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Transient buoyant convection of air in an enclosure under strong magnetic effect

机译:在强磁场作用下,外壳中空气的瞬时浮力对流

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摘要

A numerical study is made of transient convective cool-down of air in a cylindrical container when both gravity and magnetizing force act. The magnetizing force is generated in an inhomogeneous magnetic field for an electrically nonconducting fluid with high magnetic susceptibility. Cooling of air is accomplished by abruptly lowering the temperature of the cylindrical sidewall under a strong vertical magnetic field. Comprehensive numerical computations are obtained for ranges of pertinent external parameters. The behavior of flow and temperature fields are delineated as the radius and axial position of the electrical coil are varied. When the magnetizing force is parallel to gravity, the flow is invigorated and cool-down process is facilitated. When the magnetizing force opposes the gravity, the overall cool-down process is least effective when the strength of magnetizing force is comparable to gravity.
机译:当重力和磁化力同时作用时,对圆柱容器中空气的瞬时对流冷却进行了数值研究。对于具有高磁化率的非导电流体,在非均匀磁场中产生磁化力。空气的冷却是通过在强垂直磁场下突然降低圆柱形侧壁的温度来实现的。针对相关外部参数的范围获得了全面的数值计算。随着电线圈的半径和轴向位置的变化,描绘了流场和温度场的行为。当磁化力与重力平行时,流动会增强,冷却过程也变得容易。当磁化力与重力相反时,当磁化强度与重力相当时,整个冷却过程效果最差。

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