Study on the Behaviors of a Conceptual Passive Containment Cooling System

Author:

Wang Jianjun1,Guo Xueqing1,Yu Shengzhi1,Cai Baowei1,Sun Zhongning1,Yan Changqi1

Affiliation:

1. National Defense Key Laboratory for Nuclear Safety and Simulation Technology, Harbin Engineering University, Harbin 150001, China

Abstract

The containment is an ultimate and important barrier to mitigate the consequences after the release of mass and energy during such scenarios as loss of coolant accident (LOCA) or main steam line break (MSLB). In this investigation, a passive containment cooling system (PCCS) concept is proposed for a large dry concrete containment. The system is composed of series of heat exchangers, long connecting pipes with relatively large diameter, valves, and a water tank, which is located at the top of the system and serves as the final heat sink. The performance of the system is numerically studied in detail under different conditions. In addition, the influences of condensation heat transfer conditions and containment environment temperature conditions are also studied on the behaviors of the system. The results reveal that four distinct operating stages could be experienced as follows: startup stage, single phase quasisteady stage, flashing speed-up transient stage, and flashing dominated quasisteady operating stage. Furthermore, the mechanisms of system behaviors are thus analyzed. Moreover, the feasibility of the system is also discussed to meet the design purpose for the containment integrity requirement. Considering the passive feature and the compactness of the system, the proposed PCCS is promising for the advanced integral type reactor.

Funder

Harbin Engineering University

Publisher

Hindawi Limited

Subject

Nuclear Energy and Engineering

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