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A comparison of the surveillance test results for the South-Ukrainian NPP unit 2 standard and modernized surveillance assemblies V. Revka, E. Grynik, L.

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Presentation on theme: "A comparison of the surveillance test results for the South-Ukrainian NPP unit 2 standard and modernized surveillance assemblies V. Revka, E. Grynik, L."— Presentation transcript:

1 A comparison of the surveillance test results for the South-Ukrainian NPP unit 2 standard and modernized surveillance assemblies V. Revka, E. Grynik, L. Chyrko, Yu. Chaikovsky Institute for Nuclear Research NASU, Kiev, Ukraine V. Kovirshyn State Scientific and Technical Centre NRS, Kiev, Ukraine

2 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 2 Background  The valid surveillance test data are a key issue for a safety assurance of WWER- 1000 reactor pressure vessel  According to PNAE G-7-002-86 a fluence scatter for specimens should not exceed 15 % to estimate RPV material radiation embrittlement using Charpy impact test data  There are some shortcomings in standard surveillance assembly design that result in a high scatter (  35 %) in fluence values for irradiated Charpy V-notch specimens  Some surveillance sets in South-Ukrainian NPP unit 2 include the modernized assemblies that allows irradiating the Charpy V-notch specimens according to PNAE G-7-002-86 requirements  Specimen reconstitution technique is also used to get valid surveillance test data  Comparison of RPV material radiation embrittlement rate estimated by standard and modernized surveillance program, and the reconstitution technique Objective

3 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 3 Materials and specimens  WWER-1000 RPV materials for South-Ukrainian NPP:  base (15Х2НМФАА steel)  weld metal (Cv-10KhGNMAA and flux ФЦ-16 ) with high nickel (1,74 % wt) and manganese (0,93 % wt) content  Surveillance Charpy V-notch specimens (10 mm x 10 mm x 55 mm)  Standard surveillance program 1L set (RSC Kurchatov Institute data)  Specimens irradiated for 12 fuel cycles ( ~ 3213 eff. days )  Reconstitution technique  Modernized surveillance program 2L set (Kiev Institute for Nuclear Research)  Specimens irradiated for 10 fuel cycles ( ~ 2623 eff. days )

4 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 4 Standard surveillance assembly Lower layer Upper layer CharpyTension  Lead factor for an upper layer is  1  Lead factor for a lower layer is  2,5

5 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 5 Modernized surveillance assembly Lower layer Upper layer Container Assembly

6 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 6 Charpy impact test data for base metal Notes: *) Charpy V-notch specimens for Charpy transition temperature curve Set (location) Quantity of specimens * ) Fluence scatter, % Mean fluence (E>0,5 MeV), 10 22 n/m 2 T kF,  C∆T F,  CA F,  C Unirradiated specimens 13---79-- modernized 2L (upper layer) 12713,1-502912 modernized 2L (lower layer) 11927,3-394013 standard 1L (upper layer) 122410,9-453415 standard 1L (lower layer) 122531,0-384113 Reconstitution 1L 12911,8-433616 Reconstitution 1L 13 40,2-324714

7 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 7 Charpy impact test data for weld metal Notes: *) Charpy V-notch specimens for Charpy transition temperature curve Set (location) Quantity of specimens * ) Fluence scatter, % Mean fluence (E>0,5 MeV), 10 22 n/m 2 T kF,  C∆T F,  CA F,  C Unirradiated specimens 13---43-- modernized 2L (upper layer) 121010,224521 modernized 2L (lower layer) 13 20,1206323 standard 1L (upper layer) 122810,644721 standard 1L (lower layer) 123326,8287124 Reconstitution 1L 12810,4165927 Reconstitution 1L 121134,7297222

8 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 8 DBTT radiation shift for South-Ukrainian NPP-2  Transition temperature shift data based on the different approaches describe a tendency of material radiation embrittlement in the same way  Chemistry factor A F based on the standard surveillance test data can be considered as valid to estimate the embrittlement rate of RPV materials Base metal Weld metal

9 Safety Assurance of NPP with WWER MNTK-2007, May 29 – June 1 2007, FSUE EDO “GIDROPRESS”, Podolsk, Russia 9 Conclusions  Modernized surveillance test data and reconstitution technique confirm a radiation embrittlement rate of WWER-1000 RPV materials for South- Ukrainian NPP-2 that has been obtained in the frame of a standard surveillance program  Charpy impact test data from the standard surveillance program can be used to get a reliable estimation of RPV material radiation embrittlement rate for South-Ukrainian NPP unit 2


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