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SAFETY ANALYSIS FOR RADIOACTIVE MATERIAL PROCESSING FACILITY

机译:放射性物质加工设施安全分析

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Local transient hydrogen concentrations were evaluated inside a large process room when the hydrogen gas was released by three postulated accident scenarios associated with the process tank leakage and fire leading to a loss of gas confinement. The three cases considered in this work were fire in a room, loss of confinement from a process tank, and loss of confinement coupled with fire event. Based on these accident scenarios in a large and unventilated process room, the modeling calculations of the hydrogen migration were performed to estimate local transient concentrations of hydrogen due to the sudden leakage and release from a glovebox system associated with the process tank. The modeling domain represented the major features of the process room including the principal release or leakage source of gas storage system. The model was benchmarked against the literature results for key phenomena such as turbulent behavior, gas mixing due to jet entrainment, and radiation cooling because these phenomena are closely related to the gas driving mechanisms within a large air space of the process room. The modeling results showed that at the corner of the process room, the gas concentrations migrated by the Case 2 and Case 3 scenarios reached the set-point value of high activity alarm in about 13 seconds, while the Case 1 scenario takes about 90 seconds to reach the concentration. The modeling results were used to estimate transient radioactive gas migrations in an enclosed process room installed with high activity alarm monitor when the postulated leakage scenarios are initiated without room ventilation.
机译:当氢气通过与过程坦克泄漏和火灾相关的三种假发事故情景释放时,在大型工艺室内评估局部瞬态氢浓度。在这项工作中考虑的三个案例在一个房间里火,从过程坦克丢失了监禁,并丧失与火灾活动相结合。基于大型和不透明的过程室中的这些事故情景,进行氢迁移的建模计算,以估计由于突然泄漏和与加工罐相关联的手套箱系统释放而导致的局部瞬态浓度。建模域表示过程室的主要特点,包括储气系统的主要释放或泄漏源。该模型与文献结果为基准测试,以获得湍流行为,湍流行为,由于喷射夹带而导致的气体混合,并且辐射冷却,因为这些现象与过程室的大空气空间内的气体驱动机构密切相关。建模结果表明,在处理室的拐角处,通过壳体2迁移的气体浓度和案例3场景在大约13秒内达到高活动报警的设定点值,而案例1场景大约需要90秒达到浓度。在安装出假设的泄漏场景的情况下没有房间通风时启动时,建模结果用于估计安装在安装的高活动报警监视器中的瞬态放射性气体迁移。

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