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Thermal characterization and optimization of pulsating heat pipes operating in a circulation mode

机译:循环模式下脉动热管的热特性分析和优化

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摘要

In the present study, thermodynamic characterization and thermal optimization of pulsating heat pipes (PHPs) operating in a circulation mode are conducted experimentally and analytically. A series of experiments is performed to identify the thermodynamic state of the vapor plugs inside the PHPs. Two-turn closed-loop PHPs are made of glass capillary tubes with inner diameters of 1.2, 1.7, and 2.2 mm. Temperature, internal pressure, and high-speed flow visualization data are obtained for PHPs at various input powers in a vertical orientation inside which the flow in the steady state exhibits a circulating motion with a sporadic pulsating motion. It is experimentally found that when a PHP is operating in a circulation mode, the vapor plugs in the PHP exist in a saturation state and the saturation pressure of each vapor plug is nearly identical. This physically means the phase changes can be treated to occur at a constant saturation temperature corresponding to the system pressure along the entire tube. On the basis of the experimental findings, a one-dimensional numerical model is developed to predict the thermal performance of PHPs operating in a circulation mode. The numerical results are shown to be in close agreement with the experimental data within an error of 7%. Finally, thermal optimization is conducted using the proposed model. The number of turns (N_(turn)) is optimized under the given three-dimensional space (200×190×6 mm~3) for various lengths of the condenser section (20, 40, and 60 mm). According to the numerical results, there is an optimum number of turns at which the thermal performance is maximized in the case of PHPs with condenser length of 20 mm, while the thermal performance of PHPs with condenser length of 40 and 60 mm is monotonically enhanced as the number of turns increases. The optimum thermal performance results from the combined effect of the mass flux of circulating flow and the condensation area.
机译:在本研究中,对以循环方式运行的脉冲热管(PHP)的热力学特性和热优化进行了实验和分析。进行了一系列实验来确定PHP内部蒸气塞的热力学状态。两匝闭环PHP由内径为1.2、1.7和2.2毫米的玻璃毛细管制成。在垂直方向上以各种输入功率获得PHP的温度,内部压力和高速流动可视化数据,在垂直方向上,稳态下的流动表现为具有零星的脉动运动的循环运动。实验发现,当PHP以循环模式运行时,PHP中的蒸汽塞处于饱和状态,并且每个蒸汽塞的饱和压力几乎相同。从物理上讲,这意味着可以将相变处理为在恒定的饱和温度下发生,该温度对应于沿着整个管道的系统压力。根据实验结果,开发了一维数值模型来预测以循环模式运行的PHP的热性能。结果表明,数值结果与实验数据非常吻合,误差为7%。最后,使用所提出的模型进行热优化。在给定的三维空间(200×190×6 mm〜3)下,针对冷凝器部分的各种长度(20、40和60 mm),优化匝数(N_(turn))。根据数值结果,在冷凝器长度为20 mm的PHP的情况下,有一个最佳匝数可使热性能最大化,而冷凝器长度为40和60 mm的PHP的热性能则随着转数增加。最佳的热性能来自循环流质量通量和冷凝面积的综合作用。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2017年第ptab期|1234-1246|共13页
  • 作者

    Hyung Yun Noh; Sung Jin Kim;

  • 作者单位

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Daejeon 34141, Republic of Korea;

    Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Daejeon 34141, Republic of Korea;

  • 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

  • 入库时间 2022-08-18 00:18:06

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