首页> 外文会议>ASME international mechanical engineering congress and exposition >THERMORHEOLOGICAL AND MAGNETORHEOLOGICAL EFFECTS ON RAYLEIGH-BENARD-MARANGONI CONVECTION IN FERROMAGNETIC LIQUIDS WITH NON-UNIFORM BASIC TEMPERATURE GRADIENT
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THERMORHEOLOGICAL AND MAGNETORHEOLOGICAL EFFECTS ON RAYLEIGH-BENARD-MARANGONI CONVECTION IN FERROMAGNETIC LIQUIDS WITH NON-UNIFORM BASIC TEMPERATURE GRADIENT

机译:非均匀基本温度梯度铁磁液体中的热流变和磁流变效应对雷格-贝纳德-马朗戈尼对流的影响

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A linear stability analysis of buoyancy and surface tension driven convection in temperature and magnetic field sensitive Newtonian ferromagnetic liquid is studied. The importance of this problem lies in the interesting possibility of regulating convection using a heat source (sink). The problem discussed in this paper leads to a situation that the basic temperature gradient here is non-uniform. The governing equations thereby are of variable coefficients. The principle of exchange of stabilities is shown to be valid. The critical values are obtained using higher order Galerkin technique. The influence of various magnetic and nonmagnetic parameters on the onset of convection has been analyzed. It is found that there is tight coupling between Rayleigh and Marangoni numbers, with an increase in one resulting in a decrease in the other. Variable viscosity parameter and heat source destabilize the system. The effect of heat sink is to stabilize the system. Buoyancy magnetization parameter destabilizes the system both in presence/absence of heat source/sink.
机译:研究了温度和磁场敏感的牛顿铁磁液体中浮力和表面张力驱动对流的线性稳定性分析。该问题的重要性在于使用热源(散热器)调节对流的有趣可能性。本文讨论的问题导致这里的基本温度梯度不均匀的情况。因此,控制方程具有可变系数。交换稳定性的原理被证明是有效的。使用高阶Galerkin技术获得临界值。分析了各种磁性和非磁性参数对对流发生的影响。发现瑞利数和马兰戈尼数之间存在紧密的耦合,其中一个值增加导致另一个值减少。可变的粘度参数和热源会使系统不稳定。散热器的作用是稳定系统。在存在/不存在热源/散热器的情况下,浮力磁化参数都会使系统不稳定。

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