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Experimental Study on Preparation and Heat Transfer of Nickel-Based Ammonia Loop Heat Pipe

机译:镍基氨环热管的制备和传热试验研究

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摘要

The loop heat pipe (LHP) is a passive heat sink used in aerospace and electronic devices. As the core component of the LHP, the physical property parameters of porous wick directly affect the overall performance of the LHP. In this paper, the performance of the porous wick is improved by adjusting the pore size, thereby improving the performance of the LHP. The nickel-based double-pore porous wicks are prepared by T225 nickel powder and NaCl particles, and the pore size of the porous wicks can be changed by different cold pressing force (30 kN, 40 kN, 50 kN, and 60 kN). The effects of different cold pressing force on the porosity, permeability, and other physical property parameters are studied when the ratio of pore former is 20wt.%. In the end, we select the cold pressing force of 30 kN to prepare the porous wick of the LHP. Then the effects of constant load and variable load of the heat transfer performance under different placement elevations are studied. The results show that the heat load range is 10 W-100 W, the minimum evaporator thermal resistance is 0.424 KIW, and the minimum LHP thermal resistance is 0.598 K/W. When β = 0 deg, there is a "backflow" phenomenon at the initial stage of low thermal load. With the increase of thermal load, the "backflow" duration decreases until it disappears, and the startup time becomes shorter. The thermal resistances of the evaporator and LHP decrease rapidly and then slowly increase. When β = -90deg, the LHP appears to demonstrate "reverse startup" phenomenon.
机译:环路热管(LHP)是航空航天和电子设备中使用的无源散热器。作为LHP的核心组分,多孔芯的物理性能参数直接影响LHP的整体性能。在本文中,通过调节孔径来改善多孔芯的性能,从而提高了LHP的性能。通过T225镍粉和NaCl颗粒制备镍的双孔多孔芯,并且可以通过不同的冷压力(30kN,40kN,50kN和60kN)来改变多孔芯的孔径。当孔前以20WT的比例为20Wt时,研究了不同冷压力对孔隙率,渗透性和其他物质参数的影响。%。最后,我们选择30 kn的冷压力以制备LHP的多孔芯。然后,研究了在不同放置高度下传热性能的恒定负荷和可变负荷的影响。结果表明,热负荷范围为10W-100W,最小蒸发器热阻为0.424 kiW,最小LHP热阻为0.598 k / w。当β= 0°时,在低热负荷的初始阶段存在“回流”现象。随着热负荷的增加,“回流”持续时间降低,直到它消失,并且启动时间变短。蒸发器和LHP的热电阻迅速降低,然后缓慢增加。当β= -90deg时,LHP似乎展示了“反向启动”现象。

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  • 来源
    《Journal of Heat Transfer》 |2021年第11期|111901.1-111901.11|共11页
  • 作者单位

    School of Mechanical Electrical & Information Engineering Shandong University Weihai Shandong 264209 China Weihai Institute of Industrial Technology Shandong University WenhuaXilu 180 Weihai Shandong 264209 China;

    School of Mechanical Electrical & Information Engineering Shandong University Weihai Shandong 264209 China Weihai Institute of Industrial Technology Shandong University WenhuaXilu 180 Weihai Shandong 264209 China;

    School of Mechanical Electrical & Information Engineering Shandong University Weihai Shandong 264209 China Weihai Institute of Industrial Technology Shandong University WenhuaXilu 180 Weihai Shandong 264209 China;

    Key Laboratory of Liquid Structure and Heredity of Materials Ministry of Education Shandong University Jinan Shandong 250061 China;

    School of Mechanical Electrical & Information Engineering Shandong University Weihai Shandong 264209 China Weihai Institute of Industrial Technology Shandong University WenhuaXilu 180 Weihai Shandong 264209 China;

    Key Laboratory of Liquid Structure and Heredity of Materials Ministry of Education Shandong University Jinan Shandong 250061 China;

  • 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

    loop heat pipe; capillary suction capability; porous wick selection; heat transfer experiment; different angles; startup performance;

    机译:环热管;毛细管抽吸能力;多孔芯选择;传热实验;不同的角度;启动性能;

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