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Variations in gas properties in laminar micro-convection with entrance effect

机译:层流微对流中气体性质随入射效应的变化

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The present work investigates the influence of property variations of air in laminar forced convection with entrance effect. Two-dimensional micro-sized geometry (with axisymmetry) with constant wall heat flux boundary condition is considered to predict flow behaviour and thermal development. The con-tinnum-based conservation equations are numerically solved to account for non-rarefaction scaling effects due to variations in fluid properties. At the microscale, results for Nusselt number show significant deviation from conventional theory that does not consider additional mechanisms that surface. The effect of property variation in Graetz problem for low subsonic flow is also studied.
机译:本文研究了层流强迫对流中空气特性变化对入口效应的影响。考虑具有恒定壁热通量边界条件的二维微尺寸几何结构(具有轴对称性)来预测流动行为和热发展。对基于连续数的守恒方程进行数值求解,以解决由于流体特性变化而引起的非反射缩放效应。在微观尺度上,Nusselt数的结果显示出与传统理论的显着偏差,传统理论没有考虑表面上的其他机制。还研究了在低亚音速流下Graetz问题中特性变化的影响。

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