首页> 外文会议>2011 IEEE International Conference on Dielectric Liquids >Influence of the characteristic parameters on flow patterns and heat transfer in electro-thermo-convection
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Influence of the characteristic parameters on flow patterns and heat transfer in electro-thermo-convection

机译:特性参数对电热对流中流型和传热的影响

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We study the electro-thermo-convective phenomena in a dielectric liquid layer of depth H placed between two electrodes and subjected to the simultaneous action of an electric field and a thermal gradient. The full set of governing equations is directly solved using a finite volume method. In this paper we first heat from the lower electrode and apply the electric potential when the thermal steady state is obtained. Only the case of strong injection of electric charges is considered. The flow pattern and Nusselt number strongly depend on the following non dimensional characteristic parameters: electrical parameter T, Rayleigh number Ra, Prandtl number Pr and mobility parameter M. The electro-convective flow structure is analysed in a rectangular cavity of length 2H, where the pure thermo-convection gives rise to two rolls whereas the pure electro-convection (with injection) gives a four roll pattern. The combined effect of both electric and thermal field on the flow patterns and on Nusselt number is analyzed for different values of Pr and M.
机译:我们研究了位于两个电极之间的,深度为H的电介质液体层中的电热对流现象,该电介质层受到电场和热梯度的同时作用。完整的控制方程组可以使用有限体积法直接求解。在本文中,我们首先从下部电极加热,并在获得热稳态时施加电势。仅考虑强电荷注入的情况。流动模式和Nusselt数强烈取决于以下无量纲特征参数:电参数T,瑞利数Ra,普朗特数Pr和迁移率参数M。在对流流动结构的分析中,矩形腔的长度为2H,其中纯热对流产生两个辊,而纯电对流(带注入)产生四辊模式。对于Pr和M的不同值,分析了电场和热场对流型和Nusselt数的综合影响。

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