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Development of Inspection Technique for Filling or Unfilling of Containment Liner Plate Backside Concrete in Nuclear Power Plant

원전 격납건물 라이너플레이트 배면 콘크리트 채움 여부 점검 기술 개발

  • 이정석 (한국수력원자력 중앙연구원) ;
  • 김왕배 (한국수력원자력 중앙연구원) ;
  • 곽동열 (한국수력원자력 중앙연구원)
  • Received : 2020.04.14
  • Accepted : 2020.06.15
  • Published : 2020.06.30

Abstract

The Nuclear containment building is a main safety-related structure that performs shielding and conservation functions to prevent highly radioactive materials from leakage to the outside environment in the case of various environmental conditions and postulated accidents. The containment building contains a reactor, steam generator, pressurizer, tank, reactor coolant system, auxiliary system and engineering safety system, and is designed so that highly radioactive materials above the limits specified in 10 CFR 100 do not escape to the outside environment in the case of LOCA(Loss of Coolant Accident) for instance. The containment metal liner plate(CLP) is a carbon steel plate with a nominal plate thickness of 6 mm, which functions as a mold for the wall and dome of the containment building when concrete is filled, fulfills airtightness to prevent leakage of seriously radioactive materials. In recent years, backside corrosion was found on the liner plate in some domestic nuclear power plants. The main cause of backside corrosion was unfilled concrete. In this paper, an inspection technique of assessing filling suitability for CLP backside concrete is developed. Results show that the validity of inspection technique for CLP backside concrete using vibration sensor is successfully verified.

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References

  1. W. H. Hoppmann II, 2002, "Effect of Impact on Structures", Harris' Shock and Vibration Handbook 5th Edition, Chp. 9, McGAW-HILL, USA
  2. A. Peter, 2018, Modal Testing : A Practitioner's Guide, Wiley, USA
  3. J. F. Doyle, 2014, "Vibration of Plates and Shells", Nonlinear Structural Dynamics Using FE Methods, pp. 427-486, Cambridge University Press, England
  4. R. B. Randall, 1987, Frequency Analysis 3rd Edition, Bruel & Kjaer, USA