首页> 外文期刊>International Journal of Heat and Mass Transfer >Forced convection heat transfer of Nano-Encapsulated Phase Change Material (NEPCM) suspension in a mini-channel heatsink
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Forced convection heat transfer of Nano-Encapsulated Phase Change Material (NEPCM) suspension in a mini-channel heatsink

机译:纳米封装相变材料(Nepcm)悬浮液中的强制对流传热在迷你通道散热器中

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摘要

In the present experimental study, Nano-Encapsulated Phase Change Material (NEPCM) nanoparticles with particle sizes in the range of 250-350 nm are synthesized. The core of nanoparticles is made of eicosane and can undergo liquid-solid phase change by absorbing/releasing latent heat. The eicosane core of the NEPCM particles is enclosed in a formaldehyde shell, and the particles are suspended in the water as the base fluid. The synthesized NEPCM-water suspension is employed as the working-fluid for heat removal from a microchannel heatsink. The heatsink is made of red-copper, and it consists of eight rectangular microchannels with an aspect ratio of 1.5 and a hydraulic diameter of 1.2 mm. Under the heatsink, a heating plate is embedded, which produces a uniform heat flux. The working-fluid, NEPCM-water, enters the microchannel and absorbs the heat from the microchannel walls in the form of sensible and latent heat. The impact of the nanopartide's concentration, the heating-power, and the flow rate is investigated on the channel wall temperature, Nusselt number, convection ratio, performance index, and coefficient of performance. The results show that the presence of NECPM-particles improves heat transfer and the index of performance up to 70% and 45%, respectively. The observed enhancement of heat transfer is particularly notable at low Reynolds numbers. However, at the high Reynolds numbers, the presence of NECPM particles may reduce the convection ratio and performance index, which is mainly due to the increase of the viscosity and reduction of the sensible heat of the working-fluid in the presence of NEPCM nanoparticles.
机译:在本实验研究中,合成纳米包封的相变材料(Nepcm)粒径在250-350nm范围内的颗粒尺寸。纳米颗粒的核心由己烷制成,可以通过吸收/释放潜热来进行液体固相变化。 Nepcm颗粒的己烷核心封闭在甲醛壳中,并且将颗粒悬浮在水中作为基础流体。合成的Nepcm-水悬浮液作为工作流体,用于从微通道散热器中除去热量。散热器由红色铜制成,它由八个矩形微通道组成,纵横比为1.5,液压直径为1.2mm。在散热器下,嵌入加热板,其产生均匀的热通量。工作流体,Nepcm-水,进入微通道并以明智和潜热的形式吸收来自微通道壁的热量。在通道壁温,露珠数,对流比,性能指标和性能系数上研究了纳米丙酯浓度,加热功率和流速的影响。结果表明,NECPM颗粒的存在分别提高了热传递和高达70%和45%的性能指数。观察到的热传递增强在低雷诺数中特别值得注意。然而,在高雷诺数,NECPM颗粒的存在可以降低对流比和性能指标,其主要是由于在氖纳米颗粒存在下工作流体的粘度和可显着的显着性的粘度和降低。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第7期|119858.1-119858.13|共13页
  • 作者单位

    Department of Mechanical Engineering National Cheng-Kung University Tainan 70101 Taiwan;

    Department of Mechanical Engineering National Cheng-Kung University Tainan 70101 Taiwan;

    Metamaterials for Mechanical Biomechanical and Multiphysical Applications Research Group Ton Duc Thang University Ho Chi Mirth City Vietnam Faculty of Applied Sciences Ton Duc Thang University Ho Chi Minh City Vietnam;

    Department of Energy and Refrigerating Air-Conditioning Engineering National Taipei University of Technology Taipei 10608 Taiwan Research Center of Energy Conservation for New Generation of Residential Commercial and Industrial Sectors National Taipei University of Technology Taipei 10608 Taiwan;

  • 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

    Forced convection; MicroChannel heat sink; Water-based suspension; Nano-Encapsulated Phase Change Materials (NEPCMs);

    机译:强迫对流;微通道散热器;水基悬浮液;纳米封装相变材料(NEPCMS);

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