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Electro-thermo-convection in a differentially heated square cavity under arbitrary unipolar injection of ions

机译:在任意单极注射离子的差动方形腔中电热 - 热对流

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A numerical investigation of electro-thermo-convection in a 2 -D differentially heated square cavity filled with a dielectric liquid is presented. Fully coupled governing equations of electric potential, charge transport, Navier-Stokes equations, and the energy equation are implemented in the finite-volume framework of OpenFOAM (R). For this kind of electro-thermo-convection, previous studies mainly focused on the strong injection regime. This study extends the analysis to arbitrary injection strengths in weak, medium and strong regimes. Moreover, the flow configuration considered in this study investigates the simultaneous action of buoyancy and Coulomb forces acting in orthogonal direction to each other. For strong and medium injection, the flow transforms from a steady two-cell flow to a periodic two-cell flow and finally evolves into a chaotic flow with multiple cells, as the value of T is increased. In the weak injection regime, chaotic flow with multiple flow cells is observed right from the onset of instability. Heat transfer rates and the maximum velocity are directly proportional to the electric Rayleigh number T. Present study gives an insight into different flow structures and the related heat transfer phenomenon at arbitrary injection strengths.
机译:呈现了填充有介电液体的2 -d差动方腔中电热 - 热对流的数值研究。在OpenFoam(R)的有限卷框架中实现了电势,电荷运输,Navier-Stokes方程和能量方程的完全耦合控制方程。对于这种电热对流,以前的研究主要集中在强烈的注射制度上。该研究将分析扩展到弱,中等和强大的任意注射强度。此外,本研究中考虑的流动配置研究了浮力和库仑力彼此正交方向上的浮力和库仑力的同时作用。对于强且培养的注射,流动从稳定的双细胞流转变为周期性的双细胞流,并且最终演化成具有多个电池的混沌流量,因为T的值增加。在弱注射制度中,从不稳定性开始观察到具有多个流动细胞的混沌流量。传热速率和最大速度与电气瑞利数T.目前的研究表达了对不同流动结构的洞察,并且在任意注射强度下具有相关的传热现象。

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