ML041170047: Difference between revisions

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{{#Wiki_filter:Duke                                                     R. A. JONES litPowere                                                     Vice President A Duke Energy Company                                     Duke Power 29672 / Oconee Nuclear Site 7800 Rochester Highway Seneca, SC 29672 864 885 3158 864 885 3564 fax April 9, 2004 U.S. Nuclear Regulatory Commission Document Control Desk Washington, DC 20555
{{#Wiki_filter:Duke R. A.
JONES litPowere Vice President A Duke Energy Company Duke Power 29672 / Oconee Nuclear Site 7800 Rochester Highway Seneca, SC 29672 864 885 3158 864 885 3564 fax April 9, 2004 U.S. Nuclear Regulatory Commission Document Control Desk Washington, DC 20555


==Subject:==
==Subject:==
Line 24: Line 25:
Request for Relief 04-ON-003 is a similar request but addresses twelve (12) limited ultrasonic examinations on welds specifically associated with the Reactor Vessel as described in the attached request.
Request for Relief 04-ON-003 is a similar request but addresses twelve (12) limited ultrasonic examinations on welds specifically associated with the Reactor Vessel as described in the attached request.
During examination of the subject Unit 2 welds, the ultrasonic examination coverage did not meet the 90%
During examination of the subject Unit 2 welds, the ultrasonic examination coverage did not meet the 90%
examination requirements of Code Case N-460. The obtainable volume coverage for each weld examination is indicated on the attached request. Achievement of greater examination coverage for these welds is impractical due to piping/valve geometry, interferences, and existing examination technology. Therefore, Duke Energy requests that the NRC grant relief as authorized under 10 CFR 50.55a(g) (6)(i).
examination requirements of Code Case N-460.
The obtainable volume coverage for each weld examination is indicated on the attached request.
Achievement of greater examination coverage for these welds is impractical due to piping/valve geometry, interferences, and existing examination technology.
Therefore, Duke Energy requests that the NRC grant relief as authorized under 10 CFR 50.55a(g) (6) (i).
www. duke-energy. corn
www. duke-energy. corn


U. S. Nuclear Regulatory Commission April 9, 2004 Page 2 If there are any questions or further information is needed you may contact R. P. Todd at (864) 885-3418.
U. S. Nuclear Regulatory Commission April 9, 2004 Page 2 If there are any questions or further information is needed you may contact R. P. Todd at (864) 885-3418.
Very     y yours, R.       es Sit     e President Attachment xc wlatt: L. A. Reyes, Regional Administrator U.S. Nuclear Regulatory Commission, Region II Atlanta Federal Center 61 Forsyth St., SWW, Suite 23T85 Atlanta, GA 30303 L. N. Olshan, Project Manager, Section 1 Project Directorate II Division of Licensing Project Management Office of Nuclear Reactor Regulation U. S. Nuclear Regulatory Commission Washington, DC 20555-0001 xc (w/o attch):
Very y yours, R.
es Sit e President Attachment xc wlatt: L. A. Reyes, Regional Administrator U.S. Nuclear Regulatory Commission, Region II Atlanta Federal Center 61 Forsyth St., SWW, Suite 23T85 Atlanta, GA 30303 L. N. Olshan, Project Manager, Section 1 Project Directorate II Division of Licensing Project Management Office of Nuclear Reactor Regulation U. S. Nuclear Regulatory Commission Washington, DC 20555-0001 xc (w/o attch):
M. C. Shannon Senior NRC Resident Inspector Oconee Nuclear Station Mr. Henry Porter Division of Radioactive Waste Management Bureau of Land and Waste Management SC Dept. of Health & Environmental Control 2600 Bull St.
M. C. Shannon Senior NRC Resident Inspector Oconee Nuclear Station Mr. Henry Porter Division of Radioactive Waste Management Bureau of Land and Waste Management SC Dept. of Health & Environmental Control 2600 Bull St.
Columbia, SC 29201
Columbia, SC 29201


U. S. Nuclear Regulatory Commission April 9, 2004 Page 3 bxc w/att: R. K. Nader T. J. Coleman V. B. Dixon B. W. Carney, Jr.
U. S. Nuclear Regulatory Commission April 9, 2004 Page 3 bxc w/att: R. K. Nader T. J. Coleman V. B. Dixon B. W. Carney, Jr.
R. P. Todd L. C. Keith G. L. Brouette (ANII)
R. P. Todd L. C. Keith G. L. Brouette (ANII)
J. J. Mc Ardle III ISI Relief Request File NRIA File/ELL ECO50 Document Control
J. J. Mc Ardle III ISI Relief Request File NRIA File/ELL ECO50 Document Control
Line 38: Line 43:
Relief Request 04-ON.002 Page 1 of 9 Proposed Relief in Accordance with 10 CFR 50.55a(g)(5)(iii)
Relief Request 04-ON.002 Page 1 of 9 Proposed Relief in Accordance with 10 CFR 50.55a(g)(5)(iii)
Inservice Inspection Impracticality Duke Energy Corporation Oconee Nuclear Station - Unit 2 (EOC-19)
Inservice Inspection Impracticality Duke Energy Corporation Oconee Nuclear Station - Unit 2 (EOC-19)
Third 10-Year Interval - Inservice Inspection Plan Interval Start Date= 12-16-1994 Interval End Date=9-9-2004 ASME Section XI Code - 1989 Edition with No Addenda I.                     II. & III.                 IV.               V.             VI.               VII.
Third 10-Year Interval - Inservice Inspection Plan Interval Start Date= 12-16-1994 Interval End Date=9-9-2004 ASME Section XI Code - 1989 Edition with No Addenda I.
Limited             System/       Code Requirement from WVhich     Basis for Relief     Alternate     Justifieation   Implementation Area/Weld     Component for Which           Relief Is Requested:                         Examinations or for Granting         Schedule I.D.       Relief is Requested:   100% Exam Volume Coverage                             Testing         Relief Number         Area or Weld to be           Exam Category Examined                     Item No.
II. & III.
IV.
V.
VI.
VII.
Limited System/
Code Requirement from WVhich Basis for Relief Alternate Justifieation Implementation Area/Weld Component for Which Relief Is Requested:
Examinations or for Granting Schedule I.D.
Relief is Requested:
100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.
Fig. No.
Fig. No.
Limitation Percentage     .                _
Limitation Percentage 2-PZR-WP45 Reactor Coolant System Exam Category B-F See Paragraph See Paragraph See Paragraph See Paragraph Pressurizer Spray Item No. B05.040.002A "A"
2-PZR-WP45     Reactor Coolant System         Exam Category B-F           See Paragraph     See Paragraph See Paragraph     See Paragraph Pressurizer Spray       Item No. B05.040.002A               "A"                             4J" "K"               "S" Nozzle to Safe-End     Section XI, Appendix III, III-Weld                         4420 Fig. IWB-2500-8(c) 75% Volume Coverage Limited Scan of Examination
4J" "K"  
_  _          Volume C-D-E-F 2LP-189-15     Low Pressure Injection       Exam Category B-J           See Paragraph     See Paragraph See Paragraph     See Paragraph System             Item No. B09.011.005               "B"             "J"9           "L"               "S" Valve 2LP-47 to Pipe         Fig. IWB-2500-8(c) 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2-SGA-             NC System             Exam Category C-B           See Paragraph     See Paragraph See Paragraph     See Paragraph WG23-1         Steam Generator A         Item No. C02.021.001               "C"               J"i           "N"               "S" Main Steam             Fig. IWC-2500-4 (b)
"S" Nozzle to Safe-End Section XI, Appendix III, III-Weld 4420 Fig. IWB-2500-8(c) 75% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2LP-189-15 Low Pressure Injection Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph System Item No. B09.011.005 "B"  
Outlet Nozzle to Shell   22.22% Volume Coverage Weld         Limited Scan of Examination
"J"9 "L"  
            ._                                Volume C-D-E-F
"S" Valve 2LP-47 to Pipe Fig. IWB-2500-8(c) 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-1 Steam Generator A Item No. C02.021.001 "C"
J"i "N"  
"S" Main Steam Fig. IWC-2500-4 (b)
Outlet Nozzle to Shell 22.22% Volume Coverage Weld Limited Scan of Examination Volume C-D-E-F


Relief Request 04-ON-002 Page 2 of 9
Relief Request 04-ON-002 Page 2 of 9 II. & III.
                      .                      II. & III.               IV.                 V.             VI.                 VIl.
IV.
Limited         System /       Code Requirement from Which   Basis for Relief     Alternate   Justification       Implementation Area/Weld Component for Which           Relief Is Requested:                       Examinations or for Granting           Schedule I.D. Relief is Requested:   100% Exam Volume Coverage                           Testing         Relief Number     Area or Weld to be             Exam Category Examined                     Item No.
V.
VI.
VIl.
Limited System /
Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/Weld Component for Which Relief Is Requested:
Examinations or for Granting Schedule I.D.
Relief is Requested:
100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.
Fig. No.
Fig. No.
Limitation Percentage   _
Limitation Percentage 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-2 Steam Generator A Item No. C02.021.002 "C"  
2-SGA-         NC System               Exam Category C-B       See Paragraph       See Paragraph See Paragraph       See Paragraph WG23-2     Steam Generator A         Item No. C02.021.002           "C"               &GJi"         "N"                 "S" Main Steam             Fig. IWC-2500-4 (b)
&GJi" "N"  
Outlet Nozzle to Shell     22.22% Volume Coverage Weld           Limited Scan of Examination Volume C-D-E-F                         .
"S" Main Steam Fig. IWC-2500-4 (b)
2-SGA-         NC System               Exam Category C-B         See Paragraph     See Paragraph See Paragraph       See Paragraph WG23-1     Steam Generator A         Item No. C02.022.001           "D"               "r'           ."N,                 "S" Main Steam             Fig. IWC-2500-4 (b)
Outlet Nozzle to Shell 22.22% Volume Coverage Weld Limited Scan of Examination Volume C-D-E-F 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-1 Steam Generator A Item No. C02.022.001 "D"  
Outlet Nozzle         88.11% Volume Coverage Inside Radius Section   Limited Scan of Examination Volume G-H 2-SGA-         NC System               Exam Category C-B         See Paragraph     See Paragraph See Paragraph       See Paragraph WG23-2     Steam Generator A         Item No. C02.022.002           "D"               ..J",         "N"                 "S" Main Steam             Fig. IWC-2500-4 (b)
"r'  
Outlet Nozzle         88.11% Volume Coverage Inside Radius Section   Limited Scan of Examination Volume G-H 2LP-150-70 Low Pressure Injection       Exam Category C-F-I       See Paragraph     See Paragraph See Paragraph       See Paragraph System             Item No. C05.011.012             "E"               "1."1         ".'T.               "S" Valve 2LP-17 to           Fig. IWC-2500-7(a)
."N, "S"
Reducer Weld         56.75% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2HP-219-14 High Pressure Injection     Exam Category C-F-I       See Paragraph     See Paragraph See Paragraph       See Paragraph System             Item No. C05.021.013             F                 "J"           P                   "5" Valve 2HP-409 to Pipe         Fig. IWC-2500-7(a)
Main Steam Fig. IWC-2500-4 (b)
Weld             37.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F
Outlet Nozzle 88.11% Volume Coverage Inside Radius Section Limited Scan of Examination Volume G-H 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-2 Steam Generator A Item No. C02.022.002 "D"  
..J",  
"N" "S"
Main Steam Fig. IWC-2500-4 (b)
Outlet Nozzle 88.11% Volume Coverage Inside Radius Section Limited Scan of Examination Volume G-H 2LP-150-70 Low Pressure Injection Exam Category C-F-I See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.011.012 "E"  
"1."1  
".'T.  
"S" Valve 2LP-17 to Fig. IWC-2500-7(a)
Reducer Weld 56.75% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2HP-219-14 High Pressure Injection Exam Category C-F-I See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.021.013 F  
"J" P  
"5" Valve 2HP-409 to Pipe Fig. IWC-2500-7(a)
Weld 37.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F


Relief Request 04.ON-002 Page 3 of 9 I.                         II. & III.                 IV.             V.             VI.               VII.
Relief Request 04.ON-002 Page 3 of 9 I.
Limited               System       /   Code Requirement from Which       Basis for Relief   Alternate     Justification     Implementation Area/hVeld       Component for Which             Relief is Requested:                         Examinations or for Granting         Schedule I.D.         Relief is Requested:     100% Exam Volume Coverage                             Testing         Relief Number           Area or Weld to be               Exam Category Examined                         Item No.
II. & III.
IV.
V.
VI.
VII.
Limited System  
/
Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/hVeld Component for Which Relief is Requested:
Examinations or for Granting Schedule I.D.
Relief is Requested:
100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.
Fig. No.
Fig. No.
Limitation Percentage 2HP-396-5       High Pressure Injection       Exam Category C-F-i           See Paragraph   See Paragraph   See Paragraph     See Paragraph System                 Item No. C05.021.093                 4G                             .Ps" "i"
Limitation Percentage 2HP-396-5 High Pressure Injection Exam Category C-F-i See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.021.093 4G "i"  
Valve 2HP-140 to Pipe           Fig. IWC-2500-7(a)
.Ps" Valve 2HP-140 to Pipe Fig. IWC-2500-7(a)
Weld                 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2HP-221-22       High Pressure Injection       Exam Category C-F-i           See Paragraph   See Paragraph   See Paragraph     See Paragraph System                 Item No. C05.021.115                 ",                                              "S"
Weld 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2HP-221-22 High Pressure Injection Exam Category C-F-i See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.021.115  
                                                                                                                                      'p Valve 2HP-4i0 to               Fig. IWC-2500-7(a)
'p "S"
Elbow Weld               62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2-BWST-         Low Pressure Injection         Exam Category C-F-2           See Paragraph   See Paragraph   See Paragraph     See Paragraph OUT-2                 System                 Item No. C05.070.001               "Irg"                           4                  "5" saw Pipe to Flange Weld             Fig. IWC-2500-7 63.66% Area Coverage Exam Surface A-B See Attachment A for C05.070.001 area/weld locations.
Valve 2HP-4i0 to Fig. IWC-2500-7(a)
Elbow Weld 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2-BWST-Low Pressure Injection Exam Category C-F-2 See Paragraph See Paragraph See Paragraph See Paragraph OUT-2 System Item No. C05.070.001 "Irg" "5"
4 saw Pipe to Flange Weld Fig. IWC-2500-7 63.66% Area Coverage Exam Surface A-B See Attachment A for C05.070.001 area/weld locations.
See Attachment B for Steam Generator A Main Steam Outlet Nozzle area/weld locations.
See Attachment B for Steam Generator A Main Steam Outlet Nozzle area/weld locations.
See Attachment C for inspection data on all 11 items with limited coverage.
See Attachment C for inspection data on all 11 items with limited coverage.
Line 73: Line 120:
Note: The C05.011, C05.021, and C05.070 welds were inspected in August of 2002 and the B05.040, B09.011, C02.021, and C02.022 items were inspected in October of 2002.
Note: The C05.011, C05.021, and C05.070 welds were inspected in August of 2002 and the B05.040, B09.011, C02.021, and C02.022 items were inspected in October of 2002.


Relief Request 04-ON-002 Page 4 of 9 IV. Basis for Relief Paragraph A: (The Pressurizer Spray Nozzle material is SA508 CL. 1 and the Safe-End material is SB-166. The diameter of the Nozzle to Safe-End weld is 4 inches and it has a wall thickness of .75 inches.)
Relief Request 04-ON-002 Page 4 of 9 IV. Basis for Relief Paragraph A: (The Pressurizer Spray Nozzle material is SA508 CL. 1 and the Safe-End material is SB-166. The diameter of the Nozzle to Safe-End weld is 4 inches and it has a wall thickness of.75 inches.)
During the ultrasonic examination of dissimilar metal weld 2-PZR-WP45, 75% coverage of the required examination volume was obtained. Scanning limitations were caused by the taper of the nozzle which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld. The examination volume was scanned in two circumferential and one axial direction using 450 shear wave and longitudinal wave search units. In order to scan all of the required surfaces for the inspection of this weld, the nozzle would have to be redesigned to allow scanning from both sides of the weld, which is impractical. There were no recordable indications found during the inspection of this weld.
During the ultrasonic examination of dissimilar metal weld 2-PZR-WP45, 75% coverage of the required examination volume was obtained. Scanning limitations were caused by the taper of the nozzle which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld. The examination volume was scanned in two circumferential and one axial direction using 450 shear wave and longitudinal wave search units. In order to scan all of the required surfaces for the inspection of this weld, the nozzle would have to be redesigned to allow scanning from both sides of the weld, which is impractical. There were no recordable indications found during the inspection of this weld.
Paragraph B: (The valve and pipe material was stainless steel. Weld 2LP-189-15 has a diameter of 10 inches and a wall thickness of 1.0 inches.)
Paragraph B: (The valve and pipe material was stainless steel. Weld 2LP-189-15 has a diameter of 10 inches and a wall thickness of 1.0 inches.)
Line 93: Line 140:
In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.
In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.
There were no recordable indications found during the inspection of this weld.
There were no recordable indications found during the inspection of this weld.
Paragraph F: (The valve and pipe material was stainless steel. Weld 2HP-219-14 has a diameter of 4 inches and a wall thickness of .674 inches.)
Paragraph F: (The valve and pipe material was stainless steel. Weld 2HP-219-14 has a diameter of 4 inches and a wall thickness of.674 inches.)
During the ultrasonic examination of weld 2HP-219-14, 37.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.
During the ultrasonic examination of weld 2HP-219-14, 37.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.
The examination volume was scanned using 450 shear waves in two circumferential directions covering 50% of the volume and in one axial direction using 600 shear and longitudinal waves covering 100% of the examination volume.
The examination volume was scanned using 450 shear waves in two circumferential directions covering 50% of the volume and in one axial direction using 600 shear and longitudinal waves covering 100% of the examination volume.
In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.
In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.
There were no recordable indications found during the inspection of this weld.
There were no recordable indications found during the inspection of this weld.
Paragraph G: (The valve and pipe material was stainless steel. Weld 2HP-396-5 has a diameter of 4 inches and a wall thickness of .531 inches.)
Paragraph G: (The valve and pipe material was stainless steel. Weld 2HP-396-5 has a diameter of 4 inches and a wall thickness of.531 inches.)
During the ultrasonic examination of weld 2HP-396-5, 62.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.
During the ultrasonic examination of weld 2HP-396-5, 62.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.
The examination volume was scanned using 450 shear waves in two circumferential directions covering 50% of the volume and in one axial direction using 60° shear and longitudinal waves covering 100% of the examination volume.
The examination volume was scanned using 450 shear waves in two circumferential directions covering 50% of the volume and in one axial direction using 60° shear and longitudinal waves covering 100% of the examination volume.
In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.
In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.
There were no recordable indications found during the inspection of this weld.
There were no recordable indications found during the inspection of this weld.
Paragraph 1I: (The valve and elbow material was stainless steel. Weld 2HP-221-22 has a diameter of 4 inches and a wall thickness of .531 inches.)
Paragraph 1I: (The valve and elbow material was stainless steel. Weld 2HP-221-22 has a diameter of 4 inches and a wall thickness of.531 inches.)
During the ultrasonic examination of weld 2HP-221-22, 62.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.
During the ultrasonic examination of weld 2HP-221-22, 62.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.
The examination volume was scanned using 45° shear waves in two circumferential directions covering 100% of the volume and in one axial direction using 600 shear and longitudinal waves covering 100% of the examination volume.
The examination volume was scanned using 45° shear waves in two circumferential directions covering 100% of the volume and in one axial direction using 600 shear and longitudinal waves covering 100% of the examination volume.
Line 109: Line 156:
There were no recordable indications found during the inspection of this weld.
There were no recordable indications found during the inspection of this weld.


Relief Request 04-ON-002 Page 6 of 9 Paragraph 1: (The diameter of the pipe to flange weld is 14 inches and it has a wall thickness of .375 inches The material was carbon steel.)
Relief Request 04-ON-002 Page 6 of 9 Paragraph 1: (The diameter of the pipe to flange weld is 14 inches and it has a wall thickness of.375 inches The material was carbon steel.)
During MT examination of welds 2BWST-OUT-2, 100% coverage of the required examination surface could not be obtained. The examination coverage was limited to 63.66%. Limitations were caused because the pipe has minimum clearance from steel support members; thus, access for the inspection of 100% of the weld is not possible. The percentage of coverage reported represents the aggregate coverage. There were no recordable indications found during the inspection of this weld. In order to achieve more coverage, the pipe would have to be relocated to allow full access to MT or PT 100% weld, which is impractical.
During MT examination of welds 2BWST-OUT-2, 100% coverage of the required examination surface could not be obtained. The examination coverage was limited to 63.66%. Limitations were caused because the pipe has minimum clearance from steel support members; thus, access for the inspection of 100% of the weld is not possible. The percentage of coverage reported represents the aggregate coverage. There were no recordable indications found during the inspection of this weld. In order to achieve more coverage, the pipe would have to be relocated to allow full access to MT or PT 100% weld, which is impractical.
V. Alternate Examinations or Testing Paragraph J:
V. Alternate Examinations or Testing Paragraph J:
Line 148: Line 195:
B. W. Carney, Jr. (Oconee Engineering) provided part of Section VI.
B. W. Carney, Jr. (Oconee Engineering) provided part of Section VI.
Larry C. Keith (Oconee ISI Plan Manager) compiled the remaining sections.
Larry C. Keith (Oconee ISI Plan Manager) compiled the remaining sections.
Sponsored By:                         Co /*dP                                     Date           6 (-
Sponsored By:
                                                                                                      .K Approved By:         --e               -.                  -C-Date                       44*Q/zz
Co /*dP Date K (
6 Approved By:
--e  
-C-Date 44*Q/zz


DUKE POWER COMPANY                                                     Exam Start:       1129           Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS                                       Exam Finish:       1146               Revision 4 Station:           Oconee               Unit:   2       Component/Veld ID: 2-PZR-WP45                                         Date:     10/23/2002 Weld Length (in.):       14.1           Surface Condition:             FLUSH               Lo: 9.1.1.1     Surface Temoerature:       84     0   F Examiner: James L.Panel/           A'   Level: 11         Scans:                                           Pyrometer S/N:         MCNDE 27228
DUKE POWER COMPANY Exam Start:
                              ,,"'^,.                                                                       Cal Due:       12/12/2002 Examiner: Marion T.Weae                   Level:   11     45 0     72   dB       70 °3             dB
1129 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:
                                    ,,    j                                                                  Configuration:   NOZZLE TO SAFE END Procedure:   NDE-610         Rev:   4   FC:             45T °     _    dB   70T     a           dB                       Flow
1146 Revision 4 Station:
* 60     _      dB                                       NOZZLE       to     SAFE END Calibration Sheet No:                                     6Scan                                                               Surface: OD CbaoST                                                                     dB                                       Applies to NDE-680 only               r 0202068, 0202069                                                 Other:     35   - 61     dB             Skew Angle:
Oconee Unit:
IND             %    Max       Max     Max         Li         L2       WI           MpF         W2       Mp2     Dir,     Surf. Scan     Damps 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac                                                 _      .
2 Component/Veld ID: 2-PZR-WP45 Date:
DO 1OT W ITE                         HMA       HMA       HMA         HMA         HMA       HMA             D     NOT WRIT 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac                                   IN THIS SPACI.
10/23/2002 Weld Length (in.):
IN T IS                           100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI     45     =                                                               I           I           I Remarks: *FC 97-01, 98-20, 01-05, 02-10                                                                               HSBCT     /
14.1 Surface Condition:
Limitations: (see NDE-UT-4) El     90% or greater coverage obtained: yes-a no M%h                       25-ot                     Sheet__/       of3 Reviewed BLevel:                                       Date:         Authorized ,nsector:                           Date:       Item No:
FLUSH Lo: 9.1.1.1 Surface Temoerature:
J/*/ -o2*                               l.                               205.040.002A I
84 0
F Examiner: James L. Panel/
A' Level: 11 Scans:
Pyrometer S/N:
MCNDE 27228
,,"'^,.
Cal Due:
12/12/2002 Examiner: Marion T.Weae Level:
11 45 0 72 dB 70 °3 dB j
Configuration:
NOZZLE TO SAFE END Procedure: NDE-610 Rev: 4 FC:
45T ° dB 70T a dB Flow 60 dB NOZZLE to SAFE END Calibration Sheet No:
6Scan Surface: OD CbaoST dB Applies to NDE-680 only 0202068, 0202069 Other:
35 - 61 dB Skew Angle:
IND Max Max Max Li L2 WI MpF W2 Mp2
: Dir, Surf.
Scan Damps 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac DO 1OT W ITE HMA HMA HMA HMA HMA HMA D
NOT WRIT 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACI.
IN T IS 100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI 45  
=
I I
I Remarks: *FC 97-01, 98-20, 01-05, 02-10 HSBCT  
/
Limitations: (see NDE-UT-4) El 90% or greater coverage obtained: yes-a no M %h 25-ot Sheet__/
of3 Reviewed BLevel:
Date:
Authorized,nsector:
Date:
Item No:
J/*/ -o2*
: l.
205.040.002A r
I


DUKE POWER COMPANY                                                           FORM NDE-T-4 ISI LIMITATION REPORT                                                       Revision I Component/Weld ID: 2-PZR-WP45                         Item No: B05.040.002A                     Remarks:
DUKE POWER COMPANY FORM NDE-T-4 ISI LIMITATION REPORT Revision I Component/Weld ID: 2-PZR-WP45 Item No: B05.040.002A Remarks:
SURFACE                   BEAM DIRECTION                   TAPER OF NOZZLE 100% COVERAGE El NO SCAN                                                                                       BY 1 SCAN FROM SAFE END SIDE.
SURFACE BEAM DIRECTION TAPER OF NOZZLE 100% COVERAGE El NO SCAN BY 1 SCAN FROM SAFE END SIDE.
OLIMITEDSCAN                       9 1 0     2             O 10      2 a cwo        ccw FROM L       N/A       to L   N/A           INCHES FROM WO         0         to     BEYOND ANGLE:   0 0 0 45 0 60 0 Other                           FROM     0     DEG to   360   DEG SURFACE                   BEAM DIRECTION 0 NO SCAN O LIMITEDSCAN                     0 10 2                   O3 1     2 a cwo        ccw FROM L                 to L                 INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                           FROM             DEGto           DEG SURFACE                   BEAM DIRECTION 0   NO SCAN 0   LIMITEDSCAN                   0 1 0 2                 0 1O    2 0   cw O     ccw FROM L                 to L                 INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                           FROM             DEGto           DEG SURFACE                   BEAM DIRECTION O NO SCAN 0 LIMITEDSCAN                         1 0- 2               0 10    2 0   cw   a ccw FROM L                 to L                 INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                           FROM     ----    DEG   to                                             mv _
OLIMITEDSCAN 9 1 0 2 O 1 0 2 a cw o ccw FROM L N/A to L N/A INCHES FROM WO 0
Prepared By:       -                  Level:   Z     Date: /   o,     Sketch(s) attached   O yes   0 no     Sheet Z   of   o C Reviewed By:   a       7)I,>         Date:                     Authorized Inspectop                             Date:sc/,i L I   E
to BEYOND ANGLE:
0 0 0 45 0 60 0 Other FROM 0
DEG to 360 DEG SURFACE BEAM DIRECTION 0
NO SCAN O LIMITEDSCAN 0 10 2 O3 1
2 a cw o ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEGto DEG SURFACE BEAM DIRECTION 0
NO SCAN 0
LIMITEDSCAN 0 1 0 2 0 1 O 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEGto DEG SURFACE BEAM DIRECTION O NO SCAN 0
LIMITEDSCAN 1 0- 2 0 1 0 2 0 cw a ccw FROM L to L INCHES FROM WO to ANGLE: 0 0 0 45 0 60 0 Other FROM DEG to Prepared By:
Level:
Z Date: /
o, Sketch(s) attached O yes 0 no Sheet Z of Reviewed By:
a 7)I,>
Date:
Authorized Inspectop Date:sc/,i L mv _
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DUKE POWER COMPANY                                                             '      NDE-UT-5 UT PROFILE/PLOT SHEET                                                               Revision 1 EXAMINATION SURFACE 1                                                                                           EXAMINATION SURFACE 2 WELD 4           3             2               1                                       1                 2             3         4 t1 I
DUKE POWER COMPANY NDE-UT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 EXAMINATION SURFACE 2 4
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Component ID/Weld No.
: Remarks:   lo Z ec-4'2AfepL3Žj&wi                 Sk4Aee           Z SIa/p                     !Iftftr I   S-   id         \dJA Profile taken 75%     v          v                 o2-                                                       270       at:       _        90 II wE l Item No:                   avS, 040         DES                                                 I 1OR 1-4 G.
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Examiner: ...                k-                  l Level:   .:        I Date: /0/2 i                                                           O M Reviewed By :/                          -9        Level.               Date: /o-Zi-0L                                 180 Sheet -3 ofLA3. 1,tJq Authorized Inspector]J                            5                    D :oz Date:
: Remarks:
lo Z ec-4'2Afe pL3Žj&wi Sk4Aee Z SIa/p I S-id  
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Profile taken 270 at:
90 180 Sheet -3 ofLA3.
Examiner:
k-Reviewed By :/
-9 Authorized Inspector] J Item No:
: avS, 040 DES l Level:
I Date: /0/ 2 i Level.
Date: /o-Zi-0L 5
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DUKE POWER COMPANY                                                         FORM NDE-UT-10 ULTRASONIC INDICATION RECORD FOR PIPING                                                 Revision 0 Station:           Oconee           I Unit:     2     ComponentAWeld ID: 2LP-189-15                       Date:       10/23/2002 Surface Condition:           Gl UND                   Item No: B09.011.005 Examiner Jay A.Eaton                     vel:   Ill   Procedure:           NDE-600           Rev:   14 FC:     0z -I Examiner Gayle E.Hou~er               Level:   IlIl Lo:     9.1.1.1     Configuration:               CIRC.
DUKE POWER COMPANY FORM NDE-UT-10 ULTRASONIC INDICATION RECORD FOR PIPING Revision 0 Station:
Calibration Sheet No:     0202066, 0202067                                     S2 VALVE   to     Si PIPE     Scan Surface: OD
Oconee I Unit:
                  %      Mp       W           L         LI       L2     Beam   Exam IND     4       FSH     Max     Max       Max       20 %FSH 20 %FSH Dir.         Surf. Scan     Damps         Remarks 1       60*     159   1.8     1.6       RT3       360       INT.     2         1   AXIAL     NO 2       60L     141   2.0     .800       RT2       360       INT.     2         1   AXIAL     NO
2 ComponentAWeld ID: 2LP-189-15 Date:
10/23/2002 Surface Condition:
Gl UND Item No: B09.011.005 Examiner Jay A. Eaton vel:
Ill Procedure:
NDE-600 Rev:
14 FC:
0z -I Examiner Gayle E. Hou~er Level:
IlIl Lo:
9.1.1.1 Configuration:
CIRC.
Calibration Sheet No:
0202066, 0202067 S2 VALVE to Si PIPE Scan Surface: OD Mp W
L LI L2 Beam Exam IND 4
FSH Max Max Max 20 % FSH 20 % FSH Dir.
Surf.
Scan Damps Remarks 1
60*
159 1.8 1.6 RT3 360 INT.
2 1
AXIAL NO 2
60L 141 2.0  
.800 RT2 360 INT.
2 1
AXIAL NO


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i DUKE POWER COMPANY NDE-UT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 49t-K 3
        !                                                                                          .-. S                                                                    i DUKE POWER COMPANY                                                                                       NDE-UT-5 UT PROFILE/PLOT SHEET                                                                                   Revision 1 EXAMINATION SURFACE 1                                                           WI:ELD                                                       EXAMINATION 4URFACE 2 49t-K                  3                2            1                                                      1              2                  3 VQ I'VE4 I
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Examiner:               4k?--                4                                                                                                                                _          a)
: Remarks:
Reviewed By:' 'VA, A t   h   e e,        R
M W xc:
                                          -A  .
7k ek A
Level: 4                    Date: 6                    -s i2-                          180 Sheet 2 of..L Authorizedd       nspectorr.                               .-    L                - IDate:                          ,,/S 7~7= d '- 7,
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C'                                                                                                                           .I DUKE POWER COMPANY                                                           Form NDE-UT-8 ULTRASONIC INDICATION RESOLUTION SHEET                                                   Revision .1 Acceptance Standard:                                                                 ,                    s" 9h1-6-oj Q3l1Jo)
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.I DUKE POWER COMPANY Form NDE-UT-8 ULTRASONIC INDICATION RESOLUTION SHEET Revision.1 Acceptance Standard:
s" 9h1 oj Q3l1Jo)
INDICATION #1 IS A 360° REFLECTOR DUE TO ROOT GEOMETRY. A 70'SHEAR WAVE AND WSY 70 WAS USED AS CONFIRMATION. ADDITIONAL REVIEW OF RT FILM REVEALED ROOT CONCAVITY.
INDICATION #1 IS A 360° REFLECTOR DUE TO ROOT GEOMETRY. A 70'SHEAR WAVE AND WSY 70 WAS USED AS CONFIRMATION. ADDITIONAL REVIEW OF RT FILM REVEALED ROOT CONCAVITY.
INDICATION #2 IS A 360° GEOMETRIC REFLECTOR FROM THE IDTAPER DUE TO THE VALVE CONFIGURATION. MANUAL PLOTTING OF THE INDICATION SHOWS THAT IT ISALSO OUT OF AREA OF INTEREST.
INDICATION #2 IS A 360° GEOMETRIC REFLECTOR FROM THE ID TAPER DUE TO THE VALVE CONFIGURATION. MANUAL PLOTTING OF THE INDICATION SHOWS THAT IT IS ALSO OUT OF AREA OF INTEREST.
Initial o Final cSI ANIII DATE..I D-AT HSBCT Item No: 809.011.005 Acceptable Indications: IND. #1 &#2 Rejectable Indications: N/A These indications have been compared with previous ultrasonic data   0 Yes ° No previous data available Examiner:                       f         Level:         Date:
Initial o Final cSI ANII I DATE..I D-AT HSBCT Item No: 809.011.005 Acceptable Indications: IND. #1 & #2 Rejectable Indications: N/A These indications have been compared with previous ultrasonic data 0 Yes ° No previous data available Examiner:
Sheet                   to e.
f Level:
10/23/2002                                                            Date: ,     ;-
Date:
Date:      Authorized Inspector                              3     of         (1:1F..
10/23/2002 Sheet to e.
                                                        / 0 Z-0 7-.
Date:,
                                                        -311t13
3 of (1:1 F..
Date:
Authorized Inspector
/ 0 Z-0 7-.
-311t13


