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Experimental investigation for sequential triangular double-layered microchannel heat sink with nanofluids

机译:纳米流体相继三角双层微通道散热器的实验研究

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摘要

This study examined new innovative design of aluminum rectangular and triangular double-layered microchannel heat sink (RDLMCHS) and (TDLMCHS), respectively, using Al_2O_3-H_2O and SiO_2-H_2O nanofluids. A series of experimental runs for different channel dimensions, different nanoparticles concentrations and types and several pumping powers showed excellent hydrothermal performance for DLMCHS over traditional single-layer (SLMCHS). The results showed that the sequential TDLMCHS provided a 27.4% reduction in the wall temperature comparing with RDLMCHS and has better temperature uniformity across the channel length with less than 2 ℃. Sequential TDLMCHS provided 16.6% total thermal resistance lesser than the RDLMCHS at low pumping power and the given geometry parameters. Pressure drop observation showed no significant differences between the two designs. In addition, larger number of channels and smaller fin thickness referred less thermal resistance rather than only increasing the pumping power. Higher nanoparticle concentration showed better thermal stability for both nanofluids than pure water. The Al_2O_3-H_2O nanofluid (0.9 vol.%) showed best performance with the temperature difference of 1.6 ℃ and lowest thermal resistance of 0.13 ℃/W·m~2.
机译:本研究分别研究了使用Al_2O_3-H_2O和SiO_2-H_2O纳米流体对铝制矩形和三角形双层微通道散热器(RDLMCHS)和(TDLMCHS)进行的创新设计。一系列针对不同通道尺寸,不同纳米颗粒浓度和类型以及几种泵送功率的实验运行显示,与传统单层(SLMCHS)相比,DLMCHS具有出色的水热性能。结果表明,与RDLMCHS相比,连续TDLMCHS的壁温降低了27.4%,并且在小于2℃的整个通道长度上具有更好的温度均匀性。在低泵浦功率和给定的几何参数下,顺序TDLMCHS提供的总热阻比RDLMCHS小16.6%。压降观察表明两种设计之间没有显着差异。另外,更多的通道数量和更小的散热片厚度意味着更少的热阻,而不仅仅是增加泵浦功率。与纯水相比,更高的纳米颗粒浓度对两种纳米流体都显示出更好的热稳定性。 Al_2O_3-H_2O纳米流体(0.9%(体积))表现最佳,温差为1.6℃,最低热阻为0.13℃/ W·m〜2。

著录项

  • 来源
    《Letters in heat and mass transfer》 |2016年第10期|104-115|共12页
  • 作者单位

    Department of Mechanical Engineering, International Islamic University Malaysia, 50728, Gombak, Malaysia,Department of Mechanical Engineering, University of Anbar, Ramadi 31001, Iraq;

    Department of Mechanical Engineering, International Islamic University Malaysia, 50728, Gombak, Malaysia;

    Department of Mechanical Engineering, International Islamic University Malaysia, 50728, Gombak, Malaysia;

    Department of Mechanical Engineering, University of Nevada, Las Vegas, NV 89154, USA,DNV GL, Engineering Department, Las Vegas, NV 89146, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Double-layer; MicroChannel heat sink; Sequential triangular; Nanofluids;

    机译:双层;微通道散热器;顺序三角形;纳米流体;

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