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THERMAL HYDRAULIC ISSUES OF CONTAINMENT FILTERED VENTING SYSTEM FOR A LONG OPERATING TIME

机译:长时间运行的防渗漏气系统的液压问题

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This study investigated the thermal hydraulic issues in the Containment Filtered Venting System (CFVS) for a long operating time using the MELCOR computer code. The modeling of the CFVS, including the models for pool scrubbing and the filter, was added to the input file for the OPR-1000, and a Station Blackout (SBO) was chosen as an accident scenario. Although depressurization in the containment building as a primary objective of the CFVS was successful, the decontamination feature by scrubbing and filtering in the CFVS for a long operating time could fail by the continuous evaporation of the scrubbing solution. After the operation of the CFVS, the atmosphere temperature in the CFVS became slightly above the water saturation temperature owing to the release of an amount of steam with high temperature from the containment building to the scrubbing solution. Reduced pipe diameters at the inlet and outlet of the CFVS vessel mitigated the evaporation of scrubbing water by controlling the amount of high-temperature steam and the water saturation temperature.
机译:这项研究使用MELCOR计算机代码调查了长时间运行的密闭过滤通风系统(CFVS)中的热力液压问题。 CFVS的模型(包括池清洗模型和过滤器模型)已添加到OPR-1000的输入文件中,并选择了停电(SBO)作为事故场景。尽管作为CFVS的主要目标的安全壳建筑物降压是成功的,但由于CFVS的洗涤液不断蒸发,因此在CFVS中进行长期洗涤和过滤后的去污功能可能会失败。 CFVS运行后,CFVS中的大气温度由于安全壳中的大量蒸汽释放到洗涤液中而变得略高于水饱和温度。 CFVS容器入口和出口处的管径减小,通过控制高温蒸汽量和水饱和温度,减轻了洗涤水的蒸发。

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