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首页> 外文期刊>Journal of Electronic Packaging >Study of Flow and Heat Transfer Characteristics in Asymmetrically Heated Sintered Porous Heat Sinks With Periodical Baffles
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Study of Flow and Heat Transfer Characteristics in Asymmetrically Heated Sintered Porous Heat Sinks With Periodical Baffles

机译:带有周期性折流板的不对称加热烧结多孔散热器的流动和传热特性研究

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This work numerically examined the mechanism of heat transfer in a sintered porous heat sink with baffles. A channel filled with the sintered porous heat sink was asymmetrically heated and metallic baffles were periodically mounted on the heated surface. The fluid medium was air. The results indicate that no recirculation occurred between baffles. The metallic baffle obtained heat from the heated surface by conduction directly from the heated surface and indirectly through the porous media. It dissipated heat to the fluid that passed over the zone above the baffle. The Nusselt numbers in the cases with baffles exceeded those in cases without a baffle. The enhancement in the average Nusselt numbers of sintered porous heat sinks with baffles increased as the Reynolds number (Re) declined; the baffle height (h/H) increased; the baffle length (w/H) increased, or the baffle pitch (X{sub}L) decreased. However, at Re=500, the average Nusselt number in the case with h/H=0.3 was higher than those with h/H=0.7, 0.5, and 0.1. Additionally, the minimum enhancement appeared at around Re=3000 for various h/H, w/H, and X{sub}L. For the cases with h/H ≤0.3 and various w/H as well as X{sub}L, at Re>3000, sintered porous heat sinks with baffles insignificantly improved heat transfer.
机译:这项工作从数值上检查了带有挡板的烧结多孔散热器的传热机理。对填充有烧结多孔散热器的通道进行不对称加热,并在加热的表面上定期安装金属挡板。流体介质是空气。结果表明挡板之间没有发生再循环。金属挡板通过直接从被加热表面传导并间接地通过多孔介质而从被加热表面获得热量。它将热量散发到通过挡板上方区域的流体。带有挡板的情况下的Nusselt数超过了没有挡板的情况下的Nusselt数。随着雷诺数(Re)的下降,带有挡板的烧结多孔散热器的平均努塞尔数增加。挡板高度(h / H)增加;挡板长度(w / H)增加,或挡板节距(X {sub} L)减小。但是,在Re = 500时,h / H = 0.3的情况下的平均Nusselt数高于h / H = 0.7、0.5和0.1的情况。另外,对于各种h / H,w / H和X {sub} L,最小增强出现在Re = 3000左右。对于h / H≤0.3和各种w / H以及X {sub} L的情况,在Re> 3000时,带有折流板的烧结多孔散热器明显改善了热传递。

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