Prediction of flow and heat transfer in rough micro channels with direct simulation Monte Carlo method
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摘要: 采用Delaunay三角化方法對計算區域進行網格劃分,開發了適合于非結構化網格的蒙特卡洛直接模擬程序,并對程序的正確性進行了驗證.在此基礎上模擬分析了粗糙元為三角形的平行平板間微通道內稀薄氣體的二維流動與換熱.通道進出口壓力固定,上下平板溫度恒定.計算分析了粗糙元高度、寬度以及分布密度的影響.結果表明:微通道內粗糙元對流動與換熱有明顯的擾動;隨著粗糙元的變大,速度跳躍顯著,甚至出現漩渦,增加了通道內的壓力損失;但粗糙元增強了微通道壁面與氣體之間的換熱.Abstract: The computational domain was meshed by Delaunay triangulation method.A Monte Carlo direct simulation program was developed for unstructured grids and its validity was checked.On that case,the two-dimensional flow and heat transfer of rarefied gas in parallel plate micro-channels with triangular roughness elements were simulated.The pressure of the micro-channels' inlet and outlet and the temperature of the plates above and below were constant.The influences of the height,width and distribution density of roughness elements were computed and analyzed.The results show that roughness elements in the micro-channels can create obvious disturbance for the flow and heat transfer.The greater the roughness elements,the more visible the oscillation of velocity,even vortexes occur,which increases the pressure loss;but roughness elements can enhance the heat transfer.
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Key words:
- roughness /
- micro-channels /
- rarefied gas /
- flow /
- heat transfer
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