DOI QR코드

DOI QR Code

FAULT-TREE-BASED RISK ASSESSMENT FOR DYNAMIC CONDITION CHANGES

  • Published : 2007.04.30

Abstract

In order to apply a static fault-tree (FT) method to a system or a plant whose configuration changes dynamically, condition gates and a post processing method are used to effectively accommodate these changes. An operator's performance change, which can be caused by these configuration changes, should also be considered to assess the risk to a plant in a more realistic manner. This study aims to develop an integrated framework to accommodate various configuration changes and their effect on an operator’s performance by using the FT model. We applied a condition-based human reliability assessment (CBHRA) method to consider various conditions endured by an operator. That is, we integrated the CBHRA method with the conventional post processing method for modeling the system configuration changes. The effect of the condition monitoring systems installed in a plant is also considered. In this study, we show an example application of the integrated framework to a probabilistic safety assessment for the shutdown phase of a nuclear power plant.

Keywords

References

  1. Jung, W., Yoon, W.C., Kim, J.W., Structured Information Analysis for Human Reliability Analysis of Emergency Tasks in NPPs, Reliability Engineering and System Safety,Vol.71, No.1, p21-32, 2001 https://doi.org/10.1016/S0951-8320(00)00067-3
  2. Hyun Gook Kang and Seung-Cheol Jang, 'Application of Condition-Based HRA Method for a Manual Actuation of the Safety Features in a Nuclear Power Plant,' Reliability Engineering and System Science, Volume 91, No. 6, p627-633, 2006 https://doi.org/10.1016/j.ress.2005.04.007
  3. T. Seong, et al., Low-Power Shutdown Probabilistic Safety Assessment for Yonggwang Unit 5&6, ISA Team Technical Memo, KAERI, 2000
  4. Ho-Gon Lim, Jin-Hee Park and Seung-Cheol Jang, Construction of a Shutdown PSA Model by Using a Full Power PSA Model, KJPSA2006, Cheju, November, 2006
  5. S.H. Han, et al., User's Manual for KIRAP (KAERI Integrated Reliability Analysis code Package) Release 2.0, KAERI/TR-361/93, 1993