                                                                'S I
'S I
DUKE POWER COMPANY                                                   FORM NDE-UT-4 ISI LIMITATION REPORT                                               Revision 1 Component/Weld ID: 2LP-189-15                         Item No: B09.011.005               Remarks:
DUKE POWER COMPANY FORM NDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2LP-189-15 Item No: B09.011.005 Remarks:
SURFACE                   BEAM DIRECTION             NO SCAN DUE TO VALVE G NO SCAN                                                                                 CONFIGURATION BUT 100%
SURFACE BEAM DIRECTION NO SCAN DUE TO VALVE G NO SCAN CONFIGURATION BUT 100%
0   LIMITED SCAN                   0 1 0 2               0   10    2 0   cw O ccw     COVERAGEBEAM OBTAINED 0         LIITEDSCANMULTIPLE                                                   ANGLEUSING FROM L         0       to L   33.57         INCHES FROM WO         CL       to BEYOND   DIRECTIONS.
0 LIMITED SCAN 0 1 0 2 0 1 0 2 0 cw O ccw COVERAGE OBTAINED USING 0
ANGLE:   0 0 0 45 El 60 0 Other                         FROM     _    DEG to     DEG SURFACE                   BEAM DIRECTION 0   NO SCAN 0   LIMITED SCAN                   0 1 0 2               0   10    2 0 cw O ccw FROM L                 to L                 INCHES FROM WO                   to ANGLE:   0 0 10 45 0 60 0 Other                         FROM           DEG to     DEG SURFACE                   BEAM DIRECTION 0   NO SCAN 0   LIMITED SCAN                   0 1 0 2               0   1 01   2 0   cw O ccw FROM L                 to L                 INCHES FROM WO                 to ANGLE:   O0   0 45 0 600 Other                           FROM _         DEG to     DEG SURFACE                    BEAM DIRECTION 0 NO SCAN 0   LIMITED SCAN                   0 1 0     2           0   1O    2O    cwO  ccw FROM L                 to L                 INCHES FROM WO                 to ANGLE:   O o 0 45 0                                                                                                         I f" Icm j; Prepared By:                                                                                    no     Sheet Y -of     6 i     r 3
LIITEDSCANMULTIPLE BEAM ANGLE FROM L 0
Reviewed By:                                                                                              Date:.,,   ,S2   ° =
to L 33.57 INCHES FROM WO CL to BEYOND DIRECTIONS.
ANGLE:
0 0 0 45 El 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN 0
LIMITED SCAN 0 1 0 2 0 1 0 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 10 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN 0
LIMITED SCAN 0 1 0 2 0 1 01 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:
O0 0 45 0 600 Other FROM _
DEG to DEG 0 NO SCAN 0
LIMITED SCAN SURFACE 0 1 0 2
BEAM DIRECTION 0 1 O 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:
O o 0 45 0 Prepared By:
Reviewed By:
I f" Icm j; no Sheet Y -of 6
i r
3 Date:.,,  
,S2  
° =


                                                                                  /                                             I I
/
DUKE POWER COMPANYl                                                   D-5 UT PROFILE/PLOT SHEET                                                 Revision 1 EXAMINATION SURFACE 1                                         WIELD                          EXAMINATION SURFACE 2 2                  1          1                      1  2              3Val>L- 4
I I
[III.I 'III IIII IIIIbi            wIII LLI]iiiibtu       I -   a 111111  II 1111 1111 1111III.
DUKE POWER COMPANYl D-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 WI
.5                                                                   \ -x 1.5 2
[III.I 'III IIII III 2
jFgv   X,'     oC d/                           ___._.
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2.5                 i     Y GC.kAk 3                 77  0                                                   _    _  _    _,_
Ibi wIII LLI] iiiibtu ELD 1
Componer t ID/.g0/eld V~~Og(~(R~t Remarks.         -t/t                     6?     9 Th"A-       ()ia4 -
EXAMINATION SURFACE 2 2
Prfile taken 270   at:J/SD D             90 Q(U5us          e        ,        AT oL 6umA                                                            "d E, Item No:            *&        .c6                                          z; 1
111111 3Val>L-4 II 1111 1111 1111III.
                                                                                                                                    ,    v Examiner L k-           e                             Level: 7:E I Date:'t/ ajb2. 1                                           I  _
I a
Reviewed By: , 4 A                                   ILevel: -       Date:,;zt,                         180 Sheet < of L Authorized Inspector.                                                 Date:             /
.5
                              -- -W.-- -'.--  .- --                        --      --
\\ -x 1.5 2
jFgv X,'
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2.5 i
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7 0 7 Componer t ID/.g0/eld V~~Og(~(R~t Remarks.  
-t/t 6? 9Th"A-()ia4 -
Q(U5us e
AT oL 6umA Item No:
.c6 Prfile taken 270 at:J/SD D 90 180 Sheet < of L "d E, z; 1 v
I Examiner L
k-e Level: 7:E I Date:'t/ ajb2. 1 Reviewed By:
4 A I Level: -
Date:,;zt, Authorized Inspector.
Date:  
/
-W.--  


y...                                                                                                                       !
y...
DUKE POWER COMPANY                                                           Form NDE-UT-9 ULTRASONIC BEAM ANGLE MEASUREMENT RECORD                                                   Revision 3
DUKE POWER COMPANY Form NDE-UT-9 ULTRASONIC BEAM ANGLE MEASUREMENT RECORD Revision 3 1<1 'I
: 1. Take thickness measurements between.
: 1. Take thickness measurements between.
wedge locations.
wedge locations.
: 2. Place search unit on straight turn of 1<1 'I                                                              pipe, and peak the signal.
: 2. Place search unit on straight turn of pipe, and peak the signal.
: 3. Measure distance (d) between exit points.
: 3. Measure distance (d) between exit points.
(d/2)                                                    4. Calculate beam angle with formula tan 0 =                                                                as shown using measured wall t
: 4. Calculate beam angle with formula as shown using measured wall thickness.
thickness.
tan 0 =
(d/2) t
: 5. Use the measured beam angle to determine coverage and when plotting any indications.
: 5. Use the measured beam angle to determine coverage and when plotting any indications.
Pipe Size:                 10" For thin wall pipe use 2nd Vee path Pipe Schedule:    _    1" THICK tan o = (d12) 2t Nominal 45 deg: d= __0 _; t= _ 0 _; measured angle=         0.00   deg Nominal 60 deg: d= _ 3.46 ; t= _ 1_ _; measured angle"     59.97deg                       Item No.
Pipe Size:
Nominal 70 deg: d= __0 _ ; t= _ 0 _; measured angle=         0.00 deg                   B09.01 1.005 Level       Date i1-I7 C."
10" Pipe Schedule:
1" THICK For thin wall pipe use 2nd Vee path tan o =
(d12) 2t Nominal 45 deg: d= __0 _; t= _ 0 _; measured angle=
0.00 deg Nominal 60 deg: d= _ 3.46  
; t= _ 1_ _; measured angle" 59.97deg Nominal 70 deg: d= __0 _ ; t= _ 0 _; measured angle=
0.00 deg Item No.
B09.01 1.005 Level Date i1-1 I7 C."
Date
Date


C:1                                                         S..                                                                 )
C:1
DUKE POWER COMPANY                                           Exam Start:     1155           Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS                               Exam Finish:   1221                 Revision 4 Station:           Oconee             Unit:   2     Component/Weld ID: 2-SGA-WG23-1                               Date:         101161202 Weld Length (in.):       92.0         Surface Condition:     AS GROUND             Lo: 9.2.3   Surface Temperature:         109   &deg; F Examiner David Zimmerman         b     Level: ill     Scans:                                   Pyrometer S/N:         MCNDE 27227.
)
Level:Cal-Due:                                                         12/12/2002 Examiner: Winfred C.Leepe f      ,<dvel: II     45 0 _064.5     dB 70 D
S..
                                                                  .Configuration:           dB_._d                        CIRC. EWLD Procedure: NDE-820             Rev: 0 FC:             45T 0 64.5 dB 70T &deg;                   dB         S2         Flow             Si N/A       60 El 73.0 dB                                   NOZZLE         to       SHELL Calibration Sheet No:                                 60T 0   73.0 dB                                     Scan Surface: OD 0202034, 0202035022340023                                                                                Applies to NDE-680 only Other                   dB         Skew Angle:                   N/A Max   Mp       W       L                                                                 Beam       Exam IND X           %    Max       Max     Max       LI       L2         WI     MpI       W2       Mp2   Dir.       Surf.     Scan   Damps Ref 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac                         0       NOT WRIT DO NOT WRITE                       HMA     HMA       HMA       HMA       HMA       HMA 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac                         IN THIS SPACI.
DUKE POWER COMPANY Exam Start:
IN T IS                         100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI Remarks:
1155 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:
1  -3 Limitations: (see NDE-UT-4) 0     90% or greater coverage obtained: yes 0       no 0                                   Sheetl    L/ of . K.      -E o :.
1221 Revision 4 Station:
4.
Oconee Unit:
Date:        Item No:                   o 2 C02.021.001           -
2 Component/Weld ID: 2-SGA-WG23-1 Date:
(I 311403Initial 3111                        0, Final IANI     ~DATE.
101161202 Weld Length (in.):
92.0 Surface Condition:
AS GROUND Lo:
9.2.3 Surface Temperature:
109  
&deg; F Examiner David Zimmerman b
Level: ill Scans:
Pyrometer S/N:
MCNDE 27227.
Level:Cal-Due:
12/12/2002 Examiner: Winfred C. Leepe vel: II 45 0 64.5 dB 70 D dB_._d f
,<d
_0.Configuration:
CIRC. EWLD Procedure: NDE-820 Rev: 0 FC:
45T 0 64.5 dB 70T &deg; dB S2 Flow Si N/A 60 El 73.0 dB NOZZLE to SHELL Calibration Sheet No:
60T 0 73.0 dB Scan Surface: OD 022340023 Applies to NDE-680 only 0202034, 0202035 Other dB Skew Angle:
N/A Max Mp W
L Beam Exam IND X Max Max Max LI L2 WI MpI W2 Mp2 Dir.
Surf.
Scan Damps Ref 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac 0
NOT WRIT DO NOT WRITE HMA HMA HMA HMA HMA HMA 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACI.
IN T IS 100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI Remarks:
Limitations: (see NDE-UT-4) 0 90% or greater coverage obtained: yes 0 no 0 4.
Date:
Sheet L/ of K l
Item No:
C02.021.001 1
-3
- E o :.
o 2.!n (I
311403Initial 0,
Final 3111 IANI  
~DATE.


J C
C J
FORM NDE-IJT-4 DUKE POWER COMPANY ISI LIMITATION REPORT                                                             Revision 1 ComponentNWeld ID: 2-SGA-WG23-1                               Item No: C02.021.001                       Remarks:
FORM NDE-IJT-4 DUKE POWER COMPANY ISI LIMITATION REPORT Revision 1 ComponentNWeld ID: 2-SGA-WG23-1 Item No: C02.021.001 Remarks:
SURFACE                         BEAM DIRECTION                     NOZZLE CONFIGURATION 0E NO SCAN.
SURFACE BEAM DIRECTION NOZZLE CONFIGURATION 0E NO SCAN.
OLIMITEDSCAN                             1 E 2                             2   El cw       ccw FROM L         N/A       to L   N/A             INCHES FROM WO           TOE       to     BEYOND ANGLE:   0 0   0 45 G 60 0 Other                               FROM       0     DEG to     360 DEG SURFACE                         BEAM DIRECTION 0   NO SCAN O LIMITED SCAN                         0 10                 0               22      cwo      ccw FROM L                   to L                   INCHES FROM WO                     to ANGLE:   0 0   0 45 0   60 0 Other                           FROM           _  DEG to         DEG SURFACE                         BEAM DIRECTION 0   NO SCAN O   LIMITEDSCAN                       0 1 0                                 2O2      cw   l   ccw FROM L                   to L                     INCHES FROM WO                     to ANGLE:   0 0 0 45 0 60 0 Other                                 FROM             DEG to         DEG SURFACE                         BEAM DIRECTION 0   NO SCAN O LIMITEDSCAN                         03 1 0       2             O 1O        2 Oc   Cw O   ccw FROM L                   to L                     INCHES FROMWO                     to It ANGLE:   0 0 0J 45 0 60 0 Other                                 FROM     ___    DEG to                                               _m -
OLIMITEDSCAN 1 E 2 2
Prepared By: DvId K. Zimi                   Level:     III   Date: 10/16/2002 Sketch(s) attached     0l yes ; no     Sh leet  2 of 6    R Reviewed By:                                                                                                                             M _
El cw ccw FROM L N/A to L N/A INCHES FROM WO TOE to BEYOND ANGLE:
Authorized Inspect               or<~~"
0 0 0 45 G 60 0 Other FROM 0
DEG to 360 DEG SURFACE BEAM DIRECTION 0
NO SCAN O LIMITED SCAN 0 10 0
2 2
cw o ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN O LIMITEDSCAN 0 1 0 2
2O cw l
ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN O LIMITEDSCAN 03 1 0 2
O 1 O 2 Oc Cw O ccw FROM L to L INCHES FROMWO to ANGLE:
0 0 0J 45 0 60 0 Other FROM DEG to It
_m Prepared By:
DvId K. Zimi Level:
III Date: 10/16/2002 Sketch(s) attached 0l yes
; no Sh Reviewed By:
Authorized Inspect or<~~"
leet 2 of 6 R
M _
I
I


Attachment C Page /z of SI             tL DUKE POWER COMPANY                                                   NDE-91-1 Limited Examination Coverage Worksheet                                     Revision 0 Examination Volume/Area Defined 0 Base Metal         0     Weld           &deg; Near Surface               0 Boltinq       El Inner Radius Area Calculation                                       Volume Calculation 2.25 IN.X 4.0 IN.= 9.0 SQ.IN.                         9.0 SQ.IN. X 92 IN.= 828 CU.IN.
Attachment C Page /z of SI DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Revision 0 Examination Volume/Area Defined 0 Base Metal 0
Coverage Calculations Area         Length       Volume           Volume Beam       Examined     Examined       Examined         Required   Percent Coverage Scan # Angle     Direction     (sq.in.)         (in.)       (cu.in.)         (cu.in.)
Weld  
1     45160       2           9.0            92            828              828 2    45/60       1           0.0           92              0             828 3    45160      Cw            0.0           92               0             828 4    45160      CCw            0.0           92              0             828 828             3312 S       0        /J A        0.0             0                              8sn
&deg; Near Surface 0 Boltinq El Inner Radius Area Calculation Volume Calculation 2.25 IN. X 4.0 IN. = 9.0 SQ.IN.
                                                                                                  ,?,Z ~
9.0 SQ.IN. X 92 IN. = 828 CU.IN.
                                                                                                    .L3 2 Ir o    /)
Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Percent Coverage Scan # Angle Direction (sq.in.)
CP4         31(4 13     7hty   3Mv CLAED ( 0%)-.
(in.)
b   S           1InittaI      Final M-C     K           ANII...Zk DATEtl-e3 ZHS                     CN
(cu.in.)
(cu.in.)
tL 1
45160 2
45/60 3
45160 4
45160 2
1 Cw CCw
/J A 9.0 0.0 0.0 0.0 0.0 92 92 92 92 0
828 0
0 0
828 828 828 828 828 3312 8s n S
0
,?,Z ~
o
.L3 2 Ir  
/)
CP4 31(4 13 7hty 3Mv CLAED ( 0%)-.
b S
1 InittaI Final M-C K
ANII...Zk DATEtl-e3 ZHS CN


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DUKE POWER COMPA.Y                                       I NDE-4)6         I Ultrasonic Beam Spread Measurement Sheet                              I Revision I I         I     I                             I     I     I     I     I     I       I.
DUKE POWER COMPA.
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DUKE POWER COMP..AY                                                           NDE-%_.016 . .
DUKE POWER COMP..AY Ultrasonic Beam Spread Measurement Sheet NDE-%_.016.
Ultrasonic Beam Spread Measurement Sheet                                                    Revision 1 . .
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C.                                                               ..-J DUKE POWER COMPANY                                                 Exam Start:         1225           Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS                                     Exam Finish:       1250               Revision 4 Station:           Oconee             Unit:   2       Component/Weld ID: 2-SGA-WG23-2                                     Date:       10116/202 Weld Length (in.):         92.0         Surface Condition:         AS GROUND             Lo:   9.2.3     Surface Temoerature:         109     &deg; F Examiner: Larry Mauldin               &.Level:     11     Scans:                                         Pyrometer S/N:         MCNDE 27227 Cal Due:         12/12/2002 Examiner: James L. Panel ,,Level:                   II     45 E     64.5   dB   70 &deg;3             dB Configuration:           CIRC. WELD Procedure: NDE-820             Rev: 0     FC:           45T 0     64.5 dB 70T 2                 dB             S2         Flow           Si N/A         60 0     73.0 dB                                       NOZZLE       to     SHELL Calibration Sheet No:                                     60T 0     73.0   dB                                         Scan Surface: OD 0202037, 0202038                                                                                                   Applies to NDE-680 only Other                     dB             Skew Angle:                 N/A Max     MP       W       L                                                                           Beam     Exam IND #           %
C.
                %      Max     Max     Max         LI         L2       WI         MpI         W2       Mp2       Dir.     Surf. Scan   Damps Ref _
..-J DUKE POWER COMPANY Exam Start:
45    O                                 20%dac     20%dac     20%dac     20%dac 20%dac 20%dac                   D NOT WRIT
1225 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:
)PW I         DO IOT W ITE                       HMA         HMA       HMA         HMA       HMA       HMA             D,           W b   b IN T -IIIS S1kE100%Mdac SPaCE                 50%dac     50%dac 1100%dacl 1100%dac   50%dac 50%dac         50%dac 100%dacl1 00%dac 100%dac       50%dac            IN THIS SPACE Remarks:
1250 Revision 4 Station:
Limitations: (see NDE-UT-4) 0       90% or greater coverage obtained: yes Cl no E                                               Sheet/         o   f   e Reviewed By:                             Level:         Date:         Authorized Insoector:                         Date:       Item No:
Oconee Unit:
                                                                                                              ,."C.2   <4/       C02.021.002 c41xj1/2,-                                       Initial 1; ANFI Final DATE T
2 Component/Weld ID: 2-SGA-WG23-2 Date:
                                                                                                      'II
10116/202 Weld Length (in.):
92.0 Surface Condition:
AS GROUND Lo:
9.2.3 Surface Temoerature:
109  
&deg; F Examiner: Larry Mauldin  
&.Level:
11 Scans:
Pyrometer S/N:
MCNDE 27227 Cal Due:
12/12/2002 Examiner: James L. Panel,,Level:
II 45 E 64.5 dB 70 &deg;3 dB Configuration:
CIRC. WELD Procedure: NDE-820 Rev: 0 FC:
45T 0 64.5 dB 70T 2 dB S2 Flow Si N/A 60 0 73.0 dB NOZZLE to SHELL Calibration Sheet No:
60T 0 73.0 dB Scan Surface: OD 0202037, 0202038 Applies to NDE-680 only Other dB Skew Angle:
N/A Max MP W
L Beam Exam IND #
Max Max Max LI L2 WI MpI W2 Mp2 Dir.
Surf.
Scan Damps Ref 4
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20%dac 20%dac 20%dac 20%dac 20%dac 20%dac D
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DO IOT W ITE HMA HMA HMA HMA HMA HMA D,
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IS SPaCE 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACE I
T -II S1kE100%Mdac 1100%dac 1100%dacl 00%dac 100%dac 100%dacl1 Remarks:
Limitations: (see NDE-UT-4) 0 90% or greater coverage obtained: yes Cl no E Sheet/
o f e
Reviewed By:
Level:
Date:
Authorized Insoector:
Date:
Item No:
,."C.2  
<4/
C02.021.002 c41xj1/2,-
Initial 1; Final ANFI DATE T 'I I


C                                                                                                                                                 !I DUKE POWER COMPANY                                                                       FORMNDE-UT-4 ISI LIMITATION REPORT                                                                   Revision 1 Component/Weld ID: 2-SGA-WG23-2                                         Item No: C02.021.002                           Remarks:
C
SURFACE                     BEAM DIRECTION                         NOZZLE CONFIGURATION El NO SCAN O LIMITEDSCAN                                     &deg; 1 ID 2                 E   13 2 a O1          cw E     ccw FROM L         N/A           to L       N/A             INCHES FROM WO           TOE     to -   BEYOND ANGLE:   0 0 El 45 0E650 0 Other                                         FROM       0   DEG to   360     DEG SURFACE                     BEAM DIRECTION O NO SCAN O LIMITED SCAN                                   &deg; 1 0 2                   O 10      2 a cw a       ccw FROM L                         to L                         INCHES FROM WO                   to ANGLE:   0 0     0 45 0 60 0 Other                                       FROM           DEG to             DEG SURFACE                     BEAM DIRECTION 0 NO SCAN O LIMITEDSCAN                                     0 1 &deg; 2                   O 1O      2O    cwO      ccw FROM L                         to L                         INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                                           FROM           DEG to             DEG SURFACE                     BEAM DIRECTION 0   NO SCAN 0   LIMITED SCAN                                   0 1 0     2               0   1 a   2O    cwO      ccw FROM L                         to L                         INCHES FROM WO                   to
!I DUKE POWER COMPANY FORMNDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2-SGA-WG23-2 Item No: C02.021.002 Remarks:
_ _  _  _  _.-_          -_ __--_                                                  _ _  __-_                                            I.
SURFACE BEAM DIRECTION NOZZLE CONFIGURATION El NO SCAN O LIMITEDSCAN  
ANGLE:   0   0   0   45   0 60 0   Other_                             FROM____ DEGto Prepared By: Larry E. Mauldi                           vel:   11     Date: 10116/2002 Sketch(s) attached     El yes     0 no           Sheet 2 of___
&deg; 1 ID 2 E
Reviewed By:     J',/)       A                       Date:   O?lAuthorized               Inspector                                         Date:,.A Initial q     Final Bl ANQ II 4   DA7TE-T-11-l UCRT
O1 13 2 a cw E ccw FROM L N/A to L N/A INCHES FROM WO TOE to -
BEYOND ANGLE:
0 0 El 45 0E 650 0 Other FROM 0
DEG to 360 DEG SURFACE BEAM DIRECTION O
NO SCAN O LIMITED SCAN  
&deg; 1 0 2 O 1 0 2 a cw a ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN O LIMITEDSCAN 0 1 &deg; 2 O 1 O 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN 0
LIMITED SCAN 0 1 0 2
0 1 a 2 O cw O ccw FROM L to L INCHES FROM WO to I.
ANGLE:
0 0
0 45 0 60 0 Other_
FROM____ DEGto Prepared By: Larry E. Mauldi vel:
11 Date: 10116/2002 Sketch(s) attached El yes 0 no Sheet 2 of___
Reviewed By: J',/)
A Date:
O?lAuthorized Inspector Date:,.A Initial q Final Bl ANQ II 4 DA7TE-T-11-l UCRT


I . . .  .            I AttachmentC Page 8 &deg;ofS DUKE POWER COMPANY                                                                               NDE-91-1 W%
I I
Limited Examination Coverage Worksheet                                                                 Rvso Examination VolumelArea Defined 0 Base Metal           0   Weld                     0 Near Surface                             &deg; Boltinq             &deg; Inner Radius Area Calculation                                                             Volume Calculation 2.25 IN.X 4.0 IN. = 9.0 SQ.IN.                                     9.0 SQ.IN. X 92 IN. = 828 CU.IN.
AttachmentC Page 8 &deg;ofS DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Rvso Examination VolumelArea Defined 0 Base Metal 0
Coverage Calculations Area             Length                   Volume             Volume Beam           Examined           Examined                   Examined         Required Scan # Angle       Direction           (sq.in.)               (in.)                 (cu.in.)           (cu.in.)       Percent Coverage 1     L&sect;'4(a       z                   c.ic                                       bZ23 I               0.0                 Ciz                       0 3    4e6c,                          0.0 L4   Lj4S4       CCM                     0.0                                           ,D 8 ZE             331Z o.C                                                                                    W2.27o Xo0 5/L103 IN it -31vo                                                                                         o2 -2
Weld 0 Near Surface  
&deg; Boltinq  
&deg; Inner Radius Area Calculation Volume Calculation 2.25 IN. X 4.0 IN. = 9.0 SQ.IN.
9.0 SQ.IN. X 92 IN. = 828 CU.IN.
Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Scan # Angle Direction (sq.in.)
(in.)
(cu.in.)
(cu.in.)
Percent Coverage W%
1 L&sect;'4(a 3 4e6c, z
c.ic bZ23 I
0.0 Ciz 0
0.0 L4 Lj4S4 CCM IKUNCD Kii A0IA WA I
f-0.0 5/L103 o.C
,D 8 ZE 331Z W2.27o Xo0 o2 -2 IN it -31vo 4
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I UN-',I4U     U
DATE HSBCT
                                                                                                                  .  -             l 0           PIA                 D                   a                       0                                       99 o   c-5-oy initial 0       Final a       .
/IIItem No:
ANII - DATE HSBCT
C02.021.002 Prepared By: Larry Mauldlin Level:
                                                    /IIItem                                           No:             C02.021.002 Prepared By: Larry Mauldlin                                               Level:             II                       Date: 10/16/2002 Reviewed By:                       C5                                     Level:                                       Date:         l Vi7
II Date: 10/16/2002 Reviewed By:
C5 Level:
Date:
l Vi7


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Ultrasonic Beam Spread Measurement Sheet                                              I Revislon 1 I   I         I       I     I     I         I         I       I       I           I       I       I       I           l .
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DUKE POWER COMPA*'-'                                               NDE-FI Ultrasonic Beam Spread Measurement Sheet .                                     Revision 1
DUKE POWER COMPA*'-'
                      .                  -\>                             .WI                     'Z.-7T     Mpl Z-7/ q
Ultrasonic Beam Spread Measurement Sheet.
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NDE-FI Revision 1
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DUKE POWER COMPANY                                                     Exam Start:     1211           Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS                                         Exam Finish:     1239               Revision 4 Station:             Oconee             Unit:     2       Component/Weld ID: 2-SGA-WG23-1                                   Date:   1011612002 Weld Length (in.):         N/A         Surface Condition:             AS GROUND           La:   9.2.3   Surface TemPerature:       109       F Examiner: David Zimmerman                 Level: ii           Scans:                                       Pyrometer S/N:         MCNDE 27227
DUKE POWER COMPANY Exam Start:
                                ,,y   PsCal                                                                     Due:         12/12/2002 Examiner Winfred C. Leeper                   evel: II         45 &deg;     _      dB   70 E     75.0   dB
1211 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:
                                                ,                      JC                                  .Configuration,       INNER RADIUS Procedure: NDE-680             Wv: 2       FC:               45T &deg;             dB 70T E       75.0 dB             N/A         Flow         N/A
1239 Revision 4 Station:
                                      .                      60   0   73.0   dB                                   N/A         to       NIA Calibration Sheet No:                                         60T E     73.0 dB                                         ScantoSurface:
Oconee Unit:
Apples       NDE-680ODonly 0202036, 0202040ApletoNE60ny 0                             Other                   dB           Skew Angle:
2 Component/Weld ID: 2-SGA-WG23-1 Date:
Max     Mp     W         L                                                                           Beam     Exam IND # 2$         %    Max     Max     Max           LI           L2       WI       MpI         "a       Mp2     Dir. Surf. Scan   Damps Ref                               .          _                                  .
1011612002 Weld Length (in.):
20%dac       20%dac     20%dac   20%dac     20%dac   20%dac DO 14OT W ITE                           HMA         HMA       HMA       HMA         HMA       HMA             D NOT WRI IN T IS SP CE                         50%dac       50%dac     50%dac   50%dac     50%dac   50%dac           IN THIS SPAC 100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI I  gj >
N/A Surface Condition:
I    I..
AS GROUND La:
Th"E Remarks:
9.2.3 Surface TemPerature:
* 02-03, 02-08 i-C Limitations: (see NDE-UT-4) 10     90% or greater coverage obtained. yes               :no 0                                   SheetL/       of 4 Reviewed Bv:                             Level:           Date:           Authorized Insoector:                     Date:       Item No:
109 F
(       //a-'B                             /0a                                                                    C02.022.001
Examiner: David Zimmerman Level: ii Scans:
Pyrometer S/N:
MCNDE 27227
,,y PsCal Due:
12/12/2002 Examiner Winfred C. Leeper evel:
II 45 &deg; dB 70 E 75.0 dB JC
.Configuration, INNER RADIUS Procedure: NDE-680 Wv: 2 FC:
45T &deg; dB 70T E 75.0 dB N/A Flow N/A 60 0 73.0 dB N/A to NIA Scan Surface: OD Calibration Sheet No:
60T E 73.0 dB Apples to NDE-680 only 0202036, 0202040ApletoNE60ny 0 Other dB Skew Angle:
Max Mp W
L Beam Exam IND # 2$
Max Max Max LI L2 WI MpI "a
Mp2 Dir.
Surf.
Scan Damps Ref 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac DO 14OT W ITE HMA HMA HMA HMA HMA HMA D
NOT WRI IN T IS SP CE 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPAC 100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI Remarks:
* 02-03, 02-08 Limitations: (see NDE-UT-4) 10 90% or greater coverage obtained. yes
: no 0 SheetL/
of 4 Reviewed Bv:
Level:
Date:
Authorized Insoector:
Date:
Item No:
(  
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Attachment C Page l3 of 5?>
Attachment C Page l3 of 5?>
DUKE POWER COMPANY                                                     NDE-91-1 Limited Examination Coverage Worksheet                                     Revision 0 Examination Volume/Area Defined 0 Base Metal         &deg;     Weld             &deg; Near Surface               &deg; Bolting       0 Inner Radius Area Calculation                                         Volume Calculation SEE DRWG.                 18.5 SQ.IN.                   18.5 SQ.IN. X 92 IN. = 1702 CU.IN.
DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Revision 0 Examination Volume/Area Defined 0 Base Metal  
Coverage Calculations Area       Length         Volume           Volume Beam         Examined     Examined       Examined         Required Scan # Angle     Direction       (sq.in.)       (in.)         (cu.in.)         (cu.in.) Percent Coverage 1     6017O       CW             16.3         92             1499.6         1702 2     60170     CCW             16.3         92             1499.6         1702 2999.2         3404           88.11 Item No:       C02.022.001 Prepared By: Larry Mauldin                                 Level:       II                 Date:10/16/200, Reviewed By:                                               Level:       A,                 Date: lo l51MZ
&deg; Weld  
&deg; Near Surface  
&deg; Bolting 0 Inner Radius Area Calculation Volume Calculation SEE DRWG.
18.5 SQ.IN.
18.5 SQ.IN. X 92 IN. = 1702 CU.IN.
Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Scan # Angle Direction (sq.in.)
(in.)
(cu.in.)
(cu.in.)
Percent Coverage 1
6017O CW 16.3 92 1499.6 1702 2
60170 CCW 16.3 92 1499.6 1702 2999.2 3404 88.11 Item No:
C02.022.001 Prepared By: Larry Mauldin Level:
II Date:10/16/200, Reviewed By:
Level:
A, Date: lo l51MZ


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DUKE POWER COMPANY                                                     Exam Start:     1208           Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS                                           Exam Finish:     1237               Revision 4 Station:             Oconee                 Unit:   2       Component/Weld ID: 2-SGA-WG23-2                                   Date:     10/16/2002 Weld Length (in.):           N/A             Surface Condition:         AS GROUND             Lo:   9.2.3   Surface Temrerature:       109       F Examiner: Larry Mauldin           i           Level: II       Scans:                                     Pyrometer S/N:         MCNDE 27227
DUKE POWER COMPANY Exam Start:
                        ~&                                           ACal                                       Due:       12/12/2002 Examiner: James L.Panel                 ,      Level: II       45 a         dB   70 0         75.0 dB
1208 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:
                                                  , aConfiguration:                                                                 INNRE RADIUS Procedure: NDE-680               Rev: 2         FC:             45T &deg;         dB 70T El         75.0 dB           N/A         Flow         N/A
1237 Revision 4 Station:
Oconee Unit:
2 Component/Weld ID: 2-SGA-WG23-2 Date:
10/16/2002 Weld Length (in.):
N/A Surface Condition:
AS GROUND Lo:
9.2.3 Surface Temrerature:
109 F
Examiner: Larry Mauldin i
Level: II Scans:
Pyrometer S/N:
MCNDE 27227
~&
ACal Due:
12/12/2002 Examiner: James L. Panel Level: II 45 a dB 70 0 75.0 dB
, aConfiguration:
INNRE RADIUS Procedure: NDE-680 Rev: 2 FC:
45T &deg; dB 70T El 75.0 dB N/A Flow N/A
_El_
_El_
* 6       73.0 dB                                       N/A         to       N/A Calibration Sheet No:                                           60T a   73.0 dB                                     ApleScan toSurface: ODOn 0202039, 0202041 020239,00204                                                                                       Applies to NDE-680 only Other:                     dB         Skew Angle:
6 73.0 dB N/A to N/A Scan Surface: OD Calibration Sheet No:
Max     Mp           W         L                                                                       Beam     Exam IND #   e       %      Max         Max       Max         Li         L2       W1         Mp1         W2       Mp2     DIr. Surf. Scan   Damps R ef _  _  _      _  _  _ _  _  _    _  _  _                        _  _  _
60T a 73.0 dB Aple to On 020239,00204 Applies to NDE-680 only 0202039, 0202041 Other:
20%dac       20%dac   20%dac   20%dac       20%dac   20%dac                           _
dB Skew Angle:
DO NOT W ITE                             HMA         HMA     HMA       HMA         HMA       HMA           D NOT WRIT IN T IS SP CE                           50%dac 50%dac 50%dac 50%dac 50%dac 50%dac                             IN THIS SPACE.
Max Mp W
L Beam Exam IND #
e Max Max Max Li L2 W1 Mp1 W2 Mp2 DIr.
Surf.
Scan Damps R ef 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac DO NOT W ITE HMA HMA HMA HMA HMA HMA D
NOT WRIT IN T IS SP CE 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACE.
IOO%dac 100%dac 100%dac 100%dac 100%dac i00%dac Remarks:
IOO%dac 100%dac 100%dac 100%dac 100%dac i00%dac Remarks:
* 02-03, 02-08 I      g_
* 02-03, 02-08 Limitations: (see NDE-UT-4) 0 90% or greater coverage obtained: yes &deg; no 0 Sheetj
Limitations: (see NDE-UT-4) 0           90% or greater coverage obtained: yes &deg;         no 0                                     Sheetj _ of       Y     oo.
_ of Y
Reviewed Bv:y ,            ,K,               Level:         Date:       Authorized Inspectorr                       Date!       Item No:               I%  S..
Reviewed Bv:y  
4/                                                                   <            C02.022.002
,K, Level:
Date:
Authorized Inspectorr Date!
Item No:
4/
C02.022.002 I
_ g oo.
I%
S..


