首页> 外文期刊>International Journal of Fluid Mechanics & Thermal Sciences >MHD Mixed Convection Flow in a Lid Driven Enclosure with a Sinusoidal Wavy Wall and a Heated Circular Body
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MHD Mixed Convection Flow in a Lid Driven Enclosure with a Sinusoidal Wavy Wall and a Heated Circular Body

机译:带正弦波壁和加热的圆形物体的带盖驱动外壳中的MHD混合对流

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MHD mixed convection flow in a lid driven enclosure with a sinusoidal wavy wall and heated circular body located at the center of the enclosure is studied numerically using finite element analysis. The upper wall is moving with a uniform velocity by unity, and other walls are in no slip condition. The enclosure vertical walls are insulated while the heated circular body inside the enclosure is maintained at a uniform temperature higher than the upper wall and lower wavy surface. Calculations are carried out through solving governing equations for different parameters by using finite element method. The investigation is conducted for various values of Richardson number Ri and Prandtl number Pr. The heat transfer characteristics and flow pattern inside the enclosure are presented in the form of streamlines and isothermal contours. Heat transfer rate in terms of the average Nusselt number and average fluid temperature inside the enclosure are presented for different parameters. The results indicate that the average Nusselt number at the heated surface and average temperature of the fluid inside the enclosure are strongly dependent on the configuration of the system under different geometrical and physical conditions.
机译:使用有限元分析方法,对带有正弦波状波浪壁和位于壳体中心的加热圆形体的带盖壳体中的MHD混合对流进行了数值研究。上壁以一致的速度统一移动,其他壁处于无打滑状态。外壳的垂直壁是绝缘的,而外壳内部的加热的圆形主体则保持在高于上壁和下波状表面的均匀温度下。通过使用有限元方法求解不同参数的控制方程来进行计算。针对Richardson数Ri和Prandtl数Pr的各种值进行调查。外壳内部的传热特性和流动模式以流线和等温线的形式表示。根据不同参数,以箱体内的平均努塞尔数和平均流体温度表示了传热速率。结果表明,在不同的几何和物理条件下,被加热表面的平均努塞尔数和外壳内部流体的平均温度在很大程度上取决于系统的配置。

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