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Parametric Investigation of Viscous Dissipation Effects on Optimized Air Cooling Microchanneled Heat Sinks

机译:优化空气冷却微通道散热器的粘性耗散效应的参数研究

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摘要

The effects of viscous dissipation of working fluid on the optimum heat sink parameters are investigated for the case of air cooling with a micro-arrow-channeled compact heat sink. For this purpose, an optimization method is introduced first on the basis of dimensionless groups while employing several assumptions. This method yields minimum pumping work or pressure drop with a set of optimized geometric/hydrodynamic parameters when outer dimension of a heat sink and imposed thermal load are specified. Especially for the case of laminar flow, the procedure presents an explicit existence of cooling limit by the viscous heat generation, giving an analytical expression of the maximum removable heat Q_(max). The relationships between thermal load and each parameter are calculated for both laminar and turbulent regimes under the conditions of compact heat sink dimension (20 mm x 20 mm x 2 mm) and circular cross-sectional shape of channels. The results show that the cooling capability under such conditions is largely limited by the salient manifestation of viscous dissipation, when compared with our previous investigation on water cooling presented in . From the discussion, it was concluded that when a micro-arrow-channeled heat sink is to be designed with air, the effect of viscous dissipation should be taken into account in order to avoid falling on wrong optimum solutions.
机译:对于使用微/窄通道紧凑型散热器进行空气冷却的情况,研究了工作流体的粘性耗散对最佳散热器参数的影响。为此,首先采用无因次组并同时采用几个假设的最优化方法。当指定散热器的外部尺寸和施加的热负荷时,此方法可产生最小的泵送功或压降,并具有一组优化的几何/流体动力学参数。特别是对于层流,该过程通过粘性热量的产生明确地表明了冷却极限,从而给出了最大可移动热量Q_(max)的解析表达式。在紧凑的散热器尺寸(20 mm x 20 mm x 2 mm)和通道的圆形横截面形状的条件下,针对层流和湍流状态计算了热负荷与每个参数之间的关系。结果表明,与我们以前在图1中提出的水冷却研究相比,在这种条件下的冷却能力在很大程度上受到粘性耗散的显着表现的限制。从讨论中得出的结论是,当要设计带有空气的微/窄通道散热器时,应考虑粘性耗散的影响,以避免落在错误的最佳解决方案上。

著录项

  • 来源
    《Heat Transfer Engineering》 |2003年第1期|p.53-62|共10页
  • 作者

    YOICHI MURAKAMI; BORA B. MIKIC;

  • 作者单位

    Room 721, Building 8, Department of Mechanical Engineering, University of Tokyo, 7-3-1 Hongo, Bunkyo-Ku, Tokyo 113-8656, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工业用热工设备;
  • 关键词

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