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Integrated Fluxes in Magneto-Hydrodynamic Mixed Convection in a Cavity Sustained by Conjugate Heat Transfer

机译:在共轭传热作用下的腔中,磁-水动力混合对流中的积分通量

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摘要

A numerical study of magneto-hydrodynamic mixed convection in a cavity has been conducted to investigate the influence of magnetic field on integrated flux of thermal energy, linear momentum, and kinetic energy. Shear force through lid motion establishes the forced convection effect and buoyancy force due to differential heating of the moving lid and the stationary interface ensures the natural convection phenomenon. Additionally, conduction through the solid slab with prescribed temperature at the outer surface attached to the cavity induces conjugate heat transfer. Further, the top and bottom walls throughout the domain are kept insulated and a uniform horizontal magnetic field is applied on the interface toward left. Fluid flow and heat transfer characteristics are examined for a range of Hartmann number (Ha): 0, 10, 50, and 120 at fixed values of Reynolds number, Grashof number, and Prandtl number of 300, 9 x 10(4) and 0.71, respectively. The result shows that the transport of heat in the near wall regions of the fluid domain is primarily governed by diffusion, whereas advection appears stronger in the central region of the cavity. Increase in magnetic field strength from Ha = 0 to 120 gradually suppresses the recirculating structure of the flow signifying a reduction in advective strength as depicted by the decrease in the value of total integrated heat flux from 25.15 x 10(-3) to 6.0 x 10(-3). The reduction in heat flux, momentum fluxes, and kinetic energy fluxes with increase in magnetic field has been well correlated in the range of 0 < Ha < 120.
机译:为了研究磁场对热能,线性动量和动能积分通量的影响,对腔内磁流体动力对流进行了数值研究。通过盖子运动产生的剪切力建立了强制对流效果,并且由于移动盖子的不同热量而产生的浮力,而固定接口则确保了自然对流现象。另外,在附接到空腔的外表面上以规定的温度通过固体平板的传导引起共轭热传递。此外,整个磁畴的顶壁和底壁保持绝缘,并且均匀的水平磁场朝左施加在界面上。在固定的雷诺数,Grashof数和Prandtl数分别为300、9 x 10(4)和0.71的固定值下,检查了一定范围的Hartmann数(Ha):0、10、50和120的流体流动和传热特性。 , 分别。结果表明,在流体域近壁区域的热传递主要受扩散控制,而对流在腔体的中心区域显得更强。磁场强度从Ha = 0增大到120逐渐抑制了流体的再循环结构,从而表明对流强度降低,这由总积分热通量值从25.15 x 10(-3)减小到6.0 x 10 (-3)。在0

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  • 来源
    《Journal of Heat Transfer》 |2019年第11期|112501.1-112501.11|共11页
  • 作者单位

    Natl Inst Technol Durgapur Dept Mech Engn Durgapur 713209 W Bengal India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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