSCL-5~-SAM DEVICE DWG.NO./CONFIG.NC. ~3os==6~ CALIBRATION PARAMETERS INST.NO.! I 45 DEG. INST.N0.2 I 60 DEG. TRANSJLCER SIZE 1 IN FREQ. 2. 25 MHZ. F~.E:l. :.:5 'IE:. EE~~ COMPONENT CN SWEEP l! ISTANCE ml. l 20 GA TE SETWlSS CAL.N~JESISWEEF DIST. 11011'1 'r fl:'.
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INST.N0.3 TRANSDUCER S!ZE 1 IN BE~M COi'lPONE:H Si.EEAl1 CAL.~lODES/SWEEP nm. I 0 S~EEP DEG. FREQ. 2.25 ~HZ. DISTHNCEWtl SATE SETTINSE 20 INST.N0.4 TRM<Sl!l!CER BEA~ COM?O~iENi CAL.NOOES/S~EE? sm DIST. l DN I~l I 50170 DEG . FREQ. 2.:5 *1Hz. SWE~? 0I ST HNC: {I~~. ) 5 118 2.25 SCAN START STOP I 2 DIV. SCAN Si ART s:c?
,J.., I 4.5 --------------------------- 2 I 3 DIV.
3/8 I 6.7 1-19 ~ 3.5 3 i 4 DIV. H9 1 DIV. 7 rrv.
~ ~ I 5 DIV.
5 I 6 DIV.
- ~*~
MODULE PARAMETERS INST.1 Ir-~ST.3 X-DFFSET -1.50 IN. -1.5(J IN. -1
- 5<) : j\{ ..
Y-OFFSET -1.125 IN. + 1 ~ 125 I l'~. .-;*.... MOJULE CONFIGLJRAT!CN NO.SGA
2 ~~ .,,'. '~-:::;~ I y.::: . .{::~ :;=:~ ~::::; C: ,{:-'"j 1"*~ f.=: :--~ ~-==-~ *::::: *;-
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PARAMETERS
- . c: - ~ !- 1 == = -.-* ~ '1:=: *:01.:0
~µ :1-* --? ;;; /[/t)t/ 87
- ,:.J ~: i_ ['. i !-l--..
'..-~*>'*-* .. 31:)::) 1 */E'.3:3EL DI .q. :!. 7*<'.'.!* '.,.:.J ~;L_L_ T!~ Ii=*;. :~*--:E.:~:'.'.:: ,.-
- ~;r** l . I ;***~C ~ ( I;. .~ Q J .. 75 ( CTS. ) 4C3 ~...JELD LE\tl::T~*-i 1 c,7*
X-FUNCT!C~-HOIST ~:~:.Jf\ I F.'.1JTP1TIJF (:1 Y-FLlNCT!ON - BOOM ROTAT=
- 3c:::;~.: DI F.~ *y**-PGS x--*STAFn >'.*-*STOF' r.:Ell!'-~Ff::::;
J. :'.)j-..j 27577/ : 1086 14216
..:. ur-1 2*7*.s25/ 14216 11086 ~mr~
Dr'-i 11086 14216
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10 UF* 3*:)009/ 14216 11086
- . 1 DN 3(J057,,,,,, 11086 1*'.l-216 12 !JF* 301.05/ 14216 11086
.. *:i-l.:.* DN 3*.)153/ 11086 142:i.6
- _,:;. I_,:i::* 30201./ 1~-216 l.1086 1 r:: D~*,J 30249 ;/ 11 os ..s 1 41-216
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16
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4':'.' 1 w'-. 11 ("106 ~* *~ 1~ DN 30441~ 11086 14216 REVIEWED ~9"'-' \'X\~~ <LEVE~< IL D1;TE <c:J 1'kJ ,e7
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EXAMINATION PARAMETERS 1.SiTE NAME=SALEM 1 2.PROJECT N0.=17-1552
- 3. E/P1M NO. =61 4.WEL~ N0.=1-RPV-8042 S. CO!IF'm,H:::t\IT=~:F'V 6.SUBASSEMBLY=UP-MID SHELL 7.PROCEDURE/REV/DE\1=700-11/7 8.SCAN PATY SKETCH NO.=DSK3052743 9.CAL.BLK.N0.=9-CSCL-54-SAM
*, 10. DE\/ICE DV.JG. [\II]. /CONFIG. NO. =03052267 CALIBRATION AND DEVICE PARAMETERS
- 1. WELD LOC.=127.28
- 2. VESSEL DIA.=174
- 3. WALL THICKNESS=9 4.
