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Experimental research progress on passive safety systems of Chinese advanced PWR

TMI and Chernobyl accidents, having pronounced impact on nuclear industries, triggered the governments as well as interested institutions to devote much attention to the safety of nuclear power plant and public’s requirements on nuclear power plant safety were also going to be stricter and stricter....

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Published in:Nuclear engineering and design 2003-11, Vol.225 (2), p.305-313
Main Authors: Zejun, Xiao, Wenbin, Zhuo, Hua, Zheng, Bingde, Chen, Guifang, Zong, Dounan, Jia
Format: Article
Language:English
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Summary:TMI and Chernobyl accidents, having pronounced impact on nuclear industries, triggered the governments as well as interested institutions to devote much attention to the safety of nuclear power plant and public’s requirements on nuclear power plant safety were also going to be stricter and stricter. It is obvious that safety level of an ordinary light water reactor is no longer satisfactory to these requirements. Recently, the safety authorities have recommended the implementation of passive system to improve the safety of nuclear reactors. Passive safety system is one of the main differences between Chinese advanced PWR and other conventional PWR. The working principle of passive safety system is to utilize the gravity, natural convection (natural circulation) and stored energy to implement the system’s safety function. Reactors with passive safety systems are not only safer, but also more economical. The passive safety system of Chinese advanced PWR is composed of three independent systems, i.e. passive containment cooling system, passive residual heat removal system and passive core makeup tank injection system. This paper is a summary of experimental research progress on passive containment cooling system, passive residual heat removal system and passive core makeup tank injection system.
ISSN:0029-5493
1872-759X
DOI:10.1016/S0029-5493(03)00178-X