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A self-regulating multi-torus magneto-fluidic device for kilowatt level cooling

机译:用于千瓦水平冷却的自调节多圆环磁流体装置

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摘要

Efficiently removing waste heat by novel cooling devices can reduce material failure and enhance service life. Magneto-fluidic cooling, which is based on the thermomagnetic convection of a ferrofluid, offers a passive, self-regulating approach for the removal of waste heat. The performance of a novel multi-torus magnetic cooling device for kilowatt level cooling was investigated. The performance was determined for a range of heat load power. Heat load cooling increased from 148 degrees C to 214 degrees C when heat load power was increased from 0.5 kW to 1 kW, respectively, demonstrating the self-regulating nature of the device. The heat load cooling performance was assessed for various magnet positions. The temperature profile of the ferrofluid along the axial and radial directions of the flow channel revealed an asymmetric temperature distribution. The transient effect of periodic magnetic field switching on the heat load temperature was simulated using COMSOL Multiphysics and found to be in good agreement with the experimental findings. Simulated surface velocity vector plots revealed ferrofluid vortices near the heat load, these vortices resulted in enhanced mixing of hot and cold ferrofluid, leading to increased cooling. The thermal resistance of our multi-torus magnetic cooling device was determined analytically. The present device offers lower thermal resistance per unit length and lower ferrofluid thermal resistance per unit volume of ferrofluid compared to conventional heat pipes. A self pumping, self regulating passive heat pump, capable of kilowatt level cooling, has been fabricated and its cooling performance assessed.
机译:通过新型冷却装置有效地去除废物,可以减少材料故障并增强使用寿命。磁流体冷却,基于铁磁流体的热磁对流,提供了用于去除废热的被动,自我调节方法。研究了一种用于千瓦水平冷却的新型多环磁冷却装置的性能。确定了一系列热负荷功率的性能。当热负荷功率分别从0.5千瓦增加到1 kW时,热负荷冷却从148℃增加到214摄氏度,展示了装置的自调节性质。为各种磁体位置评估热负荷冷却性能。沿着流动通道的轴向和径向沿着流动通道的轴向和径向的温度曲线显示出不对称的温度分布。使用COMSOL多发性模拟周期性磁场切换对热负荷温度的瞬态效应,并与实验结果吻合良好。模拟表面速度矢量图揭示了热负荷附近的铁磁流体涡旋,这些涡流导致了加热和冷氰流体的混合,导致冷却增加。在分析上确定了我们多环磁冷却装置的热阻。与传统的热管相比,本装置每单位长度和每单位体积的摩托流体较低的热阻和较低的硼流体热阻。已经制造了一种自泵送,自调节无源热泵,其能够进行千瓦水平冷却,并评估其冷却性能。

著录项

  • 来源
    《Energy Conversion & Management》 |2019年第10期|111819.1-111819.13|共13页
  • 作者单位

    Nanyang Technol Univ Sch Mat Sci & Engn Singapore 639798 Singapore|Campus Res Excellence & Technol Enterprise CREATE Nanomat Energy & Energy Water Nexus NEM Singapore HUJ Alliance Res & Enterprise SHARE Singapore 138602 Singapore;

    Nanyang Technol Univ Sch Mat Sci & Engn Singapore 639798 Singapore|Campus Res Excellence & Technol Enterprise CREATE Nanomat Energy & Energy Water Nexus NEM Singapore HUJ Alliance Res & Enterprise SHARE Singapore 138602 Singapore;

    Nanyang Technol Univ Sch Mat Sci & Engn Singapore 639798 Singapore|Campus Res Excellence & Technol Enterprise CREATE Nanomat Energy & Energy Water Nexus NEM Singapore HUJ Alliance Res & Enterprise SHARE Singapore 138602 Singapore;

    Nanyang Technol Univ Sch Mat Sci & Engn Singapore 639798 Singapore|Campus Res Excellence & Technol Enterprise CREATE Nanomat Energy & Energy Water Nexus NEM Singapore HUJ Alliance Res & Enterprise SHARE Singapore 138602 Singapore;

    Rajalaksluni Engn Coll Chennai 602105 Tamil Nadu India;

    Nanyang Technol Univ Sch Mat Sci & Engn Singapore 639798 Singapore|Campus Res Excellence & Technol Enterprise CREATE Nanomat Energy & Energy Water Nexus NEM Singapore HUJ Alliance Res & Enterprise SHARE Singapore 138602 Singapore;

  • 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

    Ferrofluid; Thermomagnetic convection; Magneto-fluidic device; Passive cooling;

    机译:Ferrofluid;热磁对流;磁流体装置;被动冷却;
  • 入库时间 2022-08-18 22:23:24

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