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Effect of pressure work and viscous dissipation in the analysis of the Rayleigh-Benard problem

机译:压力功和粘性耗散在瑞利贝纳德问题分析中的作用

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The classical Rayleigh-Benard problem in an infinitely wide horizontal fluid layer with isothermal boundaries heated from below is revisited. The effects of pressure work and viscous dissipation are taken into account in the energy balance. A linear analysis is performed in order to obtain the conditions of marginal stability and the critical values of the wave number a and of the Rayleigh number Ra for the onset of con-vective rolls. Mechanical boundary conditions are considered such that the boundaries are both rigid, or both stress-free, or the upper stress-free and the lower rigid. It is shown that the critical value of Ra may be significantly affected by the contribution of pressure work, mainly through the functional dependence on the Gebhart number and on a thermodynamic Rayleigh number. While the pressure work term affects the critical conditions determined through the linear analysis, the viscous dissipation term plays no role in this analysis being a higher order effect. A nonlinear analysis is performed showing that the superad-iabatic Rayleigh number replaces Ra in the functional dependence of the excess Nusselt number. Finally, a reasoning is proposed to show how the results obtained may be used as a test on the most appropriate formulation of the Oberbeck-Boussinesq model.
机译:再次探讨了从下方加热等温边界的无限宽水平流体层中的经典Rayleigh-Benard问题。在能量平衡中考虑了压力功和粘性耗散的影响。为了获得对流辊的起伏,需要进行线性分析以获得边际稳定性的条件以及波数a和瑞利数Ra的临界值。考虑机械边界条件,使得边界既是刚性的,又是既无应力的,又无上应力而下刚性的。结果表明,压力的贡献可能会显着影响Ra的临界值,主要是通过对Gebhart数和热力学瑞利数的函数依赖性。虽然压力工作项会影响通过线性分析确定的临界条件,但粘性耗散项在此分析中不起作用,它是高阶效应。进行了非线性分析,表明超绝热瑞利数在过量努塞尔特数的函数依赖性上取代了Ra。最后,提出了一个推理方法来说明如何将获得的结果用作对Oberbeck-Boussinesq模型的最适当公式的检验。

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