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Experimental investigation on two-phase thermosyphon loop with partially liquid-filled downcomer

机译:部分充液降液管的两相热虹吸回路的实验研究

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Two-phase thermosyphon loops (TPTLs) are beginning to be extensively used in the field of air conditioning and heat recovery, where they have quite different flow characteristics compared with the traditional TPTLs used in cooling of electronics. However, in the existing studies, the flow features in the downcomer were ignored, and most researchers simply thought the downcomer was always full of liquid. In this study, a visual experimental setup was established, the flow features in the downcomer were observed and measured. And the influencing factors including temperature difference, liquid charge, height difference, and circulation flow resistance on the liquid head have been identified and investigated experimentally. The results show that, different from the conventional understandings, the downcomer can be partially liquid filled. At this time, the upper part of downcomer is a static saturation gas blockage, surrounded by a layer of liquid film, which does not provide the driving force. The liquid head in the downcomer, which provides the driving force, shows great self-regulation ability with different working conditions. Increasing the refrigerant charge, temperature difference, circulation flow resistance, and decreasing the height difference drives the liquid head to rise, and the downcomer tends to be fully liquid filled. (C) 2015 Elsevier Ltd. All rights reserved.
机译:两相热虹吸回路(TPTL)开始广泛用于空调和热回收领域,与传统的电子冷却装置中的TPTL相比,它们具有非常不同的流动特性。然而,在现有的研究中,下降管中的流动特征被忽略了,大多数研究人员只是认为下降管总是充满液体。在这项研究中,建立了视觉实验装置,观察并测量了下降管中的流动特征。并确定和实验研究了影响温度的因素,包括液温差,充液量,高度差和液头的循环流阻。结果表明,与传统的理解不同,下降管可以部分地被液体填充。此时,降液管的上部是静态饱和气体阻塞,被一层液膜包围,无法提供驱动力。提供驱动力的降液管中的液头在不同的工作条件下显示出强大的自我调节能力。制冷剂充注量的增加,温度差,循环流阻的增加以及高度差的减小会驱动液头上升,并且下降管趋向于充满液体。 (C)2015 Elsevier Ltd.保留所有权利。

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