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Design, fabrication, and performance evaluation of a novel orientation independent and wickless heat spreader

机译:设计,制造和性能评估新颖的方向独立和无芯散热器

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摘要

Concentrated heat loads from electronic components present significant thermal management challenges in defense, space, and commercial applications. Liquid-vapor phase-change promises efficient heat dissipation due to the high latent heat of vaporization of the working fluid. Here we report a novel wickless two-phase heat spreader wherein an aqueous solution of surface-active ionic liquid (SAIL) is completely filled within a narrow gap. Unlike typical two-phase passive devices in literature, our device does not rely on gravity or wicks for fluid recirculation. The force of repulsion due to the interaction of SAILS adsorbed at the liquid-vapor interfaces of thin-liquid films contained between neighboring bubbles nucleating at the hotspots is strong enough to cause bubble departure at all orientations. High-speed bubble visualization and infrared thermography suggest that these non-coalescing bubbles quickly spread over a larger area and condense to release the heat to a sink placed at a gap of 2.5 mm. This passive mechanism of heat dissipation demonstrates orientation independent and near-isothermal performance from 0.5-1.1 MW/m~2 in the two-phase regime. We believe that the orientation independent performance of this easy to fabricate passive device provides a platform to design next generation thermal management strategies for earth and microgravity applications.
机译:来自电子元件的集中热负荷在国防,空间和商业应用中具有显着的热管理挑战。液 - 气相变化由于工作流体蒸发的高潜热而有效的散热。在这里,我们报告了一种新型无芯两相散热器,其中表面活性离子液体(帆)的水溶液完全填充在狭窄的间隙内。与文献中的典型两相无源器件不同,我们的装置不依赖于对流体再循环的重力或芯。由于在热点成核的相邻气泡中包含的薄液膜的液体 - 蒸汽界面上吸附的汽蒸的相互作用而导致的释放力足够强,以使气泡偏离在所有方向上。高速气泡可视化和红外热成像表明,这些非聚结气泡迅速散布在更大的区域上并冷凝,以将热量释放到放置在2.5mm的间隙的水槽中。这种散热机制在两相制度中从0.5-1.1mW / m〜2的0.5-1.1 mw / m〜2中显示出定向和接近等温性。我们认为,这种易于制造的无源设备的定向独立性能提供了一种为地球和微匍匐应用设计下一代热管理策略的平台。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第6期|119572.1-119572.12|共12页
  • 作者单位

    Thermal and Fluid Transport Laboratory Department of Mechanical Engineering Indian Institute of Technology Patna Bihar 801103 India;

    Thermal and Fluid Transport Laboratory Department of Mechanical Engineering Indian Institute of Technology Patna Bihar 801103 India;

    Thermal and Fluid Transport Laboratory Department of Mechanical Engineering Indian Institute of Technology Patna Bihar 801103 India;

    Thermal and Fluid Transport Laboratory Department of Mechanical Engineering Indian Institute of Technology Patna Bihar 801103 India;

    Department of Chemistry Indian Institute of Technology Patna Bihar 801103 India;

    Thermal System Group U. R. Rao Satellite Centre Bangalore 560017 India;

    Thermal and Fluid Transport Laboratory Department of Mechanical Engineering Indian Institute of Technology Patna Bihar 801103 India;

  • 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 spreader; Wickless; Orientation; Gravity; Isothermal; Ionic liquid;

    机译:散热器;wick方向;重力;等温;离子液体;

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