Study on the Liquid Seal Discharge Process in an Over-Pressurized Accident

Dan Wu, Deng Jian, Du Sijia, Qian Libo
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Abstract

In an over pressure accident, one or more pressurizer safety (or relief) valves will open due to the rapid pressure rise process. Once the safety (or relief) valves are open, the liquid seal will be discharged, and this will generate great discharge force to the downstream pipes. Multi-level protection is chosen using pressurizer safety (or relief) valves with different setpoint in most of Nuclear Power Plant, especially in the self-designed Generation-III Nuclear Power Plants. As the over pressure accident progresses, one or more safety (or relief) valves will be open. The downstream pipes will experience one or more times of impacts, which will influence the arrangement of the pipes. The whole discharge process is very complex, and the key influence factors are the pressure rise rate, safety (or relief) valve opening time, liquid seal temperature and volume, and the arrangement of the downstream discharge pipes. In present paper, liquid seal discharge process in an over pressure accident is studied. The pressure rise rate is so fast that three safety (or relief) valves will open one after another, which will generate three impacts on the downstream discharge pipes. It is found that for a specific design of Nuclear Power Plant, well design of the safety (or relief) valve setpoint is very important to the discharge force analysis results.
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某超压事故液封排放过程研究
在超压事故中,由于压力快速上升过程,一个或多个稳压器安全(或释放)阀将打开。一旦安全(或安全阀)阀门打开,液体密封将被排出,这将对下游管道产生很大的排放力。大多数核电站,特别是自行设计的三代核电站,都采用不同设定值的稳压器安全(或泄放)阀进行多级保护。随着超压事故的进展,一个或多个安全(或泄压)阀将被打开。下游管道将经历一次或多次冲击,从而影响管道的布置。整个排放过程非常复杂,其关键影响因素有升压速率、安全(或溢流)阀开启时间、液封温度和容积、下游排放管道的布置等。本文研究了超压事故中液封排放过程。压力上升速度过快,导致三个安全(或释放)阀相继打开,对下游排放管道产生三次冲击。研究发现,对于具体的核电站设计而言,安全(或泄放)阀设定值的合理设计对泄放力分析结果至关重要。
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