Attachment C i Page a-of s, DUKE POWER COMPANY                                                     NDE-91-1 Limited Examination Coverage Worksheet                                                         ~0 Revision 0         <l Examination VolumelArea Defined
Attachment C i Page a-of s, DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Revision 0 Examination VolumelArea Defined
&deg;3 Base Metal         &deg;     Weld             0 Near Surface               a   Boltinjq     0 Inner Radius Area Calculation                                         Volume Calculation SEE DRWG.                 18.5 SQ.IN.                   18.5 SQ.IN. X 92 IN. = 1702 CUN.
&deg;3 Base Metal  
Coverage Calculations Area       Length         Volume           Volume Beam         Examined     Examined       Examined         Required   Percent Coverage Scan # Angle       Direction       (sq.in.)       (in.)         (cu.in.)         (cu.1n.)
&deg; Weld 0 Near Surface a Boltinjq 0 Inner Radius Area Calculation Volume Calculation SEE DRWG.
Item No:       C02.022.002 Prepared By: Larry Mauldin                                 Level:       II                 Date: 10116/200,l Reviewed By:                                               Level:     n                     Date: lo     olzl
18.5 SQ.IN.
18.5 SQ.IN. X 92 IN. = 1702 CUN.
Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Percent Coverage Scan # Angle Direction (sq.in.)
(in.)
(cu.in.)
(cu.1n.)
Item No:
C02.022.002 Prepared By: Larry Mauldin Level:
II Date: 10116/200,l Reviewed By:
Level:
n Date: lo olzl
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Oconee Unit #2I EOC 19I NO DATA CALIBRATION SHEET # O202003-           45&deg; hO 0
Oconee Unit #2I EOC 19I NO DATA CALIBRATION SHEET # O202003-45&deg; 0
                          #O o0o2o-     da b-         -e COMPONENT I.D.# ZLP-k/o- 70                 l ITEM# co6o//.       o/2 initial 4 Finalt r            .,S ANII     DATE                     a HSBCT
hO
#O o0o2o-da b-  
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o/2 initial 4 Finalt  
.,S r
ANII DATE a
HSBCT


i:.S He - /
i:.S He -
DUKE POWER COMPANY                                               Exam Start:         1050                 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS                               Exam Finish:       1054                 Revision 2 Station:             Oconee             Unit:     2     Component/Weld ID: 2LP-150-70                                         Date:     8/5/2002 Nominal Material Thickness (in):         1.312         Weld Length (in.):         40.1       Surface Temperature:             93           Deg F Measured Material Thickness (in):         1.26 .       Lo:                 9.1.1.1           Pyrometer SIN:             MCNDE 27228 Surface Condition:               AS GROUND               Calibration Sheet No:                 Cal Due:                     1211212002 0202002                               Configuration:               Circ. Weld Examiner: James L. Panel /               ~Level,     II                                                         S2       Flow       Si Procedure:       NDE-6d           Rev: I   FC:     *VA                                                       VALVEE      to to       RED.
/
RD Ampi     Li       WI   MpI     W2     Mp2       L2         WI     MpI     W2       Mp2 IND         x   rem   z rem x rem     2 rem   ? rem   k rem   2rem 2 rem         2 rem   ;rem     ? rem       Exam                 Damps NO.             BW     BW         BW   BW       BW     BW       BW         BW       8W   BW       BW           Surf.
DUKE POWER COMPANY Exam Start:
LOB     LOB       LOB   LOB     LOB     LOB     LOB       LOB     LOB   LOB       LOB NRI         0 Iintial 0 H-S BCT FinalS-I I C
1050 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS Exam Finish:
                                                                                                                                                    -o
1054 Revision 2 Station:
Oconee Unit:
2 Component/Weld ID: 2LP-150-70 Date:
8/5/2002 Nominal Material Thickness (in):
1.312 Weld Length (in.):
40.1 Surface Temperature:
93 Deg F Measured Material Thickness (in):
1.26.
Lo:
9.1.1.1 Pyrometer SIN:
MCNDE 27228 Surface Condition:
AS GROUND Calibration Sheet No:
Cal Due:
1211212002 0202002 Configuration:
Circ. Weld Examiner: James L. Panel /  
~Level, II S2 Flow Si VALVE to RED.
Procedure:
NDE-6d Rev:
I FC:  
*VA E
to RD Ampi Li WI MpI W2 Mp2 L2 WI MpI W2 Mp2 IND x
rem z rem x rem 2 rem  
? rem k rem 2 rem 2 rem 2 rem
;rem  
? rem Exam Damps NO.
BW BW BW BW BW BW BW BW 8W BW BW Surf.
LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB NRI 0
Iintial 0 FinalS-I H-S BCT I
C
- o


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0.
DUKE POWER COMPANY                                                         NDE-UT-5 UT PROFILE/PLOT SHEET                                                 I Revision 1 EXAMINATION SURFACE 1 "?co.                                                                     EXAMINATION SURFACE 2 WE.LD                                -
DUKE POWER COMPANY NDE-UT-5 UT PROFILE/PLOT SHEET I
4           3           2   :      1*                                   12                    3          4 11lI          t           111   .1I [IJI .IIII IIII II,1 4 4
Revision 1 EXAMINATION SURFACE 1 "?co.
IIII 1111I I   III III I IIII
4 3
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2 WE 1*
2       -     .              14     .I g-l     =-
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2.5 0.
.LD 1 2 II, 1 IIII 1111I I EXAMINATION SURFACE 2 3
3                                                 _ _ _  _ _ _      _  _ _  _  _ _
III 4
La-Cnmrmonnt IDl/WeId No.       -  -                                                                        u LA0
I II I IIII 4
: Remarks: _jAI       Ztep-1-7
4
                                                                                                                                                    .E<=
.5 1
Profile taken 270    a    180 Sgof9 Item No: e, M               c Examiner:                                     Level:             Date:               z                                     3' Reviewed By: >8-fM             O>             ILevel: '       _IDate: g- 7-o0-                         180 Sheet-of=+/--4  P%;    ,s
1..
            ~Authorized Inspetot!r,4           il                            Date: -Se Authr e                                         D
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: Remarks: _jAI Ztep-1-7 Item No: e, M c
Examiner:
Level:
Date:
z Profile taken 270 a
180 Sgof9 1 80 Sheet-of=+/--4 0.
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.E<=
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,s Reviewed By:  
>8-fM O >
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~Authorized Inspetot!r,4 i l Date:  
-Se Auth r e D


C:.                                                                                                                               Is DUKE POWER COMPANY                                                                       FORM NDE-UT-4 ISI LIMITATION REPORT                                                                   Revision 1 Component/Weld ID: 2LP-150-70                           Item No: C05.011.012                           Remarks:
C:.
SURFACE                     BEAM DIRECTION                         Valve Configuration 0l NO SCAN 0   LIMITED SCAN                   0102                     01020             cwO ccw FROM L       N/A_       to L _N/A           INCHES FROM WO _       CL_       to   BEYOND ANGLE:   0 0 0 45 0 60 0 Other                           FROM     0     DEG to     360   DEG SURFACE                     BEAM DIRECTION 0 NO SCAN O LIMITED SCAN                     0 1 0     2           O 1   a     2 Q cwO        ccw FROM L     _ _          to L _              INCHES FROM WO       ___          to     _
Is DUKE POWER COMPANY FORM NDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2LP-150-70 Item No: C05.011.012 Remarks:
ANGLE:   0 0 0 45 0 60 0 Other                           FROM             DEG to         -DEG SURFACE                     BEAM DIRECTION 0   NO SCAN 0   LIMITED SCAN                   0 1 0     2             0 1 0 20          cw O     ccw FROM L                 to L                 INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                           FROM             DEG to           DEG SURFACE                     BEAM DIRECTION 0 NO SCAN O LIMITEDSCAN                         1 0     2             Ol 1O      2O      cwO      ccw FROM L                 to L                 INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                           FROM             DEG to                                                     7 Prepared By: David K.Zimmerman       Level:     IIl   Date: 8/5/2002     Sketch(s) attached     0 yes       0 no         Sheet   4 of ol Reviewed By: &au       l'2Date:             6--Oz,l           Authorized Inspecto                                         Date:
SURFACE BEAM DIRECTION Valve Configuration 0l NO SCAN 0
II                                                             _/       .,
LIMITED SCAN 0102 01020 cwO ccw FROM L N/A_
                                                                                            *II     p0 Inrtial 03 final ANIl       DAI E   - -
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0 0 0 45 0 60 0 Other FROM 0
DEG to 360 DEG SURFACE BEAM DIRECTION 0
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0 0 0 45 0 60 0 Other FROM DEG to  
-DEG SURFACE BEAM DIRECTION 0
NO SCAN 0
LIMITED SCAN 0 1 0 2
0 1 0 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN O LIMITEDSCAN 1 0 2
Ol 1 O 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE: 0 0 0 45 0 60 0 Other FROM DEG to 7
Prepared By: David K. Zimmerman Level:
IIl Date: 8/5/2002 Sketch(s) attached 0 yes 0 no Sheet 4 of ol Reviewed By: &au l'2Date:
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DUKE POWER COMPANY                                                                         NDE-T-5 UT PROFILE/PLOT SHEET                                                                     Revision 1 EXAMINATION SURFACE 1                                                                                                                           EXAMINATION SURFACE 2 VVELD 4                           3                   2               1                     I,.                     ,   12                   3          4 lI J* II                                                                  III III-R II11 111 1l111IIII I l11i11ii.I                                           IIII IIII~
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DUKE POWER COMPANY                                                     Exam Start:         0920                   NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS                                     Exam Finish:         0923                   Revision 2 Station:             Oconee               Unit       2         Component/Weld ID: 2HP-219-14                                         Date:     8/7/2002 Nominal Material Thickness (in):           0.674               Weld Length (in.):         14.1       Surface Temperature:             91           Deg F Measured Material Thickness (in):         .682                 Lo:               9.1.1.2           Pyrometer SIN:               MCNDE 27218 Surface Condition:               AS GROUND                     Calibration Sheet No:                 Cal Due:                       12/10/2002 Examiner: Marion T. Weaver                   Level:   II       0202018                               Configuration:                 Circ. Weld Examiner Winfred C. Leeper/, /,,             Level:   II                                                               S2     Flow         SI Procedure:       NDE-640         fev:   I                                                                           Valve       to       Pipe Ampl       Li       WI     Mpl       W2           Mp2       L2       WI     MpI     W2     Mp2 IND             -rem   z rem     2 rem x rem     2 rem         z rem   2 rem   2 rem 2 rem     2 rem     2 rem NO.                                                                                                                         Exam                D EBW     BW         BW     BW       BW           BW       BW         BW     BW     8W       BW           Surf.                 amps LOB     LOB       LOB     LOB       LOB         LOB       LOB       LOB     LOB   LOB     LOB NRI       0 WO                                                             FE1
DUKE POWER COMPANY Exam Start:
                                    ~~'JL             st l'o-)                                                                                           i
0920 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS Exam Finish:
                                                                                                    .Intial 0   Final ANll       DATE                                         . a HSBC I~
0923 Revision 2 Station:
Oconee Unit 2
Component/Weld ID: 2HP-219-14 Date:
8/7/2002 Nominal Material Thickness (in):
0.674 Weld Length (in.):
14.1 Surface Temperature:
91 Deg F Measured Material Thickness (in):  
.682 Lo:
9.1.1.2 Pyrometer SIN:
MCNDE 27218 Surface Condition:
AS GROUND Calibration Sheet No:
Cal Due:
12/10/2002 Examiner: Marion T. Weaver Level:
II 0202018 Configuration:
Circ. Weld Examiner Winfred C. Leeper/, /,,
Level:
II S2 Flow SI Procedure:
NDE-640 fev:
I Valve to Pipe Ampl Li WI Mpl W2 Mp2 L2 WI MpI W2 Mp2 IND  
-rem z rem 2 rem x rem 2 rem z rem 2 rem 2 rem 2 rem 2 rem 2 rem Exam D
NO.
EBW BW BW BW BW BW BW BW BW 8W BW Surf.
amps LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB NRI 0
WO FE1
~~'JL st l'o-)
.Intial 0 Final ANll DATE HSBC i
a I~


C                                                         '  /1                                                                 J DUKE POWER COMPANY                                                               FORMNDE-UT-4 ISI LIMITATION REPORT                                                             Revision 1 Component/Weld ID: 2HP-219-14                             Item No: C05.021.013                           Remarks:
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SURFACE                   BEAM DIRECTION                         VALVE CONFIGURATION 0 NO SCAN O LIMITEDSCAN                           a   0                           2O2l    cwO      ccw FROM L       N__NIA to L           NIA         INCHES FROM WO           C/L       to     BEYOND ANGLE:   0 0 0 45 0 60 0 Other                             FROM       0   DEG to     360   DEG O NO SCAN                               SURFACE                   BEAM DIRECTION O LIMITEDSCAN                           0 1 0 2               0   10      2 0   cw O ccw FROM L                   to L                 INCHES FROM WO                     to ANGLE:   0 0 0 45 0 60 0 Other                             FROM             DEG to             DEG SURFACE                    BEAM DIRECTION O NO SCAN O LIMITED SCAN                         0 1 0   2             0   1l      2O    cwO      ccw FROM L                   to L                 INCHES FROM WO                     to ANGLE:   0 0 0 45 0 60 0 Other                               FROM           DEG to             DEG t                                 *1 SURFACE                    BEAM DIRECTION 0   NO SCAN                                                                                                                                 Me 0   LIMITED SCAN                       0 10   2             0   1O      2 O   cw O     ccw                                               W :
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DUKE POWER COMPANY FORMNDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2HP-219-14 Item No: C05.021.013 Remarks:
FROM L                   to L                 INCHES FROM WO                     to
SURFACE BEAM DIRECTION VALVE CONFIGURATION 0
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C71,1 DUKE POWER COMPANY                                                   NDE---5 UT PRO FLE/PLOT SHEET                                               Revision 1 EXAMINATION SURFACE 1                                                                     EXAMINATION SURFACE 2 WE~LD 4           3           2             1              Iq          .      1      2        3 .        .4
C71,1 DUKE POWER COMPANY NDE---5 UT PRO FLE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 4
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DUKE POWER COMPANY                                                   Exam Start           1424                   NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS                                     Exam Finish:         1428                   Revision 2 Station:           Oconee               Unit       2     Component/Weld ID: 2HP-396-5                                               Date:     8/7/2002 Nominal Material Thickness (in):         0.531             Weld Length (in.):         14.1         Surface Temperature:             107           Deg F Measured Material Thickness (in):         .559.           Lo:               9.1.1.2               Pyrometer S/N:               MCNDE 27218 Surface Condition:               AS GROUND                   Calibration Sheet No:                   Cal Due:                       12/10/2002 Examiner Marion T. Weave         -          Level:     II 0202023                                 Configuration:                 Circ. Weld Examiner Winfred C. Leeperl /-               Level:     II                                                             S2     Flow         51 Valve         to         Pipe Procedure:       NDE-640       Rev: I     FC:
DUKE POWER COMPANY Exam Start 1424 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS Exam Finish:
* _                                    _                  Valve         to         Pip Ampi       LI       WI   MpI       W2     Mp2       L2       WI       Mpi       W2     Mp2 IND             2rem     k rem     k rem k rem     k rem 2 rem a rem 2 rem             k rem   2 rem 2 rem             Exam                   D NO.     &#x17d;&#xb6;     BW       BW         BW   BW         BW       BW       BW         BW       BW       BW       BW             Surf.                 amps LOB     LOB       LOB   LOB       LOB     LOB       LOB       LOB     LOB     LOB     LOB NRI               =
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0.531 Weld Length (in.):
Initial 0      FinakD-l                                                          -Pa 0-M
14.1 Surface Temperature:
: i. ~CT
107 Deg F Measured Material Thickness (in):  
                                                                                    -'3                                                                          tjnO rl!,
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Lo:
9.1.1.2 Pyrometer S/N:
MCNDE 27218 Surface Condition:
AS GROUND Calibration Sheet No:
Cal Due:
12/10/2002 Examiner Marion T. Weave Level:
II 0202023 Configuration:
Circ. Weld Examiner Winfred C. Leeperl /-
Level:
II S2 Flow 51 Valve to Pipe Procedure:
NDE-640 Rev:
I FC:
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DUKE POWER COMPANY                                                               FORMNDE*UT-4 ISI LIMTATION REPORT                                                           Revision 1 Component/Weld ID: 2HP-396-5                                 Item No: C05.021.093                           Remarks:
DUKE POWER COMPANY FORMNDE*UT-4 ISI LIMTATION REPORT Revision 1 Component/Weld ID: 2HP-396-5 Item No: C05.021.093 Remarks:
SURFACE                   BEAM DIRECTION                         VALVE CONFIGURATION El NO SCAN O LIMITElSCAN                             &deg;   1     22                1 0 2     0 cw o       ccw FROM L           N/A       to L     N/A           INCHES FROM WO         C/L       to     BEYOND ANGLE:       00    0 45 El 60 0 Other                         FROM       0   DEG to     360   DEG SURFACE                   BEAM DIRECTION O NO SCAN O LIMITED SCAN                           Oi     10 2             O   1 O   2O    cwO      ccw FROM L                     to L                   INCHES FROM WO                   to ANGLE:         0 O0 45 0 60 03Other                            FROM           DEG to           DEG SURFACE                   BEAM DIRECTION O NO SCAN O   LIMITED SCAN                           01 0     2           O   1 0   2O    cwO      ccw FROM L                     to L                   INCHES FROM WO                   to ANGLE:     0 0 0 45 0 60 0 Other                               FROM           DEG to           DEG                                             -i SURFACE                  BEAM DIRECTION 0 NO SCAN 0 LIMITED SCAN                             0   10 2             0 1O      2O    cwO      ccw                                           ; CM E; FROM  L                  to L ____              INCHES FROM WO                   to                                                           n; 1o4" ANGLE:      0 0    0 45 0 60 0 Other                          FROM           DEG to Prepared By: Winfred C.                                     Date: 817/2002   Sketch(s) attached       ED yes   O no   Sheet-of_
SURFACE BEAM DIRECTION VALVE CONFIGURATION El NO SCAN O LIMITElSCAN  
Reviewed By:    Luga,                                              Authorized Inspector:       &deg;       A9                 Date: S     7v-c j31t110) 61 I 1nitral 0 AN11I C DATE Final r -
&deg; 1 2 2 1 0 2 0 cw o ccw FROM L N/A to L N/A INCHES FROM WO C/L to BEYOND ANGLE:
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DEG to 360 DEG SURFACE BEAM DIRECTION O NO SCAN O LIMITED SCAN Oi 10 2 O
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Reviewed By:
: Luga, Date: 817/2002 Sketch(s) attached ED yes O no Sheet -of_
Authorized Inspector:  
&deg; A9 Date: S 7v-c j31t110) 61 I 1nitral 0 Final r -
AN11I C DATE I HSBCT


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conee Unit #2I EOC 19 NO DATA CALIBRATION SHEET #02020/3-     25#' Woe COMPONENT I.D.# 2HP-221-22 ITEM#   C65.02!.I15
conee Unit #2I EOC 19 NO DATA CALIBRATION SHEET #02020/3-25#' Woe COMPONENT I.D.# 2HP-221-22 ITEM#
  * .S~stT                   V i S         rFinal DATE3
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DUKE POWER COMPANY                                                 Exam Start:           1004                   NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS                                 Exam Finish:           1008                   Revision 2 Station:             Oconee               Unit:       2       Component/Weld ID: 2HP-221-22                                         Date:       81712002 Nominal Material Thickness (in):           0.531             Weld Length (in.):       14.1       Surface Temperature:               92             Deg F Measured Material Thickness (in):         0.540.             Lo:             9.1.1.2           Pyrometer S/N:                 MCNDE 27218 Surface Condition:               AS GROUND                   Calibration Sheet No:               Cal Due:                         12/10/2002 Examiner: David Zimmerman/)                   Level:     III 0202015                           Configuration:                   Circ.Weld Examiner. James L. Panel                       Level:     II                                                         S2     Flow         Si Procedure:         NDE-64d       Rev: I   FC:                                                                   Elbow         to       Valve Ampl     LI       WI     MpI         W2       Mp2       L2     WI     Mp1   W2       Mp2 IND             krem   2rem 2 rem       z rem       z rem     _rem 2 rem       2rem 2 rem     z rem 2rem               Exam                   Damps NO.     2   !$BW       BW       BW     BW         8W       BW       BW     BW       BW   8W       BW             Surf.
DUKE POWER COMPANY Exam Start:
LOB     LOB       LOB   LOB         LOB     LOB     LOB     LOB     LOB   LOB     LOB NRI       0 I                                                       M a 71t       ~,tI0 Initial 0     Final Er ANHS BC T         A E
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                                                                                                            . HS BCT
1008 Revision 2 Station:
Oconee Unit:
2 Component/Weld ID: 2HP-221-22 Date:
81712002 Nominal Material Thickness (in):
0.531 Weld Length (in.):
14.1 Surface Temperature:
92 Deg F Measured Material Thickness (in):
0.540.
Lo:
9.1.1.2 Pyrometer S/N:
MCNDE 27218 Surface Condition:
AS GROUND Calibration Sheet No:
Cal Due:
12/10/2002 Examiner: David Zimmerman/)
Level:
III 0202015 Configuration:
Circ.Weld Examiner. James L. Panel Level:
II S2 Flow Si Procedure:
NDE-64d Rev:
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Elbow to Valve Ampl LI WI MpI W2 Mp2 L2 WI Mp1 W2 Mp2 IND krem 2 rem 2 rem z rem z rem
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DUKE POWER COMPANY                                                             FORMNDE-UT-ISI LIMITATION REPORT                                                           Revision 1 ComponentN/eld ID: 2HP-221-22                         Item No: C05.021.115                         Remarks:
DUKE POWER COMPANY FORMNDE-UT-ISI LIMITATION REPORT Revision 1 ComponentN/eld ID: 2HP-221-22 Item No: C05.021.115 Remarks:
SURFACE                     BEAM DIRECTION                     VALVE CONFIGURATION G NO SCAN O LIMITEDSCAN                   0 1 0 2                   0   10 2 0       cw &deg;   ccw FROM L                 to L -             INCHES FROM WO         C/L       to     BEYOND ANGLE:   0 0 0 45 0 60 O Other _                        FROM     0     DEG to   360     DEG SURFACE                     BEAM DIRECTION o   NO SCAN O LIMITEDSCAN                   O 1i 0                             22      cwO    ccw FROM L                 to L               INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                           FROM           DEG to           DEG SURFACE                     BEAM DIRECTION 0   NO SCAN 0   LIMITED SCAN                 01   0     2             O 1n 2 &deg;         cw n   ccw FROM L                 to L               INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                         FROM           DEG to           DEG SURFACE                     BEAM DIRECTION 0   NO SCAN OLIMITEDSCAN                         1       2             L 1       2O    cwO    ccw                     .
SURFACE BEAM DIRECTION VALVE CONFIGURATION G NO SCAN O LIMITEDSCAN 0 1 0 2 0 1 0 2 0 cw &deg; ccw FROM L to L -
FROM L                 to L               INCHES FROM WO                   to ANGLE:   0 0 0 45 0 60 0 Other                           FROM           DEG to Prepared By: James L. Panel           wvel:     II   Date: 8t7/2002 l Sketch(s) attached     El yes     O no   Sheet-     of t Reviewed By:                                                 IAuthorized Inspector_1 ,L       I                 Date:        .,-
INCHES FROM WO C/L to BEYOND ANGLE:
_ 351''1 )                     Init;al 0   Final Ig AN 1IIA4      TE I-HSBCT
0 0 0 45 0 60 O Other FROM 0
DEG to 360 DEG SURFACE BEAM DIRECTION o NO SCAN O LIMITEDSCAN O 1i 0 2
2 cw O ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN 0
LIMITED SCAN 01 0 2
O 1 n 2 &deg; cw n ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0
NO SCAN OLIMITEDSCAN 1
2 L 1 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:
0 0 0 45 0 60 0 Other FROM DEG to Prepared By:
James L. Panel wvel:
II Date: 8t7/2002 l Sketch(s) attached El yes O no Sheet-of t
Date:
Reviewed By:
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Attachment C l Page si of Si.
Attachment C l Page si of Si.
DUKE POWER COMPANY                                                         NDE-91-1 Limited Examination Coverage Worksheet Revision 0 Examination Volume/Area Defined E Base Metal       0     Weld             &deg; Near Surface                 &deg; Boltinq       0 Inner Radius V1r4 Area Calculation                                           Volume Calculation SEE DRWG.                                               SEE DRWG.
DUKE POWER COMPANY Limited Examination Coverage Worksheet NDE-91-1 Revision 0 Examination Volume/Area Defined E Base Metal 0
Coverage Calculations Area         Length         Volume               Volume Beam         Examined     Examined       Examined             Required             C Scan # Angle     Direction       (sq.in.)       (in.)         (cu.in.)           (cu.in.) Percent overage ALL   457/60 AXIALICIRC.       .285         14.1                                 423             i95.4 a.y2                              (-;       o7-2     0
Weld  
                                                                  .twt3I                                      07--7./b Cy
&deg; Near Surface  
                                                                                                  ?t47/
&deg; Boltinq 0 Inner Radius Area Calculation Volume Calculation SEE DRWG.
I Item No:       C05.021.115 Prepared By: David K.Zimmerman         0- r,             Level:       III                   Date: 1O/281200 Reviewed By: P     a4       7   6                       Level:     '15                     Date: /0.-i.O
SEE DRWG.
Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required C
Scan # Angle Direction (sq.in.)
(in.)
(cu.in.)
(cu.in.)
Percent overage V1r4 ALL 457/60 AXIALICIRC.
.285 14.1 a.y2
.tw t3 I 423 i95.4
(- ;
o7-2 0
07--7./b Cy
?t47/
I Item No:
C05.021.115 Prepared By: David K. Zimmerman 0 - r, Level:
III Date: 1O/281200 Reviewed By: P a4 7
6 Level:  
'15 Date: /0.-i.O


I                                                                                     I DUKE POWER COMPANY                                                       DE-UT-5 UT PROFILE/PLOT SHEET                                                   Revision 1 EXAMINATION SURFACE 1                                   WELD                          EXAMINATION SURFACE 2 4             3
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DUKE POWER COMPANY                                                   ND-5
DUKE POWER COMPANY ND-5 UT PROFILE/PLOT SHEETr Revision l EXAMINATION SURFACE 1 WELD EXAMINATION SURFACE 2 4
                        ..                      UT PROFILE/PLOT SHEETr                           ..                  Revision l EXAMINATION SURFACE 1                                             WELD                           EXAMINATION SURFACE 2 4                 3           2               1            I                    1       2          3        4 I
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DUKE POWER COMPANY                                                           NDE-US.
UT PROFILE/PLOT SHEET Revislon 1 EXAMINATION SURFACE 1 EXAMINATION SURFACE 2 WELD 4
UT PROFILE/PLOT SHEET                                                       Revislon 1 EXAMINATION SURFACE 1                                 WELD                                        EXAMINATION SURFACE 2
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Attachment C, Page r8of 5?
Attachment C, Page r8of 5?
I     Form NDE-35A           I Revision 3 DUKE POWER COMPANY STATION             Oconee           UNIT 2 LIQUID PENETRANT EXAMINATION REPORT Weld/ID No. 2-BWST-OUT-2                                           Material Type: 0 SS f           CS 0 Inconel Diameter               14             Schedule/Thickness           L.375           1l ISI 0 PSI 0 Other Procedure Rev. No.             19           Field Change No.(s) N/A W/O No.               98473656                                   SKETCH OF ITEM EXAMINED Surface Temperature             840 M&TE S/N:           MCNDE 27227 Penetrant Materials Category:
I Form NDE-35A I Revision 3 DUKE POWER COMPANY STATION Oconee UNIT 2
A E3 A(SE) O       BO CO          D O3 A(SE) Approved Penetrant Materials Data:
LIQUID PENETRANT EXAMINATION REPORT Weld/ID No. 2-BWST-OUT-2 Material Type: 0 SS f CS 0 Inconel Diameter 14 Schedule/Thickness L.375 1l ISI 0 PSI 0 Other Procedure Rev. No.
Batch Numbers Cleaner               01B07K Penetrant             OOJ07K Developer             98J07K Emulsifier Fluorescent 0           Nonfluorescent w Black Light Intensity Verified                 Acceptance Standard:       A 0         D 0       G 0       K 0 Time       \p,         Date       ez\N         Other.                     B O         E Q       H O       L 0 Light Meter S/N:t5               I P.                                       C 0         F E       J &deg;       M 0 Ind.               T Indication                           Reference Documents               Recordable Reportable No.               Type/Dirnensions             IeItI PIP S/N:                                                 Rejectable O                       Acceptable E Exam Limitations:             [ Yes     (p 3 . G, 4p   % Examined               0     No (100% Examined)
19 Field Change No.(s) N/A W/O No.
98473656 SKETCH OF ITEM EXAMINED Surface Temperature 840 M&TE S/N:
MCNDE 27227 Penetrant Materials Category:
A E3 A(SE) O B O C O D O3 A(SE) Approved Penetrant Materials Data:
Batch Numbers Cleaner 01B07K Penetrant OOJ07K Developer 98J07K Emulsifier Fluorescent 0
Nonfluorescent w Black Light Intensity Verified Acceptance Standard:
A 0
D 0 G 0 K 0 Time  
\\p, Date ez\\N Other.
B O E Q H O L 0 Light Meter S/N: t5 I P.
C 0 F E J &deg; M 0 Ind.
T Indication Reference Documents Recordable Reportable No.
Type/Dirnensions IeItI PIP S/N:
Rejectable O Acceptable E Exam Limitations:
[ Yes (p3. G, 4p % Examined 0
No (100% Examined)
Comments:
Comments:
Examiner: Daryl L. Robinson                         -&g,_       Level:     II           Date:     8/2/2002 Examiner:                                                       Level:                 Date:
Examiner: Daryl L. Robinson  
Reviewed By:                           c                       Level:   25Date:                 ,-o_
-&g,_
Finalejw         V/       Date             ANII Bview                 Date               Item No.
Level:
2SLv9     -                                          4 f
II Date:
                                                                                    .cJ         C05.070.001 6X
8/2/2002 Examiner:
Level:
Date:
Reviewed By:
c Level:
25Date:  
,-o_
Finalejw V/
Date ANII Bview Date Item No.
2SLv9  
.cJ 4
C05.070.001 6X f


Attachment C Page s of . ?
Attachment C Page s of. ?
DUKE POWER COMPANY                                                   l       NDE-91-1 Limited Examination Coverage Worksheet                                                 ..
DUKE POWER COMPANY l
_  _  _  _                                              I        Revision O Examination Volume/Area Defined Base Metal       N?   Weld                 0 Near Surface               E Bolting     &deg;     Inner Radius Area Calculation                                             Volume Calculation
NDE-91-1 Limited Examination Coverage Worksheet I
Revision O Examination Volume/Area Defined Base Metal N?
Weld 0 Near Surface E Bolting  
&deg; Inner Radius Area Calculation Volume Calculation
* Surface Examination( NDE-35)
* Surface Examination( NDE-35)
Required area - 1.375 in.(w) X 43.98 in.(l) = 60.47 in.
Required area - 1.375 in.(w) X 43.98 in.(l) = 60.47 in.
Line 865: Line 2,061:
Area inspected - 1.375 in.(w) X 28.0 in.(i) = 38.5 in.
Area inspected - 1.375 in.(w) X 28.0 in.(i) = 38.5 in.
sq.
sq.
Coverage Calculations Area           Length       Volume             Volume Beam         Examined         Examined     Examined           Required Scan #Angle       Direction         (sq.in.)         (in.)       (cu.in.)         .,eu.in.)   Percent Coverage N/A     N/A         N/A         38.5/60.47                                               q.           63.66 Item No:         C05.070.001 Prepared By: Daryl L Robinson       'az1       ,            Level:       II                     Date: 8/2/2002 Reviewed By:     77j73,                                     Level:   _ZZ7r.                     Date: ?/13/OZ-
Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Scan #Angle Direction (sq.in.)
(in.)
(cu.in.)  
.,eu.in.)
Percent Coverage N/A N/A N/A 38.5/60.47
: q.
63.66 Item No:
C05.070.001 Prepared By: Daryl L Robinson  
'az1 Level:
II Date: 8/2/2002 Reviewed By:
: 77j73, Level:
_ZZ7r.
Date: ?/13/OZ-


Attachment D
L s
                                                                                              -     L s IDENT           PIECE               D AM.           THICK.             C.                                                                                             Page I of 1 NO.                             DNo.,THCK.                             QT                 NTI.
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  . --jm'.
,d I
,d          'WP2-2           I TO I                 N/A           6.188             I             i I            1 vPi-2           2 TO 2               N/A           6.188           2                 I WPI-3             3 TO 3               N/A           6.188             3       t           1 WP3-1           I TO 2           84'I, D.         6.188             4             3                                 P                          63-4(W-X        QUADY WP3-2           2 TO 3           84!' 1. D.       6.188           5                 I F
IDENT PIECE D AM.
            ,WP4           3TO4841             84" I.D.         6.188             6             _
THICK.
WP6             40 TO 41         84       1.D. 13.563           8                 I 82              WP7-1       4TO4Oa41                   N/A         6.188             9             _
C.
WP7-2       4TO 4Oa4                   N/A         6.188           30                 6   v WP15             6 TO 8                             4.750                           3331 WP23             8 TO 37         101*' NPS         1.063         32               3
NO.
                        -1                  1                  1 vP                                              P63-         Y-Z     UDAT WP26-1            30 TO 4                            6.186          37                I WP26-2            30 TO 4                            6.188          40              _
DNo.,THCK.
                                                                                                                        \TOP VIEW WP26-3            30 TO 4                            6.188          412 WP26-4            30 TO I                            6.188          42                6 WP26-5            30 TO I                            6.188          45                1L
QT
                                                                                                                        \                     \WP63-4 (W-X QUADRANT)
'WP2-2 I TO I N/A 6.188 I
WP26-6            30 TO I                            6.188          110              81                  .\                         oWP63-5         (Y-Z oUADRANT)
i 1vPi-2 2 TO 2 N/A 6.188 2
I WPI-3 3 TO 3 N/A 6.188 3 t 1
WP3-1 I TO 2 84'I, D.
6.188 4 3 WP3-2 2 TO 3 84!' 1. D.
6.188 5
I
,WP4 3TO4841 84" I.D.
6.188 6
WP6 40 TO 41 84 1.D.
13.563 8
I WP7-1 4TO4Oa41 N/A 6.188 9
WP7-2 4TO 4Oa4 N/A 6.188 30 6
WP15 6 TO 8 4.750 331 3
NTI.
Attachment D Page I of 1 F
v vP WP23 8 TO 37 101*' NPS 1.063 32 3
P 63-4(W-X QUADY P63-Y-Z UDAT 82 \\TOP VIEW
\\
\\WP63-4 (W-X QUADRANT)
.\\
oWP63-5 (Y-Z oUADRANT)
WP63-6 (Z-W QUADRANT)
WP63-6 (Z-W QUADRANT)
VWP26-7          30 TO 4                            6.188 WP28              TO 4 a 40        84 1.D.          4.750                                                            WP26-4 (W-X QUADRANT)
WP26-4 (W-X QUADRANT)
WP26-5 (Y-Z QUADRANT)
WP26-5 (Y-Z QUADRANT)
WP33-1           31 TO 5                             4.750                                                              WP26-6 (Z-W QUADRANT)
WP26-6 (Z-W QUADRANT)
WP33-2           31 TO 5                             4.750 AV_
-1 1
WP33-3           31 TO 5                             4.750 WP34               9 TO 5                             4.750 WP45             45TO 9               4"NPS         0.750 WP63-1 WP63-2 42 TO 30 42 TO 30 1.1875
1 WP26-1 30 TO 4 6.186 37 I
                                                                  *1.1875 0
WP26-2 30 TO 4 6.188 40 WP26-3 30 TO 4 6.188 41 2 WP26-4 30 TO I 6.188 42 6
WP63-3           42 TO 30                             1.1875 WP63-4           42 T0 30                           1.1875 WP63-5           42 TO 30                             1.1875                                                 01                                      -    -WP7-2 (W-X QUADRANT)
WP26-5 30 TO I 6.188 45 1L WP26-6 30 TO I 6.188 110 81 VWP26-7 30 TO 4 6.188 WP28 TO 4 a 40 84 1. D.
WP63-6           42 TO 30         .                1.1875 WP7 6               I TO5         84" 1. D.         4.750                                                       r                              A--
4.750 WP33-1 31 TO 5 4.750 WP33-2 31 TO 5 4.750 WP33-3 31 TO 5 4.750 WP34 9 TO 5 4.750 WP45 45TO 9 4"NPS 0.750 WP63-1 42 TO 30 1.1875 WP63-2 42 TO 30  
WP82-X           I20 TO 3             N/A           3.500
*1.1875 WP63-3 42 TO 30 1.1875 WP63-4 42 T0 30 1.1875 WP63-5 42 TO 30 1.1875 WP63-6 42 TO 30 1.1875 WP7 6 I TO5 84" 1. D.
                                                                                                                                                                            \-,  ~      REF. DRAUIINGS WI OM 1201- 456 v2Pez-XY         110 TO 3             N/A           3.500                   WEI WP82-Y           110 TO 3             N/A           3.500       1. D.           NO-             ,  .
4.750 WP82-X I20 TO 3 N/A 3.500 v2Pez-XY 110 TO 3 N/A 3.500 WEI WP82-Y 110 TO 3 N/A 3.500
                                                                                                                    -to I
: 1. D. NO-I.r AV_
                                                                      .    .-               I.r I :f,?         .. i WP82-YZ           110 TO 3             N/A           3.500             Wp9i-tI                                             ,Ca 4         1I      r     r I 3.500 l.
0 01 -
                                                                                            , -2,11                                                                                                          !          ,J       *. I)C           L e.
-WP7-2 (W-X QUADRANT)
I -I IIILt
\\-, ~
              .WP82--Z   II    220 TO 3 1           N/A     .
REF. DRAUIINGS r
I        WP9I                       7.              -        --
A--
I                   I                              HI-                             .'---.
WI OM 1201-456
WP82-ZW I             0TO 3             N/A           3.500       IWP9I             4.         4                   IIjC8                      PRESSURIZER WELD OUTLINE 1
-to II :f,?  
7-/14g-%-l 7-2-3-i WP82-W            10 TO 3              N/A          3.500            w P6-7'.-               .f_.
.. i WP82-YZ 110 TO 3 N/A 3.500 Wp9i-tI
VWD Fwn APPD DWG NO.
,Ca I
: 1. D\l
4 1
                                                                                          . V_        *,. _      _
r r
                                            .                              .Nh REV WP82-WX           110 TO 3             N/A           3.500 DATE DATE                                                       ISI-OCN2-002
: l.  
_._                      1I........                                              . _  .
, J I)C
: e.
L I
I I  
.WP82--Z I 220 TO 3 1 N/A 3.500 WP9I -2,11 7 I
I HI-I -I IIILt WP82-ZW I 0TO 3 N/A 3.500 IWP9I 4. 4 I IjC8 PRESSURIZER WELD OUTLINE WP82-W 110 TO 3 N/A 3.500 7-/14g-%-l 7-2-3-i wP6-7'.-  
.f_.
V_
VWD
: 1. D\\l
.Nh Fwn WP82-WX 110 TO 3 N/A 3.500 DATE APPD DATE DWG NO.
REV ISI-OCN2-002 1I........  


