首页> 外文期刊>Journal of The institution of engineers (India), Series C >Comprehensive Analysis of Convective Heat Transfer in Parallel Plate Microchannel with Viscous Dissipation and Constant Heat Flux Boundary Conditions
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Comprehensive Analysis of Convective Heat Transfer in Parallel Plate Microchannel with Viscous Dissipation and Constant Heat Flux Boundary Conditions

机译:具有粘性耗散和恒定热通量边界条件的平行板微通道对流传热综合分析

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摘要

This paper reports the hydrodynamically and thermally fully developed, laminar, incompressible, forced convective heat transfer characteristics of gaseous flows through a parallel plate microchannel with different constant heat flux boundary conditions. The first order velocity slip and viscous dissipation effects are considered in the analysis. Here, three different thermal boundary conditions such as: both plates kept at different constant heat fluxes, both plates kept at equal constant heat fluxes and one plate kept at constant heat flux and other one insulated are considered for the analysis. The deviation in Nusselt number between the model that considers both first order velocity slip and temperature jump and the one that considers only velocity slip is reported. Also, the effect of various heat flux ratios on the Nusselt number is reported in this analysis. In addition, the deviation in Nusselt number between first and second order slip model is discussed in this study.
机译:本文通过具有不同恒定热通量边界条件的平行板微通道报告了气体流动流动的流体动力学和热完全发育,层状,不可压缩,强制对流传热特性。 在分析中考虑了第一阶速度滑移和粘性耗散效果。 这里,三种不同的热边界条件,例如:两个板保持在不同的恒定热通量,两块板保持在等于恒定的热通量,并且一块保持在恒定的热通量的一块板和其他一个绝缘的板上进行分析。 报道了模型之间的偏差,其考虑了第一阶速度滑动和温度跳转的模型和仅考虑速度滑动的模型。 此外,在该分析中报道了各种热通量比对豆浆数的影响。 另外,在本研究中讨论了第一和二阶滑动模型之间的爆发号的偏差。

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