5. X-ST{1F:T F'OS. (DEG. ;.-:-e X*-STOF' F'OS. <DEG.:*~ 6.WELD LENGTH=546.637 70.00 q0,f¥4-
~
7.BEAM COMPONENT CDN=l,UP=Ol=l
- 8. Cf';L. BL:< .. TH I Ct:::NESS CIN. ) -=9 X-CONVERSION PARAMETERS INCHES PER DEGREE= 1 J..
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CALIBRATION PARAMETERS Ir'-lSTat'~0.1 I 45 DEG. I i'*~ST. t--~O. 2 / DEG.
- !!l FREG. 2.~:: MHZ.
~N 20 ....,
C~L.~G:~E/SWEEF ~!ST. f/8 '":" !='.
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INST.N0.3 I 0 DEG.* INST.N0.4 I 50/70 DES. TR~~~SDUCE?. S!ZE 1 I~i FREQ. 2.25 MHZ. T?.ANSDUCER S!ZE l rn
*" ~RE=i. 2.Z5 XHZ.
SWEEP DlSTAllCEm.l 20 BEAM :JMPUl-lE:NT " Lil*
'.:AL.NCDES!SWE!P DIST. GATE SETTINGS CAL.NOOES/SiiEEF DIST.
ii8 2/6
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t I 2
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- 1. WELD LOC.=127.28
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CALIBRATION PARAMETERS INST.NO.! I 45 DEG. INST.N8.2 / 60 :JEG. iR~NSDUCER S~ZE 1 I~ Fr.E~. 2.25 MHZ. TRANSDUCER S!!E 1 IN F~E]. 2\25 M~Z. EEA~ c:~PCNENT uP S~EEP DISTANCE(IN.J 20 BEA~ CJMFCNENT UP S~£E? n:s~A:icE::IN, J '1(1 c;L.NCDES/S~EE~ D!ST. GATE SET7!:-163 CAL. ~lGDES/S;JEE? DIST, SATE s::TT!NGS 1i8 ., ~ C'
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EXAMINATION PARAMETERS 1.SITE NAME=SALEM l 2.PROJECT N0.=17-1=52 4.WELD N0.=1-RPV-8042
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6.SJBASSEMBLY=UP-MID SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONF:G.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
- 1.
2. 3. 4. WELD LOC.=127.28 VESSEL DIA.=174 WALL THICKNESS=9 X-START POs.-g.~
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6.WELD LENGTH=546.637
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- NC~ES PER DEGREE= 1.51 DEGREES PER INCH= .65
1 *7 ..... ~55:: EXAM NO.
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EXAMINATION PARAMETERS 1.8!7~ NAME=SAL~M 1 2.PRCJECT N0.=17-1552 4.WELD N0.=1-RPV-80~2 6.SUBASSEMBLY=UP-MID SHELL 7.PROCEDURE/REV/DEV=700-11/7 8.SCAN PATH SKETCH NO.=DSK3052745 9.CAL.BLK.N0.=9-CSCL-54-SAM 10.DEVICE DWG.NO./CONFIG.N0.=[3052267 CALIBRAT.ION AND DEVICE PARAMETERS
- 1. WELD LOC.=127.28
- 2. VESSEL D!A.=174
- 3. WALL THICKNESS=9 .
- 4. X-STPiFff POS. =-21) 6 '* oo @
- 5. X-STOF' FOS.-8114 /00,""77 6.WELD LENGTH=546.637 7.BEAM COMPONENT CCW=1,ccw~o>=O 8.CAL.BLK.THICKNESS<IN.l=9 9.FIRST SCAN IF NOT 1 =O 10.LAST SCAN IF LIMITATIDNS=O X-CONVERSIDN PARAMETERS T',~i'::C 1 ~'..7C"
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2/8 o.~ 2/S 9 3/S 9.4 1-20 2 14 3/S t-20
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EXAM.NO. 65A
- SWRI SITE NAME SALEM 1 SCAN PLAN EXAMINATION PARAMETERS PARAMETER PROJECT NO.
