Hyppää sisältöön
    • Suomeksi
    • På svenska
    • In English
  • Suomeksi
  • In English
  • Kirjaudu
Näytä aineisto 
  •   Etusivu
  • LUTPub
  • Tieteelliset julkaisut
  • Näytä aineisto
  •   Etusivu
  • LUTPub
  • Tieteelliset julkaisut
  • Näytä aineisto
JavaScript is disabled for your browser. Some features of this site may not work without it.

State-of-the-Art of WPS in RPV PTS Analysis

Zarazovskii, Maksym; Pištora, Vladislav; Lauerova, Dana; Obermeier, Florian; Mora Mendez, Diego Fernando; Dubyk, Yaroslav; Bolinder, Tobias; Cueto-Felgueroso Garcia, Carlos; Szávai, Szabolcs; Dudra, Judit; Costa Garrido, Oriol; Blain, Christophe; Puustinen, Markku; Katsuyama, Jinya; Bass B, Richard; Williams, Paul T.; Shugailo, Oleksii (2022-11-04)

Katso/Avaa
State-of-art-of-WPS-in-RPV-PTS-Analysis-2022-AMM.pdf (1.526Mb)
Lataukset: 


Post-print / Final draft

Zarazovskii, Maksym
Pištora, Vladislav
Lauerova, Dana
Obermeier, Florian
Mora Mendez, Diego Fernando
Dubyk, Yaroslav
Bolinder, Tobias
Cueto-Felgueroso Garcia, Carlos
Szávai, Szabolcs
Dudra, Judit
Costa Garrido, Oriol
Blain, Christophe
Puustinen, Markku
Katsuyama, Jinya
Bass B, Richard
Williams, Paul T.
Shugailo, Oleksii
04.11.2022
ASME

School of Energy Systems

http://dx.doi.org/10.1115/pvp2022-83699
Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe202401102279

Tiivistelmä

The APAL (Advanced Pressurized Thermal Shock (PTS) Analysis for Long-Term Operation (LTO)) project was launched in October 2020 for four years with funding from the European Union’s HORIZON 2020 program.

Within APAL, an extensive literature review was performed and experience with defining the state-of-the-art of the Warm Pre-Stress (WPS) effect, which has an impact on the reactor pressure vessel (RPV) brittle fracture margin in both deterministic and probabilistic terms, was collected. To gather the worldwide experience of the WPS approaches and models, a comprehensive questionnaire was developed followed by each APAL partner response. It mainly focused on the following aspects: collection of existing WPS approaches and models implemented in standards and rules for RPV brittle fracture assessment; identification of the WPS issues; collection and analysis of the existing experimental data.

The work presents a short description of the existing WPS national approaches and models along with standards or rules for RPV brittle fracture assessment under PTS events. Attention is focused on the applicability of WPS and its restrictions for constraint effect and crack arrest.

The second part of this work is devoted to the identification of the open issues connected to the practical WPS application in RPV integrity assessment together with the APAL partners’ views on this topic. The following problems are discussed:

- Overall view regarding including WPS in the RPV PTS assessment (applicability, benefit in practical applications);

- thermal-hydraulic aspects of a WPS approach (WPS benefits depending on the transient history);

- WPS and probabilistic RPV brittle fracture assessment (applicability);

- WPS and ductile fracture (applicability);

- WPS and residual stress (RS), (treatment of RS in regard to WPS effect).

The last part is dedicated to the analysis of experimental data for defining the WPS benefit. For this purpose, the Czech and Ukrainian experimental data (WWER materials), and the SMILE’s project data (heat-treated 17MoV8-4mod steel and 18MND5 steel) were analysed. The WPS effect on fracture toughness (FT) was evaluated using the ratio of enhanced FT KFrac (at re-load, after WPS) to FT of virgin material KIC (without pre-load), as obtained from the experimental data. It was shown, that relatively to the KIC,50% and KIC,95%, the WPS effect led to an increase of FT in 97.6% and 80.9% of cases respectively, which quantifies and confirms the benefit of WPS.

This work describes worldwide experience and best practice of the WPS and its application for the RPV integrity assessment. The paper’s conclusions are also focused on the recommendations for dealing with WPS issues.

Lähdeviite

Zarazovskii, M, Pištora, V, Lauerova, D, Obermeier, F, Mora Mendez, DF, Dubyk, Y, Bolinder, T, Cueto-Felgueroso Garcia, C, Szávai, S, Dudra, J, Costa Garrido, O, Blain, C, Puustinen, M, Katsuyama, J, Bass, BR, Williams, PT, & Shugailo, O. "State-of-the-Art of WPS in RPV PTS Analysis." Proceedings of the . Volume 1: Codes and Standards. Las Vegas, Nevada, USA. July 17–22, 2022. V001T01A083. ASME. https://doi.org/10.1115/PVP2022-83699

Kokoelmat
  • Tieteelliset julkaisut [1670]
LUT-yliopisto
PL 20
53851 Lappeenranta
Ota yhteyttä | Tietosuoja | Saavutettavuusseloste
 

 

Tämä kokoelma

JulkaisuajatTekijätNimekkeetKoulutusohjelmaAvainsanatSyöttöajatYhteisöt ja kokoelmat

Omat tiedot

Kirjaudu sisäänRekisteröidy
LUT-yliopisto
PL 20
53851 Lappeenranta
Ota yhteyttä | Tietosuoja | Saavutettavuusseloste