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Analytical and numerical results for the dynamics of capillary pumped loops and loop heat pipes subjected to high amplitude heat load steps

机译:毛细管泵送环和环热管动态的分析和数值结果,对高幅度热负荷步骤进行

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Some analytical and numerical results were presented in order to clarify which are the main parameters leading the time response of CPL and LHP subjected to high amplitude heat load steps. This study actually focused on the estimation of the liquid flow rate overshoot as this peak value can be so large that it may lead to loop failures. The analytical developments assumed that the evaporator-condenser coupling which founds the CPL/LHP transient at the earliest times is based on a second-order linear system. Satisfactory agreement was observed with some data and with some simulations investigating different loop configurations even though the reliability of the analytical results depends on the reynolds number and the friction factor in the liquid line. As they provided essential information on the loop transient, these theoretical results are precious for transient numerical developments and also for the design of loops that are suitable for demanding power cycles. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一些分析和数值结果,以澄清哪个是导致CPL和LHP经受高幅度热负荷步骤的时间响应的主要参数。本研究实际上专注于估计液体流速过冲,因为该峰值可能会导致循环故障如此之大。分析开发假设最早发现CPL / LHP瞬态的蒸发器 - 冷凝器耦合是基于二阶线性系统。使用一些数据观察到满意的协议,并且一些模拟调查不同的环路配置,即使分析结果的可靠性取决于雷诺数和液体线中的摩擦因子。随着它们提供了关于环路瞬态的基本信息,这些理论结果对于瞬态数值开发以及适用于要求苛刻的功率循环的环路的设计是珍贵的。 (c)2017 Elsevier Ltd.保留所有权利。

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