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Analysis of Noncondensable Gas Recirculation Flow in Steam Generator U-Tubes during Reflux Condensation Using RELAP5

机译:基于RELAP5的蒸汽发生器U型管回流冷凝过程中不可冷凝气体再循环流分析

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Under certain hypothetical accident circumstances in a pressurized water reactor, reflux condensation in steam generator U-tubes may be an effective heat removal mechanism. In a previous study, an empirical correlation of condensation heat transfer coefficients for reflux condensation was derived and incorporated into the transient analysis code RELAP5. In this study, different flow patterns in U-tubes observed in the reflux condensation test 7.2c with nitrogen injection in the Bethsy facility were calculated using a parallel-channel model for steady-state calculations and the RELAP5 code for transient calculations. In the region of low steam flow rates, the pressure in the outlet plenum becomes higher than that in the inlet plenum due to the density head of gases, and nitrogen reverse flow occurs, which was successfully calculated using the RELAP5 code with modified equations for the interfacial and wall friction forces. There are many solutions with different numbers of active U-tubes with steam condensation and the predicted number of active U-tubes agrees well with the measured values based on the assumption that the flow might be most stable in the case with the maximum nitrogen recirculation flow rate.
机译:在压水反应堆中某些假设的事故情况下,蒸汽发生器U型管中的回流冷凝可能是有效的排热机制。在先前的研究中,得出了冷凝水传热系数与回流冷凝的经验相关性,并将其纳入瞬态分析代码RELAP5中。在这项研究中,使用平行通道模型进行稳态计算,并使用RELAP5代码进行瞬态计算,计算了在Bethsy设施中进行氮注入的回流冷凝试验7.2c中观察到的U型管中不同的流动模式。在低蒸汽流量的区域,由于气体的密度扬程,出口气室中的压力变得高于入口气室中的压力,并且发生了氮气倒流,这可以使用RELAP5代码成功地通过修改后的方程进行计算。界面和壁的摩擦力。有许多解决方案,其中带有蒸汽凝结的活动U型管数量不同,并且基于以下假设:在最大氮气再循环流量的情况下,流量可能最稳定,因此,活动U型管的预测数量与测量值非常吻合。率。

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