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Effects of Filtered Containment Venting System Operating Strategies on the Cesium Releases during Severe Accidents

机译:过滤遏制通风系统在严重事故中铯释放对铯释放的影响

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When a severe accident occurs, steam, hydrogen, non-condensable gas, and radioactive materials are generated and released from reactor coolant system (RCS) to containment atmosphere resulting in increase of containment pressure. The generation of steam and non-condensable gas could affect containment integrity which is a final barrier of radioactivity release. To prevent over-pressurization of containment and to reduce the amount oj radionuclides release to the environment, the concept of Filtered Containment Venting System (FCVS) is adopted. However, the operation of FCVS is needed to be careful because it emits radioactive materials into the atmosphere which can affect to the public and environment ultimately. Especially, the Cesium (Cs) could have a major impact on human health and ground contamination. In addition, the effects of FCVS differs depending on accident scenarios and venting strategies. Therefore, in this paper, the effects of FCVS operating strategies on the Cesium during severe accidents are analyzed. Consequently, this study suggests the optimum venting strategies of FCVS in order to minimize the amount of Cs released to the environment.
机译:当发生严重事故时,从反应器冷却剂系统(RCS)产生并释放出蒸汽,氢气,不可冷凝的气体和放射性物质,以加热气氛导致容纳压力的增加。蒸汽和不可冷凝气体的产生可能影响遏制完整性,这是放射性释放的最终屏障。为防止遏制过度加压并减少OJ放射性核素释放到环境中,采用过滤容器通风系统(FCV)的概念。然而,需要FCV的操作来谨慎,因为它将放射性物质发射到最终可能影响公众和环境的大气中。特别是,铯(CS)可能对人类健康和地面污染产生重大影响。此外,FCV的影响因事故情景和通风策略而异。因此,在本文中,分析了FCVS在严重事故中对铯对铯的影响。因此,本研究表明FCV的最佳通风策略,以最大限度地减少释放到环境的CS量。

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