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首页> 外文期刊>International Journal of Refrigeration >Modeling and performance analysis of a two-phase thermosyphon loop with partially/fully liquid-filled downcomer
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Modeling and performance analysis of a two-phase thermosyphon loop with partially/fully liquid-filled downcomer

机译:具有部分/全部充满液体的降液管的两相热虹吸回路的建模和性能分析

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摘要

Two-phase thermosyphon loops (TPTLs) are extensively used in industries. Numerical simulation is always applied for their configuration design and performance rating. The conventional models are usually developed under large temperature difference, and the fully liquid-filled downcomer are taken for granted. In this study, a generalized model for TPTL is developed, in which the downcomer can be partially liquid filled or fully liquid filled under different conditions. The model is verified by experiments on an air-to-air finned-tube TPTL. Then, it is used to analyze the flow and heat transfer features of a TPTL, under different refrigerant charge and temperature difference. The results show that the downcomer is partially liquid filled in the case of small temperature difference and refrigerant charge. Additionally, the heat transfer rate first increases then decreases with the increase of refrigerant charge, and first increases linearly then increases relatively slowly with the increase of temperature difference. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:两相热虹吸回路(TPTL)广泛用于工业中。数值模拟始终用于其配置设计和性能等级。常规模型通常是在较大的温度差下开发的,并且完全充满液体的降液管是理所当然的。在这项研究中,开发了TPTL的通用模型,其中降液管可以在不同条件下部分注满液体或完全注满液体。通过在空气对空气翅片管TPTL上进行的实验验证了该模型。然后,在不同的制冷剂充注量和温度差下,用于分析TPTL的流动和传热特性。结果表明,在温差小和制冷剂充注的情况下,降液管被部分充满液体。另外,传热速率首先随着制冷剂充注量的增加而增加,然后减少,并且首先随着温度差的增加而线性增加,然后相对缓慢地增加。 (C)2015 Elsevier Ltd和IIR。版权所有。

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