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COOLING PERFORMANCE OF NANOFLUIDS IN A MICROCHANNEL HEAT SINK

机译:微通道热沉中纳米流体的冷却性能

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This paper describes an experimental study on microchannel heat sink performance where ZnO nanoparticle suspended fluids are used as coolant. The microchannel heat sink has 65 parallel microchannels branched out from an inlet reservoir and then collected into an outlet reservoir. Its fabrication process is based on the standard photolithographic microfabrication technology. A main feature of the heat sink has an array of on-chip temperature sensors on the channel bottom surface along the channel. Thus, the channel wall temperatures are directly measured. Heat transfer coefficient for the nanofluid is measured and compared with that of DI water as reference. The experiments show that the heat transfer coefficient of the ZnO nanofluid is 13 % higher than that of the base fluid at the Reynolds number of 3.8, although it is comparable with that of DI water at lower Re numbers. The experiments also show that the heat transfer coefficient as well as the Nusselt number increases as the Reynolds number increases.
机译:本文介绍了使用ZnO纳米颗粒悬浮液作为冷却剂的微通道散热器性能的实验研究。该微通道散热器具有65个平行的微通道,这些平行的微通道从进口储罐中分支出来,然后收集到出口储罐中。它的制造过程基于标准的光刻微制造技术。散热器的主要特征是在沿着通道的通道底表面上具有一系列片上温度传感器。因此,直接测量通道壁的温度。测量纳米流体的传热系数,并与去离子水的传热系数进行比较。实验表明,在雷诺数为3.8时,ZnO纳米流体的传热系数比基础流体的传热系数高13%,尽管与较低Re数的去离子水相当。实验还表明,随着雷诺数的增加,传热系数以及努塞尔数也随之增加。

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