Request for Relief 04-ON-003 Limited Examinations Associated With Reactor Vessel Welds 2EOC 19
Request for Relief 04-ON-003 Limited Examinations Associated With Reactor Vessel Welds 2EOC 19
Line 908: Line 2,147:
Relief Request 04-ON-003 Page 1 of 7 Proposed Relief in Accordance with 10 CFR 50.55a(g)(5)(iii)
Relief Request 04-ON-003 Page 1 of 7 Proposed Relief in Accordance with 10 CFR 50.55a(g)(5)(iii)
Inservice Inspection Impracticality Duke Energy Corporation Oconee Nuclear Station - Unit 2 (EOC-19)
Inservice Inspection Impracticality Duke Energy Corporation Oconee Nuclear Station - Unit 2 (EOC-19)
Third 10-Year Interval - Inservice Inspection Plan Interval Start Date= 12-16-1994 Interval End Date=9-9-2004 ASME Section XI Code - 1989 Edition with No Addenda
Third 10-Year Interval - Inservice Inspection Plan Interval Start Date= 12-16-1994 Interval End Date=9-9-2004 ASME Section XI Code - 1989 Edition with No Addenda I. L1. & Ill.
                                                      & Ill.
IV.
I.L1.                IV.               V.             VI.           VIl.
V.
Limited           System I       Code Requirement from Which Basis for Relief   Alternate   Justification. Implementation Area/Weld   Component for Which         Relief is Requested:                   Examinations or for Granting     Schedule I.D.     Relief is Requested:   100% Exam Volume Coverage                       Testing         Relief Number       Area or Weld to be             Exam Category Examined                     Item No.
VI.
VIl.
Limited System I Code Requirement from Which Basis for Relief Alternate Justification.
Implementation Area/Weld Component for Which Relief is Requested:
Examinations or for Granting Schedule I.D.
Relief is Requested:
100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.
Fig. No.
Fig. No.
Limitation Percentage 2-RPV-WR34         NC System             Exam Category B-A     See Paragraph     See Paragraph See Paragraph   See Paragraph Reactor Vessel         Item No. B01.01 1.004         "A"             "F'             G" Lower Shell to Lower         Fig. IWB-2500-1 Head Ring         36% Volume Coverage due to Circumferential Weld           limited scanning.
Limitation Percentage 2-RPV-WR34 NC System Exam Category B-A See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B01.01 1.004 "A"  
2-RPV-WR35         NC System             Exam Category B-A     See Paragraph     See Paragraph See Paragraph   See Paragraph Reactor Vessel         Item No. B01.021.003         "A"             6"FtG'         "G" Lower Head Cap to           Fig. IWB-2500-3 Lower Head Ring       42% Volume Coverage due to Circumferential Weld           limited scanning.
"F'  
2-RPV-WRI3         NC System               Exam Category B-D     See Paragraph     See Paragraph See Paragraph   See Paragraph Reactor Vessel         Item No. B03.090.001         "B"             "F'           "H" Outlet Nozzle-to-Vessel       Fig. IWB-2500-7(a)
.G" Lower Shell to Lower Fig. IWB-2500-1 Head Ring 36% Volume Coverage due to Circumferential Weld limited scanning.
Weld @ 900         82% Volume Coverage due to limited scanning.
2-RPV-WR35 NC System Exam Category B-A See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B01.021.003 "A"
6"FtG' "G"
Lower Head Cap to Fig. IWB-2500-3 Lower Head Ring 42% Volume Coverage due to Circumferential Weld limited scanning.
2-RPV-WRI3 NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B03.090.001 "B"  
"F' "H"
Outlet Nozzle-to-Vessel Fig. IWB-2500-7(a)
Weld @ 900 82% Volume Coverage due to limited scanning.
(UT from vessel I.D.)
(UT from vessel I.D.)
2-RPV-           NC System               Exam Category B-D     See Paragraph     See Paragraph See Paragraph   See Paragraph WR13A         Reactor Vessel         Item No. B03.090.002         "B"             "Fs           "H""
2-RPV-NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph WR13A Reactor Vessel Item No. B03.090.002 "B"  
1 Outlet Nozzle-to-Vessel       Fig. IWB-2500-7(a)
"Fs "H""
Weld @ 270&deg;         82% Volume Coverage due to limited scanning.
1 Outlet Nozzle-to-Vessel Fig. IWB-2500-7(a)
Weld @ 270&deg; 82% Volume Coverage due to limited scanning.
(UT from vessel I.D.)
(UT from vessel I.D.)


Relief Request 04-ON-003 Page 2 of 7 II. & III.                 IV.             V.             VI.           VII.
Relief Request 04-ON-003 Page 2 of 7 II. & III.
Limited         System /       Code Requirement from Which     Basis for Relief   Alternate   Justification Implementation Area/Weld Component for Which         Relief Is Requested:                       Examinations or for Granting     Schedule I.D. Relief is Requested: 100% Exam Volume Coverage                           Testing         Relief Number     Area or Weld to be             Exam Category Examined                     Item No.
IV.
V.
VI.
VII.
Limited System /
Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/Weld Component for Which Relief Is Requested:
Examinations or for Granting Schedule I.D.
Relief is Requested:
100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.
Fig. No.
Fig. No.
Limitation Percentage 2-RPV-WR54       NC System               Exam Category B-D         See Paragraph   See Paragraph See Paragraph See Paragraph Reactor Vessel           Fig. IWB-2500-7(a)             "C"             "F"           "H" Core Flood           Item No. B03.090.007 Nozzle-to-Vessel Weld       (UT from vessel I.D.)
Limitation Percentage 2-RPV-WR54 NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Fig. IWB-2500-7(a)  
                      @ 00         81 % Volume Coverage due to limited scanning.
"C" "F"  
2-RPV-         NC System             Exam Category B-D         See Paragraph   See Paragraph See Paragraph See Paragraph WR54A         Reactor Vessel           Fig. IWB-2500-7(a)             "C"             "F'           "H1" Core Flood           Item No. B03.090.008 Nozzle-to-Vessel Weld         (UT from vessel ID)
"H" Core Flood Item No. B03.090.007 Nozzle-to-Vessel Weld (UT from vessel I.D.)
                    @ 180&deg;         81 % Volume Coverage due to limited scanning.
@ 00 81 % Volume Coverage due to limited scanning.
2-RPV-WR54         NC System             Exam Category B-D         See Paragraph   See Paragraph See Paragraph See Paragraph Reactor Vessel         Item No. B03.100.007             "D"             "OF'H'         "H" Core Flood Nozzle         Fig. IWB-2500-7(a)
2-RPV-NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph WR54A Reactor Vessel Fig. IWB-2500-7(a)  
Inside Radius Section 52% Volume Coverage due to
"C" "F'  
_@ 00               limited scanning.
"H1" Core Flood Item No. B03.090.008 Nozzle-to-Vessel Weld (UT from vessel ID)
2-RPV-         NC System               Exam Category B-D         See Paragraph   See Paragraph See Paragraph See Paragraph WR54A         Reactor Vessel         Item No. B03.100.008             "D"             "F'           "H"             "3" Core Flood Nozzle         Fig. IWB-2500-7(a)
@ 180&deg; 81 % Volume Coverage due to limited scanning.
Inside Radius Section 52% Volume Coverage due to
2-RPV-WR54 NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B03.100.007 "D"  
                    @ 1800                 limited scanning.
"OF'H' "H"
2-53A-8-63       NC System               Exam Category B-J         See Paragraph   See Paragraph See Paragraph See Paragraph Reactor Vessel         Item No. B09.01 1.011IE""F'                                       "H""3" Core Flood             Fig. IWB-2500-8(c)
Core Flood Nozzle Fig. IWB-2500-7(a)
Safe-End to Pipe   76% Volume Coverage due to Circumferential Weld           limited scanning.
Inside Radius Section 52% Volume Coverage due to
                      @ 00
_@ 00 limited scanning.
2-RPV-NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph WR54A Reactor Vessel Item No. B03.100.008 "D"  
"F' "H"  
"3" Core Flood Nozzle Fig. IWB-2500-7(a)
Inside Radius Section 52% Volume Coverage due to
@ 1800 limited scanning.
2-53A-8-63 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.01 1.011 IE""F' "H""3" Core Flood Fig. IWB-2500-8(c)
Safe-End to Pipe 76% Volume Coverage due to Circumferential Weld limited scanning.
@ 00


Relief Request 04-ON.003 Page 3 of 7 II. & III.               IV.               V.           VI.           VII.
Relief Request 04-ON.003 Page 3 of 7 II. & III.
Limited               System I           Code Requirement from Which     Basis for Relief     Alternate   Justification Implementation Area/Weld     Component for Which               Relief is Requested:                         Examinations or for Granting     Schedule I.D.         Relief is Requested:       100% Exam Volume Coverage                             Testing         Relief Number           Area or Weld to be                 Exam Category Examined                           Item No.
IV.
V.
VI.
VII.
Limited System I Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/Weld Component for Which Relief is Requested:
Examinations or for Granting Schedule I.D.
Relief is Requested:
100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.
Fig. No.
Fig. No.
Limitation Percentage 2-53A-8-63           NC System                   Exam Category B-J         See Paragraph     See Paragraph See Paragraph See Paragraph Reactor Vessel             Item No. B09.01 1.01 1A           "E"         M       FF           "H"" J Core Flood                   Fig. IWB-2500-8(c)
Limitation Percentage 2-53A-8-63 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.01 1.01 1A "E"
Safe-End to Pipe         76% Volume Coverage due to Circumferential Weld                 limited scanning.
M FF "H"" J Core Flood Fig. IWB-2500-8(c)
                          @ 00             (UT from nozzle I.D. in lieu of PT from O.D.)
Safe-End to Pipe 76% Volume Coverage due to Circumferential Weld limited scanning.
2-53A-8-64           NC System                   Exam Category B-J         See Paragraph     See Paragraph See Paragraph See Paragraph Reactor Vessel               Item No. B09.011.013             "E"       M       I"F"           "H" Core Flood                   Fig. IWB-2500-8(c)
@ 00 (UT from nozzle I.D. in lieu of PT from O.D.)
Safe-End to Pipe         71% Volume Coverage due to Circumferential Weld               limited scanning.
2-53A-8-64 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.011.013 "E"
                        @ 1800 2-53A-8-64           NC System                   Exam Category B-J         See Paragraph     See Paragraph See Paragraph See Paragraph Reactor Vessel             Item No. B09.011.013A             "E"               "F"           "H             1,,
M I"F" "H"
Core Flood                   Fig. IWB-2500-8(c)
Core Flood Fig. IWB-2500-8(c)
Safe-End to Pipe         71 % Volume Coverage due to Circumferential Weld               limited scanning.
Safe-End to Pipe 71% Volume Coverage due to Circumferential Weld limited scanning.
                        @ 1800             (UT from nozzle I.D. in lieu of PT from O.D.)
@ 1800 2-53A-8-64 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.011.013A "E"  
"F" "H
1,,
Core Flood Fig. IWB-2500-8(c)
Safe-End to Pipe 71 % Volume Coverage due to Circumferential Weld limited scanning.
@ 1800 (UT from nozzle I.D. in lieu of PT from O.D.)
Note: The welds in the above table were inspected in October of 2002.
Note: The welds in the above table were inspected in October of 2002.
Note: See Attachment A for a drawing on all the welds listed above.
Note: See Attachment A for a drawing on all the welds listed above.


Relief Request 04-ON-003 Page 4 of 7 IV. Basis for Relief (See Attachment A for area/weld locations.)
Relief Request 04-ON-003 Page 4 of 7 IV. Basis for Relief (See Attachment A for area/weld locations.)
ParagraphA:
Paragraph A:
During the ultrasonic examination of welds 2-RPV-WR34 and 2-RPV-WR35, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 36% and 42% respectively.
During the ultrasonic examination of welds 2-RPV-WR34 and 2-RPV-WR35, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 36% and 42% respectively.
Limitations were caused by the core guide lugs & flow stabilizers for WR34 and incore nozzles & flow stabilizers for WR35 that restrict the scanning surface as shown on the Attachment A, B, and C drawings. The percentage of coverage reported represents the aggregate coverage from all scans. Some areas received no coverage at all while some areas were completely covered from four directions. 13.3% of the near surface (inner 15 % of wall thickness) volume of the weld and base material was covered in four scan directions using a 70&deg; beam angle. 76.6% of the near surface volume of the weld and base material was covered with a 700 beam angle from one axial and circumferential direction. Only 10.1% of the near surface volume of the weld and base material received no coverage. There were no recordable indications found in the areas that were examined for either of these two welds. In order to achieve more coverage the core guide lugs, incore nozzles and flow stabilizers would have to be moved to allow greater access for scanning, which is impractical.
Limitations were caused by the core guide lugs & flow stabilizers for WR34 and incore nozzles & flow stabilizers for WR35 that restrict the scanning surface as shown on the Attachment A, B, and C drawings. The percentage of coverage reported represents the aggregate coverage from all scans. Some areas received no coverage at all while some areas were completely covered from four directions. 13.3% of the near surface (inner 15 % of wall thickness) volume of the weld and base material was covered in four scan directions using a 70&deg; beam angle. 76.6% of the near surface volume of the weld and base material was covered with a 700 beam angle from one axial and circumferential direction. Only 10.1% of the near surface volume of the weld and base material received no coverage. There were no recordable indications found in the areas that were examined for either of these two welds. In order to achieve more coverage the core guide lugs, incore nozzles and flow stabilizers would have to be moved to allow greater access for scanning, which is impractical.
(See Attachment B for drawings on Weld 1-RPV-WR34)
(See Attachment B for drawings on Weld 1-RPV-WR34)
(See Attachment C for a drawing on Weld 1-RPV-WR35)
(See Attachment C for a drawing on Weld 1-RPV-WR35)
ParagraphB:
Paragraph B:
During the ultrasonic examination of welds 2-RPV-WR13 and 2-RPV-WR13A, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 82%. Limitations were caused by the outlet nozzle boss that restricts the scanning surface both from the nozzle I.D. and the vessel I.D. The percentage of coverage reported represents the aggregate coverage from all scans. The weld and adjacent base material received 100% coverage from the nozzle bore with 15&deg; and 450 beam angles. Scans from the vessel shell side resulted in 42% coverage of the weld and base material with a 450 beam angle of the outer 85% of the vessel wall and coverage of the inner 15% with a 700 beam angle. There were no recordable indications found in the areas that were examined for item number B03.090.001. There were 21 recordable indications found during examination of item number B03.090.002. All of the indications were detected from the nozzle bore and were determined to be acceptable, sub-surface flaws. In order to achieve more coverage, the outlet nozzle boss would have to be moved to allow greater access for scanning, which is impractical.
During the ultrasonic examination of welds 2-RPV-WR13 and 2-RPV-WR13A, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 82%. Limitations were caused by the outlet nozzle boss that restricts the scanning surface both from the nozzle I.D. and the vessel I.D. The percentage of coverage reported represents the aggregate coverage from all scans. The weld and adjacent base material received 100% coverage from the nozzle bore with 15&deg; and 450 beam angles. Scans from the vessel shell side resulted in 42% coverage of the weld and base material with a 450 beam angle of the outer 85% of the vessel wall and coverage of the inner 15% with a 700 beam angle. There were no recordable indications found in the areas that were examined for item number B03.090.001. There were 21 recordable indications found during examination of item number B03.090.002. All of the indications were detected from the nozzle bore and were determined to be acceptable, sub-surface flaws. In order to achieve more coverage, the outlet nozzle boss would have to be moved to allow greater access for scanning, which is impractical.
(See Attachment D for drawing on both welds)
(See Attachment D for drawing on both welds)
Line 968: Line 2,248:
The Core Flood Nozzles of a B&W 177 plant have several obstructions which limit ultrasonic examination coverage.
The Core Flood Nozzles of a B&W 177 plant have several obstructions which limit ultrasonic examination coverage.
In order of significance these are:
In order of significance these are:
* The flow restrictor which is welded to the inner bore of the nozzle.
The flow restrictor which is welded to the inner bore of the nozzle.
* The inlet nozzles located 300 on either side of each core flood nozzle.
The inlet nozzles located 300 on either side of each core flood nozzle.
* The taper above the core flood nozzles associated with the Core Support Ledge.
The taper above the core flood nozzles associated with the Core Support Ledge.
The percentage of exam volume coverage reported represents the aggregate coverage as follows:
The percentage of exam volume coverage reported represents the aggregate coverage as follows:


Relief Request 04-ON-003 Page 5 of 7
Relief Request 04-ON-003 Page 5 of 7 Weld and adjacent base material = 81% scanned parallel to the weld centerline in two directions and perpendicular to the weld centerline from one direction.
* Weld and adjacent base material = 81% scanned parallel to the weld centerline in two directions and perpendicular to the weld centerline from one direction.
Inner 15% from the vessel ID = 97%, in four orthogonal directions.
* Inner 15% from the vessel ID = 97%, in four orthogonal directions.
There were no recordable indications found in the areas that were examined for item number B03.090.007. There was one recordable indication found during examination of item number B03.090.008. This indication was detected from the vessel ID and was determined to be an acceptable, sub-surface flaw. In order to achieve more coverage, the inlet nozzles would have to be moved and the taper on the flange would have to be redesigned to allow greater access for scanning, which is impractical. In addition, because of the proximity of the flow restrictors no scanning was performed from the nozzle I.D. (0% examination coverage). In order to achieve more coverage, the flow restrictor would have to be moved to allow access for scanning, which is impractical.
There were no recordable indications found in the areas that were examined for item number B03.090.007. There was one recordable indication found during examination of item number B03.090.008. This indication was detected from the vessel ID and was determined to be an acceptable, sub-surface flaw. In order to achieve more coverage, the inlet nozzles would have to be moved and the taper on the flange would have to be redesigned to allow greater access for scanning, which is impractical. In addition, because of the proximity of the flow restrictors no scanning was performed from the nozzle I.D. (0% examination coverage). In order to achieve more coverage, the flow restrictor would have to be moved to allow access for scanning, which is impractical.
(See Attachment E for a drawing on the core flood nozzle)
(See Attachment E for a drawing on the core flood nozzle)
Line 994: Line 2,273:
Program. Although limited scanning prevented 100% coverage of the examination volume, the amount of coverage obtained for these examinations along with the additional volumetric and visual examinations (listed in the next paragraph) provides an acceptable level of quality and integrity. (See Paragraph I for additional justification.)
Program. Although limited scanning prevented 100% coverage of the examination volume, the amount of coverage obtained for these examinations along with the additional volumetric and visual examinations (listed in the next paragraph) provides an acceptable level of quality and integrity. (See Paragraph I for additional justification.)
In addition to the Category B-A welds that relief is being sought for, there were 4 circumferential Category B-A welds that were inspected and all obtained greater than 90 % coverage and there were no reportable indications found during the inspections. Visual examinations were also performed as part of the reactor vessel inspections (item number B 13.010.001 and B 13.050.001) and were found to be without any reportable indications.
In addition to the Category B-A welds that relief is being sought for, there were 4 circumferential Category B-A welds that were inspected and all obtained greater than 90 % coverage and there were no reportable indications found during the inspections. Visual examinations were also performed as part of the reactor vessel inspections (item number B 13.010.001 and B 13.050.001) and were found to be without any reportable indications.
ParagraphH:
Paragraph H:
Ultrasonic examination of areas/welds for item numbers B03.090, B03.100, and B09.011 were conducted using personnel, equipment and procedures qualified in accordance with ASME Section XI, Appendix I, 1989 Edition with no Addenda. Inspection of B09.011 welds from the outside diameter is not a viable alternate due to the dose that would be received to prepare and perform the inspections. Relief Requests ONS-001 and ONS-002 were written to perform UT from the ID surface in lieu of a surface exam from the OD surface of all reactor vessel nozzles to pipe welds due to the radiation exposure that is involved with performing inspections from the OD surface. Relief for ONS-001 and ONS-002 was granted on an SER dated 11-15-95. Although limited scanning prevented .100%
Ultrasonic examination of areas/welds for item numbers B03.090, B03.100, and B09.011 were conducted using personnel, equipment and procedures qualified in accordance with ASME Section XI, Appendix I, 1989 Edition with no Addenda. Inspection of B09.011 welds from the outside diameter is not a viable alternate due to the dose that would be received to prepare and perform the inspections. Relief Requests ONS-001 and ONS-002 were written to perform UT from the ID surface in lieu of a surface exam from the OD surface of all reactor vessel nozzles to pipe welds due to the radiation exposure that is involved with performing inspections from the OD surface. Relief for ONS-001 and ONS-002 was granted on an SER dated 11-15-95. Although limited scanning prevented.100%
coverage of the examination volume, the amount of coverage obtained for these examinations provides an acceptable level of quality and integrity. (See Paragraph I for additional justification.)
coverage of the examination volume, the amount of coverage obtained for these examinations provides an acceptable level of quality and integrity. (See Paragraph I for additional justification.)
Paragraph I:
Paragraph I:
Line 1,009: Line 2,288:
B. W. Carney, Jr. (Oconee Engineering) provided part of Section VI.
B. W. Carney, Jr. (Oconee Engineering) provided part of Section VI.
Larry C. Keith (Oconee ISI Plan Manager) compiled the remaining sections.
Larry C. Keith (Oconee ISI Plan Manager) compiled the remaining sections.
Sponsored By:       gc         Ufl_ C.                                           Date   3-_         ____e Approved By:         k                                                             D       __________Date__________
Sponsored By:
gc Ufl_ C.
Date 3-_
____e Approved By:
k D
__________Date__________


pagef of AI Attachment
Attachment A pagef of I
                          'DEEP END OF         W CPS TAMCLT 12         =2'COA     W             CP DA   0
'DEEP END OF W CPS TAMCLT 12  
                                                        '~ INOZW__X SFOW        CPS TMRCEIS
=2'COA W CP DA 0
..Z-   INOZOZ-.,
SFOW
2-5M               OXAA1LS1U Z-f1Pv-ontoo801           011.001 WastA 1oIAI W23         a001.01     1.501 I       O      .. a.2-,
'~
00"l0 so~aa               2-fy-C0
INOZW__X CPS TMRCE IS INOZOZ-.,
* I I Attachment B g Pages    of  7 OCONEE-2 APPENDIX VIII EXAMINATION COVERAGE FOR WELD:                                        W09 2-RPV-WR34 B01.0110.004 SCAN PLAN DWG NO.: 6014932E-02 AGGREGATE COVERAGE OBTAINED:                                  36%
..Z-2-5M OXAA1LS1U Z-f1Pv-ontoo801 011.001 WastA 1oIAI W23 a001.01 1.501 I
Zone Coverage Obtained Weld: 30%                                                        Adjacent Base Metal: 38%
a.2-,
                                            ~~uitiftii              ID Weld Length:      536.03 In.
O 00"l0 so~aa 2-fy-C0
Area Measurement                                          Volume Calculation 4.12  sq. In. Weld: Near Surface                  2208.4 cu. in.
Weld: Near Surface 7.17  sq. In. Weld: Balance of Volume                h 3843.3 cu. n.
Weld: Balance of Volume 8.05  sq.iIn. Base Metal: NearSurface              4315.0 cu.In.
Base Metal: NearSurface 39.54  sq. In. Base Metal: Balance of Volume      21194.6 cu. In.
Base Metal: Balance of Volume WELD Weld (Near Surfacegiegoon B.C--It)
Exam.                  Area      Length    Volume      Volume Angle      Beam      Examined Examined Examined. Required            Percent Entry        (deg.)    Direction (sq. In.)      (on.)    (cu. In.)    (cu. in.) Examined I        70L          11          4.12        71.47      294.5        294.5  100%
2        70L        12          4.12        71.7      294.5        294.5  100%
3        70L          3          4.12        71.47      294.5        294.5  100%
4        70L          4          4.12        71.47      294.5        294.5  100%
5 5      70L          11          4.12      205.48      846.6        846.6  100%
6        70L          12          0.00      205.48          0.0      846.6    0%
7        70L          3          .4.12      205.48      846.6        846.6  100%
8        70L          4          0.00      205.48          0.0      846.6    0%
9        70L      11              0.00      259.08          0.0    1067.4      0%
10        70L        12          0.00      259.08          0.0    1067A      0%
11        70L          3          0.00      259.08          0.0    1067A      0%
12        70L          4          0.00      259.08          0.0    1067.4      0%
Totals:      2871.0      8833.8    33%
Weld (Balance of Volume Region G-HI-iJ)
Exam.                  Area      Length    Volume      Volume Angle      Beam      Examined Examined Examined Required            Percent Entry        (deg.)    Direction (sq. In.)        in.)    (cu. in.)    (cu. In.) Examined 1        45L      11            7.17        71A7      512.4        512.4  100%
2        45L          12          7.17        71.47      512.4        512.4  100%
3        45L          3          7.17        71A7      512.4        512.4  100%
4        45L          4          7.17        71.47      512.4        512.4  100%
5        45L      11            3.03      205.48      622.6      1473.3    42%
6        45L          12          0.00      205.48          0.0    1473.3      0%
7        45L          3          0.00      205.48          0.0    1473.3      0%
8        45L          4          7.17      205.48    1473.3        1473.3  100%
9        45L        11            0.00. 259.08          0.0    1857.6      0%
10        45L        12          0.00      259.08          0.0    1857.6      0%
11        45L          3          0.00      259.08          0.0    1857.6      0%
12        45L          4          0.00      259.08          0.0    1857.6      0%
13        45S        11            7.17        71.47      512.4        512.4  100%
14        45S        12          7.17        71.47      512.4        512.4  100%
15        45S          3          7.17        71.47      52          512.4  100%
16      45S          4          7.17        71.47      512.4        512.4  100%
17        45S        11          6.42      205.48    1319.2      1473.3    90%
18        45S          12          0.00      205.48          0.0    1473.3      0%
19        45S          3          0.00      205A8          0.0      1473.3    0%
20        45S          4          7.17      205.48      1473.3      1473.3  100%
21      45S          11          0.00      259.08          0.0      1857.6    0%
22        45S          12          0.00      259.08          0.0      1857.6    0%
23        45S          3          0.00      259.08          0.0    1857.6    0%
24        45S          4          0.00      259.08          0.0    1857.6    0%
Totals:      8988.0 30746.7          29%


                                                                                  ' Attachment B Page3   of 7 BASE METAL                                                             SHEET - 2 Adjacent Base Metal (Near Surface Region A-84-L and C-D-E-H)
I I Attachment B g
Exam.                 Area     Length     Volume     Volume Angle     Beam     Examined Examined Examined Required Percent Entry # (deg.)   Direction (sq. In.)   (in.)   (cu. In.)   (cu. in.) Examined I   70L         11         8.05     71.47. 575.3       575.3   100%
Pages of 7 OCONEE-2 APPENDIX VIII EXAMINATION COVERAGE FOR WELD:
2   70L         3         8.05     71A7 - 575.3         575.3   100%
2-RPV-WR34 B01.0110.004 SCAN PLAN DWG NO.: 6014932E-02 AGGREGATE COVERAGE OBTAINED:
3   70L         11         7.31   205.48     1502.1     1654.1     91%
W09 36%
4   70L         3         5.62   205.48     1154.8     1654.1     70%
Zone Coverage Obtained Weld: 30%
5   70L         11         0.00   259.08         0.0   2085.6     0%
Adjacent Base Metal: 38%
6   70L         3         0.00   259.08         0.0   2085.6     0%
~~uitiftii ID Weld Length:
Totals:   3807.5     8630.1     44%
536.03 In.
Area Measurement Volume Calculation Weld: Near Surface 4.12 sq. In.
Weld: Near Surface 2208.4 cu. in.
Weld: Balance of Volume 7.17 sq. In.
Weld: Balance of Volume 3843.3 cu.
h n.
Base Metal: NearSurface 8.05 sq.iIn.
Base Metal: NearSurface 4315.0 cu.In.
Base Metal: Balance of Volume 39.54 sq. In.
Base Metal: Balance of Volume 21194.6 cu. In.
WELD Weld (Near Surfacegiegoon B.C--It)
Exam.
Area Length Volume Volume Angle Beam Examined Examined Examined. Required Percent Entry (deg.)
Direction (sq. In.)
(on.)
(cu. In.)
(cu. in.)
Examined I
70L 1 1 4.12 71.47 294.5 294.5 100%
2 70L 12 4.12 71.7 294.5 294.5 100%
3 70L 3
4.12 71.47 294.5 294.5 100%
4 70L 4
4.12 71.47 294.5 294.5 100%
5 5 70L 11 4.12 205.48 846.6 846.6 100%
6 70L 12 0.00 205.48 0.0 846.6 0%
7 70L 3
.4.12 205.48 846.6 846.6 100%
8 70L 4
0.00 205.48 0.0 846.6 0%
9 70L 11 0.00 259.08 0.0 1067.4 0%
10 70L 12 0.00 259.08 0.0 1067A 0%
11 70L 3
0.00 259.08 0.0 1067A 0%
12 70L 4
0.00 259.08 0.0 1067.4 0%
Totals:
2871.0 8833.8 33%
Weld (Balance of Volume Region G-HI-i J)
Exam.
Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry (deg.)
Direction (sq. In.)
in.)
(cu. in.)
(cu. In.)
Examined 1
45L 11 7.17 71A7 512.4 512.4 100%
2 45L 12 7.17 71.47 512.4 512.4 100%
3 45L 3
7.17 71A7 512.4 512.4 100%
4 45L 4
7.17 71.47 512.4 512.4 100%
5 45L 11 3.03 205.48 622.6 1473.3 42%
6 45L 12 0.00 205.48 0.0 1473.3 0%
7 45L 3
0.00 205.48 0.0 1473.3 0%
8 45L 4
7.17 205.48 1473.3 1473.3 100%
9 45L 11 0.00.
259.08 0.0 1857.6 0%
10 45L 12 0.00 259.08 0.0 1857.6 0%
11 45L 3
0.00 259.08 0.0 1857.6 0%
12 45L 4
0.00 259.08 0.0 1857.6 0%
13 45S 11 7.17 71.47 512.4 512.4 100%
14 45S 12 7.17 71.47 512.4 512.4 100%
15 45S 3
7.17 71.47 52 512.4 100%
16 45S 4
7.17 71.47 512.4 512.4 100%
17 45S 11 6.42 205.48 1319.2 1473.3 90%
18 45S 12 0.00 205.48 0.0 1473.3 0%
19 45S 3
0.00 205A8 0.0 1473.3 0%
20 45S 4
7.17 205.48 1473.3 1473.3 100%
21 45S 11 0.00 259.08 0.0 1857.6 0%
22 45S 12 0.00 259.08 0.0 1857.6 0%
23 45S 3
0.00 259.08 0.0 1857.6 0%
24 45S 4
0.00 259.08 0.0 1857.6 0%
Totals:
8988.0 30746.7 29%
 
' Attachment B Page3 of 7 BASE METAL SHEET - 2 Adjacent Base Metal (Near Surface Region A-84-L and C-D-E-H)
Exam.
Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry #
(deg.)
Direction (sq. In.)
(in.)
(cu. In.)
(cu. in.)
Examined I
70L 11 8.05 71.47.
575.3 575.3 100%
2 70L 3
8.05 71A7 575.3 575.3 100%
3 70L 11 7.31 205.48 1502.1 1654.1 91%
4 70L 3
5.62 205.48 1154.8 1654.1 70%
5 70L 11 0.00 259.08 0.0 2085.6 0%
6 70L 3
0.00 259.08 0.0 2085.6 0%
Totals:
3807.5 8630.1 44%
Adjacent Base Metal (Balance of Volume Region E-F-G-t and IJ-K-L)
Adjacent Base Metal (Balance of Volume Region E-F-G-t and IJ-K-L)
Exam.                 Area     Length     Volume     Volume Angle     Beam     Examined Examined Examined Required Percent Entry# (deg.)   Direction (sq. In.)   (On.)     (cu. In.)   (cu. In.) Examined 1   45L         11         39.54     71.47   2825.9     2825.9 100%
Exam.
2   45L         3       39.54       71.47   2825.9     2825.9   100%
Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry#
3   45S         11         39.54     71A7     2825.9     2825.9 100%
(deg.)
4   45S         3         39.54     71A7     2825.9     2825.9   100%
Direction (sq. In.)
5   45L         11         22.67   205A8     46582       8124.7     57%
(On.)
6   45L         3       26.88     205.48     5523.3     8124.7     68%
(cu. In.)
7   45S         11         32.19   205.48     6614.4     8124.7     81%
(cu. In.)
8   45S         3         18.25   205.48     3750.0     8124.7     46%
Examined 1
9   45L         11         0.00   259.08         0.0, .10244.0     0%
45L 11 39.54 71.47 2825.9 2825.9 100%
10   45L         3         0.00   259.08         0.0 10244.0       0%
2 45L 3
11   45S         11         0.00   259.08         0.0 10244.0       0%
39.54 71.47 2825.9 2825.9 100%
12   45S         3         0.00   259.08         0.0   10244.0     0%
3 45S 11 39.54 71A7 2825.9 2825.9 100%
Totals. 31849.7 84778.5           38%
4 45S 3
39.54 71A7 2825.9 2825.9 100%
5 45L 11 22.67 205A8 46582 8124.7 57%
6 45L 3
26.88 205.48 5523.3 8124.7 68%
7 45S 11 32.19 205.48 6614.4 8124.7 81%
8 45S 3
18.25 205.48 3750.0 8124.7 46%
9 45L 11 0.00 259.08 0.0,.10244.0 0%
10 45L 3
0.00 259.08 0.0 10244.0 0%
11 45S 11 0.00 259.08 0.0 10244.0 0%
12 45S 3
0.00 259.08 0.0 10244.0 0%
Totals.
31849.7 84778.5 38%


