Statistical Analysis of Seismic Effects of Low Seismic Class Equipment Based on Damage Data of Nuclear Power Plants

Author:

Morita Ryo1,Inada Fumio1,Ohtori Yasuki2,Nanpo Mitsuhide3,Naradate Koji4,Yamaguchi Syuhei5,Takeuchi Masataka6,Yamaguchi Tatsuya7,Numata Takeshi8,Tamura Ichiro9,Hosotani Terushige10,Kimura Yusuke11,Amemiya Mitsuhiko12,Taguchi Toyonobu13,Fukushi Naomi14,Yamaguchi Atsushi15,Kojima Nobuyuki16

Affiliation:

1. Central Research Institute of Electric Power Industry, Tokyo, Japan

2. Central Research Institute of Electric Power Industry, Chiba, Japan

3. Hokkaido Electric Power Company, Sapporo, Hokkaido, Japan

4. Tohoku Electric Power Company, Sendai, Miyagi, Japan

5. Tokyo Electric Power Company, Tokyo, Japan

6. Chubu Electric Power Company, Nagoya, Aichi, Japan

7. Hokuriku Electric Power Company, Toyama, Japan

8. Kansai Electric Power Company, Mihama, Fukui, Japan

9. The Chugoku Electric Power Company, Hiroshima, Japan

10. Shikoku Electric Power Company, Takamatsu, Kagawa, Japan

11. Kyushu Electric Power Company, Fukuoka, Japan

12. The Japan Atomic Power Company, Tokyo, Japan

13. J-POWER/Electric Power Development Company, Tokyo, Japan

14. Hitachi-GE Nuclear Energy, Ltd., Hitachi, Ibaraki, Japan

15. Toshiba Corporation, Yokohama, Kanagawa, Japan

16. Mitsubishi Heavy Industries, Takasago, Hyogo, Japan

Abstract

Structural strengths of the piping and components in NPPs have been designed with seismic margin. They are classified seismically S, B and C class in terms of the influence rate to nuclear safety. For the highest seismic class (Class S) equipment, it is clarified that they have enough seismic margins against design seismic conditions by shaking table tests or numerical simulations. However, for the lower seismic class (Class B and C) equipment, their seismic margins have not been clarified quantitatively. In this paper, in order to evaluate seismic robustness of the lower seismic class equipment with no clarification of seismic margin, seismic influences of the lower seismic class equipment in NPPs damaged by actual large earthquakes have been surveyed and sorted as a database, and the integrity of the lower class equipment have been discussed. Seismic effects on 24 plants damaged by the recent large 6-earthquakes are surveyed, sorted as a database, and investigated. As a result, a total of 29 cases of function deterioration or loss were observed. Considering the total number of components and piping, the frequency of those cases in class B and C components and piping was low. And also, as it is found there are a few cases of degradation or loss of function in the equipment installed on the bedrock or in the buildings.

Publisher

American Society of Mechanical Engineers

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