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The numerical analysis on the variation of electric potential, electric current and Lorentz force with its influence on buoyancy-driven conjugate heat transfer and fluid flow using OpenFOAM

机译:使用OpenFOAM的电势,电流和洛伦兹力变化对浮力驱动的共轭传热和流体流动的影响的数值分析

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摘要

The development of electric potential, electric current and Lorentz force in the presence of the magnetic field in the fluid/solid domain is studied numerically. Moreover, the significance of the magnetic field and its orientation on the pattern of electric potential, electric current and the direction of the Lorentz force is observed in the enclosure. The buoyancy-driven conjugate heat transfer and fluid flow solver with Magnetohydrodynamics (MHD) is developed in open source CFD tool OpenFOAM. The buoyancy force in the enclosure is altered by varying the Rayleigh number of Ra = 10(4), 10(5), 10(6), at the fixed Prandtl number of Pr = 0.02. The magnetic field is imposed in the x-direction (B-x) and y-direction (B-y) measured by Hartmann number of Ha = 0-100. The conjugate thermal and electromagnetic coupling is considered for the fluid-wall interface in the present analysis and includes the wall thickness within the computational domain. The orientation of the magnetic field shows the asymmetric (for B-x) and symmetric pattern (for B-y) of an electric potential distribution in the enclosure, and hence electric current. The detailed analysis of temperature iso-surface, isotherms, streamlines, and Nusselt number variations, etc in the presence of magnetic field are discussed in detail.
机译:数值研究了流体/固体域中存在磁场时电势,电流和洛伦兹力的发展。此外,在外壳中观察到了磁场及其方向对电位,电流和洛伦兹力方向的重要性。在开源CFD工具OpenFOAM中开发了具有磁流体动力学(MHD)的浮力驱动的共轭传热和流体流动求解器。通过以固定的Prandtl数Pr = 0.02改变Ra = 10(4),10(5),10(6)的瑞利数,可以改变围栏中的浮力。磁场通过哈特曼数Ha = 0-100测得的x方向(B-x)和y方向(B-y)施加。在本分析中,考虑了流体壁界面的共轭热和电磁耦合,并包括了计算域内的壁厚。磁场的方向显示出外壳中电势分布的不对称(对于B-x)和对称模式(对于B-y),并因此表示电流。详细讨论了在磁场存在下温度等值面,等温线,流线和努塞尔数变化等的详细分析。

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