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Regulatory Issues On The Safety Distance Between A Vhtr And A H_2 Production Facility And An Overpressure Prediction Using Correlations And A Cfd Analysis For The Jaea Explosion Test In An Open Space

机译:Vhtr和H_2生产设施之间的安全距离以及使用相关性和Cfd分析进行空地Jaea爆炸试验的超压预测的监管问题

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Regulatory issues are discussed to establish Korean regulations on the safety distance between a very high temperature reactor (VHTR) and a hydrogen production facility. The major issues for the regulations concerning a gas explosion are an overpressure criteria, a regulation philosophy, and an overpressure prediction method. The overpressure can be predicted using empirical correlations of the trinitrotuluene (TNT) equivalent method and the multi-energy method (MEM). A comparison work of the predicted values using these correlations and the Japan Atomic Energy Agency (JAEA) explosion test results was performed to evaluate the applicability of these correlations to a VHTR. The MEM predicts the peak overpressure better than the TNT equivalent method because the explosion test results in a deflagration phenomenon. Thus, the MEM may be used effectively to estimate the peak overpressure for the gas explosion simply. A CFD analysis for the explosion test was also performed to establish an analysis methodology for a gas explosion. A spark ignition model to simulate an electric spark of 40 J in the JAEA explosion test was developed based on an energy conservation law. A sensitivity computational fluid dynamics (CFD) calculation was performed to elucidate the optimized pressure, temperature, and radius value of the spark ignition model. The CFD analysis results showed that the peak overpressure and the flame front time of arrival may be predicted better by the CFD analysis than by the MEM if the proper pressure and radius for the spark ignition model are chosen. So, the CFD analysis may be used as an accurate evaluation tool to provide the three-dimensional information of an overpressure and a time history of the overpressure variation. Therefore, it is recommended that the risk-informed regulation, the MEM, and the CFD analysis method should be used together to determine a safety distance.
机译:讨论法规问题以建立韩国关于极高温反应堆(VHTR)与制氢设施之间安全距离的法规。涉及气体爆炸的法规的主要问题是超压标准,法规原理和超压预测方法。可以使用三硝基甲苯(TNT)当量方法和多能量方法(MEM)的经验相关性来预测超压。使用这些相关性与日本原子能机构(JAEA)爆炸测试结果进行了预测值的比较工作,以评估这些相关性对VHTR的适用性。 MEM预测的峰值过压优于TNT等效方法,因为爆炸测试会导致爆燃现象。因此,MEM可以有效地用于简单地估计气体爆炸的峰值超压。还进行了爆炸测试的CFD分析,以建立气体爆炸的分析方法。根据能量守恒定律,开发了在JAEA爆炸试验中模拟40 J电火花的火花点火模型。进行了敏感性计算流体动力学(CFD)计算,以阐明火花点火模型的最佳压力,温度和半径值。 CFD分析结果表明,如果为火花点火模型选择了合适的压力和半径,则CFD分析比MEM可以更好地预测峰值超压和火焰到达的时间。因此,CFD分析可用作精确的评估工具,以提供超压的三维信息和超压变化的时间历史。因此,建议将风险提示法规,MEM和CFD分析方法一起使用,以确定安全距离。

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