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首页> 外文期刊>International journal of applied mechanics >Effect of Magnetic Field on Free Convection in Inclined Cylindrical Annulus Containing Molten Potassium
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Effect of Magnetic Field on Free Convection in Inclined Cylindrical Annulus Containing Molten Potassium

机译:磁场对含钾熔液倾斜圆柱环空对流的影响

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摘要

Three-dimensional (3D) numerical simulation of natural convection of an electrically conducting fluid under the influence of a magnetic field in an inclined cylindrical annulus has been performed. The inner and outer cylinders are maintained at uniform temperatures and other walls are thermally insulated. The governing equations of this fluid system are solved by a finite volume (FV) code based on SIMPLER solution scheme. Detailed numerical results of heat transfer rate, Lorentz force, temperature and electric fields have been presented for a wide range of Hartmann number (0 <= Ha <= 60) and inclination angle (0 <= gamma <= 90). The results indicate that a magnetic field can control the magnetic convection of an electrically conducting fluid. Depending on the direction and strength of the magnetic field, the suppression of convective motion was observed. For vertical cylindrical annulus, increasing the strength of the magnetic field causes the loss symmetry, and as the consequence, isotherms lose their circular shape. With increasing the Hartmann number the average Nusselt number approaches a constant value. For vertical annulus, the effect of Hartmann number on the average Nusselt number is not prominent compared to the case of horizontal annulus.
机译:已经进行了在倾斜圆柱环空中磁场作用下导电流体自然对流的三维(3D)数值模拟。内缸和外缸保持在均匀的温度下,其他壁层则隔热。该流体系统的控制方程由基于SIMPLER解决方案的有限体积(FV)代码求解。对于广泛的哈特曼数(0 <= Ha <= 60)和倾斜角(0 <= gamma <= 90),已经给出了传热速率,洛伦兹力,温度和电场的详细数值结果。结果表明,磁场可以控制导电流体的磁对流。取决于磁场的方向和强度,观察到对流运动的抑制。对于垂直圆柱环,增加磁场强度会导致损耗对称,结果,等温线将失去其圆形形状。随着Hartmann数的增加,平均Nusselt数接近恒定值。对于垂直环,与水平环相比,Hartmann数对平均Nusselt数的影响并不明显。

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