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Evaporative Heat Transfer Analysis of a Heat Pipe With Hybrid Axial Groove

机译:混合轴向槽热管的蒸发传热分析

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摘要

Through the application of thin film evaporation theory and the fundamental operating principles of heat pipes, a hybrid axial groove has been developed that can greatly enhance the performance characteristics of conventional heat pipes. This hybrid axial groove is composed of a V-shaped channel connected with a circular channel through a very narrow longitudinal slot. During the operation, the V-shaped channel can provide high capillary pressure to drive the fluid flow and still maintain a large evaporative heat transfer coefficient. The large circular channel serves as the main path for the condensate return from the condenser to the evaporator and results in a very low flow resistance. The combination of a high evaporative heat transfer coefficient and a low flow resistance results in considerable enhancement in the heat transport capability of conventional heat pipes. In the present work, a detailed mathematical model for the evaporative heat transfer of a single groove has been established based on the conservation principles for mass, momentum and energy, and the modeling results quantitatively verify that this particular configuration has an enhanced evaporative heat transfer performance compared with that of conventional rectangular groove, due to the considerable reduction in the liquid film thickness and a corresponding increase in the evaporative heat transfer area in both the evaporating liquid film region and the meniscus region.
机译:通过应用薄膜蒸发理论和热管的基本工作原理,已开发出一种混合轴向槽,可以大大提高传统热管的性能。该混合轴向槽由V形通道组成,该V形通道通过非常窄的纵向槽与圆形通道连接。在操作过程中,V形通道可提供较高的毛细压力以驱动流体流动,并且仍保持较大的蒸发传热系数。大的圆形通道用作冷凝水从冷凝器返回蒸发器的主要路径,并导致非常低的流阻。蒸发传热系数高和流阻低的组合导致常规热管的传热能力大大提高。在目前的工作中,基于质量,动量和能量的守恒原理,建立了一条沟槽的蒸发传热的详细数学模型,并且建模结果定量验证了这种特殊的配置具有增强的蒸发传热性能。与传统的矩形槽相比,由于在蒸发的液膜区域和弯液面区域中的液膜厚度显着减小并且蒸发的传热面积相应增加。

著录项

  • 来源
    《Journal of Heat Transfer》 |2013年第3期|031503.1-031503.9|共9页
  • 作者单位

    School of Aeronautical Science and Engineering, Beihang University,Beijing, 100191, P.R.China;

    School of Aeronautical Science and Engineering, Beihang University,Beijing, 100191, P.R.China;

    Woodruff School of Mechanical Engineering,Georgia Institute of Technology,Atlanta, G A 30318;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    heat pipe; groove; heat transfer; pressure drop; mathematical model;

    机译:热管;槽;传播热量;压力下降;数学模型;
  • 入库时间 2022-08-18 00:23:51

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