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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical simulation of wall roughness on gaseous flow and heat transfer in a microchannel
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Numerical simulation of wall roughness on gaseous flow and heat transfer in a microchannel

机译:微通道中壁面粗糙度对气流和传热的数值模拟

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A flow and heat transfer numerical simulation was performed for a 2D compressible gas flow through a microchannel in the slip regime to investigate the effects of wall roughness. The wall roughness is simulated by rectangular microelements. This effect is examined for gas flows under inlet Mach number ranging from 0.0055 to 0.202. The numerical results demonstrate that the roughness elements have a significant impact on the flow characteristics. For rarefied gases, it is found that roughness effect leads to an increase in the Poiseu-ille number with increasing roughness height and decreasing element spacing. The surface roughness has a more significant effect on the flow with a lower inlet Kn. Compressible gas flow is also sensitive to the height of the wall roughness elements. In addition, an increase of the relative roughness height leads to a pronounced decrease in the local heat flux for both rarefied and compressible flow. The average Nusselt numbers have a much more significant reduction for a rarefied flow than a compressible flow. The influence of wall roughness on the average heat transfer rate is smaller than that on the Poiseuille number.
机译:对在滑移状态下通过微通道的2D可压缩气流进行了流动和传热数值模拟,以研究壁面粗糙度的影响。用矩形微元件模拟壁的粗糙度。对于进口马赫数为0.0055至0.202的气流,检查了这种影响。数值结果表明,粗糙度元素对流动特性有重大影响。对于稀薄气体,发现粗糙度效应会导致Poiseu-ille数的增加,同时粗糙度高度增加且元素间距减小。表面粗糙度对进口流量Kn较低的流动有较大影响。可压缩气流也对壁粗糙度元件的高度敏感。另外,相对稀疏高度的增加导致稀薄流动和可压缩流动的局部热通量显着降低。对于稀疏流,平均Nusselt数的减少比可压缩流的减少得多。壁面粗糙度对平均传热率的影响小于对泊瓦数的影响。

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