I Attachment B Page q. of 7 WELD <NEAR SURFACE)t 4.12 SQ IN. (70tL)
I Attachment B Page q. of 7 WELD <NEAR SURFACE)t 4.12 SQ IN. (70tL)
WELD (BALANCE OF VOLUME),
WELD (BALANCE OF VOLUME),
3.03 SQ IN. (45*L) 6.42 SQ IN. (45'S)
3.03 SQ IN. (45*L) 6.42 SQ IN. (45'S)
                        -BASE METAL (NEAR SURFACE)i 7.31 SQ IN. (70'L)
-BASE METAL (NEAR SURFACE)i 7.31 SQ IN. (70'L)
BASE METAL (BALANCE OF VOLUME)'
BASE METAL (BALANCE OF VOLUME)'
22.67 SQ IN. (45'L) 32.19 SQ IN.
22.67 SQ IN. (45'L) 32.19 SQ IN.
                        <45.S)
<45.S)
CORE GUIDE LUG L1                   QUAN: 12 450 L
CORE GUIDE LUG L1 QUAN: 12 450L
_ i 45&deg;S 701L THIS VIEW DEPICTS ALPHA (AXIAL) SCANS FIRING DOWNWARD (DIRECTION 11)
_ i 45&deg;S 701L THIS VIEW DEPICTS ALPHA (AXIAL) SCANS FIRING DOWNWARD (DIRECTION 11)
PARTIAL SCANS DUE TO GUIDE LUGS AND FLOW STABILIZER REMNANTS W09 2-RPV-WR34 B01.011.004
PARTIAL SCANS LUGS AND FLOW REMNANTS DUE TO GUIDE STABILIZER W09 2-RPV-WR34 B01.011.004


I Attachment B Page 5 of   7 WELD (NEAR SURFACE):
I Attachment B Page 5 of 7 WELD (NEAR SURFACE):
0.00 SQ IN.
0.00 SQ IN.
WELD (BALANCE OF VOLUME):
WELD (BALANCE OF VOLUME):
0.00 SQ IN. .
0.00 SQ IN..
                        -BASE METAL (NEAR SURFACE),
-BASE METAL (NEAR SURFACE),
0.00 SQ IN.
0.00 SQ IN.
BASE METAL (BALANCE OF VOLUME)t 0.00 SQ IN.
BASE METAL (BALANCE OF VOLUME)t 0.00 SQ IN.
CORE GUIDE LUG QUAN: 12 70 0L 45 0S 45*L THIS VIEW DEPICTS ALPHA (AXIAL) SCANS FIRING UPWARD (DIRECTION 12)
CORE GUIDE LUG QUAN: 12 70 0L 45 0S 45*L THIS VIEW DEPICTS ALPHA (AXIAL)
FLOW STABILIZER REMNANT QUAN: 12 PARTIAL SCANS DUE TO GUIDE LUGS AND FLOW STABILIZER REMNANTS W09 2-RPV-WR34 B01.011.004
SCANS FIRING UPWARD (DIRECTION 12)
FLOW STABILIZER REMNANT QUAN: 12 PARTIAL SCANS LUGS AND FLOW REMNANTS DUE TO GUIDE STABILIZER W09 2-RPV-WR34 B01.011.004


I     _.
I
Itahment B Page 6 of 7 WELD (NEAR SURFACE)I 4.12 SQ IN. (70t)
_.I tahment B Page 6 of 7 WELD (NEAR SURFACE)I 4.12 SQ IN. (70t)
WELD (BALANCE OF VOLUME),
WELD (BALANCE OF VOLUME),
7.17 SQ IN. (45tL & 45*S)
7.17 SQ IN. (45tL & 45*S)
                        'BASE METAL (NEAR SURFACE):
'BASE METAL (NEAR SURFACE):
5.62 SQ IN. (70*L)
5.62 SQ IN. (70*L)
BASE METAL. (BALANCE OF VOLUME)t 18.25 SQ IN. <45*L) 26.88 SQ IN.
BASE METAL. (BALANCE OF VOLUME)t 18.25 SQ IN. <45*L) 26.88 SQ IN.
(45*S)
(45*S)
CORE GUIDE LUG QUANI 12 THIS VIEW DEPICTS THETA (CIRC) SCANS (DIRECTION 3 & 4)
CORE GUIDE LUG QUANI 12 THIS VIEW DEPICTS THETA (CIRC) SCANS (DIRECTION 3 & 4)
FLOW STABILIZER REMNANT QUAN: 12 PARTIAL SCANS DUE TO GUIDE LUGS AND FLOW STABILIZER REMNANTS W09 2-RPV-WR34 B01.011.004
FLOW STABILIZER REMNANT QUAN: 12 PARTIAL SCANS LUGS AND FLOW REMNANTS DUE TO GUIDE STABILIZER W09 2-RPV-WR34 B01.011.004


*
a a
* a a             I Attachment B I Page 7 of 7 W09 2-RPV-WR34 B01.011.004
I Attachment B I Page 7 of 7 W09 2-RPV-WR34 B01.011.004


Attachment C I Page   . of 4q OCONEE-2 APPENDIX Vill EXAMINATION COVERAGE FOR WELD:                                       WIG 2-RPV-WR35 130I.021.003 SCAN PLAN DWG NO.: 6014933E-02 AGGREGATE COVERAGE OBTAINED:                                 42%/
Attachment C I Page  
Zone Cover-age Qbtalned Weld: 40%                                                       Adjacent Base Metal: 43%
. of 4q OCONEE-2 APPENDIX Vill EXAMINATION COVERAGE FOR WELD:
Weed Length:     448.12 In.
WIG 2-RPV-WR35 130I.021.003 SCAN PLAN DWG NO.: 6014933E-02 AGGREGATE COVERAGE OBTAINED:
Area Measurement                                         Volume Calculaion Weld: Near Surface                     0.99 sq. In. Weld: Near Surface                     443.6 cu. In.
42%/
lad: Balance of Volume               6.21 sq. In. Weld: Balance of Volume             27828   cu. In.
Zone Cover-age Qbtalned Weld: 40%
Base Metal: Near Surface               6.02 sq. In. Base Metal: Near Surface             2697.7 cu. in.
Adjacent Base Metal: 43%
Base Metal: Balance of Volume         24.78 sq. In. Base Metal: Balance of Volume       11104.4 cu. In.
Wee d Length:
WELD Weld (Near Surface RegionnBC--I)
448.12 In.
Exam.                 Area     Length     Volume       Volume Angle       Beam Examined Examined Examined Required Percent Entry         (deg.)   Direction (sq. In.)     fin.)   (cu. In.) (cu. in.)     Examined 1         70L         11         0.99     168.05         166.4       166.A - 100%   FULL 2         70L 1t       I       0.0         56.01         0.0       55.4     0%   PARTIAL 3         70L     11             0.00     224.06           0.0       221.8     0%   NONE 4         70L       12           0.99     168.05         166.4       166.4   100%   FULL 5         70L       12           0.00       56.01         0.0       55.4     0%   PARTIAL 6         70L       12           0.00     224.06           0.0       221.8     0%   NONE 7         70L         3           0.99     168.05         166.4       166.4 100%     FULL 8         70L         3           0.00       56.01         0.0       55.4     0%   PARTIAL 9         70L         3           0.00     224.06           0.0       221.8     0%   NONE 10         701         4           0.99     168.05       166.4       166.4 100%     FULL 11         701         4           0.00       56.01         0.0       55.4   0%   PARTIAL 12         70L         4           0.00     224.06           0.0       221.8     0%   NONE Totals:         665.5     1774.5   38%
Area Measurement Volume Calculaion Weld: Near Surface 0.99 sq. In.
Weld: Near Surface 443.6 cu. In.
lad: Balance of Volume 6.21 sq. In.
Weld: Balance of Volume 27828 cu. In.
Base Metal: Near Surface 6.02 sq. In.
Base Metal: Near Surface 2697.7 cu. in.
Base Metal: Balance of Volume 24.78 sq. In.
Base Metal: Balance of Volume 11104.4 cu. In.
WELD Weld (Near Surface Regionn BC--I)
Exam.
Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry (deg.)
Direction (sq. In.)
fin.)
(cu. In.) (cu. in.)
Examined 1
70L 11 0.99 168.05 166.4 166.A - 100%
FULL 2
70L 1t I
0.0 56.01 0.0 55.4 0%
PARTIAL 3
70L 11 0.00 224.06 0.0 221.8 0%
NONE 4
70L 12 0.99 168.05 166.4 166.4 100%
FULL 5
70L 12 0.00 56.01 0.0 55.4 0%
PARTIAL 6
70L 12 0.00 224.06 0.0 221.8 0%
NONE 7
70L 3
0.99 168.05 166.4 166.4 100%
FULL 8
70L 3
0.00 56.01 0.0 55.4 0%
PARTIAL 9
70L 3
0.00 224.06 0.0 221.8 0%
NONE 10 701 4
0.99 168.05 166.4 166.4 100%
FULL 11 701 4
0.00 56.01 0.0 55.4 0%
PARTIAL 12 70L 4
0.00 224.06 0.0 221.8 0%
NONE Totals:
665.5 1774.5 38%
Weld (Balance of Volume Region G44-4J)
Weld (Balance of Volume Region G44-4J)
Exam.                 Area     Length     Volume       Volurne Angle     Beam     Examined Examined Examined Required Percent Entry#       (deg.)   Direction (sq. In.)     (in.)   (cu. In.)   (cu.in.) Examined 1         45L     11             6.21     168.05       1043.6     1043.6 100%     FULL 2         45L       11           5.70       56.01       319.3       347.8   92%   PARTIAL 3         45L       11           0.00     224.06           0.0     1391.4     0%   NONE 4       45L         12           6.21     168.05       1043.6     1043.6   100%   FULL 5         45L       12           0.00       56.01         0.0       347.8     0%   PARTIAL 6         45L       12           0.00     224.06           0.0     1391.4     0%   NONE 7         45L         3           6.21     168.05       1043.6     1043.6   100%   FULL 8         45L         3           0.00       56.01         0.0       347.8 0%       PARTIAL 9         45L         3           0.00     224.06           0.0     1391.4     0%   NONE 10       45L           4           6.21     168.05       1043.6     1043.6   100&deg;% FULL 11         45L         4           0.00       56.01         0.0       347.8     0%   PARTIAL 12         45L         4           0.00     224.06           0.0     1391.4     0%   NONE 13       45S         11           6.21     168.05       1043.6       1043.6   100%   FULL 14         45S       11           5.70       56.01       319.3       347.8   92%   PARTIAL 15         45S       11           0.00     224.06           0.0     1391.4     0%   NONE 16       45S         12           6.21     168.05       1043.6       1043.6   100%   FULL 17         455       12           0.00       56.01         0.0       347.8     0%   PARTIAL 18         45S       12           0.00     224.06           0.0     1391.4     0%   NONE 19       45S         3           6.21     168.05       1043.6       1043.6   100%   FULL 20         45S         3           0.00       56.01         0.0       347.8     0%   PARTIAL     _
Exam.
21       45S         3           0.00     224.06           0.0     1391.4     0%   NONE 22         45S         4           6.21     168.05     1043.6       1043.6   100%   FULL 23       45S         4           0.00       56.01         0.0       347.8     0%   PARTIAL 24         45S         4           0.00     224.06           0.0     1391.4     0%   NONE Totals:       8987.0 2226Z4           40%
Area Length Volume Volurne Angle Beam Examined Examined Examined Required Percent Entry#
(deg.)
Direction (sq. In.)
(in.)
(cu. In.)
(cu. in.)
Examined 1
45L 11 6.21 168.05 1043.6 1043.6 100%
FULL 2
45L 11 5.70 56.01 319.3 347.8 92%
PARTIAL 3
45L 11 0.00 224.06 0.0 1391.4 0%
NONE 4
45L 12 6.21 168.05 1043.6 1043.6 100%
FULL 5
45L 12 0.00 56.01 0.0 347.8 0%
PARTIAL 6
45L 12 0.00 224.06 0.0 1391.4 0%
NONE 7
45L 3
6.21 168.05 1043.6 1043.6 100%
FULL 8
45L 3
0.00 56.01 0.0 347.8 0%
PARTIAL 9
45L 3
0.00 224.06 0.0 1391.4 0%
NONE 10 45L 4
6.21 168.05 1043.6 1043.6 100&deg;% FULL 11 45L 4
0.00 56.01 0.0 347.8 0%
PARTIAL 12 45L 4
0.00 224.06 0.0 1391.4 0%
NONE 13 45S 11 6.21 168.05 1043.6 1043.6 100%
FULL 14 45S 11 5.70 56.01 319.3 347.8 92%
PARTIAL 15 45S 11 0.00 224.06 0.0 1391.4 0%
NONE 16 45S 12 6.21 168.05 1043.6 1043.6 100%
FULL 17 455 12 0.00 56.01 0.0 347.8 0%
PARTIAL 18 45S 12 0.00 224.06 0.0 1391.4 0%
NONE 19 45S 3
6.21 168.05 1043.6 1043.6 100%
FULL 20 45S 3
0.00 56.01 0.0 347.8 0%
PARTIAL 21 45S 3
0.00 224.06 0.0 1391.4 0%
NONE 22 45S 4
6.21 168.05 1043.6 1043.6 100%
FULL 23 45S 4
0.00 56.01 0.0 347.8 0%
PARTIAL 24 45S 4
0.00 224.06 0.0 1391.4 0%
NONE Totals:
8987.0 2226Z4 40%


Attachment C I Page 3 of L(
Attachment C I Page 3 of L(
BASE METAL                                                             SHEET-2 Adjacent Base Metal (Near Surface Region A-84-L and C-D-E.H)
BASE METAL SHEET-2 Adjacent Base Metal (Near Surface Region A-84-L and C-D-E.H)
Exam.                 Area     Length   Volume     Volume Angle       Beam Examined Examined Examined Required Percent Entry # (deg.)   Direction (sq. In.)   (in.)   (cu. In.) (cu. in.) Examined I   70L         11         6.02   168.05     1011.6   1011.6   100% FULL 2   70L         11         2.50     56.01       140.0     337.2   42%   PARTIAL 3   70L         11         0.00   224.06         0.0   1348.8     0%   NONE 4   70L         3           6.02   168.05     1011.6   1011.6   100% FULL 5   70L         3           1,82     56.01       101.9     337.2   30%   PARTIAL 6   70L         3           0.00   224.06         0.0   1348.8     0%   NONE Total     2265.2     5395.3   42Y%
Exam.
Adjacent Base Metal (Balance of Volume Region E-F-G4- and .J.K-L)
Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry #
Exam.                 Area     Length   Volume     Volume Angle       Beam Examined Examined Examined Required Percent Entry # (deg.)   Direction (sq. In.)   fin.)   (cu. In.)   (cu. in.) Examined 1   45L         11         24.78   168.05     4164.2     4164.2   100% FULL 2   45L         11         16.95     56.01     949.4   1387.9   68%   PARTIAL 3   45L         11           0.00   224.06         0.0   5552.2     0%   NONE 4   45S         3         24.78     168.05   4164.2     4164.2 100/     FULL 5   4SS         3           8.19     56.01     458.7   1387.9 33%       PARTIAL 6   45S         3           0.00   224.06         0.0   5552.2     0%   NONE Toals:     9736.4   2220&.6     44%
(deg.)
Direction (sq. In.)
(in.)
(cu. In.)
(cu. in.)
Examined I
70L 11 6.02 168.05 1011.6 1011.6 100%
FULL 2
70L 11 2.50 56.01 140.0 337.2 42%
PARTIAL 3
70L 11 0.00 224.06 0.0 1348.8 0%
NONE 4
70L 3
6.02 168.05 1011.6 1011.6 100%
FULL 5
70L 3
1,82 56.01 101.9 337.2 30%
PARTIAL 6
70L 3
0.00 224.06 0.0 1348.8 0%
NONE Total 2265.2 5395.3 42Y%
Adjacent Base Metal (Balance of Volume Region E-F-G4-and.J.K-L)
Exam.
Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry #
(deg.)
Direction (sq. In.)
fin.)
(cu. In.)
(cu. in.)
Examined 1
45L 11 24.78 168.05 4164.2 4164.2 100%
FULL 2
45L 11 16.95 56.01 949.4 1387.9 68%
PARTIAL 3
45L 11 0.00 224.06 0.0 5552.2 0%
NONE 4
45S 3
24.78 168.05 4164.2 4164.2 100/
FULL 5
4SS 3
8.19 56.01 458.7 1387.9 33%
PARTIAL 6
45S 3
0.00 224.06 0.0 5552.2 0%
NONE Toals:
9736.4 2220&.6 44%


.F-r;, ,'                          Attachment C
.F-r ;,
                                  ? Page L of 4 FLOW STABILIZER- z W10 OCONEE-2 2-RPV-WR35 B01.021.003
Attachment C
? Page L of 4 FLOW STABILIZER-z W10 OCONEE-2 2-RPV-WR35 B01.021.003


II Attachment D Page :2 of 6 OCONEE-2 W15             W23 2-RPV-WR13       2-RPV-WR13A 803.090.001     B03.090.002 803.090.001 A   B03.090.002A 803.1 00.001     B03.100.002 W16             W24 2-PHB-1          2-PHA-1 809.011.021     809.011.019 809.011.021 A    809.011.019A 5.18 sq 'in.
II Attachment D Page :2 of 6 OCONEE-2 W15 2-RPV-WR13 803.090.001 803.090.001 A 803.1 00.001 W16 2-PHB-1 809.011.021 809.011.021 A W23 2-RPV-WR13A B03.090.002 B03.090.002A B03.100.002 W24 2-PHA-1 809.011.019 809.011.019A T,
T,   1--1/~
1--1/~
3TIIE     7 ECTION VIEW HORIZONTAL SE           f VERTICAL SECTION VIEW X
3TIIE 7
j I I
ECTION VIEW f 5.18 sq 'in.
45/15' WEl -D & ADJACENT                                63.74-sq in.
HORIZONTAL SE VERTICAL SECTION VIEW X
BAS;E METAL FROM NOzZZLE BORE
j I WEl BAS NOz
-D & ADJACENT
;E METAL FROM ZZLE BORE I
45/15' 63.74-sq in.


.. *. I Attachment D t Page :3 of 6 OCONEE-2 W15             W23 2-RPV-WR13       2-RPV-WR 13A B03.090.001     B03.090.002            I. I ;- .
I Attachment D t Page :3 of 6
B03.090.001 A    803.090.002A B03.1 00.001    803.100.002 W16              W24 2-PHB- 1        2-PHA-1 809.011.021      B09.011.019 B09.011.021A    B09.01 1.019A                       45S/45L/70L shell/7 1.71 sq in.
OCONEE-2 W15 2-RPV-WR13 B03.090.001 B03.090.001 A B03.1 00.001 W16 2-PHB-1 809.011.021 B09.011.021A W23 2-RPV-WR 13A B03.090.002 803.090.002A 803.100.002 W24 2-PHA-1 B09.011.019 B09.01 1.019A I. I ;-.
7                            shell/8 0.00 sq in.
/
                      /
/
                    /
7 HORIZONTAL SECTION VIEW VERTICAL SECTION VIEW 45S/45L/70L shell/7 1.71 sq in.
HORIZONTAL SECTION VIEW VERTICAL SECTION VIEW i
shell/8 0.00 sq in.
45-S/45-L/70 L shell/7 INNER 15% T                                7.64 sq in.
45-S/45-L/70 L shell/7 7.64 sq in.
SHELL/7/8 FROM                              shell/8 2.69 sq in.
shell/8 2.69 sq in.
VESSEL SHELL
INNER 15% T SHELL/7/8 FROM VESSEL SHELL i


.. . .
Attachment D I i Page 4 of 4
* Attachment D I i Page 4 of 4
, I OCONEE-2 W15 2-RPV-WR I' 803.090.001 803.090.001A B03.100.001 W16 2-PHB-1 809.011.021 B09.011.021A W23 2-RPV-WR13A 803.090.002 803.090.002A B03.100.002 W24 2-PHA-1 809.011.019 809.011.019A
                                  ,I OCONEE-2 W15         W23 2-RPV-WR I' 2-RPV-WR13A 803.090.001 803.090.002                          /
/
803.090.001A 803.090.002A B03.100.001  B03.100.002 W16          W24 2-PHB-1      2-PHA- 1 809.011.021  809.011.019 B09.011.021A 809.011.019A 0.45 sq in I      -
I MION VIEW HORIZONTAL SEC 0.45 sq in 5.68 sq in.
HORIZONTAL SEC MION VIEW VERTICAL SECTION VIEW 5.68 sq in.
VERTICAL SECTION VIEW INNER 157=-
INNER 157=-
SHELL/9 FROM VESSEL SHELLl
SHELL/9 FROM VESSEL SHELLl


'. I Attachment D Page 5 of 6i OCONEE-2 W15           W23 2-RPV-WR13   2-RPV-WR 13A 803.090.001   B03.090.002                                t 603.090.001 A B03.090.002A B03.100.001  803.100.002 W16          W24 2-PHB-1      2-PHA-1 809.011.021  809.011.019 609.011.021A  B09.011.019A 45S/45L/70L 1.97 SO IN.
I Attachment D Page 5 of 6i OCONEE-2 W15 2-RPV-WR13 803.090.001 603.090.001 A B03.100.001 W16 2-PHB-1 809.011.021 609.011.021A W23 2-RPV-WR 13A B03.090.002 B03.090.002A 803.100.002 W24 2-PHA-1 809.011.019 B09.011.019A t
i HORIZONTAL SECTION VIEW VERTICAL SECTION VIEW f
i HORIZONTAL SECTION VIEW VERTICAL SECTION VIEW 45S/45L/70L 1.97 SO IN.
                  \LI                                I 45S/45L/70L 7.09 SQ IN.
45S/45L/70L 7.09 SQ IN.
f
\\LI I
INNER 15% T SHELL/10 FROM VESSEL SHELL
INNER 15% T SHELL/10 FROM VESSEL SHELL


'- ** X Attachment D Page 6 of 6 OCONEE-2 W15             W23 2-RPV-WR 13     2-RPV-WR13A B03.090.001     B03.090.002 803.090.001 A   B03.090.002A B03.100.001     803.100.002 W16             W24 2-PHB-1          2-PHA- 1 809.011.021     B09.011.019 B09.011.021A    B09.011.019A f         ,,      _
X Attachment D Page 6 of 6 OCONEE-2 W15 2-RPV-WR 13 B03.090.001 803.090.001 A B03.100.001 W16 2-PHB-1 809.011.021 B09.011.021A W23 2-RPV-WR13A B03.090.002 B03.090.002A 803.100.002 W24 2-PHA-1 B09.011.019 B09.011.019A f  
                      /                                         70'
/
                    /
/
                  /                                             7.61 sq in.
/
HORIZONTAL SECTION VIEW  f VERTICAL SECTION VIEW
TION VIEW f HORIZONTAL SEC 70' 7.61 sq in.
                                            -    gL              70
70 7.10 sq in.
                                                            -    7.10 sq in.
VERTICAL SECTION VIEW gL INNE CIRC cOv
I INNE-ERRADIUS I
-ER RADIUS d
CIRC                                           ]
V ERAGE l
                                                            , I d                           V cOv ERAGE                           l
I I
 
]
                                                        '*
I
* as.-                 lAttachment                   E Page p, offal Oconee-2 Explanation of Limited Coverage for Core Flood Nozzle to Shell Weld The Core Flood Nozzle of a B&W 177 plant has several obstructions which limits UT inspection of the nozzle-to-shell weld. In order of magnitude of impact these include:
* as.-
lAttachment E
Page p, offal Oconee-2 Explanation of Limited Coverage for Core Flood Nozzle to Shell Weld The Core Flood Nozzle of a B&W 177 plant has several obstructions which limits UT inspection of the nozzle-to-shell weld. In order of magnitude of impact these include:
The Flow Restrictor located in the bore of the Core Flood Nozzle.
The Flow Restrictor located in the bore of the Core Flood Nozzle.
The Inlet Nozzles located 30 degrees on either side of the Core Flood Nozzles The taper above the Core Flood Nozzle associated with the Core Support Ledge.
The Inlet Nozzles located 30 degrees on either side of the Core Flood Nozzles The taper above the Core Flood Nozzle associated with the Core Support Ledge.
Line 1,195: Line 2,703:
Near Surface (Vessel ID) = 97%
Near Surface (Vessel ID) = 97%
Inside Radius = 52%
Inside Radius = 52%
"Ursula", the robotic system which will perform this inspection, uses several abbreviations to describe a coordinate system for scan and index purposes. There are four major classes of scans inthe "Ursula" system:
"Ursula", the robotic system which will perform this inspection, uses several abbreviations to describe a coordinate system for scan and index purposes. There are four major classes of scans in the "Ursula" system:
("S") Shell used for the cylindrical vessel ID
("S") Shell used for the cylindrical vessel ID
("N") Nozzle used for the nozzle to shell from the vessel ID
("N") Nozzle used for the nozzle to shell from the vessel ID
("P") Pipe used for scans in the nozzle ID
("P") Pipe used for scans in the nozzle ID
("M") Meridional used for the lower head In addition, several axes of motion are labeled:
("M") Meridional used for the lower head In addition, several axes of motion are labeled:
("Z") which isthe majorcenterline axis of the vessel, with the positive sense down into the vessel ("R") which is a radial distance measured perpendicular to the "Z" axis, with the positive sense away from the "Z" axis
("Z") which is the majorcenterline axis of the vessel, with the positive sense down into the vessel ("R") which is a radial distance measured perpendicular to the "Z" axis, with the positive sense away from the "Z" axis
(""T) Theta which is an angular displacement, in the plane "R" is measured in, between 0 degrees and 720 degrees from vessel 0 (The B&W "NV" axis of the vessel)
(""T) Theta which is an angular displacement, in the plane "R" is measured in, between 0 degrees and 720 degrees from vessel 0 (The B&W "NV" axis of the vessel)
("A") Alpha which isan angular displacement of the spherical radius (sr) of the lowerhead as measured from the reference 0 point when this sr isperpendicular to the "Z" axis, such that positive angles increase from 0 to 90 from the shell to the centerline of the vessel at the bottom of the lower head.
("A") Alpha which is an angular displacement of the spherical radius (sr) of the lowerhead as measured from the reference 0 point when this sr is perpendicular to the "Z" axis, such that positive angles increase from 0 to 90 from the shell to the centerline of the vessel at the bottom of the lower head.
In addition to these major axes, each nozzle has an axis system associated with its centerline. Axes of nozzle motion are:
In addition to these major axes, each nozzle has an axis system associated with its centerline. Axes of nozzle motion are:
("R") units are measurements off the vessel centerline along the nozzle centerline
("R") units are measurements off the vessel centerline along the nozzle centerline
("`W") isa radial measurement, perpendicular to the nozzle centerline, with the positive sense away from the nozzle centerline
("`W") is a radial measurement, perpendicular to the nozzle centerline, with the positive sense away from the nozzle centerline
("B") Beta isan angular displacement, inthe plane "W" ismeasured in,from a reference 0 at "top dead center" of the nozzle.
("B") Beta is an angular displacement, in the plane "W" is measured in, from a reference 0 at "top dead center" of the nozzle.
Scans are denoted by the class, axis, and the positive or negative sense with which a reference axis on the
Scans are denoted by the class, axis, and the positive or negative sense with which a reference axis on the


Attachment E Page 3 of 15 "Ursula" contact head aligns: For example, the scans we are interested in are within the Nozzle, or "N" scan class. The contact head reference axis (and in his case the beam direction of the transducers) will align with either the "W' radial direction-trom the nozzle centerline, or the Beta (VB") angular sense about the nozzle centerline with positive being clockwise rotation when viewing the nozzle from the vessel centerline.
Attachment E Page 3 of 15 "Ursula" contact head aligns: For example, the scans we are interested in are within the Nozzle, or "N" scan class. The contact head reference axis (and in his case the beam direction of the transducers) will align with either the "W' radial direction-trom the nozzle centerline, or the Beta (VB")
angular sense about the nozzle centerline with positive being clockwise rotation when viewing the nozzle from the vessel centerline.
Since the bore of the Core Flood Nozzle is obstructed by the Flow Restrictor all scans for the nozzle to shell weld are scanned from the vessel ID and will be either.
Since the bore of the Core Flood Nozzle is obstructed by the Flow Restrictor all scans for the nozzle to shell weld are scanned from the vessel ID and will be either.
NWP NWN NBP NBN with the final "P" or '"' denoting positive or negative sense.
NWP NWN NBP NBN with the final "P" or '"' denoting positive or negative sense.
Line 1,216: Line 2,725:
Zone 5 is scanned in both NBP & NBN with the beam direction paralfel to the weld centerline.
Zone 5 is scanned in both NBP & NBN with the beam direction paralfel to the weld centerline.
The spread sheet entries are as follows:
The spread sheet entries are as follows:
Beam Direction I comes   from NWN scans Beam Direction 2 comes   from NWP scans Beam Direction 3 comes   from NBP scans Beam Direction 4 comes   from NBN scans To calculate % coverage the spread sheet uses the volume acquired by a given angle divided by the true unobstructed inspection volume required to be examined. For a given angle and beam direction the sum of the degrees for which the various coverages were obtained must equal 180 degrees. This is because the total nozzle inspection volume is broken into a horizontal inspection volume (and subsequent coverage) and a vertical inspection volume (and subsequent coverage). Each area and coverage is considered to represent 180 degrees of the nozzle. After the horizontal and vertical sections are calculated separatelytheyare combined to provide aggregate coverage numbers.
Beam Direction I comes from NWN scans Beam Direction 2 comes from NWP scans Beam Direction 3 comes from NBP scans Beam Direction 4 comes from NBN scans To calculate % coverage the spread sheet uses the volume acquired by a given angle divided by the true unobstructed inspection volume required to be examined. For a given angle and beam direction the sum of the degrees for which the various coverages were obtained must equal 180 degrees.
This is because the total nozzle inspection volume is broken into a horizontal inspection volume (and subsequent coverage) and a vertical inspection volume (and subsequent coverage). Each area and coverage is considered to represent 180 degrees of the nozzle. After the horizontal and vertical sections are calculated separatelytheyare combined to provide aggregate coverage numbers.


I'           Attachment E
I' Attachment E
            ..Page if of I r;-               I
..Page if of I r; -
I


I.. I 1s I Attachment E
I..
                                          . Page S of IS START OF CORE SUPPORT LEDGE TAPER @ Z = 27' I
I 1s I Attachment E
. Page S of IS START OF CORE SUPPORT LEDGE TAPER @ Z = 27' I
NWP LIMITS SHELL/9 = NWP SCANS Figure-2
NWP LIMITS SHELL/9 = NWP SCANS Figure-2


. . I Attachment E IlPage  6 of of START OF CORE SUPPORT LEDGE TAPER C Z = 27' NBR & NBL SCAN LIMITS SHELL/7= NBR SCANS SHELL/8 = NBL SCANS Figure-3
I IlAttachment E Page 6 of of START OF CORE SUPPORT LEDGE TAPER C Z = 27' NBR & NBL SCAN LIMITS SHELL/7=
SHELL/8 NBR SCANS
= NBL SCANS Figure-3


l Attachment E I     ge 7 of iS OCONEE-2 wil 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV--WR54A B03.090.008 B03.100.008 1,\
l Attachment E I
WELD: 18.79 SQ IN.
ge 7 of iS OCONEE-2 wil 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV--WR54A B03.090.008 B03.100.008 W-31.44 ULMTED COVERAGE DUE TO CORE SUPPORT LEDGE TAPER F
ADJACENT BASE IIINNER 15% BMT: METAL 156.50 SQ IN.
W-8.75 ALL I
23.26 SQ IN.
1,\\
IIINNER RADIUS: 6.25 SQ IN.
II II WELD: 18.79 SQ IN.
W-31.44 ULMTED COVERAGE DUE TO CORE SUPPORT LEDGE TAPER F
ADJACENT BASE METAL 156.50 SQ IN.
W-8.75 ALL I.-
INNER 15% BMT: 23.26 SQ IN.
I BEAM DIRECTION 1-ZONE 1
INNER RADIUS: 6.25 SQ IN.
I.-
BEAM DIRECTION 1-ZONE 1


Attachment E Page s of 15 OCONEE-2 Wil 2-RPV-WE,54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03. 100.008 WELD: 18.79 SQ IN.
Attachment E Page s of 15 OCONEE-2 Wil 2-RPV-WE,54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03. 100.008 WELD: 18.79 SQ IN.
ADJACENT BASE METAL- 158.00 SQ IN.
ADJACENT BASE METAL-158.00 SQ IN.
INNER 15% BMT: 23.26 SO IN.
INNER 15% BMT: 23.26 SO IN.
INNER RADIUS: 6.25 SQ IN.
INNER RADIUS: 6.25 SQ IN.
BEAM DIRECTION 1-ZONE 3 60- OF 90- (66.6% OF SCAN)
BEAM DIRECTION 1-ZONE 3 60- OF 90- (66.6% OF SCAN)


I Attachment E I Page '7 of 15 OCONEEI-2 wi 1 2-RPV-WR54 B03.090.007 B03.100.007 W19 2- RPV-WR54A B03.090.008 B03.100.008 WELD: 15.81 SO IN.
I Attachment E I Page '7 of 15 OCONEEI-2 wi 1 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV-WR54A B03.090.008 B03.100.008 WELD: 15.81 SO IN.
ADJACENT BASE METAL 120.91 SO IN.
ADJACENT BASE METAL 120.91 SO IN.
INNER 15' BMT. 23.26 SQ IN.
INNER 1 5' BMT. 23.26 SQ IN.
INNER RADIUS: 6.25 SO IN.
INNER RADIUS: 6.25 SO IN.
BEAM DIRECTION 1-ZONE 3 30- OF 90- (33.3% OF SCAN)
BEAM DIRECTION 1-ZONE 3 30- OF 90- (33.3% OF SCAN)
Line 1,254: Line 2,770:
BEAM DIRECTION 1-ZONE 2 45 OF 90 (50.00% OF SCAN)
BEAM DIRECTION 1-ZONE 2 45 OF 90 (50.00% OF SCAN)


I Attachment E I Page II of i5
I Attachment E I Page II of i5 I
  - - - . - -- -  I UUUNEE-22 Wil1 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV-WR54A B03.090.008 B03.100.008 WEID: 19.16 SQ IN.
UUUNEE-22 Wil1 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV-WR54A B03.090.008 B03.100.008 WEID: 19.16 SQ IN.
ADJACENT BASE METAL 151.72 SO IN.
ADJACENT BASE METAL 151.72 SO IN.
INNER 15Z BMT: 24.13 SO IN.
INNER 15Z BMT: 24.13 SO IN.
INNER RADIUS: 6.26 SQ IN.
INNER RADIUS: 6.26 SQ IN.
BEAM DIRECTION 1-ZONE 2 45- OF 90- (50.00% OF SCAN)
BEAM DIRECTION 1 -ZONE 2 45-OF 90- (50.00% OF SCAN)


Attachment E Page lIt of is OCONEE-2 Wil 2-RPV-WR54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03. 100.008 WELD: 4.59 SO IN.
Attachment E Page lIt of is OCONEE-2 Wil 2-RPV-WR54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03. 100.008 WELD: 4.59 SO IN.
BEAM DIRECTION 2-ZONE 4
BEAM DIRECTION 2-ZONE 4


l Attachment E i Page /,3 of 15 OCONEE-2 wi1 2-RPV-WR54 B03.090.007 B03.1 00.007 W19 2-RPV-WR54A B03.090.008           I B03. 100.008 WELD: 4.71 SQ IN.
l Attachment E i Page /,3 of 15 OCONEE-2 wi1 2-RPV-WR54 B03.090.007 B03.1 00.007 W19 2-RPV-WR54A B03.090.008 I
B03. 100.008 WELD: 4.71 SQ IN.
BEAM DIRECTION 2-ZONE 4
BEAM DIRECTION 2-ZONE 4


AttachmentE Page IeY of /ST OCONEE-2 wi1 2-RPV-WR54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03.1 00.008 WELD: 18.79 SO IN.
AttachmentE Page IeY of /ST OCONEE-2 wi1 2-RPV-WR54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03.1 00.008 WELD: 18.79 SO IN.
ADJACENT BASE METAL SHELL/3: 142.41 SO IN.
ADJACENT BASE METAL SHELL/3: 142.41 SO IN.
SHELL/4: 97.90 SQ IN.
SHELL/4:
97.90 SQ IN.
INNER 15% SWT: 22.00 SQ IN.
INNER 15% SWT: 22.00 SQ IN.
INNER RADIUS: 0.26 SQ IN.
INNER RADIUS: 0.26 SQ IN.
I_
I_
SCANI W-8.75 ALL BEAM DIRECTION 3 & 4-ZONE 5
W-8.75 ALL SCANI BEAM DIRECTION 3 & 4-ZONE 5


I49 I Attachment E
I49 I Attachment E
                                                            - Page as of /5 OCONEE-2 Wil 2-RPV-WR54 B03.090.007 B03.100.007 w19 2-RPV-WR54A B03.090.008 B03.100.008 WELD: 19.16 SQ IN.
- Page as of  
/5 OCONEE-2 Wil 2-RPV-WR54 B03.090.007 B03.100.007 w19 2-RPV-WR54A B03.090.008 B03.100.008 WELD: 19.16 SQ IN.
ADJACENT BASE METAL SHELL/3: 148.97 SO IN.
ADJACENT BASE METAL SHELL/3: 148.97 SO IN.
SHELL/4: 105.98 SO IN.
SHELL/4: 105.98 SO IN.