RECORD 17-15~2 1.SITE NAME=SALEM 1 2.PROJECT N0.=17-1552 3.EXAM N0.=65A 4.WELD N0.=1-RPV-7042
- 5. COMPONENT=RF'V 6.SUBASSEMBLY=VESSEL TO FLANGE 7.PROCEDURE/REV/DEV=700-11/7
- 8. S.CAN F'ATH SKETCH NO. =DSK3052744 9.CAL.BLK.N0.=11-CSCL-53-SAM 10.DEV!CE DWG.NO./CONFIG.N0.=03052267 CALIBRATION AND DEVICE PARAMETERS
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2. 3. 4. WELD LOC.=28.28 VESSEL DIA.=171.3 WALL THICKNESS=ll X-START POS. <DEG.)=5
- 5. X-STOP POS. <DEG.>=185 6.WELD LENGTH=538.15 7.BEAM COMPONENT <DN=l,UP=O>=O 8.CAL.BLK.THICKNESSCIN.>=11 X-CONVERSION PARAMETERS INCHES PER DEGREE= 1.49 DEGREES PER INCH= .66
EXAM NO. 65A SvJRI F"LAt'...J EXAlt'-'11INATION TABLE SITE NAME SALEM 1 PROJECT NO. 17-1552 SCAN PAT~ SK. DSK3052744 COMPONENT RPV SUBASSEMBLY VESSEL TO FLANGE WELD NO. 1-RPV-7042 PROCEDURE/REV/DEV 700-11/7 WELD TYPE CIRC. SCAN TYPE *PARALLEL CAL.BLK.NO. 11-CSCL-53-SAM DEVICE DWG.NO./CONFIG.NO. 03052267 CALIBRATION PARAMETERS INST.N0.1 I 45 DEGa INST.N0.2 I 60 DEG. TRANSDUCER SIZE 1 IN FREG. 2.25 !'!HZ. TRANSDUCER SIZE 1 rN FRE9. 2.25 MHZ. BEAi'! COl'IPONENT UP SWEEP DISTANCE(IN.l 40 BEAi! COMPONENT UP SWEEP DISTANCE<!N.i 40 CAL.NODES/SWEEP DIST. SATE SETIINGS CAL.NODES/SWEE? DIST. SATE SETTINGS ' 1/8 3.85 SCAN START STOP 1/S I 5.55 SCAN START SiOP 2/8 I 7.6 -------------- 2/8 I 11 ------------------------ 3/B I 11.S 1-370 2 17 3/8 I 16.S 1-370 2
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- mcH I 15.3 NOTCH I 22 5/8 I 19.2 S/B I 27.5 INST.N0.3 I 0 DEG. INST.N0.4 I 50170 DEG.
TRANSDUCER SIZE 1 IN FREQ. 2.25 !'!HZ. TRANSDUCER SIZE 1 IN FREQ *. 2.25 ~HZ. BEAi'! COMPONENT ST.BEAK SWEEP DISTANCE!IN.I 20 BEA" COKPONENT UP SiEE? DIST~NCE{IN.l 5 CAL.NODES/SWEEP DIST. SATE SETTINGS CAL.NODES/SWEEP DIST. SATE SETTINSS 1/8 I 2.75 SCAN START STOP 1 I 2 DIV. SCAN START SiOP 2/8 r S.5 --------------------------- 2
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3/8 I 8.2 1-370 -i- 10.5 3 I 4 DIV. 1-3i0 1 DI'~. i DIV z<!P 4 I 5 DIV. 5 I 6 DIV. 6 I 7 DIV. MODULE PARAMETERS INST. 1 INST.2 INST.3 INST.4 X-OFFSET +1.125 IN. -1. 125 IN. 0 IN. <) Y-OFFSET +1.50 IN. +1.50 IN. +1.50 IN. -1. 50 IN. MODULE CONFIGURATION NO. SOC
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- 1. WELD LOC.=28.28
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EXAM NO. 65B SCAN PLAN EXAMINATION SITE NAME SALEM 1 PROJECT NO. 17-:552 SCAN PATH SK. DSY305274~ COMPONENT RPV SUBASSEMBLY VESSEL TO FLANGE WEL~ ~O. 1-RPV-7042 PROCEDURE/REV/DEV 700-11/7 WELD TYPE CIRC. SCAN TYPE PARALL~L CAL.BLK.NO. 11-CSCL-53-SAM DEVICE DWG.ND./CONFIG.NO. 03052267 CALIBRATION PARAMETERS INST.N0.1 I 45 DEG. INST.N0.2 I 60 DEG. TRANSDUCER Sm: 1 IN FRE9. 2.25 ~HZ. TRANSDUCE~ SIZE 1 rn ~REQ. 2.:5 i'lHZ. BEAi'! COl'IPONENT UP SWEEP DISTANCE{IN.l 40 BEAi1 COMPONENT UP SWE~? llISTMlCE\:N.; ~O CAL.NODES/SWEE? DIST. SATE SEiTINSS CAL. NODES/S~EE? O!ST. SATE SETT INES 1/8 I 3.85 SCAN START STOP 118 I 5.SS SC Ml START SiCP 2/8 I 7.b 2/8 I 11 17 ., 3/8 I 11.5 l-370 2 3/8 I 16.S 1-370 i.. NOTCH I 15. 3 NOTCH I 22 5/8 I 19.2 S/B I 27.S INST.N0.3 I DES. INST.N0.4 I 50170 DEG. 0
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