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Sintered porous medium heat sink for cooling of high-power mini-devices

机译:烧结多孔介质散热器,用于冷却大功率微型设备

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Heat transfer and pressure drop in a rectangular channel with sintered porous inserts, made of stainless steel of different porosity, were investigated experimentally. Heat flux up to 6 MW/m~2 was removed experimentally by using porous samples with porosity 32% and average pore diameter 20 μm. Under this experimental condition, the difference between the temperatures of the wall and the bulk water did not exceed of 55 K with a pressure drop of 4.5 bars. The generalization of data on heat transfer in a low porosity sintered stainless steel media, based on the permeability as scale of length and the effective thermal conductivity, was considered. An estimate of a heat sink efficiency using sintered porous material for cooling high-power mini-devices and comparing it with one for such modern porous media as compressed aluminum foams was done.
机译:实验研究了具有不同孔隙率的不锈钢制成的多孔烧结烧结体在矩形通道中的传热和压降。通过使用孔隙率为32%,平均孔径为20μm的多孔样品,实验去除了高达6 MW / m〜2的热通量。在此实验条件下,壁温和散装水之间的温差不超过55 K,压降为4.5 bar。考虑了基于低渗透率的长度和有效导热率的低孔隙率烧结不锈钢介质中传热数据的一般化。对使用烧结多孔材料冷却大功率微型设备的散热效率进行了估算,并将其与诸如压缩铝泡沫的现代多孔介质的散热效率进行了比较。

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