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Thermodynamic calculations of a two-phase thermosyphon loop for cold neutron sources

机译:冷中子源两相热烃环的热力学计算

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A new method is described for thermodynamic calculations of a two-phase thermosyphon loop based on a one-dimensional finite element division, where each time-step is split up in a change of enthalpy and a change in entropy. The method enables the investigation of process responses for a cooling loop from room temperature down to cryogenic temperatures. The method is applied for the simulation of two distinct thermosyphon loops: a two-phase deuterium and a two-phase hydrogen thermosyphon loop. The simulated process responses are compared to measurements on these loops. The comparisons show that the method can be used to optimize the design of such loops with respect to performance and resulting void fractions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于一维有限元分划线,描述了一种新方法,用于基于一维有限元分的两相热循环环路,其中每个时间步骤在焓的变化和熵的变化中分裂。 该方法使得能够从室温下降到低温温度的冷却回路的过程反应。 该方法应用于两个不同的热循环环的模拟:两相氘和两相氢热脊椎环。 将模拟过程响应与这些环上的测量进行比较。 比较表明,该方法可用于优化相对于性能和导致空隙分数的这种环路的设计。 (c)2017 Elsevier Ltd.保留所有权利。

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