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HEAT REMOVAL CAPACITY OF HEAT PIPE DESIGN FOR IN-CORE PASSIVE DECAY HEAT REMOVAL SYSTEM

机译:内无源衰减式热交换系统的热管热交换能力设计

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A passive in-core cooling system (PINCs) can be adopted in control rods for passive safety of advanced nuclear power plants. A hybrid heat pipe is a heat transfer device to take the roles of both neutron absorption and heat removal by combining the functions of a heat pipe and a control rod. The unique characteristic of the hybrid control rod is the presence of neutron absorber inside the heat pipe. Many previous researchers studied the effect of parameters on the thermal performance of heat pipe. However, the effect of inner structure on the thermal performance of heat pipe has not been investigated. As a first step of the development of hybrid heat pipe, the annular heat pipe which contains neutron absorber in the normal heat pipe was prepared and the thermal performance of the annular heat pipe was experimentally studied. The annular heat pipe showed higher thermal resistances in the evaporator region with a maximum increase of 100 %, although condenser thermal resistances and total thermal resistances were was similar with those of normal heat pipe. In the aspect of operational limit, the annular heat pipe showed lower maximum heat transfer capacity than a normal heat pipe due to a smaller cross-section of vapor path in evaporator region, which resulted in high shear at the vapor-liquid interface of the wick structure. In addition, several further works to assess the effect of inner structure on the maximum heat removal rate of the hybrid heat pipe were presented.
机译:可以在控制棒中采用无源堆芯冷却系统(PINC),以实现高级核电站的无源安全。混合式热管是一种传热装置,通过组合热管和控制棒的功能来兼具中子吸收和除热的作用。混合控制棒的独特特征是在热管内部存在中子吸收剂。先前许多研究人员研究了参数对热管热性能的影响。但是,尚未研究内部结构对热管的热性能的影响。作为发展混合热管的第一步,制备了在常规热管中包含中子吸收剂的环形热管,并通过实验研究了该环形热管的热性能。环形热管在蒸发器区域显示出较高的热阻,最大增加了100%,尽管冷凝器的热阻和总热阻与普通热管相似。在运行极限方面,环形热管由于在蒸发器区域中的蒸汽路径横截面较小,因此显示出的最大传热能力比普通热管要低,这导致了芯子的气液界面处的高剪切力结构体。此外,提出了一些进一步的工作来评估内部结构对混合热管最大排热率的影响。

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