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Stability analysis of stratified Rayleigh-Benard-Poiseuille convection. Part III: Interface deformation

机译:分层瑞利 - 奔城 - 北北麓对流的稳定性分析。 第III部分:界面变形

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Interface deformation is a common phenomenon in multi-layered systems that can significantly impact the velocity and temperature fields. In order to track the interface position in a two-layered system subjected to vertical temperature gradient and shear flow, techniques of linear stability analysis (LSA) and computational fluid dynamics (CFD) were applied. The LSA results show that the interface can be deformed for low Reynolds numbers if the fluids in each layer have different viscosity or thermal conductivity or if the thermocapillary effect is significant. The interface can be stabilized by increasing the ratio between the density of each fluid. The limits where the interface deformation can be neglected are defined for several cases. Comparisons with CFD results reveal that the linear analysis is consistent near the convection onset; however, as the Rayleigh number is increased and the non-linear terms become more significant, strong interface deformation can occur and the linear approximation no longer predicts the system behavior. (C) 2019 Elsevier Ltd. All rights reserved.
机译:界面变形是多层系统中的常见现象,可以显着影响速度和温度场。为了跟踪经过垂直温度梯度和剪切流动的双层系统中的接口位置,施加线性稳定性分析(LSA)和计算流体动力学(CFD)的技术。 LSA结果表明,如果每层中的流体具有不同的粘度或导热效率,则可以使界面变形为低雷诺数,或者热量效应显着。通过增加每个流体的密度之间的比率可以稳定界面。可以忽略界面变形的限制是针对几种情况来定义的。与CFD结果的比较表明,线性分析在对流发作附近一致;然而,随着瑞利数量的增加并且非线性术语变得更加显着,可能发生强的界面变形,线性近似不再预测系统行为。 (c)2019年elestvier有限公司保留所有权利。

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