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A differential constraint approach to obtain global stability for radiation-induced double-diffusive convection in a porous medium

机译:获得多孔介质中辐射诱导的双扩散对流的整体稳定性的差分约束方法

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摘要

The stability of double-diffusive porous convection with a concentration-based internal heat source is studied. Owing to the significant sensitivity of standard energy method, a highly desirable reduction in the number of required Coupling parameters is achieved through the novel energy method of van Duijn et al. (Environmental Mechanics: Water, Mass and Energy Transfer in the Biosphere. American Geophysical Union: Washington. DC, 2002 155-169). This approach incorporates the Darcy equation as a differential constraint, and has been shown by van Duijn et al. to generally yield sharper nonlinear results. Owing to the widespread use Of coupling parameters in analysing porous media stability, this result strongly advocates the differential constraint approach for obtaining optimal nonlinear stability thresholds.
机译:研究了基于浓度的内部热源的双扩散多孔对流的稳定性。由于标准能量方法的显着灵敏度,通过van Duijn等人的新型能量方法,可以非常理想地减少所需耦合参数的数量。 (环境力学:生物圈中的水,质量和能量转移。美国地球物理联合会:华盛顿特区,2002 155-169)。这种方法将达西方程式作为微分约束,并已由van Duijn等人证明。通常会产生更清晰的非线性结果。由于耦合参数在多孔介质稳定性分析中的广泛应用,该结果强烈提倡采用差分约束方法来获得最佳非线性稳定性阈值。

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