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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical investigation of natural convection in a rectangular cavity under different directions of uniform magnetic field
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Numerical investigation of natural convection in a rectangular cavity under different directions of uniform magnetic field

机译:矩形腔内均匀磁场作用下自然对流的数值研究

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Natural convection flows of an electrically conducting fluid under a uniform magnetic field at different angles 0 with respect to horizontal plane are investigated numerically in rectangular cavities. A new compact finite difference algorithm, involving a second-order compact scheme for the streamfunction-veloc-ity (Ψ - u) form of Navier-Stokes equations and a fourth-order compact scheme for the energy equation, is employed to solve the steady-state laminar magnetohydrodynamic (MHD) natural convection problems. Numerical simulations are carried out in a wide range of Rayleigh number (Ra) and Hartmann number (Ha) at the Prandtl number Pr = 0.025. The computed results show that the heat transfer is not only determined by the strength of the magnetic field, but also influenced by the inclination angle. Especially, when the aspect ratio (A) is less or more than 1, it is found that the inclination angle plays a great role on flow and heat transfer.
机译:在矩形腔中,以数值方式研究了在均匀磁场下,相对于水平面的角度为0的情况下,导电流体的自然对流。采用一种新的紧致有限差分算法来求解稳态方程,该算法涉及Navier-Stokes方程的流函数速度(Ψ-u)形式的二阶紧致方案和能量方程的四阶紧致方案。状态层流磁流体动力学(MHD)自然对流问题。在普朗特数Pr = 0.025的广泛瑞利数(Ra)和哈特曼数(Ha)范围内进行数值模拟。计算结果表明,传热不仅取决于磁场强度,而且还受到倾角的影响。特别地,发现当纵横比(A)小于或大于1时,倾斜角对流动和热传递起很大作用。

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