Transient development of MHD natural convection flow in vertical concentric annulus

B. Jha, T. Yusuf
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引用次数: 1

Abstract

This paper examines the role of magnetic field on fully developed natural convection flow in an annulus due to symmetric of surfaces. The transport equations concerned with the model under consideration are rendered non-dimensional and transformed into the ordinary differential equation using Laplace transform technique. The solution obtained is then transformed to time domain using the Riemann-sum approximation approach. The governing equations are also solved using implicit finite difference method so as to establish the accuracy of the Riemann-sum approximation approach at transient as well as at steady state solution. The solutions obtained are graphically represented and the effects of pertinent parameters on the flow formation are investigated in detail. The Hartmann number (M), is seen to have a retarding effect on the velocity, skin-frictions and the mass flow rate. Also, skin-friction at both surfaces and the mass flow rate within the annulus are found to be directly proportional to the radii ratio (λ).
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垂直同心环空MHD自然对流的瞬态发展
本文研究了磁场在环空中由于表面对称而充分发展的自然对流中的作用。利用拉普拉斯变换技术,将与模型有关的输运方程转化为无量纲的常微分方程。然后用黎曼和近似方法将得到的解变换到时域。用隐式有限差分法求解了控制方程,从而确定了黎曼和近似方法在瞬态解和稳态解下的精度。用图形表示了得到的解,并详细研究了相关参数对流动形成的影响。哈特曼数(M)对速度、表面摩擦和质量流量都有减缓作用。此外,两个表面的摩擦和环空内的质量流量与半径比(λ)成正比。
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