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Numerical Study of Fluid Flow and Heat Transfer in the Enhanced Microchannel With Oblique Fins

机译:带有斜肋的增强型微通道内流体流动和传热的数值研究

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摘要

Sectional oblique fins are employed in contrast to continuous fins in order to modulate flow in microchannel heat sink. The breakage of continuous fin into oblique sections leads to the reinitialization of both hydrodynamic and thermal boundary layers at the leading edge of each oblique fin, effectively reducing the thickness of boundary layer. This regeneration of entrance effect causes the flow to be always in a developing state thus resulting in better heat transfer. In addition, the presence of smaller oblique channels diverts a small fraction of flow into the adjacent main channels. The secondary flows thus created improve fluid mixing which serves to further enhance the heat transfer. Detailed numerical study on the fluid flow and heat transfer of this passive heat transfer enhancement technique provides insight to the local hydrodynamics and thermal development along the oblique fin. The uniquely skewed hydrodynamic and thermal profiles are identified as the key to the highly augmented and uniform heat transfer performance across the heat sink. The associated pressure drop penalty is much smaller than the achieved heat transfer enhancement, rendering it as an effective heat transfer enhancement scheme for single phase Microchannel heat sink.
机译:与连续散热片相比,采用了截面倾斜散热片,以便调节微通道散热器中的流量。连续鳍片折断成倾斜部分会导致在每个倾斜鳍片前缘处的水动力和热边界层重新初始化,从而有效地减小了边界层的厚度。入口效应的这种再生导致流动始终处于发展状态,从而导致更好的热传递。另外,较小的倾斜通道的存在将一小部分流量转移到相邻的主通道中。由此产生的二次流改善了流体混合,这进一步增强了热传递。对该被动传热增强技术进行的流体流动和传热的详细数值研究为斜向翅片的局部流体动力学和热发展提供了见识。独特的偏斜流体力学和热学曲线被认为是散热器上高度增强且均匀的传热性能的关键。相关的压降损失远小于实现的传热增强,使其成为单相微通道散热器的有效传热增强方案。

著录项

  • 来源
    《Journal of Heat Transfer》 |2013年第4期|041901.1-041901.10|共10页
  • 作者

    Y. J. Lee; P. S. Lee; S. K. Chou;

  • 作者单位

    Energy and Bio-Thermal System Division, Department of Mechanical Engineering,National University of Singapore, Singapore 119260;

    Energy and Bio-Thermal System Division, Department of Mechanical Engineering,National University of Singapore, Singapore 119260;

    Energy and Bio-Thermal System Division, Department of Mechanical Engineering,National University of Singapore, Singapore 119260;

  • 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

    enhanced microchannel; oblique fins; thermal management; electronic cooling;

    机译:增强的微通道;斜鳍;热管理;电子冷却;

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