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Numerical simulation of double diffusive natural convection in rectangular enclosure in the presences of magnetic field and heat source

机译:磁场和热源作用下矩形罩内双扩散自然对流的数值模拟

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Double-diffusive convective flow in a rectangular enclosure with the upper and lower surfaces being insulated and impermeable is studied numerically. Constant temperatures and concentration are imposed along the left and right walls of the enclosure. In addition, a uniform magnetic field is applied in a horizontal direction. Laminar regime is considered under steady state condition. The transport equations for continuity, momentum, energy and spices transfer are solved. The numerical results are reported for the effect of thermal Rayleigh number, heat generation or absorption coefficient and the Hartmann number on the contours of streamline, temperature, and concentration as well as the dimensionless density. In addition, the predicted results for the average Nusselt and Sherwood numbers are presented and discussed for various parametric conditions. This study was done for constant aspect ratio A = 2, Lewis number Le = 1 and Prandtl number Pr = 0.7. The study covers ranges for 10{sup}3 ≤ Ra{sub}T ≤ 10{sup}6, 0 ≤ Ha ≤ 200, -50 ≤ φ ≤ 25 and -10≤ N ≤ 10.
机译:数值研究了矩形外壳中的双扩散对流,其中上,下表面是绝缘且不可渗透的。沿着外壳的左右壁施加恒定的温度和浓度。另外,在水平方向上施加均匀的磁场。层流状态被认为是在稳态条件下。求解了连续性,动量,能量和香料转移的运输方程。数值结果报道了热瑞利数,生热或吸收系数以及哈特曼数对流线,温度和浓度以及无量纲密度的影响。另外,针对各种参数条件,给出并讨论了平均Nusselt和Sherwood数的预测结果。这项研究是针对恒定的宽高比A = 2,路易斯数Le = 1和普朗特数Pr = 0.7进行的。该研究涵盖了10 {sup} 3≤Ra {sub} T≤10 {sup} 6、0≤Ha≤200,-50≤φ≤25和-10≤N≤10的范围。

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