Latest revision as of 03:23, 16 January 2025

Third Ten Year Inservice Inspection Interval Requests for Relief No. 04-ON-002 and 003
ML041170047
Person / Time
Site: Oconee Duke Energy icon.png
Issue date: 04/09/2004
From: Rosalyn Jones
Duke Power Co
To:
Document Control Desk, Office of Nuclear Reactor Regulation
References
Download: ML041170047 (118)


Text

Duke R. A.

JONES litPowere Vice President A Duke Energy Company Duke Power 29672 / Oconee Nuclear Site 7800 Rochester Highway Seneca, SC 29672 864 885 3158 864 885 3564 fax April 9, 2004 U.S. Nuclear Regulatory Commission Document Control Desk Washington, DC 20555

Subject:

Duke Energy Oconee Nuclear Station, Unit 2 Docket Nos. 50-270 Third Ten Year Inservice Inspection Interval Requests for Relief No. 04-ON-002 and 003 Pursuant to 10 CFR 50.55a(g)(5)(iii), attached is a Request for Relief from the requirement to examine 100% of the volume specified by the ASME Boiler and Pressure Vessel Code,Section XI, 1989 Edition with no Addenda (as modified by Code Case N-460).

Request for Relief 04-ON-002 is to allow Duke Energy to take credit for eleven (11) limited ultrasonic examinations on welds associated with various systems and components described in the attached request.

Request for Relief 04-ON-003 is a similar request but addresses twelve (12) limited ultrasonic examinations on welds specifically associated with the Reactor Vessel as described in the attached request.

During examination of the subject Unit 2 welds, the ultrasonic examination coverage did not meet the 90%

examination requirements of Code Case N-460.

The obtainable volume coverage for each weld examination is indicated on the attached request.

Achievement of greater examination coverage for these welds is impractical due to piping/valve geometry, interferences, and existing examination technology.

Therefore, Duke Energy requests that the NRC grant relief as authorized under 10 CFR 50.55a(g) (6) (i).

www. duke-energy. corn

U. S. Nuclear Regulatory Commission April 9, 2004 Page 2 If there are any questions or further information is needed you may contact R. P. Todd at (864) 885-3418.

Very y yours, R.

es Sit e President Attachment xc wlatt: L. A. Reyes, Regional Administrator U.S. Nuclear Regulatory Commission, Region II Atlanta Federal Center 61 Forsyth St., SWW, Suite 23T85 Atlanta, GA 30303 L. N. Olshan, Project Manager, Section 1 Project Directorate II Division of Licensing Project Management Office of Nuclear Reactor Regulation U. S. Nuclear Regulatory Commission Washington, DC 20555-0001 xc (w/o attch):

M. C. Shannon Senior NRC Resident Inspector Oconee Nuclear Station Mr. Henry Porter Division of Radioactive Waste Management Bureau of Land and Waste Management SC Dept. of Health & Environmental Control 2600 Bull St.

Columbia, SC 29201

U. S. Nuclear Regulatory Commission April 9, 2004 Page 3 bxc w/att: R. K. Nader T. J. Coleman V. B. Dixon B. W. Carney, Jr.

R. P. Todd L. C. Keith G. L. Brouette (ANII)

J. J. Mc Ardle III ISI Relief Request File NRIA File/ELL ECO50 Document Control

Relief Request 04-ON.002 Page 1 of 9 Proposed Relief in Accordance with 10 CFR 50.55a(g)(5)(iii)

Inservice Inspection Impracticality Duke Energy Corporation Oconee Nuclear Station - Unit 2 (EOC-19)

Third 10-Year Interval - Inservice Inspection Plan Interval Start Date= 12-16-1994 Interval End Date=9-9-2004 ASME Section XI Code - 1989 Edition with No Addenda I.

II. & III.

IV.

V.

VI.

VII.

Limited System/

Code Requirement from WVhich Basis for Relief Alternate Justifieation Implementation Area/Weld Component for Which Relief Is Requested:

Examinations or for Granting Schedule I.D.

Relief is Requested:

100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.

Fig. No.

Limitation Percentage 2-PZR-WP45 Reactor Coolant System Exam Category B-F See Paragraph See Paragraph See Paragraph See Paragraph Pressurizer Spray Item No. B05.040.002A "A"

4J" "K"

"S" Nozzle to Safe-End Section XI, Appendix III, III-Weld 4420 Fig. IWB-2500-8(c) 75% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2LP-189-15 Low Pressure Injection Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph System Item No. B09.011.005 "B"

"J"9 "L"

"S" Valve 2LP-47 to Pipe Fig. IWB-2500-8(c) 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-1 Steam Generator A Item No. C02.021.001 "C"

J"i "N"

"S" Main Steam Fig. IWC-2500-4 (b)

Outlet Nozzle to Shell 22.22% Volume Coverage Weld Limited Scan of Examination Volume C-D-E-F

Relief Request 04-ON-002 Page 2 of 9 II. & III.

IV.

V.

VI.

VIl.

Limited System /

Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/Weld Component for Which Relief Is Requested:

Examinations or for Granting Schedule I.D.

Relief is Requested:

100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.

Fig. No.

Limitation Percentage 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-2 Steam Generator A Item No. C02.021.002 "C"

&GJi" "N"

"S" Main Steam Fig. IWC-2500-4 (b)

Outlet Nozzle to Shell 22.22% Volume Coverage Weld Limited Scan of Examination Volume C-D-E-F 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-1 Steam Generator A Item No. C02.022.001 "D"

"r'

."N, "S"

Main Steam Fig. IWC-2500-4 (b)

Outlet Nozzle 88.11% Volume Coverage Inside Radius Section Limited Scan of Examination Volume G-H 2-SGA-NC System Exam Category C-B See Paragraph See Paragraph See Paragraph See Paragraph WG23-2 Steam Generator A Item No. C02.022.002 "D"

..J",

"N" "S"

Main Steam Fig. IWC-2500-4 (b)

Outlet Nozzle 88.11% Volume Coverage Inside Radius Section Limited Scan of Examination Volume G-H 2LP-150-70 Low Pressure Injection Exam Category C-F-I See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.011.012 "E"

"1."1

".'T.

"S" Valve 2LP-17 to Fig. IWC-2500-7(a)

Reducer Weld 56.75% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2HP-219-14 High Pressure Injection Exam Category C-F-I See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.021.013 F

"J" P

"5" Valve 2HP-409 to Pipe Fig. IWC-2500-7(a)

Weld 37.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F

Relief Request 04.ON-002 Page 3 of 9 I.

II. & III.

IV.

V.

VI.

VII.

Limited System

/

Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/hVeld Component for Which Relief is Requested:

Examinations or for Granting Schedule I.D.

Relief is Requested:

100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.

Fig. No.

Limitation Percentage 2HP-396-5 High Pressure Injection Exam Category C-F-i See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.021.093 4G "i"

.Ps" Valve 2HP-140 to Pipe Fig. IWC-2500-7(a)

Weld 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2HP-221-22 High Pressure Injection Exam Category C-F-i See Paragraph See Paragraph See Paragraph See Paragraph System Item No. C05.021.115

'p "S"

Valve 2HP-4i0 to Fig. IWC-2500-7(a)

Elbow Weld 62.5% Volume Coverage Limited Scan of Examination Volume C-D-E-F 2-BWST-Low Pressure Injection Exam Category C-F-2 See Paragraph See Paragraph See Paragraph See Paragraph OUT-2 System Item No. C05.070.001 "Irg" "5"

4 saw Pipe to Flange Weld Fig. IWC-2500-7 63.66% Area Coverage Exam Surface A-B See Attachment A for C05.070.001 area/weld locations.

See Attachment B for Steam Generator A Main Steam Outlet Nozzle area/weld locations.

See Attachment C for inspection data on all 11 items with limited coverage.

See Attachment D for Pressurizer Spray Nozzle to Safe-End area/weld locations.

Note: The C05.011, C05.021, and C05.070 welds were inspected in August of 2002 and the B05.040, B09.011, C02.021, and C02.022 items were inspected in October of 2002.

Relief Request 04-ON-002 Page 4 of 9 IV. Basis for Relief Paragraph A: (The Pressurizer Spray Nozzle material is SA508 CL. 1 and the Safe-End material is SB-166. The diameter of the Nozzle to Safe-End weld is 4 inches and it has a wall thickness of.75 inches.)

During the ultrasonic examination of dissimilar metal weld 2-PZR-WP45, 75% coverage of the required examination volume was obtained. Scanning limitations were caused by the taper of the nozzle which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld. The examination volume was scanned in two circumferential and one axial direction using 450 shear wave and longitudinal wave search units. In order to scan all of the required surfaces for the inspection of this weld, the nozzle would have to be redesigned to allow scanning from both sides of the weld, which is impractical. There were no recordable indications found during the inspection of this weld.

Paragraph B: (The valve and pipe material was stainless steel. Weld 2LP-189-15 has a diameter of 10 inches and a wall thickness of 1.0 inches.)

During the ultrasonic examination of weld 2LP-189-15, 62.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.

The examination volume was scanned in two circumferential directions using 450 shear waves and in one axial direction using 600 shear and longitudinal waves. In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.

There was a recordable indication found during the inspection of this weld. It was determined to be a geometric reflector due to root geometry.

Paragraph C: (The Steam Generator shell material is SA212 GR. B and the nozzle material is SA 508 CL. 1. The diameter of the Nozzle to Steam Generator shell weld is 29 inches and it has a wall thickness of 6.75 inches.)

During the ultrasonic examination of welds 2-SGA-WG23-1 and 2-SGA-WG23-2, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 22.22%. Limitations were caused by the nozzle configuration. The percent coverage reported represents the aggregate coverage from all scans performed on the weld. The examination volume was scanned with 450 and 600 shear waves from one axial direction. No coverage could be achieved in the circumferential direction or with the straight beam scan because of the interference caused by the nozzle blend radius. The percentage of coverage reported represents the aggregate coverage. In order to scan all of the required surfaces for the inspection of this weld, the nozzles would have to be redesigned to allow scanning from both sides of the weld, which is impractical. There were no recordable indications found during the inspection of these welds.

Paragraph D:

During the ultrasonic examination of the inside radius sections for 2-SGA-WG23-1 and 2-SGA-WG23-2, 100%

coverage of the required examination volume was not obtained. The examination coverage was limited to 88.11%.

The percentage of coverage reported represents the aggregate coverage. The inner radius examination volume was scanned from the vessel shell side using 60° and 700 shear waves. Duke Energy Corporation had been investigating the use of computer modeling of the nozzles to develop ultrasonic techniques that would achieve 100% coverage of the examination volume. However, these techniques were not ready at the time these examinations were scheduled.

Therefore, a best effort examination was performed. The steam generators will be replaced in the spring of 2004.

There were no recordable indications found during these inspections.

Relief Request 04-ON-002 Page 5 of 9 Paragraph E: (The valve and reducer material was stainless steel. Weld 2LP-150-70 has a diameter of 12 inches and a wall thickness of 1.312 inches.)

During the ultrasonic examination of weld 2LP-150-70, 56.75% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.

The examination volume was scanned using 450 shear waves in two circumferential directions covering 63.5% of the volume and in one axial direction using 60° shear and longitudinal waves covering 100% of the examination volume.

In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.

There were no recordable indications found during the inspection of this weld.

Paragraph F: (The valve and pipe material was stainless steel. Weld 2HP-219-14 has a diameter of 4 inches and a wall thickness of.674 inches.)

During the ultrasonic examination of weld 2HP-219-14, 37.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.

The examination volume was scanned using 450 shear waves in two circumferential directions covering 50% of the volume and in one axial direction using 600 shear and longitudinal waves covering 100% of the examination volume.

In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.

There were no recordable indications found during the inspection of this weld.

Paragraph G: (The valve and pipe material was stainless steel. Weld 2HP-396-5 has a diameter of 4 inches and a wall thickness of.531 inches.)

During the ultrasonic examination of weld 2HP-396-5, 62.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.

The examination volume was scanned using 450 shear waves in two circumferential directions covering 50% of the volume and in one axial direction using 60° shear and longitudinal waves covering 100% of the examination volume.

In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.

There were no recordable indications found during the inspection of this weld.

Paragraph 1I: (The valve and elbow material was stainless steel. Weld 2HP-221-22 has a diameter of 4 inches and a wall thickness of.531 inches.)

During the ultrasonic examination of weld 2HP-221-22, 62.5% coverage of the required examination volume was obtained. Scanning limitations were caused by the valve configuration which prevented scanning from both sides of the weld. The percent coverage reported represents the aggregate coverage from all scans performed on the weld.

The examination volume was scanned using 45° shear waves in two circumferential directions covering 100% of the volume and in one axial direction using 600 shear and longitudinal waves covering 100% of the examination volume.

In order to scan all of the required surfaces for the inspection of this weld, the valve would have to be redesigned to allow scanning from both sides of the weld, which is impractical.

There were no recordable indications found during the inspection of this weld.

Relief Request 04-ON-002 Page 6 of 9 Paragraph 1: (The diameter of the pipe to flange weld is 14 inches and it has a wall thickness of.375 inches The material was carbon steel.)

During MT examination of welds 2BWST-OUT-2, 100% coverage of the required examination surface could not be obtained. The examination coverage was limited to 63.66%. Limitations were caused because the pipe has minimum clearance from steel support members; thus, access for the inspection of 100% of the weld is not possible. The percentage of coverage reported represents the aggregate coverage. There were no recordable indications found during the inspection of this weld. In order to achieve more coverage, the pipe would have to be relocated to allow full access to MT or PT 100% weld, which is impractical.

V. Alternate Examinations or Testing Paragraph J:

The scheduled 10-year code examination was performed on the referenced area/weld and it resulted in the noted limited coverage. No additional examinations are planned for the area/weld during the current inspection interval.

VI. Justification for Granting Relief Paragraph K:

Ultrasonic examination of areas/welds for item number B05.040 were conducted using personnel, equipment and procedures qualified in accordance with ASME Section XI, Appendix VIII Supplement 10 of the 1995 Edition with the 1996 Addenda as administered by the PDI. Although 100% of the required scanning could not be achieved, the amount of coverage of the examination volume obtained for this weld provides an acceptable level of quality and integrity. In addition to the volumetric examination with limited scan, Duke Energy performed a surface examination (code required) on the B05.040 item and achieved 100% coverage. The result from the surface examination was acceptable. (See Paragraph M for additional justification.)

Paragraph L:

Ultrasonic examination of areas/welds for item number B09.011 were conducted using personnel, equipment and procedures qualified in accordance with ASME Section XI, Appendix VIII Supplement 2 of the 1995 Edition with the 1996 Addenda as administered by the PDI. Although 100% of the required scanning could not be achieved, the amount of coverage of the examination volume obtained for this weld provides an acceptable level of quality and integrity. In addition to the volumetric examination with limited scan, Duke Energy performed a surface examination (code required) on the B09.011 item and achieved 100% coverage. The result from the surface examination was acceptable. (See Paragraph M for additional justification.)

Paragraph M:

Duke Energy will use Class 1, Examination Category B-P, pressure testing and VT-2 visual examination to compliment the limited scan examinations. The Code requires that a pressure test be performed after each refueling outage for Class 1. These tests require a VT-2 visual examination for evidence of leakage. This testing provides adequate assurance of pressure boundary integrity.

In addition to the above Code required examinations (volumetric and pressure test), there are other activities which provide a high level of confidence that, in the unlikely event that leakage did occur through these welds, it would be detected and isolated. Specifically, leakage from these welds would be detected by monitoring of the Reactor Coolant System (RCS), which is performed once each shift under procedure PT/1,2,3/A/0600/10, "RCS Leakage".

This RCS leakage monitoring is a requirement of Technical Specification 3.4.13, "Reactor Coolant System Leakage". Leakage is also evaluated in accordance with this Technical Specification. The leakage could also be detected through several other methods. One is the RCS mass balance calculation. A second is the Reactor Building air particulate monitor. This monitor is sensitive to low leak rates; the iodine monitor, gaseous monitor and area monitor are capable of detecting any fission products in the coolant and will make these monitors sensitive to coolant

Relief Request 04-ON-002 Page 7 of 9 leakage. A third is the level indicator in the Reactor Building normal sump. A fourth is a loss of level in the Letdown Storage Tank. Based on the portions and results of the required volumetric, surface and VT-2 examinations performed during this outage, it's Duke's belief that this combination of examinations provides a reasonable assurance of component integrity.

Paragraph N:

Ultrasonic examination of welds for item numbers C02.021 and C02.022 were conducted using personnel, qualified in accordance with ASME Section XI, Appendix VII. Procedures were in compliance with ASME Section V, Article 4 and Section XI, Appendix I. Due to the design of the Steam Generator Shell and Steam Outlet Nozzle; it is not feasible to obtain the examination scanning and volume coverage required. Duke Energy has examined the weld/area to the maximum extent possible utilizing the latest in examination techniques and equipment. The weld was rigorously inspected by volumetric NDE methods during construction and verified to be free from unacceptable fabrication defects. Although 100% of the required scanning could not be achieved, the amount of coverage of the examination volume obtained for this weld provides an acceptable level of quality and integrity.

(See Paragraph 0 for additional justification.)

Paragraph 0:

Duke Energy will use Class 2, Examination Category C-H, pressure testing and VT-2 visual examination to compliment the limited scanning and examination volume coverage. The Code requires that a pressure test be performed once each period for Class 2 items. These tests require a VT-2 visual examination for evidence of leakage. This testing provides adequate assurance of pressure boundary integrity.

In addition to the above Code required examinations (surface and pressure test), there are other activities which provide a high level of confidence that, in the unlikely event that leakage did occur through these welds, it would be detected. The Steam Generator C2.21 Main Steam outlet nozzle welds are located in the reactor building and not accessible for routine inspection. However, Table IWB-2500-1 of ASME Section XI, Class 1, Examination Category B-P, requires that a pressure test be performed after each refueling outage for Class 1 systems. This test requires a VT-2 visual examination for evidence of leakage at normal operating conditions. A portion of this test is near the Class 2 shell to main steam nozzle welds and a leak from the Steam Generator shell to nozzle weld would be observed during this test. Once a leak is identified, its location needs to be determined and assessed. This would provide adequate assurance of pressure boundary integrity. Further, the level of the Reactor Building normal sump is monitored daily and any change in the level or pumping frequency must be evaluated to verify there is no RCS leakage. Due to the location of these nozzles, any leakage would eventually end up in the reactor building sump. All of these together will provide reasonable assurance that if the weld/component developed a leak during a fuel cycle the leakage would be identified.

Paragraph P:

Ultrasonic examination of areas/welds for the item numbers C05.011 and C05.021 were conducted using personnel, equipment and procedures qualified in accordance with ASME Section XI, Appendix VIII Supplement 2 of the 1995 Edition with the 1996 Addenda as administered by the PDI. Although 100% of the required scanning could not be achieved, the amount of coverage of the examination volume obtained for each of these welds provides an acceptable level of quality and integrity. In addition to the volumetric examinations with limited scan, Duke Energy performed a surface examination (code required) on each of the C05.011 and C05.021 items and achieved 100% coverage. The results from the surface examinations were acceptable. (See Paragraph R for additional justification.)

In addition to C05.021 welds that relief is being requested for limited scanning and limited examination coverage, there were 23 additional C05.021 welds that surface and volumetric examinations were performed on. The examinations didn't identify any reportable indications and greater than 90% coverage was obtained on each of the 23 welds. The 23 additional welds were from the same system as the C05.021 welds of this request.

Relief Request 04-ON-002 Page 8 of 9 Duke Energy Corporation does not claim credit for coverage of the far side of austenitic piping welds. The characteristics of austenitic weld metal attenuate and distort the sound beam when shear waves pass through the weld. Refracted longitudinal waves provide better penetration but cannot be used beyond the first sound path leg.

Duke Energy Corporation uses a combination of shear waves and longitudinal waves to examine single sided austenitic piping welds.

The procedures, personnel and equipment have been qualified through the Performance Demonstration Initiative (PDI). However, although longitudinal wave search units were used in the qualification and cracks were detecting through the weld metal, PDI does not provide a qualification for single sided examination of similar metal austenitic piping welds.

Paragraph Q:

Liquid Penetrant examination of area/weld for item number C05.070 was conducted using personnel, equipment and procedures qualified in accordance with the1989 Edition with no Addenda of the ASME Section Xl Code. Although 100% coverage of the examination area could not be achieved, the amount of coverage obtained for this examination provides an acceptable level of quality and integrity. (See Paragraph R for additional justification.)

Paragraph R:

Duke Energy will use Class 2, Examination Category C-H, pressure testing and VT-2 visual examination to compliment the limited examination coverage. The Code requires that a pressure test be performed once each period for Class 2 items. These tests require a VT-2 visual examination for evidence of leakage. This testing provides adequate assurance of pressure boundary integrity.

In addition to the above Code required examinations (surface and pressure test), there are other activities which provide a high level of confidence that, in the unlikely case that leakage did occur through this weld, it would be detected and isolated. One activity is that leakage from this weld would be detected by Operations personnel during their regular rounds. The Nuclear Equipment Operator has been trained to look for any unusual conditions, such as leaks. The C05.011, C05.021, C05.070 items, and item C05.051.012 in this request are located in an area where operations personnel will be walking through as part of their rounds; therefore, any leak would be identified by visual observation. All of these activities together will provide reasonable assurance of weld/component integrity.

Duke Energy has examined the weld/component referenced in this request to the maximum extent possible utilizing the latest in examination techniques and equipment. The welds/components were rigorously inspected by volumetric NDE methods during construction and verified to be free from unacceptable fabrication defects. Based on the coverage and results of the required volumetric exams this outage and the additional pressure testing (VT-2) exams, it's our opinion that this combination of examinations provides a reasonable assurance of component integrity.

VII. Implementation Schedule Paragraph S The scheduled third 10-year interval plan code examination was performed on the referenced area/weld resulting in limited volumetric coverage. No additional examinations are planned for the area/weld during the current inspection interval. With the exception of welds on the Oconee Unit 2 Steam Generators (because the generators will be replaced in the spring of 2004), the same areas/welds may be examined again as part of the next (fourth) 10-year interval plan, depending on the applicable code year edition and addenda requirements adopted in the future.

Relief Request 04-ON-002 Page 9 of 9 VIII. Other Information The following individuals contributed to the development of this relief request:

James J. McArdle (NDE Level III Examiner) provided Sections 1I through V and part of Section VI.

B. W. Carney, Jr. (Oconee Engineering) provided part of Section VI.

Larry C. Keith (Oconee ISI Plan Manager) compiled the remaining sections.

Sponsored By:

Co /*dP Date K (

6 Approved By:

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DUKE POWER COMPANY Exam Start:

1129 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:

1146 Revision 4 Station:

Oconee Unit:

2 Component/Veld ID: 2-PZR-WP45 Date:

10/23/2002 Weld Length (in.):

14.1 Surface Condition:

FLUSH Lo: 9.1.1.1 Surface Temoerature:

84 0

F Examiner: James L. Panel/

A' Level: 11 Scans:

Pyrometer S/N:

MCNDE 27228

,,"'^,.

Cal Due:

12/12/2002 Examiner: Marion T.Weae Level:

11 45 0 72 dB 70 °3 dB j

Configuration:

NOZZLE TO SAFE END Procedure: NDE-610 Rev: 4 FC:

45T ° dB 70T a dB Flow 60 dB NOZZLE to SAFE END Calibration Sheet No:

6Scan Surface: OD CbaoST dB Applies to NDE-680 only 0202068, 0202069 Other:

35 - 61 dB Skew Angle:

IND Max Max Max Li L2 WI MpF W2 Mp2

Dir, Surf.

Scan Damps 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac DO 1OT W ITE HMA HMA HMA HMA HMA HMA D

NOT WRIT 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACI.

IN T IS 100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI 45

=

I I

I Remarks: *FC 97-01, 98-20, 01-05, 02-10 HSBCT

/

Limitations: (see NDE-UT-4) El 90% or greater coverage obtained: yes-a no M %h 25-ot Sheet__/

of3 Reviewed BLevel:

Date:

Authorized,nsector:

Date:

Item No:

J/*/ -o2*

l.

205.040.002A r

I

DUKE POWER COMPANY FORM NDE-T-4 ISI LIMITATION REPORT Revision I Component/Weld ID: 2-PZR-WP45 Item No: B05.040.002A Remarks:

SURFACE BEAM DIRECTION TAPER OF NOZZLE 100% COVERAGE El NO SCAN BY 1 SCAN FROM SAFE END SIDE.

OLIMITEDSCAN 9 1 0 2 O 1 0 2 a cw o ccw FROM L N/A to L N/A INCHES FROM WO 0

to BEYOND ANGLE:

0 0 0 45 0 60 0 Other FROM 0

DEG to 360 DEG SURFACE BEAM DIRECTION 0

NO SCAN O LIMITEDSCAN 0 10 2 O3 1

2 a cw o ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEGto DEG SURFACE BEAM DIRECTION 0

NO SCAN 0

LIMITEDSCAN 0 1 0 2 0 1 O 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEGto DEG SURFACE BEAM DIRECTION O NO SCAN 0

LIMITEDSCAN 1 0- 2 0 1 0 2 0 cw a ccw FROM L to L INCHES FROM WO to ANGLE: 0 0 0 45 0 60 0 Other FROM DEG to Prepared By:

Level:

Z Date: /

o, Sketch(s) attached O yes 0 no Sheet Z of Reviewed By:

a 7)I,>

Date:

Authorized Inspectop Date:sc/,i L mv _

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DUKE POWER COMPANY NDE-UT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 EXAMINATION SURFACE 2 4

3 2

1 WELD 1

2 3

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Remarks:

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90 180 Sheet -3 ofLA3.

Examiner:

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avS, 040 DES l Level:

I Date: /0/ 2 i Level.

Date: /o-Zi-0L 5

D Date: :oz I

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DUKE POWER COMPANY FORM NDE-UT-10 ULTRASONIC INDICATION RECORD FOR PIPING Revision 0 Station:

Oconee I Unit:

2 ComponentAWeld ID: 2LP-189-15 Date:

10/23/2002 Surface Condition:

Gl UND Item No: B09.011.005 Examiner Jay A. Eaton vel:

Ill Procedure:

NDE-600 Rev:

14 FC:

0z -I Examiner Gayle E. Hou~er Level:

IlIl Lo:

9.1.1.1 Configuration:

CIRC.

Calibration Sheet No:

0202066, 0202067 S2 VALVE to Si PIPE Scan Surface: OD Mp W

L LI L2 Beam Exam IND 4

FSH Max Max Max 20 % FSH 20 % FSH Dir.

Surf.

Scan Damps Remarks 1

60*

159 1.8 1.6 RT3 360 INT.

2 1

AXIAL NO 2

60L 141 2.0

.800 RT2 360 INT.

2 1

AXIAL NO

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i DUKE POWER COMPANY NDE-UT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 49t-K 3

li IIIII 1111 111 11 WI:ELD EXAMINATION 4URFACE 2 3 VQ I'VE4 2

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.I DUKE POWER COMPANY Form NDE-UT-8 ULTRASONIC INDICATION RESOLUTION SHEET Revision.1 Acceptance Standard:

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INDICATION #1 IS A 360° REFLECTOR DUE TO ROOT GEOMETRY. A 70'SHEAR WAVE AND WSY 70 WAS USED AS CONFIRMATION. ADDITIONAL REVIEW OF RT FILM REVEALED ROOT CONCAVITY.

INDICATION #2 IS A 360° GEOMETRIC REFLECTOR FROM THE ID TAPER DUE TO THE VALVE CONFIGURATION. MANUAL PLOTTING OF THE INDICATION SHOWS THAT IT IS ALSO OUT OF AREA OF INTEREST.

Initial o Final cSI ANII I DATE..I D-AT HSBCT Item No: 809.011.005 Acceptable Indications: IND. #1 & #2 Rejectable Indications: N/A These indications have been compared with previous ultrasonic data 0 Yes ° No previous data available Examiner:

f Level:

Date:

10/23/2002 Sheet to e.

Date:,

3 of (1:1 F..

Date:

Authorized Inspector

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DUKE POWER COMPANY FORM NDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2LP-189-15 Item No: B09.011.005 Remarks:

SURFACE BEAM DIRECTION NO SCAN DUE TO VALVE G NO SCAN CONFIGURATION BUT 100%

0 LIMITED SCAN 0 1 0 2 0 1 0 2 0 cw O ccw COVERAGE OBTAINED USING 0

LIITEDSCANMULTIPLE BEAM ANGLE FROM L 0

to L 33.57 INCHES FROM WO CL to BEYOND DIRECTIONS.

ANGLE:

0 0 0 45 El 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN 0

LIMITED SCAN 0 1 0 2 0 1 0 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 10 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN 0

LIMITED SCAN 0 1 0 2 0 1 01 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:

O0 0 45 0 600 Other FROM _

DEG to DEG 0 NO SCAN 0

LIMITED SCAN SURFACE 0 1 0 2

BEAM DIRECTION 0 1 O 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:

O o 0 45 0 Prepared By:

Reviewed By:

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DUKE POWER COMPANYl D-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 WI

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EXAMINATION SURFACE 2 2

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AT oL 6umA Item No:

.c6 Prfile taken 270 at:J/SD D 90 180 Sheet < of L "d E, z; 1 v

I Examiner L

k-e Level: 7:E I Date:'t/ ajb2. 1 Reviewed By:

4 A I Level: -

Date:,;zt, Authorized Inspector.

Date:

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DUKE POWER COMPANY Form NDE-UT-9 ULTRASONIC BEAM ANGLE MEASUREMENT RECORD Revision 3 1<1 'I

1. Take thickness measurements between.

wedge locations.

2. Place search unit on straight turn of pipe, and peak the signal.
3. Measure distance (d) between exit points.
4. Calculate beam angle with formula as shown using measured wall thickness.

tan 0 =

(d/2) t

5. Use the measured beam angle to determine coverage and when plotting any indications.

Pipe Size:

10" Pipe Schedule:

1" THICK For thin wall pipe use 2nd Vee path tan o =

(d12) 2t Nominal 45 deg: d= __0 _; t= _ 0 _; measured angle=

0.00 deg Nominal 60 deg: d= _ 3.46

t= _ 1_ _; measured angle" 59.97deg Nominal 70 deg
d= __0 _ ; t= _ 0 _; measured angle=

0.00 deg Item No.

B09.01 1.005 Level Date i1-1 I7 C."

Date

C:1

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S..

DUKE POWER COMPANY Exam Start:

1155 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:

1221 Revision 4 Station:

Oconee Unit:

2 Component/Weld ID: 2-SGA-WG23-1 Date:

101161202 Weld Length (in.):

92.0 Surface Condition:

AS GROUND Lo:

9.2.3 Surface Temperature:

109

° F Examiner David Zimmerman b

Level: ill Scans:

Pyrometer S/N:

MCNDE 27227.

Level:Cal-Due:

12/12/2002 Examiner: Winfred C. Leepe vel: II 45 0 64.5 dB 70 D dB_._d f

,<d

_0.Configuration:

CIRC. EWLD Procedure: NDE-820 Rev: 0 FC:

45T 0 64.5 dB 70T ° dB S2 Flow Si N/A 60 El 73.0 dB NOZZLE to SHELL Calibration Sheet No:

60T 0 73.0 dB Scan Surface: OD 022340023 Applies to NDE-680 only 0202034, 0202035 Other dB Skew Angle:

N/A Max Mp W

L Beam Exam IND X Max Max Max LI L2 WI MpI W2 Mp2 Dir.

Surf.

Scan Damps Ref 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac 0

NOT WRIT DO NOT WRITE HMA HMA HMA HMA HMA HMA 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACI.

