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Heat Transfer and Friction Characteristics of the Microfluidic Heat Sink with Variously-Shaped Ribs for Chip Cooling

机译:带有不同形状肋的微流控散热器的热传递和摩擦特性

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摘要

This paper experimentally and numerically investigated the heat transfer and friction characteristics of microfluidic heat sinks with variously-shaped micro-ribs, i.e., rectangular, triangular and semicircular ribs. The micro-ribs were fabricated on the sidewalls of microfluidic channels by a surface-micromachining micro-electro-mechanical system (MEMS) process and used as turbulators to improve the heat transfer rate of the microfluidic heat sink. The results indicate that the utilizing of micro-ribs provides a better heat transfer rate, but also increases the pressure drop penalty for microchannels. Furthermore, the heat transfer and friction characteristics of the microchannels are strongly affected by the rib shape. In comparison, the triangular ribbed microchannel possesses the highest Nusselt number and friction factor among the three rib types.
机译:本文通过实验和数值研究了具有各种形状的微肋的微流体散热器的传热和摩擦特性,即矩形,三角形和半圆形肋。通过表面微加工微机电系统(MEMS)工艺在微流体通道的侧壁上制造微肋,并用作湍流器以提高微流体散热器的传热速率。结果表明,微肋的利用提供了更好的传热速率,但是也增加了微通道的压降损失。此外,肋的形状强烈地影响微通道的传热和摩擦特性。相比之下,三角形肋状微通道在三种肋骨类型中拥有最高的努塞尔数和摩擦系数。

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