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MHD-Conjugate Heat Transfer Analysis for Transient Free Convective Flow Past a Vertical Slender Hollow Cylinder

机译:MHD-共轭传热分析,用于通过垂直细长空心圆柱体的瞬态自由对流

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In this paper the effects of magnetic field and conduction on the transient free convective boundary layer flow over a vertical slender hollow circular cylinder with the inner surface at a constant temperature are investigated. The transformed dimensionless governing equations for the flow and conjugate heat transfer are solved by using the implicit finite difference scheme. For the validation of the current numerical method heat transfer results for a Newtonian fluid case where the magnetic effect and conduction is zero are compared with those available in the existing literature, and an excellent agreement is obtained. Numerical results for the transient flow variables, average wall shear stress and average heat transfer rate are shown graphically. In all these profiles it is observed that the times needed to reach the steady-state and the temporal maximum increases as the magnetic parameter or conjugate heat transfer parameter increases.
机译:本文研究了磁场和传导对内表面处于恒定温度的垂直细长空心圆柱体上瞬态自由对流边界层流动的影响。通过使用隐式有限差分方案,求解了转换后的无量纲的流动和共轭传热控制方程。为了验证当前的数值方法,将磁效应和传导为零的牛顿流体情况的传热结果与现有文献中的传热结果进行了比较,并获得了很好的一致性。图形显示了瞬态流量变量,平均壁面剪应力和平均传热速率的数值结果。在所有这些曲线中,观察到达到稳态和时间最大值所需的时间随着磁参数或共轭传热参数的增加而增加。

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