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Study of heat transport by stationary magneto-convection in a Newtonian liquid under temperature or gravity modulation using Ginzburg-Landau model

机译:用Ginzburg-Landau模型研究牛顿液体在温度或重力调制下静态磁对流传热

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摘要

The present paper deals with a weak non-linear stability problem of magneto-convection in an electrically conducting Newtonian fluid, confined between two horizontal surfaces, under a constant vertical magnetic field, and subjected to an imposed time-periodic boundary temperature (ITBT) or gravity modulation (ITGM). In the case of ITBT, the temperature gradient between the walls of the fluid layer consists of a steady part and a time-dependent oscillatory part. The temperature of both walls is modulated in this case. In the problem involving ITGM, the gravity field has two parts: a constant part and an externally imposed time periodic part, which can be realized by oscillating the fluid layer. The disturbance is expanded in terms of power series of amplitude of convection, which is assumed to be small. Using Ginzburg-Landau equation, the effect of modulations on heat transport is analyzed. Effect of various parameters on the heat transport is also discussed.© 2011 Published by Elsevier Ltd.
机译:本文研究了在恒定的垂直磁场下,在恒定时间的垂直磁场下,限制在两个水平表面之间,并受到时间周期边界温度(ITBT)或温度限制的导电牛顿流体中磁对流的弱非线性稳定性问题。重力调制(ITGM)。对于ITBT,流体层壁之间的温度梯度由稳定部分和随时间变化的振荡部分组成。在这种情况下,两个壁的温度均被调节。在涉及ITGM的问题中,重力场有两个部分:一个恒定部分和一个外部施加的时间周期部分,这可以通过使流体层振荡来实现。扰动根据对流幅度的幂级数而扩大,假设该对数幅值较小。使用Ginzburg-Landau方程,分析了调制对热传递的影响。还讨论了各种参数对热传输的影响。©2011 Elsevier Ltd.发布。

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