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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Accurate and efficient numerical simulations of magnetohydrodynamic (MHD) mixed convection at high hartmann numbers
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Accurate and efficient numerical simulations of magnetohydrodynamic (MHD) mixed convection at high hartmann numbers

机译:高哈特曼数下磁流体动力学(MHD)混合对流的精确而高效的数值模拟

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Massively parallel numerical calculations of 2-D steady incompressible magnetohydrodynamic (MHD) mixed convection heat transfer at high-Hartmann numbers (Ha) are conducted in a square cavity using a scalable computational implementation developed here. The mixed convection phenomena is a result of the forced convection from an adiabatic and moving top wall, and natural convection from buoyant effects in a domain that has hot and cold walls on each side. The Navier-Stokes equations in the form of a vorticity-streamfunction formulation, and the energy equation, are solved numerically using a uniform mesh of size 1200 × 1200, and simulations are conducted on up to 256 parallel computing cores. The effects of magnetic field in terms of Ha ≤ 1000 are studied for flows at various Richardson numbers (0.1 ≤ Ri ≤ 100). Contours of streamfunction, vorticity and temperature, and profiles of centerline velocities are presented to assess the MHD effects. While the magnetic field makest all flows one-dimensional, with stretching observed in the direction of the magnetic field, its effect on heat transfer is more pronounced only with increased Ri.
机译:使用此处开发的可扩展计算实现方式,在方腔中进行了高哈特曼数(Ha)的二维稳态不可压缩磁流体动力学(MHD)混合对流换热的大规模并行数值计算。混合对流现象是绝热且移动的顶壁的强制对流,以及在两侧均具有热壁和冷壁的区域中的浮力作用引起的自然对流的结果。使用大小为1200×1200的均匀网格对以涡流函数形式表示的Navier-Stokes方程和能量方程进行数值求解,并在多达256个并行计算核上进行了仿真。研究了在各种理查森数(0.1≤Ri≤100)下的流动,以Ha≤1000为单位的磁场影响。流功能,涡度和温度的轮廓,以及中心线速度的轮廓用于评估MHD效果。尽管磁场使所有的流体一维流动,并且在磁场方向上观察到拉伸,但仅随着Ri的增加,其对热传递的影响才更加明显。

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