IN T IS 100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI Remarks:

Limitations: (see NDE-UT-4) 0 90% or greater coverage obtained: yes 0 no 0 4.

Date:

Sheet L/ of K l

Item No:

C02.021.001 1

-3

- E o :.

o 2.!n (I

311403Initial 0,

Final 3111 IANI

~DATE.

C J

FORM NDE-IJT-4 DUKE POWER COMPANY ISI LIMITATION REPORT Revision 1 ComponentNWeld ID: 2-SGA-WG23-1 Item No: C02.021.001 Remarks:

SURFACE BEAM DIRECTION NOZZLE CONFIGURATION 0E NO SCAN.

OLIMITEDSCAN 1 E 2 2

El cw ccw FROM L N/A to L N/A INCHES FROM WO TOE to BEYOND ANGLE:

0 0 0 45 G 60 0 Other FROM 0

DEG to 360 DEG SURFACE BEAM DIRECTION 0

NO SCAN O LIMITED SCAN 0 10 0

2 2

cw o ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN O LIMITEDSCAN 0 1 0 2

2O cw l

ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN O LIMITEDSCAN 03 1 0 2

O 1 O 2 Oc Cw O ccw FROM L to L INCHES FROMWO to ANGLE:

0 0 0J 45 0 60 0 Other FROM DEG to It

_m Prepared By:

DvId K. Zimi Level:

III Date: 10/16/2002 Sketch(s) attached 0l yes

no Sh Reviewed By

Authorized Inspect or<~~"

leet 2 of 6 R

M _

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Attachment C Page /z of SI DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Revision 0 Examination Volume/Area Defined 0 Base Metal 0

Weld

° Near Surface 0 Boltinq El Inner Radius Area Calculation Volume Calculation 2.25 IN. X 4.0 IN. = 9.0 SQ.IN.

9.0 SQ.IN. X 92 IN. = 828 CU.IN.

Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Percent Coverage Scan # Angle Direction (sq.in.)

(in.)

(cu.in.)

(cu.in.)

tL 1

45160 2

45/60 3

45160 4

45160 2

1 Cw CCw

/J A 9.0 0.0 0.0 0.0 0.0 92 92 92 92 0

828 0

0 0

828 828 828 828 828 3312 8s n S

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Date AA

/o m/all"

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DUKE POWER COMP..AY Ultrasonic Beam Spread Measurement Sheet NDE-%_.016.

Revision 1..

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Examiner.

Level:

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Level:

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Authorized Inspector.

Date:

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..-J DUKE POWER COMPANY Exam Start:

1225 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:

1250 Revision 4 Station:

Oconee Unit:

2 Component/Weld ID: 2-SGA-WG23-2 Date:

10116/202 Weld Length (in.):

92.0 Surface Condition:

AS GROUND Lo:

9.2.3 Surface Temoerature:

109

° F Examiner: Larry Mauldin

&.Level:

11 Scans:

Pyrometer S/N:

MCNDE 27227 Cal Due:

12/12/2002 Examiner: James L. Panel,,Level:

II 45 E 64.5 dB 70 °3 dB Configuration:

CIRC. WELD Procedure: NDE-820 Rev: 0 FC:

45T 0 64.5 dB 70T 2 dB S2 Flow Si N/A 60 0 73.0 dB NOZZLE to SHELL Calibration Sheet No:

60T 0 73.0 dB Scan Surface: OD 0202037, 0202038 Applies to NDE-680 only Other dB Skew Angle:

N/A Max MP W

L Beam Exam IND #

Max Max Max LI L2 WI MpI W2 Mp2 Dir.

Surf.

Scan Damps Ref 4

O 5

20%dac 20%dac 20%dac 20%dac 20%dac 20%dac D

NOT WRIT

)PW I

DO IOT W ITE HMA HMA HMA HMA HMA HMA D,

W b

N b

IS SPaCE 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACE I

T -II S1kE100%Mdac 1100%dac 1100%dacl 00%dac 100%dac 100%dacl1 Remarks:

Limitations: (see NDE-UT-4) 0 90% or greater coverage obtained: yes Cl no E Sheet/

o f e

Reviewed By:

Level:

Date:

Authorized Insoector:

Date:

Item No:

,."C.2

<4/

C02.021.002 c41xj1/2,-

Initial 1; Final ANFI DATE T 'I I

C

!I DUKE POWER COMPANY FORMNDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2-SGA-WG23-2 Item No: C02.021.002 Remarks:

SURFACE BEAM DIRECTION NOZZLE CONFIGURATION El NO SCAN O LIMITEDSCAN

° 1 ID 2 E

O1 13 2 a cw E ccw FROM L N/A to L N/A INCHES FROM WO TOE to -

BEYOND ANGLE:

0 0 El 45 0E 650 0 Other FROM 0

DEG to 360 DEG SURFACE BEAM DIRECTION O

NO SCAN O LIMITED SCAN

° 1 0 2 O 1 0 2 a cw a ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN O LIMITEDSCAN 0 1 ° 2 O 1 O 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN 0

LIMITED SCAN 0 1 0 2

0 1 a 2 O cw O ccw FROM L to L INCHES FROM WO to I.

ANGLE:

0 0

0 45 0 60 0 Other_

FROM____ DEGto Prepared By: Larry E. Mauldi vel:

11 Date: 10116/2002 Sketch(s) attached El yes 0 no Sheet 2 of___

Reviewed By: J',/)

A Date:

O?lAuthorized Inspector Date:,.A Initial q Final Bl ANQ II 4 DA7TE-T-11-l UCRT

I I

AttachmentC Page 8 °ofS DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Rvso Examination VolumelArea Defined 0 Base Metal 0

Weld 0 Near Surface

° Boltinq

° Inner Radius Area Calculation Volume Calculation 2.25 IN. X 4.0 IN. = 9.0 SQ.IN.

9.0 SQ.IN. X 92 IN. = 828 CU.IN.

Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Scan # Angle Direction (sq.in.)

(in.)

(cu.in.)

(cu.in.)

Percent Coverage W%

1 L§'4(a 3 4e6c, z

c.ic bZ23 I

0.0 Ciz 0

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II Date: 10/16/2002 Reviewed By:

C5 Level:

Date:

l Vi7

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DUKE POWER COMPANY Exam Start:

1211 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:

1239 Revision 4 Station:

Oconee Unit:

2 Component/Weld ID: 2-SGA-WG23-1 Date:

1011612002 Weld Length (in.):

N/A Surface Condition:

AS GROUND La:

9.2.3 Surface TemPerature:

109 F

Examiner: David Zimmerman Level: ii Scans:

Pyrometer S/N:

MCNDE 27227

,,y PsCal Due:

12/12/2002 Examiner Winfred C. Leeper evel:

II 45 ° dB 70 E 75.0 dB JC

.Configuration, INNER RADIUS Procedure: NDE-680 Wv: 2 FC:

45T ° dB 70T E 75.0 dB N/A Flow N/A 60 0 73.0 dB N/A to NIA Scan Surface: OD Calibration Sheet No:

60T E 73.0 dB Apples to NDE-680 only 0202036, 0202040ApletoNE60ny 0 Other dB Skew Angle:

Max Mp W

L Beam Exam IND # 2$

Max Max Max LI L2 WI MpI "a

Mp2 Dir.

Surf.

Scan Damps Ref 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac DO 14OT W ITE HMA HMA HMA HMA HMA HMA D

NOT WRI IN T IS SP CE 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPAC 100%dac 100%dac 100%dac 100%dac 100%dac 100%dac NRI Remarks:

  • 02-03, 02-08 Limitations: (see NDE-UT-4) 10 90% or greater coverage obtained. yes
no 0 SheetL/

of 4 Reviewed Bv:

Level:

Date:

Authorized Insoector:

Date:

Item No:

(

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Attachment C Page l3 of 5?>

DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Revision 0 Examination Volume/Area Defined 0 Base Metal

° Weld

° Near Surface

° Bolting 0 Inner Radius Area Calculation Volume Calculation SEE DRWG.

18.5 SQ.IN.

18.5 SQ.IN. X 92 IN. = 1702 CU.IN.

Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Scan # Angle Direction (sq.in.)

(in.)

(cu.in.)

(cu.in.)

Percent Coverage 1

6017O CW 16.3 92 1499.6 1702 2

60170 CCW 16.3 92 1499.6 1702 2999.2 3404 88.11 Item No:

C02.022.001 Prepared By: Larry Mauldin Level:

II Date:10/16/200, Reviewed By:

Level:

A, Date: lo l51MZ

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DUKE POWER COMPANY Exam Start:

1208 Form NDE-UT-2A ULTRASONIC EXAMINATION DATA SHEET FOR PLANAR REFLECTORS Exam Finish:

1237 Revision 4 Station:

Oconee Unit:

2 Component/Weld ID: 2-SGA-WG23-2 Date:

10/16/2002 Weld Length (in.):

N/A Surface Condition:

AS GROUND Lo:

9.2.3 Surface Temrerature:

109 F

Examiner: Larry Mauldin i

Level: II Scans:

Pyrometer S/N:

MCNDE 27227

~&

ACal Due:

12/12/2002 Examiner: James L. Panel Level: II 45 a dB 70 0 75.0 dB

, aConfiguration:

INNRE RADIUS Procedure: NDE-680 Rev: 2 FC:

45T ° dB 70T El 75.0 dB N/A Flow N/A

_El_

6 73.0 dB N/A to N/A Scan Surface: OD Calibration Sheet No:

60T a 73.0 dB Aple to On 020239,00204 Applies to NDE-680 only 0202039, 0202041 Other:

dB Skew Angle:

Max Mp W

L Beam Exam IND #

e Max Max Max Li L2 W1 Mp1 W2 Mp2 DIr.

Surf.

Scan Damps R ef 20%dac 20%dac 20%dac 20%dac 20%dac 20%dac DO NOT W ITE HMA HMA HMA HMA HMA HMA D

NOT WRIT IN T IS SP CE 50%dac 50%dac 50%dac 50%dac 50%dac 50%dac IN THIS SPACE.

IOO%dac 100%dac 100%dac 100%dac 100%dac i00%dac Remarks:

  • 02-03, 02-08 Limitations: (see NDE-UT-4) 0 90% or greater coverage obtained: yes ° no 0 Sheetj

_ of Y

Reviewed Bv:y

,K, Level:

Date:

Authorized Inspectorr Date!

Item No:

4/

C02.022.002 I

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Attachment C i Page a-of s, DUKE POWER COMPANY NDE-91-1 Limited Examination Coverage Worksheet Revision 0 Examination VolumelArea Defined

°3 Base Metal

° Weld 0 Near Surface a Boltinjq 0 Inner Radius Area Calculation Volume Calculation SEE DRWG.

18.5 SQ.IN.

18.5 SQ.IN. X 92 IN. = 1702 CUN.

Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Percent Coverage Scan # Angle Direction (sq.in.)

(in.)

(cu.in.)

(cu.1n.)

Item No:

C02.022.002 Prepared By: Larry Mauldin Level:

II Date: 10116/200,l Reviewed By:

Level:

n Date: lo olzl

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DUKE POWER COMPANY Exam Start:

1050 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS Exam Finish:

1054 Revision 2 Station:

Oconee Unit:

2 Component/Weld ID: 2LP-150-70 Date:

8/5/2002 Nominal Material Thickness (in):

1.312 Weld Length (in.):

40.1 Surface Temperature:

93 Deg F Measured Material Thickness (in):

1.26.

Lo:

9.1.1.1 Pyrometer SIN:

MCNDE 27228 Surface Condition:

AS GROUND Calibration Sheet No:

Cal Due:

1211212002 0202002 Configuration:

Circ. Weld Examiner: James L. Panel /

~Level, II S2 Flow Si VALVE to RED.

Procedure:

NDE-6d Rev:

I FC:

  • VA E

to RD Ampi Li WI MpI W2 Mp2 L2 WI MpI W2 Mp2 IND x

rem z rem x rem 2 rem

? rem k rem 2 rem 2 rem 2 rem

rem

? rem Exam Damps NO.

BW BW BW BW BW BW BW BW 8W BW BW Surf.

LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB NRI 0

Iintial 0 FinalS-I H-S BCT I

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Revision 1 EXAMINATION SURFACE 1 "?co.

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180 Sgof9 1 80 Sheet-of=+/--4 0.

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_I Date: g-7-o0-

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C:.

Is DUKE POWER COMPANY FORM NDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2LP-150-70 Item No: C05.011.012 Remarks:

SURFACE BEAM DIRECTION Valve Configuration 0l NO SCAN 0

LIMITED SCAN 0102 01020 cwO ccw FROM L N/A_

to L _N/A INCHES FROM WO _

CL_

to BEYOND ANGLE:

0 0 0 45 0 60 0 Other FROM 0

DEG to 360 DEG SURFACE BEAM DIRECTION 0

NO SCAN O LIMITED SCAN 0 1 0 2

O 1 a 2 Q cw O ccw FROM L _

to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to

-DEG SURFACE BEAM DIRECTION 0

NO SCAN 0

LIMITED SCAN 0 1 0 2

0 1 0 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN O LIMITEDSCAN 1 0 2

Ol 1 O 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE: 0 0 0 45 0 60 0 Other FROM DEG to 7

Prepared By: David K. Zimmerman Level:

IIl Date: 8/5/2002 Sketch(s) attached 0 yes 0 no Sheet 4 of ol Reviewed By: &au l'2Date:

6--Oz,l Authorized Inspecto Date:

II

_/

  • II p0 Inrtial 0 final 3

ANIl DAI E -

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f X.ss DUKE POWER COMPANY NDE-UT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 wcM n

VIS.

4 3

2 1

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Remarks:

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7.

7 Date: 3;-#-o :

A u h r z d n p c o r

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DUKE POWER COMPANY NDE-LT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 EXAMINATION SURFACE 2 MCI n 4

3 2

1 vv'A tL JiI.

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_Level: -1 J Date:,ok/'Aoz.

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DUKE POWER COMPANY Exam Start:

0920 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS Exam Finish:

0923 Revision 2 Station:

Oconee Unit 2

Component/Weld ID: 2HP-219-14 Date:

8/7/2002 Nominal Material Thickness (in):

0.674 Weld Length (in.):

14.1 Surface Temperature:

91 Deg F Measured Material Thickness (in):

.682 Lo:

9.1.1.2 Pyrometer SIN:

MCNDE 27218 Surface Condition:

AS GROUND Calibration Sheet No:

Cal Due:

12/10/2002 Examiner: Marion T. Weaver Level:

II 0202018 Configuration:

Circ. Weld Examiner Winfred C. Leeper/, /,,

Level:

II S2 Flow SI Procedure:

NDE-640 fev:

I Valve to Pipe Ampl Li WI Mpl W2 Mp2 L2 WI MpI W2 Mp2 IND

-rem z rem 2 rem x rem 2 rem z rem 2 rem 2 rem 2 rem 2 rem 2 rem Exam D

NO.

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DUKE POWER COMPANY FORMNDE-UT-4 ISI LIMITATION REPORT Revision 1 Component/Weld ID: 2HP-219-14 Item No: C05.021.013 Remarks:

SURFACE BEAM DIRECTION VALVE CONFIGURATION 0

NO SCAN O LIMITEDSCAN a

0 2l 2O cw O ccw FROM L N__NIA to L NIA INCHES FROM WO C/L to BEYOND ANGLE:

0 0 0 45 0 60 0 Other FROM 0

DEG to 360 DEG O NO SCAN SURFACE BEAM DIRECTION O LIMITEDSCAN 0 1 0 2 0 1 0 2 0 cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG O

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0 0 0 45 0 60 0 Other FROM Prepared By: Winfred C. Leeper/vJ,/eve2l.

II Date: 8/7/2002 l Sketch(s)attached 0 yes O no Reviewed By:

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.J DUKE POWER COMPANY NDE-UT-5 UT PRF0LE/PLOT SHEET Revision 1

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C71,1 DUKE POWER COMPANY NDE---5 UT PRO FLE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 4

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DUKE POWER COMPANY Exam Start 1424 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS Exam Finish:

1428 Revision 2 Station:

Oconee Unit 2

Component/Weld ID: 2HP-396-5 Date:

8/7/2002 Nominal Material Thickness (in):

0.531 Weld Length (in.):

14.1 Surface Temperature:

107 Deg F Measured Material Thickness (in):

.559.

Lo:

9.1.1.2 Pyrometer S/N:

MCNDE 27218 Surface Condition:

AS GROUND Calibration Sheet No:

Cal Due:

12/10/2002 Examiner Marion T. Weave Level:

II 0202023 Configuration:

Circ. Weld Examiner Winfred C. Leeperl /-

Level:

II S2 Flow 51 Valve to Pipe Procedure:

NDE-640 Rev:

I FC:

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DUKE POWER COMPANY FORMNDE*UT-4 ISI LIMTATION REPORT Revision 1 Component/Weld ID: 2HP-396-5 Item No: C05.021.093 Remarks:

SURFACE BEAM DIRECTION VALVE CONFIGURATION El NO SCAN O LIMITElSCAN

° 1 2 2 1 0 2 0 cw o ccw FROM L N/A to L N/A INCHES FROM WO C/L to BEYOND ANGLE:

0 0 0 45 El 60 0 Other FROM 0

DEG to 360 DEG SURFACE BEAM DIRECTION O NO SCAN O LIMITED SCAN Oi 10 2 O

1 O 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 O0 45 0 60 03 Other FROM DEG to DEG SURFACE BEAM DIRECTION O

NO SCAN O

LIMITED SCAN 0 1 0 2

O 1 0 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG

-i; 0 NO SCAN 0 LIMITED SCAN FROM L ANGLE:

0 0 0

SURFACE 0

0 1 0 2 BEAM DIRECTION 0 1 O 2 O cw O ccw to L 45 0 60 0 Other INCHES FROM WO to

CM E; n;.

1o 4" FROM DEG to Prepared By: Winfred C.

Reviewed By:

Luga, Date: 817/2002 Sketch(s) attached ED yes O no Sheet -of_

Authorized Inspector:

° A9 Date: S 7v-c j31t110) 61 I 1nitral 0 Final r -

AN11I C DATE I HSBCT

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f DUKE POWER COMPANY NDEU5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 EXAMINATION SURFACE 2 WELD 4

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/,Il DUKE POWER COMPANY NDE-LT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 WELD 4

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[Author~izecl Ins-pectoc. I r= ~7e'.r,-

conee Unit #2I EOC 19 NO DATA CALIBRATION SHEET #02020/3-25#' Woe COMPONENT I.D.# 2HP-221-22 ITEM#

C65.02!.I15

  • .S~stT V i S rFinal DATE3

in->

DUKE POWER COMPANY Exam Start:

1004 NDE-UT-3A ULTRASONIC EXAMINATION DATA SHEET FOR LAMINAR REFLECTORS Exam Finish:

1008 Revision 2 Station:

Oconee Unit:

2 Component/Weld ID: 2HP-221-22 Date:

81712002 Nominal Material Thickness (in):

0.531 Weld Length (in.):

14.1 Surface Temperature:

92 Deg F Measured Material Thickness (in):

0.540.

Lo:

9.1.1.2 Pyrometer S/N:

MCNDE 27218 Surface Condition:

AS GROUND Calibration Sheet No:

Cal Due:

12/10/2002 Examiner: David Zimmerman/)

Level:

III 0202015 Configuration:

Circ.Weld Examiner. James L. Panel Level:

II S2 Flow Si Procedure:

NDE-64d Rev:

I FC:

Elbow to Valve Ampl LI WI MpI W2 Mp2 L2 WI Mp1 W2 Mp2 IND krem 2 rem 2 rem z rem z rem

_ rem 2 rem 2 rem 2 rem z rem 2rem Exam Damps NO.

2

!$BW BW BW BW 8W BW BW BW BW 8W BW Surf.

LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB LOB NRI 0

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DUKE POWER COMPANY NDE-UT-5 UT PROFILE/PLOT SHEET.

I Revision I EXAMINATION SURFACE 1 4

3 2

lllll llll lllH llll 1l11 EXAMINATION SURFACE 2 WELD 1

11.11 N.[Il liii 1

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  • 180 SheeL-o f(

-03

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DUKE POWER COMPANY FORMNDE-UT-ISI LIMITATION REPORT Revision 1 ComponentN/eld ID: 2HP-221-22 Item No: C05.021.115 Remarks:

SURFACE BEAM DIRECTION VALVE CONFIGURATION G NO SCAN O LIMITEDSCAN 0 1 0 2 0 1 0 2 0 cw ° ccw FROM L to L -

INCHES FROM WO C/L to BEYOND ANGLE:

0 0 0 45 0 60 O Other FROM 0

DEG to 360 DEG SURFACE BEAM DIRECTION o NO SCAN O LIMITEDSCAN O 1i 0 2

2 cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN 0

LIMITED SCAN 01 0 2

O 1 n 2 ° cw n ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to DEG SURFACE BEAM DIRECTION 0

NO SCAN OLIMITEDSCAN 1

2 L 1 2 O cw O ccw FROM L to L INCHES FROM WO to ANGLE:

0 0 0 45 0 60 0 Other FROM DEG to Prepared By:

James L. Panel wvel:

II Date: 8t7/2002 l Sketch(s) attached El yes O no Sheet-of t

Date:

Reviewed By:

IAuthorized Inspector_1

,L I

_ 3511 )

Init;al 0 Final Ig AN 1I IA4 TE I-HSBCT

Attachment C l Page si of Si.

DUKE POWER COMPANY Limited Examination Coverage Worksheet NDE-91-1 Revision 0 Examination Volume/Area Defined E Base Metal 0

Weld

° Near Surface

° Boltinq 0 Inner Radius Area Calculation Volume Calculation SEE DRWG.

SEE DRWG.

Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required C

Scan # Angle Direction (sq.in.)

(in.)

(cu.in.)

(cu.in.)

Percent overage V1r4 ALL 457/60 AXIALICIRC.

.285 14.1 a.y2

.tw t3 I 423 i95.4

(- ;

o7-2 0

07--7./b Cy

?t47/

I Item No:

C05.021.115 Prepared By: David K. Zimmerman 0 - r, Level:

III Date: 1O/281200 Reviewed By: P a4 7

6 Level:

'15 Date: /0.-i.O

I I

DUKE POWER COMPANY DE-UT-5 UT PROFILE/PLOT SHEET Revision 1 EXAMINATION SURFACE 1 EXAMINATION SURFACE 2 WELD 4

3

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I CM 3 i

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I Date:,e)/lz/oz Reviewed By:

b

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Date:

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~Date:, 3z Authorized Inspectors Date: 3

(

DUKE POWER COMPANY ND-5 UT PROFILE/PLOT SHEETr Revision l EXAMINATION SURFACE 1 WELD EXAMINATION SURFACE 2 4

3 2

1 I

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c'". 

Date: 03

rX"1 C

DUKE POWER COMPANY NDE-US.

UT PROFILE/PLOT SHEET Revislon 1 EXAMINATION SURFACE 1 EXAMINATION SURFACE 2 WELD 4

3 2

1 I

II.11.1 111 1 1 111 1 h A I

i.

1 2

3

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Item No: c c oeite

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Date:

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< /

Level:

Date: 3-50 270 90

.0.

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! LI =

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180 Sheet-LofLL Authorized Inspectod / e_--r,.

Date: 3 Date: 3 -//l_&

Attachment C, Page r8of 5?

I Form NDE-35A I Revision 3 DUKE POWER COMPANY STATION Oconee UNIT 2

LIQUID PENETRANT EXAMINATION REPORT Weld/ID No. 2-BWST-OUT-2 Material Type: 0 SS f CS 0 Inconel Diameter 14 Schedule/Thickness L.375 1l ISI 0 PSI 0 Other Procedure Rev. No.

19 Field Change No.(s) N/A W/O No.

98473656 SKETCH OF ITEM EXAMINED Surface Temperature 840 M&TE S/N:

MCNDE 27227 Penetrant Materials Category:

A E3 A(SE) O B O C O D O3 A(SE) Approved Penetrant Materials Data:

Batch Numbers Cleaner 01B07K Penetrant OOJ07K Developer 98J07K Emulsifier Fluorescent 0

Nonfluorescent w Black Light Intensity Verified Acceptance Standard:

A 0

D 0 G 0 K 0 Time

\\p, Date ez\\N Other.

B O E Q H O L 0 Light Meter S/N: t5 I P.

C 0 F E J ° M 0 Ind.

T Indication Reference Documents Recordable Reportable No.

Type/Dirnensions IeItI PIP S/N:

Rejectable O Acceptable E Exam Limitations:

[ Yes (p3. G, 4p % Examined 0

No (100% Examined)

Comments:

Examiner: Daryl L. Robinson

-&g,_

Level:

II Date:

8/2/2002 Examiner:

Level:

Date:

Reviewed By:

c Level:

25Date:

,-o_

Finalejw V/

Date ANII Bview Date Item No.

2SLv9

.cJ 4

C05.070.001 6X f

Attachment C Page s of. ?

DUKE POWER COMPANY l

NDE-91-1 Limited Examination Coverage Worksheet I

Revision O Examination Volume/Area Defined Base Metal N?

Weld 0 Near Surface E Bolting

° Inner Radius Area Calculation Volume Calculation

  • Surface Examination( NDE-35)

Required area - 1.375 in.(w) X 43.98 in.(l) = 60.47 in.

sq.

Area inspected - 1.375 in.(w) X 28.0 in.(i) = 38.5 in.

sq.

Coverage Calculations Area Length Volume Volume Beam Examined Examined Examined Required Scan #Angle Direction (sq.in.)

(in.)

(cu.in.)

.,eu.in.)

Percent Coverage N/A N/A N/A 38.5/60.47

q.

63.66 Item No:

C05.070.001 Prepared By: Daryl L Robinson

'az1 Level:

II Date: 8/2/2002 Reviewed By:

77j73, Level:

_ZZ7r.

Date: ?/13/OZ-

L s

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,d I

IDENT PIECE D AM.

THICK.

C.

NO.

DNo.,THCK.

QT

'WP2-2 I TO I N/A 6.188 I

i 1vPi-2 2 TO 2 N/A 6.188 2

I WPI-3 3 TO 3 N/A 6.188 3 t 1

WP3-1 I TO 2 84'I, D.

6.188 4 3 WP3-2 2 TO 3 84!' 1. D.

6.188 5

I

,WP4 3TO4841 84" I.D.

6.188 6

WP6 40 TO 41 84 1.D.

13.563 8

I WP7-1 4TO4Oa41 N/A 6.188 9

WP7-2 4TO 4Oa4 N/A 6.188 30 6

WP15 6 TO 8 4.750 331 3

NTI.

Attachment D Page I of 1 F

v vP WP23 8 TO 37 101*' NPS 1.063 32 3

P 63-4(W-X QUADY P63-Y-Z UDAT 82 \\TOP VIEW

\\

\\WP63-4 (W-X QUADRANT)

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oWP63-5 (Y-Z oUADRANT)

WP63-6 (Z-W QUADRANT)

WP26-4 (W-X QUADRANT)

WP26-5 (Y-Z QUADRANT)

WP26-6 (Z-W QUADRANT)

-1 1

1 WP26-1 30 TO 4 6.186 37 I

WP26-2 30 TO 4 6.188 40 WP26-3 30 TO 4 6.188 41 2 WP26-4 30 TO I 6.188 42 6

WP26-5 30 TO I 6.188 45 1L WP26-6 30 TO I 6.188 110 81 VWP26-7 30 TO 4 6.188 WP28 TO 4 a 40 84 1. D.

4.750 WP33-1 31 TO 5 4.750 WP33-2 31 TO 5 4.750 WP33-3 31 TO 5 4.750 WP34 9 TO 5 4.750 WP45 45TO 9 4"NPS 0.750 WP63-1 42 TO 30 1.1875 WP63-2 42 TO 30

  • 1.1875 WP63-3 42 TO 30 1.1875 WP63-4 42 T0 30 1.1875 WP63-5 42 TO 30 1.1875 WP63-6 42 TO 30 1.1875 WP7 6 I TO5 84" 1. D.

4.750 WP82-X I20 TO 3 N/A 3.500 v2Pez-XY 110 TO 3 N/A 3.500 WEI WP82-Y 110 TO 3 N/A 3.500

1. D. NO-I.r AV_

0 01 -

-WP7-2 (W-X QUADRANT)

\\-, ~

REF. DRAUIINGS r

A--

WI OM 1201-456

-to II :f,?

.. i WP82-YZ 110 TO 3 N/A 3.500 Wp9i-tI

,Ca I

4 1

r r

l.

, J I)C

e.

L I

I I

.WP82--Z I 220 TO 3 1 N/A 3.500 WP9I -2,11 7 I

I HI-I -I IIILt WP82-ZW I 0TO 3 N/A 3.500 IWP9I 4. 4 I IjC8 PRESSURIZER WELD OUTLINE WP82-W 110 TO 3 N/A 3.500 7-/14g-%-l 7-2-3-i wP6-7'.-

.f_.

V_

VWD

1. D\\l

.Nh Fwn WP82-WX 110 TO 3 N/A 3.500 DATE APPD DATE DWG NO.

REV ISI-OCN2-002 1I........

Request for Relief 04-ON-003 Limited Examinations Associated With Reactor Vessel Welds 2EOC 19

Relief Request 04-ON-003 Page 1 of 7 Proposed Relief in Accordance with 10 CFR 50.55a(g)(5)(iii)

Inservice Inspection Impracticality Duke Energy Corporation Oconee Nuclear Station - Unit 2 (EOC-19)

Third 10-Year Interval - Inservice Inspection Plan Interval Start Date= 12-16-1994 Interval End Date=9-9-2004 ASME Section XI Code - 1989 Edition with No Addenda I. L1. & Ill.

IV.

V.

VI.

VIl.

Limited System I Code Requirement from Which Basis for Relief Alternate Justification.

Implementation Area/Weld Component for Which Relief is Requested:

Examinations or for Granting Schedule I.D.

Relief is Requested:

100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.

Fig. No.

Limitation Percentage 2-RPV-WR34 NC System Exam Category B-A See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B01.01 1.004 "A"

"F'

.G" Lower Shell to Lower Fig. IWB-2500-1 Head Ring 36% Volume Coverage due to Circumferential Weld limited scanning.

2-RPV-WR35 NC System Exam Category B-A See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B01.021.003 "A"

6"FtG' "G"

Lower Head Cap to Fig. IWB-2500-3 Lower Head Ring 42% Volume Coverage due to Circumferential Weld limited scanning.

2-RPV-WRI3 NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B03.090.001 "B"

"F' "H"

Outlet Nozzle-to-Vessel Fig. IWB-2500-7(a)

Weld @ 900 82% Volume Coverage due to limited scanning.

(UT from vessel I.D.)

2-RPV-NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph WR13A Reactor Vessel Item No. B03.090.002 "B"

"Fs "H""

1 Outlet Nozzle-to-Vessel Fig. IWB-2500-7(a)

Weld @ 270° 82% Volume Coverage due to limited scanning.

(UT from vessel I.D.)

Relief Request 04-ON-003 Page 2 of 7 II. & III.

IV.

V.

VI.

VII.

Limited System /

Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/Weld Component for Which Relief Is Requested:

Examinations or for Granting Schedule I.D.

Relief is Requested:

100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.

Fig. No.

Limitation Percentage 2-RPV-WR54 NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Fig. IWB-2500-7(a)

"C" "F"

"H" Core Flood Item No. B03.090.007 Nozzle-to-Vessel Weld (UT from vessel I.D.)

@ 00 81 % Volume Coverage due to limited scanning.

2-RPV-NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph WR54A Reactor Vessel Fig. IWB-2500-7(a)

"C" "F'

"H1" Core Flood Item No. B03.090.008 Nozzle-to-Vessel Weld (UT from vessel ID)

@ 180° 81 % Volume Coverage due to limited scanning.

2-RPV-WR54 NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B03.100.007 "D"

"OF'H' "H"

Core Flood Nozzle Fig. IWB-2500-7(a)

Inside Radius Section 52% Volume Coverage due to

_@ 00 limited scanning.

2-RPV-NC System Exam Category B-D See Paragraph See Paragraph See Paragraph See Paragraph WR54A Reactor Vessel Item No. B03.100.008 "D"

"F' "H"

"3" Core Flood Nozzle Fig. IWB-2500-7(a)

Inside Radius Section 52% Volume Coverage due to

@ 1800 limited scanning.

2-53A-8-63 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.01 1.011 IE""F' "H""3" Core Flood Fig. IWB-2500-8(c)

Safe-End to Pipe 76% Volume Coverage due to Circumferential Weld limited scanning.

@ 00

Relief Request 04-ON.003 Page 3 of 7 II. & III.

IV.

V.

VI.

VII.

Limited System I Code Requirement from Which Basis for Relief Alternate Justification Implementation Area/Weld Component for Which Relief is Requested:

Examinations or for Granting Schedule I.D.

Relief is Requested:

100% Exam Volume Coverage Testing Relief Number Area or Weld to be Exam Category Examined Item No.

Fig. No.

Limitation Percentage 2-53A-8-63 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.01 1.01 1A "E"

M FF "H"" J Core Flood Fig. IWB-2500-8(c)

Safe-End to Pipe 76% Volume Coverage due to Circumferential Weld limited scanning.

@ 00 (UT from nozzle I.D. in lieu of PT from O.D.)

2-53A-8-64 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.011.013 "E"

M I"F" "H"

Core Flood Fig. IWB-2500-8(c)

Safe-End to Pipe 71% Volume Coverage due to Circumferential Weld limited scanning.

@ 1800 2-53A-8-64 NC System Exam Category B-J See Paragraph See Paragraph See Paragraph See Paragraph Reactor Vessel Item No. B09.011.013A "E"

"F" "H

1,,

Core Flood Fig. IWB-2500-8(c)

Safe-End to Pipe 71 % Volume Coverage due to Circumferential Weld limited scanning.

@ 1800 (UT from nozzle I.D. in lieu of PT from O.D.)

Note: The welds in the above table were inspected in October of 2002.

Note: See Attachment A for a drawing on all the welds listed above.

Relief Request 04-ON-003 Page 4 of 7 IV. Basis for Relief (See Attachment A for area/weld locations.)

Paragraph A:

During the ultrasonic examination of welds 2-RPV-WR34 and 2-RPV-WR35, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 36% and 42% respectively.

Limitations were caused by the core guide lugs & flow stabilizers for WR34 and incore nozzles & flow stabilizers for WR35 that restrict the scanning surface as shown on the Attachment A, B, and C drawings. The percentage of coverage reported represents the aggregate coverage from all scans. Some areas received no coverage at all while some areas were completely covered from four directions. 13.3% of the near surface (inner 15 % of wall thickness) volume of the weld and base material was covered in four scan directions using a 70° beam angle. 76.6% of the near surface volume of the weld and base material was covered with a 700 beam angle from one axial and circumferential direction. Only 10.1% of the near surface volume of the weld and base material received no coverage. There were no recordable indications found in the areas that were examined for either of these two welds. In order to achieve more coverage the core guide lugs, incore nozzles and flow stabilizers would have to be moved to allow greater access for scanning, which is impractical.

