利用被动安全壳冷却系统去除气溶胶的研究

Pingwen Ou, Peng Chen
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引用次数: 0

摘要

被动式安全壳冷却系统(PCCS)可以在事故发生时有效地将安全壳的热量排出并保持压力和温度,从而保证安全壳的完整性。PCCS引入了热泳术和扩散泳术气溶胶沉积,改变了安全壳内裂变产物的分布,从而影响安全壳剂量评估和场外源期评估。本文采用ASTEC(事故源项评估代码)建立了一个采用PCCS的第三代压水堆核电站模型,研究了在冷却剂大断损事故下PCCS对裂变产物气溶胶的去除效果。结果表明,一列PCCS可使气溶胶去除系数提高约0.05/h。以本研究的5列PCCS列车为例,PCCS引入的气溶胶沉积效应使安全壳内悬浮气溶胶减少了10% ~ 20%,且在PCCS定位舱内效果更为显著。同时,舱室间的气体流动也改变了pccs定位舱室附近的气溶胶质量。这种现象削弱了pccs定位室的去除效果,使相邻隔间的气溶胶浓度趋于一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of aerosol removal by passive containment cooling system
Passive containment cooling system (PCCS) can effectively remove the heat from the containment and maintain the pressure and temperature in case of accident, thus ensuring the containment integrity. PCCS introduces thermophoresis and diffusiophoresis aerosol deposition and changes the distribution of fission products in the containment, thus affecting containment dose evaluation and off-site source term assessment. In this paper, a Generation III PWR nuclear power plant model with PCCS is established by using ASTEC (Accident Source Term Evaluation Code), and the removal effect of PCCS on fission product aerosol is studied under the large break loss of coolant accident. The results show that one train of PCCS can increase the aerosol removal factor for approximately 0.05/h. Taking five trains of PCCS in this study as an example, aerosol deposition effect introduced by PCCS reduces suspended aerosol in containment by 10 %–20 %, and the effect is more significant in the PCCS-locating compartment. Meanwhile, the gas flow among compartments changes the aerosol mass in the adjacency of the PCCS-locating compartment. This phenomenon weakens the removal effect in the PCCS-locating compartment and make the aerosol concentration in adjacent compartments tend to be consistent.
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