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The research on the heat transfer of a solid-core nuclear reactor cooled by heat pipe through a numerical simulation, considering the assembly gaps

机译:考虑装配间隙的数值模拟研究热管冷却固核反应堆的传热

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The solid-core nuclear reactor cooled by the heat pipe has received extensive attention in recent years. It is mainly applied in the space reactor power system which can supply ample energy for the demand of the surface power on extraterrestrial planets. Based on this technology, a number of reactor designs have been proposed since 1990 s. Unlike liquid-cooled reactors, the heat transfer in a solid-core reactor has to go through the assembly gaps which could cause the considerable thermal contact resistance. The thermal contact resistance might limit the heat transfer and change with the expansion of the fuel pin in the core during the startup process. A numerical simulation was conducted to calculate the unsteady startup process of the core and analyze the influence of the thermal contact resistance caused by the assembly gaps. The results showed that the size of the initial assembly gaps might change the way of the heat transfer in the core and determine the temperature difference between the core and the heat pipe. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由热管冷却的实心核反应堆近年来受到了广泛的关注。它主要应用于空间反应堆动力系统,该系统可为外星球的地面动力需求提供充足的能量。基于这种技术,自1990年代以来,已经提出了许多反应堆设计方案。与液冷反应堆不同,实芯反应堆中的热传递必须经过装配间隙,这可能会导致相当大的热接触电阻。在启动过程中,热接触电阻可能会限制传热并随着堆芯中燃料销的膨胀而变化。进行了数值模拟,以计算铁心的不稳定启动过程,并分析了装配间隙对热接触电阻的影响。结果表明,初始装配间隙的大小可能会改变铁芯中传热的方式,并决定铁芯与热管之间的温差。 (C)2019 Elsevier Ltd.保留所有权利。

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