(See Attachment B for drawings on Weld 1-RPV-WR34)

(See Attachment C for a drawing on Weld 1-RPV-WR35)

Paragraph B:

During the ultrasonic examination of welds 2-RPV-WR13 and 2-RPV-WR13A, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 82%. Limitations were caused by the outlet nozzle boss that restricts the scanning surface both from the nozzle I.D. and the vessel I.D. The percentage of coverage reported represents the aggregate coverage from all scans. The weld and adjacent base material received 100% coverage from the nozzle bore with 15° and 450 beam angles. Scans from the vessel shell side resulted in 42% coverage of the weld and base material with a 450 beam angle of the outer 85% of the vessel wall and coverage of the inner 15% with a 700 beam angle. There were no recordable indications found in the areas that were examined for item number B03.090.001. There were 21 recordable indications found during examination of item number B03.090.002. All of the indications were detected from the nozzle bore and were determined to be acceptable, sub-surface flaws. In order to achieve more coverage, the outlet nozzle boss would have to be moved to allow greater access for scanning, which is impractical.

(See Attachment D for drawing on both welds)

Paragraph C:

During the ultrasonic examination of welds 2-RPV-WRR54 and 2-RPV-WR54A, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 81% of the required volume.

The Core Flood Nozzles of a B&W 177 plant have several obstructions which limit ultrasonic examination coverage.

In order of significance these are:

The flow restrictor which is welded to the inner bore of the nozzle.

The inlet nozzles located 300 on either side of each core flood nozzle.

The taper above the core flood nozzles associated with the Core Support Ledge.

The percentage of exam volume coverage reported represents the aggregate coverage as follows:

Relief Request 04-ON-003 Page 5 of 7 Weld and adjacent base material = 81% scanned parallel to the weld centerline in two directions and perpendicular to the weld centerline from one direction.

Inner 15% from the vessel ID = 97%, in four orthogonal directions.

There were no recordable indications found in the areas that were examined for item number B03.090.007. There was one recordable indication found during examination of item number B03.090.008. This indication was detected from the vessel ID and was determined to be an acceptable, sub-surface flaw. In order to achieve more coverage, the inlet nozzles would have to be moved and the taper on the flange would have to be redesigned to allow greater access for scanning, which is impractical. In addition, because of the proximity of the flow restrictors no scanning was performed from the nozzle I.D. (0% examination coverage). In order to achieve more coverage, the flow restrictor would have to be moved to allow access for scanning, which is impractical.

(See Attachment E for a drawing on the core flood nozzle)

Paragraph D:

During the ultrasonic examination of inside radius sections 2-RPV-WR54 and 2-RPV-WR54A, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 52%. Limitations were caused by the flow restrictor that prevents scanning from the nozzle bore surface. The percentage of coverage reported represents the aggregate coverage from all scans. There were no recordable indications found in the areas that were examined for either of these inside radius sections. In order to achieve more coverage, the flow restrictor would have to be moved to allow greater access for scanning, which is impractical.

(See Attachment E for a drawing on the core flood nozzle)

Paragraph E:

During the ultrasonic examination of welds 2-53A-8-63 and 2-53A-8-64, 100% coverage of the required examination volume could not be obtained. The examination coverage was limited to 76% and 71%, respectively.

Limitations were caused by air at the top of nozzle that prevented the transducer from making contact for scanning the surface. The reactor vessel inspection services vendor made two attempts to evacuate the air with equipment made for the purpose but additional air was reintroduced from an unknown source. After the second attempt was unsuccessful and the source for the air could not be determined, a decision was made to perform the scan and obtain as much coverage as possible (the percentages shown above). The vendor noted that similar problems with eliminating trapped air have been experienced on other reactor vessels with small diameter piping.

Alternatively, it is impractical to perform this exam from the outside nozzle surface due to the excessive personnel radiation exposure. Approximately 40 man-hours would be required to prepare each safe-end to pipe weld for examination from the outside surface. The preparation involves removing the refueling canal seal plate, shielding bricks, shielding supports in the nozzle area and insulation. The radiation levels in this area are expected to be 0.51 R/hr. An alternative path would be to enter from the bottom of the reactor vessel and build scaffolding approximately 30 feet high to reach the core flood nozzles. This activity would require approximately 80 man-hours. 40 man-hours in a 0.51/hr radiation field and 40 man-hours in a 1-2 R/hr radiation field. Total estimated exposure would be 80-140 man-rem. shielding in this area is impractical. Any remote inspection would require the same preparatory work.

The percentage of coverage reported represents the aggregate coverage. There were no recordable indications found in the volumes that were examined for either of these two welds. In order to achieve more coverage, the air would have to be eliminated which proved to be impractical during the subject inspection.

(See Attachment F for a drawing on safe-end to pipe welds)

Relief Request 04-ON-003 Page 6 of 7 V. Alternate Examinations or Testine Paragraph F:

The scheduled 10-year code examination was performed on the referenced area/weld and it resulted in the noted limited scanning and coverage of the required ultrasonic volume. No additional examinations are planned for the area/weld during the current inspection interval.

VI. Justification for Granting Relief Paragraph G:

Ultrasonic examination of welds for item numbers B01.011 and B01.021 were conducted using personnel, equipment and procedures qualified in accordance with ASME Section XI, Appendix VIII, Supplements 4 and 6, 1995 Edition with the 1996 Addenda as administered through the Performance Demonstration Initiative (PDI)

Program. Although limited scanning prevented 100% coverage of the examination volume, the amount of coverage obtained for these examinations along with the additional volumetric and visual examinations (listed in the next paragraph) provides an acceptable level of quality and integrity. (See Paragraph I for additional justification.)

In addition to the Category B-A welds that relief is being sought for, there were 4 circumferential Category B-A welds that were inspected and all obtained greater than 90 % coverage and there were no reportable indications found during the inspections. Visual examinations were also performed as part of the reactor vessel inspections (item number B 13.010.001 and B 13.050.001) and were found to be without any reportable indications.

Paragraph H:

Ultrasonic examination of areas/welds for item numbers B03.090, B03.100, and B09.011 were conducted using personnel, equipment and procedures qualified in accordance with ASME Section XI, Appendix I, 1989 Edition with no Addenda. Inspection of B09.011 welds from the outside diameter is not a viable alternate due to the dose that would be received to prepare and perform the inspections. Relief Requests ONS-001 and ONS-002 were written to perform UT from the ID surface in lieu of a surface exam from the OD surface of all reactor vessel nozzles to pipe welds due to the radiation exposure that is involved with performing inspections from the OD surface. Relief for ONS-001 and ONS-002 was granted on an SER dated 11-15-95. Although limited scanning prevented.100%

coverage of the examination volume, the amount of coverage obtained for these examinations provides an acceptable level of quality and integrity. (See Paragraph I for additional justification.)

Paragraph I:

Duke Energy will use the Code required pressure testing and VT-2 visual examination to compliment the limited examination coverage. The Code requires (referenceTable lWB-2500-1, item numbers B15.010 and B15.050) that a system leakage test be performed after each refueling outage for Class 1. Additionally a system hydrostatic test (reference Table IWB-2500-1, item numbers B15.011 and B15.051) is required once during each 10-year inspection interval. These tests require a VT-2 visual examination for evidence of leakage. This testing provides adequate additional assurance of pressure boundary integrity.

Duke Energy will use VT-3 visual examination to compliment the limited examination coverage. The Code requires (reference Table IWB-2500-1, item number B 13.010) that a VT-3 examination be performed after the first refueling outage and subsequent refueling outages at approximately 3 year periods. During the first and second periods of an interval a VT-3 examination is performed on areas above and below the reactor core that are made accessible for examination by removal of components during normal refueling outages. During the third period of an interval the VT-3 examination is performed on all of the reactor vessel interior surfaces at the same time that the automated UT exams are performed on the reactor vessel welds. These examinations provide adequate additional assurance of pressure boundary integrity.

In addition to the above Code required examinations (volumetric, pressure test, and VT-3), there are other activities which provide a high level of confidence that, in the unlikely case that leakage did occur through these welds, it would be detected and isolated. Specifically, leakage from these welds would be detected by monitoring of the

Relief Request 04-ON-003 Page 7 of 7 Reactor Coolant System (RCS), which is performed once each shift under procedure PT/1,2,3/A/0600/10, "RCS Leakage". This RCS leakage monitoring is a requirement of Technical Specification 3.4.13, "Reactor Coolant System Leakage". Leakage is also evaluated in accordance with this Technical Specification. The leakage could also be detected through several other methods. One is the RCS mass balance calculation. A second is the Reactor Building air particulate monitor. This monitor is sensitive to low leak rates; the iodine monitor, gaseous monitor and area monitor are capable of detecting any fission products in the coolant and will be activated by coolant leakage. A third is the level indicator in the Reactor Building normal sump. A fourth is a loss of level in the Letdown Storage Tank.

Duke Energy Corporation has examined the welds/components referenced in this request to the maximum extent possible utilizing the latest in examination techniques and equipment. These welds were rigorously inspected by volumetric NDE methods during construction and verified to be free from unacceptable fabrication defects. Based on the portions and results of the required volumetric and visual examinations performed during this outage, it is Duke's belief that this combination of elements provides a reasonable assurance of component integrity.

VII.Implementation Schedule Paragraph J The scheduled third 10-year interval plan code examination was performed on the referenced area/weld resulting in limited scanning and volumetric coverage. No additional examinations are planned for the area/weld during the current inspection interval. The same area/weld may be examined again as part of the next (fourth) 10-year interval plan, depending on the applicable code year edition and addenda requirements adopted in the future.

VIII. Other Information The following individuals contributed to the development of this relief request:

James J. McArdle (Principal NDE Level III Inspector) provided Sections II through V and part of Section VI.

B. W. Carney, Jr. (Oconee Engineering) provided part of Section VI.

Larry C. Keith (Oconee ISI Plan Manager) compiled the remaining sections.

Sponsored By:

gc Ufl_ C.

Date 3-_

____e Approved By:

k D

__________Date__________

Attachment A pagef of I

'DEEP END OF W CPS TAMCLT 12

=2'COA W CP DA 0

SFOW

'~

INOZW__X CPS TMRCE IS INOZOZ-.,

..Z-2-5M OXAA1LS1U Z-f1Pv-ontoo801 011.001 WastA 1oIAI W23 a001.01 1.501 I

a.2-,

O 00"l0 so~aa 2-fy-C0

I I Attachment B g

Pages of 7 OCONEE-2 APPENDIX VIII EXAMINATION COVERAGE FOR WELD:

2-RPV-WR34 B01.0110.004 SCAN PLAN DWG NO.: 6014932E-02 AGGREGATE COVERAGE OBTAINED:

W09 36%

Zone Coverage Obtained Weld: 30%

Adjacent Base Metal: 38%

~~uitiftii ID Weld Length:

536.03 In.

Area Measurement Volume Calculation Weld: Near Surface 4.12 sq. In.

Weld: Near Surface 2208.4 cu. in.

Weld: Balance of Volume 7.17 sq. In.

Weld: Balance of Volume 3843.3 cu.

h n.

Base Metal: NearSurface 8.05 sq.iIn.

Base Metal: NearSurface 4315.0 cu.In.

Base Metal: Balance of Volume 39.54 sq. In.

Base Metal: Balance of Volume 21194.6 cu. In.

WELD Weld (Near Surfacegiegoon B.C--It)

Exam.

Area Length Volume Volume Angle Beam Examined Examined Examined. Required Percent Entry (deg.)

Direction (sq. In.)

(on.)

(cu. In.)

(cu. in.)

Examined I

70L 1 1 4.12 71.47 294.5 294.5 100%

2 70L 12 4.12 71.7 294.5 294.5 100%

3 70L 3

4.12 71.47 294.5 294.5 100%

4 70L 4

4.12 71.47 294.5 294.5 100%

5 5 70L 11 4.12 205.48 846.6 846.6 100%

6 70L 12 0.00 205.48 0.0 846.6 0%

7 70L 3

.4.12 205.48 846.6 846.6 100%

8 70L 4

0.00 205.48 0.0 846.6 0%

9 70L 11 0.00 259.08 0.0 1067.4 0%

10 70L 12 0.00 259.08 0.0 1067A 0%

11 70L 3

0.00 259.08 0.0 1067A 0%

12 70L 4

0.00 259.08 0.0 1067.4 0%

Totals:

2871.0 8833.8 33%

Weld (Balance of Volume Region G-HI-i J)

Exam.

Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry (deg.)

Direction (sq. In.)

in.)

(cu. in.)

(cu. In.)

Examined 1

45L 11 7.17 71A7 512.4 512.4 100%

2 45L 12 7.17 71.47 512.4 512.4 100%

3 45L 3

7.17 71A7 512.4 512.4 100%

4 45L 4

7.17 71.47 512.4 512.4 100%

5 45L 11 3.03 205.48 622.6 1473.3 42%

6 45L 12 0.00 205.48 0.0 1473.3 0%

7 45L 3

0.00 205.48 0.0 1473.3 0%

8 45L 4

7.17 205.48 1473.3 1473.3 100%

9 45L 11 0.00.

259.08 0.0 1857.6 0%

10 45L 12 0.00 259.08 0.0 1857.6 0%

11 45L 3

0.00 259.08 0.0 1857.6 0%

12 45L 4

0.00 259.08 0.0 1857.6 0%

13 45S 11 7.17 71.47 512.4 512.4 100%

14 45S 12 7.17 71.47 512.4 512.4 100%

15 45S 3

7.17 71.47 52 512.4 100%

16 45S 4

7.17 71.47 512.4 512.4 100%

17 45S 11 6.42 205.48 1319.2 1473.3 90%

18 45S 12 0.00 205.48 0.0 1473.3 0%

19 45S 3

0.00 205A8 0.0 1473.3 0%

20 45S 4

7.17 205.48 1473.3 1473.3 100%

21 45S 11 0.00 259.08 0.0 1857.6 0%

22 45S 12 0.00 259.08 0.0 1857.6 0%

23 45S 3

0.00 259.08 0.0 1857.6 0%

24 45S 4

0.00 259.08 0.0 1857.6 0%

Totals:

8988.0 30746.7 29%

' Attachment B Page3 of 7 BASE METAL SHEET - 2 Adjacent Base Metal (Near Surface Region A-84-L and C-D-E-H)

Exam.

Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry #

(deg.)

Direction (sq. In.)

(in.)

(cu. In.)

(cu. in.)

Examined I

70L 11 8.05 71.47.

575.3 575.3 100%

2 70L 3

8.05 71A7 575.3 575.3 100%

3 70L 11 7.31 205.48 1502.1 1654.1 91%

4 70L 3

5.62 205.48 1154.8 1654.1 70%

5 70L 11 0.00 259.08 0.0 2085.6 0%

6 70L 3

0.00 259.08 0.0 2085.6 0%

Totals:

3807.5 8630.1 44%

Adjacent Base Metal (Balance of Volume Region E-F-G-t and IJ-K-L)

Exam.

Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry#

(deg.)

Direction (sq. In.)

(On.)

(cu. In.)

(cu. In.)

Examined 1

45L 11 39.54 71.47 2825.9 2825.9 100%

2 45L 3

39.54 71.47 2825.9 2825.9 100%

3 45S 11 39.54 71A7 2825.9 2825.9 100%

4 45S 3

39.54 71A7 2825.9 2825.9 100%

5 45L 11 22.67 205A8 46582 8124.7 57%

6 45L 3

26.88 205.48 5523.3 8124.7 68%

7 45S 11 32.19 205.48 6614.4 8124.7 81%

8 45S 3

18.25 205.48 3750.0 8124.7 46%

9 45L 11 0.00 259.08 0.0,.10244.0 0%

10 45L 3

0.00 259.08 0.0 10244.0 0%

11 45S 11 0.00 259.08 0.0 10244.0 0%

12 45S 3

0.00 259.08 0.0 10244.0 0%

Totals.

31849.7 84778.5 38%

I Attachment B Page q. of 7 WELD <NEAR SURFACE)t 4.12 SQ IN. (70tL)

WELD (BALANCE OF VOLUME),

3.03 SQ IN. (45*L) 6.42 SQ IN. (45'S)

-BASE METAL (NEAR SURFACE)i 7.31 SQ IN. (70'L)

BASE METAL (BALANCE OF VOLUME)'

22.67 SQ IN. (45'L) 32.19 SQ IN.

<45.S)

CORE GUIDE LUG L1 QUAN: 12 450L

_ i 45°S 701L THIS VIEW DEPICTS ALPHA (AXIAL) SCANS FIRING DOWNWARD (DIRECTION 11)

PARTIAL SCANS LUGS AND FLOW REMNANTS DUE TO GUIDE STABILIZER W09 2-RPV-WR34 B01.011.004

I Attachment B Page 5 of 7 WELD (NEAR SURFACE):

0.00 SQ IN.

WELD (BALANCE OF VOLUME):

0.00 SQ IN..

-BASE METAL (NEAR SURFACE),

0.00 SQ IN.

BASE METAL (BALANCE OF VOLUME)t 0.00 SQ IN.

CORE GUIDE LUG QUAN: 12 70 0L 45 0S 45*L THIS VIEW DEPICTS ALPHA (AXIAL)

SCANS FIRING UPWARD (DIRECTION 12)

FLOW STABILIZER REMNANT QUAN: 12 PARTIAL SCANS LUGS AND FLOW REMNANTS DUE TO GUIDE STABILIZER W09 2-RPV-WR34 B01.011.004

I

_.I tahment B Page 6 of 7 WELD (NEAR SURFACE)I 4.12 SQ IN. (70t)

WELD (BALANCE OF VOLUME),

7.17 SQ IN. (45tL & 45*S)

'BASE METAL (NEAR SURFACE):

5.62 SQ IN. (70*L)

BASE METAL. (BALANCE OF VOLUME)t 18.25 SQ IN. <45*L) 26.88 SQ IN.

(45*S)

CORE GUIDE LUG QUANI 12 THIS VIEW DEPICTS THETA (CIRC) SCANS (DIRECTION 3 & 4)

FLOW STABILIZER REMNANT QUAN: 12 PARTIAL SCANS LUGS AND FLOW REMNANTS DUE TO GUIDE STABILIZER W09 2-RPV-WR34 B01.011.004

a a

I Attachment B I Page 7 of 7 W09 2-RPV-WR34 B01.011.004

Attachment C I Page

. of 4q OCONEE-2 APPENDIX Vill EXAMINATION COVERAGE FOR WELD:

WIG 2-RPV-WR35 130I.021.003 SCAN PLAN DWG NO.: 6014933E-02 AGGREGATE COVERAGE OBTAINED:

42%/

Zone Cover-age Qbtalned Weld: 40%

Adjacent Base Metal: 43%

Wee d Length:

448.12 In.

Area Measurement Volume Calculaion Weld: Near Surface 0.99 sq. In.

Weld: Near Surface 443.6 cu. In.

lad: Balance of Volume 6.21 sq. In.

Weld: Balance of Volume 27828 cu. In.

Base Metal: Near Surface 6.02 sq. In.

Base Metal: Near Surface 2697.7 cu. in.

Base Metal: Balance of Volume 24.78 sq. In.

Base Metal: Balance of Volume 11104.4 cu. In.

WELD Weld (Near Surface Regionn BC--I)

Exam.

Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry (deg.)

Direction (sq. In.)

fin.)

(cu. In.) (cu. in.)

Examined 1

70L 11 0.99 168.05 166.4 166.A - 100%

FULL 2

70L 1t I

0.0 56.01 0.0 55.4 0%

PARTIAL 3

70L 11 0.00 224.06 0.0 221.8 0%

NONE 4

70L 12 0.99 168.05 166.4 166.4 100%

FULL 5

70L 12 0.00 56.01 0.0 55.4 0%

PARTIAL 6

70L 12 0.00 224.06 0.0 221.8 0%

NONE 7

70L 3

0.99 168.05 166.4 166.4 100%

FULL 8

70L 3

0.00 56.01 0.0 55.4 0%

PARTIAL 9

70L 3

0.00 224.06 0.0 221.8 0%

NONE 10 701 4

0.99 168.05 166.4 166.4 100%

FULL 11 701 4

0.00 56.01 0.0 55.4 0%

PARTIAL 12 70L 4

0.00 224.06 0.0 221.8 0%

NONE Totals:

665.5 1774.5 38%

Weld (Balance of Volume Region G44-4J)

Exam.

Area Length Volume Volurne Angle Beam Examined Examined Examined Required Percent Entry#

(deg.)

Direction (sq. In.)

(in.)

(cu. In.)

(cu. in.)

Examined 1

45L 11 6.21 168.05 1043.6 1043.6 100%

FULL 2

45L 11 5.70 56.01 319.3 347.8 92%

PARTIAL 3

45L 11 0.00 224.06 0.0 1391.4 0%

NONE 4

45L 12 6.21 168.05 1043.6 1043.6 100%

FULL 5

45L 12 0.00 56.01 0.0 347.8 0%

PARTIAL 6

45L 12 0.00 224.06 0.0 1391.4 0%

NONE 7

45L 3

6.21 168.05 1043.6 1043.6 100%

FULL 8

45L 3

0.00 56.01 0.0 347.8 0%

PARTIAL 9

45L 3

0.00 224.06 0.0 1391.4 0%

NONE 10 45L 4

6.21 168.05 1043.6 1043.6 100°% FULL 11 45L 4

0.00 56.01 0.0 347.8 0%

PARTIAL 12 45L 4

0.00 224.06 0.0 1391.4 0%

NONE 13 45S 11 6.21 168.05 1043.6 1043.6 100%

FULL 14 45S 11 5.70 56.01 319.3 347.8 92%

PARTIAL 15 45S 11 0.00 224.06 0.0 1391.4 0%

NONE 16 45S 12 6.21 168.05 1043.6 1043.6 100%

FULL 17 455 12 0.00 56.01 0.0 347.8 0%

PARTIAL 18 45S 12 0.00 224.06 0.0 1391.4 0%

NONE 19 45S 3

6.21 168.05 1043.6 1043.6 100%

FULL 20 45S 3

0.00 56.01 0.0 347.8 0%

PARTIAL 21 45S 3

0.00 224.06 0.0 1391.4 0%

NONE 22 45S 4

6.21 168.05 1043.6 1043.6 100%

FULL 23 45S 4

0.00 56.01 0.0 347.8 0%

PARTIAL 24 45S 4

0.00 224.06 0.0 1391.4 0%

NONE Totals:

8987.0 2226Z4 40%

Attachment C I Page 3 of L(

BASE METAL SHEET-2 Adjacent Base Metal (Near Surface Region A-84-L and C-D-E.H)

Exam.

Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry #

(deg.)

Direction (sq. In.)

(in.)

(cu. In.)

(cu. in.)

Examined I

70L 11 6.02 168.05 1011.6 1011.6 100%

FULL 2

70L 11 2.50 56.01 140.0 337.2 42%

PARTIAL 3

70L 11 0.00 224.06 0.0 1348.8 0%

NONE 4

70L 3

6.02 168.05 1011.6 1011.6 100%

FULL 5

70L 3

1,82 56.01 101.9 337.2 30%

PARTIAL 6

70L 3

0.00 224.06 0.0 1348.8 0%

NONE Total 2265.2 5395.3 42Y%

Adjacent Base Metal (Balance of Volume Region E-F-G4-and.J.K-L)

Exam.

Area Length Volume Volume Angle Beam Examined Examined Examined Required Percent Entry #

(deg.)

Direction (sq. In.)

fin.)

(cu. In.)

(cu. in.)

Examined 1

45L 11 24.78 168.05 4164.2 4164.2 100%

FULL 2

45L 11 16.95 56.01 949.4 1387.9 68%

PARTIAL 3

45L 11 0.00 224.06 0.0 5552.2 0%

NONE 4

45S 3

24.78 168.05 4164.2 4164.2 100/

FULL 5

4SS 3

8.19 56.01 458.7 1387.9 33%

PARTIAL 6

45S 3

0.00 224.06 0.0 5552.2 0%

NONE Toals:

9736.4 2220&.6 44%

.F-r ;,

Attachment C

? Page L of 4 FLOW STABILIZER-z W10 OCONEE-2 2-RPV-WR35 B01.021.003

II Attachment D Page :2 of 6 OCONEE-2 W15 2-RPV-WR13 803.090.001 803.090.001 A 803.1 00.001 W16 2-PHB-1 809.011.021 809.011.021 A W23 2-RPV-WR13A B03.090.002 B03.090.002A B03.100.002 W24 2-PHA-1 809.011.019 809.011.019A T,

1--1/~

3TIIE 7

ECTION VIEW f 5.18 sq 'in.

HORIZONTAL SE VERTICAL SECTION VIEW X

j I WEl BAS NOz

-D & ADJACENT

E METAL FROM ZZLE BORE I

45/15' 63.74-sq in.

I Attachment D t Page :3 of 6

OCONEE-2 W15 2-RPV-WR13 B03.090.001 B03.090.001 A B03.1 00.001 W16 2-PHB-1 809.011.021 B09.011.021A W23 2-RPV-WR 13A B03.090.002 803.090.002A 803.100.002 W24 2-PHA-1 B09.011.019 B09.01 1.019A I. I ;-.

/

/

7 HORIZONTAL SECTION VIEW VERTICAL SECTION VIEW 45S/45L/70L shell/7 1.71 sq in.

shell/8 0.00 sq in.

45-S/45-L/70 L shell/7 7.64 sq in.

shell/8 2.69 sq in.

INNER 15% T SHELL/7/8 FROM VESSEL SHELL i

Attachment D I i Page 4 of 4

, I OCONEE-2 W15 2-RPV-WR I' 803.090.001 803.090.001A B03.100.001 W16 2-PHB-1 809.011.021 B09.011.021A W23 2-RPV-WR13A 803.090.002 803.090.002A B03.100.002 W24 2-PHA-1 809.011.019 809.011.019A

/

I MION VIEW HORIZONTAL SEC 0.45 sq in 5.68 sq in.

VERTICAL SECTION VIEW INNER 157=-

SHELL/9 FROM VESSEL SHELLl

I Attachment D Page 5 of 6i OCONEE-2 W15 2-RPV-WR13 803.090.001 603.090.001 A B03.100.001 W16 2-PHB-1 809.011.021 609.011.021A W23 2-RPV-WR 13A B03.090.002 B03.090.002A 803.100.002 W24 2-PHA-1 809.011.019 B09.011.019A t

i HORIZONTAL SECTION VIEW VERTICAL SECTION VIEW 45S/45L/70L 1.97 SO IN.

45S/45L/70L 7.09 SQ IN.

f

\\LI I

INNER 15% T SHELL/10 FROM VESSEL SHELL

X Attachment D Page 6 of 6 OCONEE-2 W15 2-RPV-WR 13 B03.090.001 803.090.001 A B03.100.001 W16 2-PHB-1 809.011.021 B09.011.021A W23 2-RPV-WR13A B03.090.002 B03.090.002A 803.100.002 W24 2-PHA-1 B09.011.019 B09.011.019A f

/

/

/

TION VIEW f HORIZONTAL SEC 70' 7.61 sq in.

70 7.10 sq in.

VERTICAL SECTION VIEW gL INNE CIRC cOv

-ER RADIUS d

V ERAGE l

I I

]

I

  • as.-

lAttachment E

Page p, offal Oconee-2 Explanation of Limited Coverage for Core Flood Nozzle to Shell Weld The Core Flood Nozzle of a B&W 177 plant has several obstructions which limits UT inspection of the nozzle-to-shell weld. In order of magnitude of impact these include:

The Flow Restrictor located in the bore of the Core Flood Nozzle.

The Inlet Nozzles located 30 degrees on either side of the Core Flood Nozzles The taper above the Core Flood Nozzle associated with the Core Support Ledge.

The radius blend between the shell and the bore of the nozzle itself.

Despite these obstructions, Framatome ANP has gone to great lengths to get the maximum practical coverage ofthis weld. The coverage, which is described bythe following spread sheet output and graphic figures, totals up as follows:

Weld &Adjacent Base Metal = 81%

Near Surface (Vessel ID) = 97%

Inside Radius = 52%

"Ursula", the robotic system which will perform this inspection, uses several abbreviations to describe a coordinate system for scan and index purposes. There are four major classes of scans in the "Ursula" system:

("S") Shell used for the cylindrical vessel ID

("N") Nozzle used for the nozzle to shell from the vessel ID

("P") Pipe used for scans in the nozzle ID

("M") Meridional used for the lower head In addition, several axes of motion are labeled:

("Z") which is the majorcenterline axis of the vessel, with the positive sense down into the vessel ("R") which is a radial distance measured perpendicular to the "Z" axis, with the positive sense away from the "Z" axis

(""T) Theta which is an angular displacement, in the plane "R" is measured in, between 0 degrees and 720 degrees from vessel 0 (The B&W "NV" axis of the vessel)

("A") Alpha which is an angular displacement of the spherical radius (sr) of the lowerhead as measured from the reference 0 point when this sr is perpendicular to the "Z" axis, such that positive angles increase from 0 to 90 from the shell to the centerline of the vessel at the bottom of the lower head.

In addition to these major axes, each nozzle has an axis system associated with its centerline. Axes of nozzle motion are:

("R") units are measurements off the vessel centerline along the nozzle centerline

("`W") is a radial measurement, perpendicular to the nozzle centerline, with the positive sense away from the nozzle centerline

("B") Beta is an angular displacement, in the plane "W" is measured in, from a reference 0 at "top dead center" of the nozzle.

Scans are denoted by the class, axis, and the positive or negative sense with which a reference axis on the

Attachment E Page 3 of 15 "Ursula" contact head aligns: For example, the scans we are interested in are within the Nozzle, or "N" scan class. The contact head reference axis (and in his case the beam direction of the transducers) will align with either the "W' radial direction-trom the nozzle centerline, or the Beta (VB")

angular sense about the nozzle centerline with positive being clockwise rotation when viewing the nozzle from the vessel centerline.

Since the bore of the Core Flood Nozzle is obstructed by the Flow Restrictor all scans for the nozzle to shell weld are scanned from the vessel ID and will be either.

NWP NWN NBP NBN with the final "P" or '"' denoting positive or negative sense.

Because no scans are performed from the nozzle bore, scans must be performed on the shell perpendicular to the nozzle'to shell weld centerline, in addition to the scans parallel to the weld centerline on the vessel ID.

Figure 1,2 & 3 indicates zones of coverage in which different limitations and scan directions apply. The subsequent figures and spread sheet output are based on this coverage. Zones I thru 3 are all NWN scans with the beam direction perpendicular to the weld centerline towards the center of the nozzle. Zone 4 is a NWP scan with the beam direction perpendicular to the centerline of the weld away from the center of the nozzle.

Zone 5 is scanned in both NBP & NBN with the beam direction paralfel to the weld centerline.

The spread sheet entries are as follows:

Beam Direction I comes from NWN scans Beam Direction 2 comes from NWP scans Beam Direction 3 comes from NBP scans Beam Direction 4 comes from NBN scans To calculate % coverage the spread sheet uses the volume acquired by a given angle divided by the true unobstructed inspection volume required to be examined. For a given angle and beam direction the sum of the degrees for which the various coverages were obtained must equal 180 degrees.

This is because the total nozzle inspection volume is broken into a horizontal inspection volume (and subsequent coverage) and a vertical inspection volume (and subsequent coverage). Each area and coverage is considered to represent 180 degrees of the nozzle. After the horizontal and vertical sections are calculated separatelytheyare combined to provide aggregate coverage numbers.

I' Attachment E

..Page if of I r; -

I

I..

I 1s I Attachment E

. Page S of IS START OF CORE SUPPORT LEDGE TAPER @ Z = 27' I

NWP LIMITS SHELL/9 = NWP SCANS Figure-2

I IlAttachment E Page 6 of of START OF CORE SUPPORT LEDGE TAPER C Z = 27' NBR & NBL SCAN LIMITS SHELL/7=

SHELL/8 NBR SCANS

= NBL SCANS Figure-3

l Attachment E I

ge 7 of iS OCONEE-2 wil 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV--WR54A B03.090.008 B03.100.008 W-31.44 ULMTED COVERAGE DUE TO CORE SUPPORT LEDGE TAPER F

W-8.75 ALL I

1,\\

II II WELD: 18.79 SQ IN.

ADJACENT BASE METAL 156.50 SQ IN.

INNER 15% BMT: 23.26 SQ IN.

INNER RADIUS: 6.25 SQ IN.

I.-

BEAM DIRECTION 1-ZONE 1

Attachment E Page s of 15 OCONEE-2 Wil 2-RPV-WE,54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03. 100.008 WELD: 18.79 SQ IN.

ADJACENT BASE METAL-158.00 SQ IN.

INNER 15% BMT: 23.26 SO IN.

INNER RADIUS: 6.25 SQ IN.

BEAM DIRECTION 1-ZONE 3 60- OF 90- (66.6% OF SCAN)

I Attachment E I Page '7 of 15 OCONEEI-2 wi 1 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV-WR54A B03.090.008 B03.100.008 WELD: 15.81 SO IN.

ADJACENT BASE METAL 120.91 SO IN.

INNER 1 5' BMT. 23.26 SQ IN.

INNER RADIUS: 6.25 SO IN.

BEAM DIRECTION 1-ZONE 3 30- OF 90- (33.3% OF SCAN)

I Attachment E Page / 6 of I5-OCONEE-2 Wil 2-RPV-WR54 B03.090.007 B03.1 00.007 W19 2-RPV-WR54A B03.090.008 B03. 100.008 WELD: 19.16 SQ IN.

ADJACENT BASE METAL 177.52 SQ IN.

INNER 15% BMT: 24.13 SO IN.

INNER RADIUS: 6.26 SQ IN.

BEAM DIRECTION 1-ZONE 2 45 OF 90 (50.00% OF SCAN)

I Attachment E I Page II of i5 I

UUUNEE-22 Wil1 2-RPV-WR54 B03.090.007 B03.100.007 W19 2-RPV-WR54A B03.090.008 B03.100.008 WEID: 19.16 SQ IN.

ADJACENT BASE METAL 151.72 SO IN.

INNER 15Z BMT: 24.13 SO IN.

INNER RADIUS: 6.26 SQ IN.

BEAM DIRECTION 1 -ZONE 2 45-OF 90- (50.00% OF SCAN)

Attachment E Page lIt of is OCONEE-2 Wil 2-RPV-WR54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03. 100.008 WELD: 4.59 SO IN.

BEAM DIRECTION 2-ZONE 4

l Attachment E i Page /,3 of 15 OCONEE-2 wi1 2-RPV-WR54 B03.090.007 B03.1 00.007 W19 2-RPV-WR54A B03.090.008 I

B03. 100.008 WELD: 4.71 SQ IN.

BEAM DIRECTION 2-ZONE 4

AttachmentE Page IeY of /ST OCONEE-2 wi1 2-RPV-WR54 B03.090.007 B03. 100.007 W19 2-RPV-WR54A B03.090.008 B03.1 00.008 WELD: 18.79 SO IN.

ADJACENT BASE METAL SHELL/3: 142.41 SO IN.

SHELL/4:

97.90 SQ IN.

INNER 15% SWT: 22.00 SQ IN.

INNER RADIUS: 0.26 SQ IN.

I_

W-8.75 ALL SCANI BEAM DIRECTION 3 & 4-ZONE 5

I49 I Attachment E

- Page as of

/5 OCONEE-2 Wil 2-RPV-WR54 B03.090.007 B03.100.007 w19 2-RPV-WR54A B03.090.008 B03.100.008 WELD: 19.16 SQ IN.

ADJACENT BASE METAL SHELL/3: 148.97 SO IN.

SHELL/4: 105.98 SO IN.

INNER 15X BMT: 22.61 SQ IN.

INNER RADIUS: 0.21 SO IN.

BEAM DIRECTION 3 & 4-ZONE 5