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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Numerical simulation of roughness effect on microchannel heat transfer and pressure drop in laminar flow
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Numerical simulation of roughness effect on microchannel heat transfer and pressure drop in laminar flow

机译:层流中粗糙度对微通道传热和压降影响的数值模拟

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摘要

Roughness effects on the heat transfer and pressure losses in microscale tubes and channels are investigated through a finite element CFD code. Surface roughness is explicitly modelled through a set of randomly generated peaks along the ideal smooth surface. Different peak shapes and distributions are considered; geometrical parameters are representative of tubes in the diameter range from 50 to 150 mu m The use of a sufficiently fine mesh allows the direct computation of tube performances under the assumption of incompressible, fully developed flow; a comparison with the predictions of simplified models is also presented. As a result, in the present computations a significant increase in Poiseuille number is detected for all the configurations considered, while the effect of roughness on the heat transfer rate is smaller and highly dependent on the tube shape.
机译:通过有限元CFD代码研究了粗糙度对微型管和通道中传热和压力损失的影响。表面粗糙度是通过沿着理想光滑表面的一组随机生成的峰进行显式建模的。考虑了不同的峰形和分布;几何参数代表直径在50到150μm范围内的管。使用足够细的网格可以在不可压缩,充分展开的流动的假设下直接计算管性能。还提出了与简化模型预测的比较。结果,在本计算中,对于所有考虑的配置,都检测到泊瓦数的显着增加,而粗糙度对传热速率的影响较小,并且高度依赖于管的形状。

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