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The Effect of a Magnetic Field on Buoyancy-Driven Convection in Differentially Heated Square Cavity

机译:磁场对差加热方腔浮力驱动对流的影响

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Steady, laminar, natural-convection flow in the presence of a magnetic field in a cavity heated from left and cooled from right is considered. In our formulation of governing equations, mass, momentum, energy and induction equations are applied to the cavity. To solve the governing differential equations a finite volume code based on Patankar's simpler method is utilized. Numerical predictions are obtained for a wide range of Rayleigh number (Ra) and Hartmann number (Ha) at the Prandtl number Pr = 0.733. At low Rayleigh number regime with weak magnetic field, a circulating flow is formed in the cavity. When the magnetic field is relatively strengthened, the thermal field resembles that of a conductive distribution, and the fluid in much of the interior is nearly stagnant. Further, when the magnetic field is weak and the Rayleigh number is high, the convection is dominant and vertical temperature stratification is predominant in the core region. However, for sufficiently large Ha, the convection is suppressed and the temperature stratification in the core region diminishes. The numerical results show that the effect of the magnetic field is to decrease the rate of convective heat transfer. The average Nusselt number decreases as Hartmann number increases. The results are presented for Rayleigh number from 10{sup}4 up to 10{sup}6 and are in form of streamlines, isotherms as well as Nusselt number for various Rayleigh and Hartman numbers.
机译:考虑稳定,层流,在从左侧加热的腔中的磁场存在下存在恒定的自然对流流动。在我们对腔体的制定的控制方程,质量,动量,能量和感应方程。为了解决管理微分方程,利用基于帕纳库尔更简单方法的有限卷码。在Prandtl号PR = 0.733处获得各种瑞利数(RA)和HARTMANN号(HA)的数值预测。在具有弱磁场的低瑞利数状态下,在腔中形成循环流动。当磁场相对加强时,热场类似于导电分布,并且大部分内部的流体几乎停滞。此外,当磁场较弱并且瑞利数高,对流是显性的,并且在核心区域中垂直温度分层是主要的。然而,对于足够大的HA,抑制了对流,并且核心区域中的温度分层减小。数值结果表明,磁场的效果是降低对流传热速率。随着Hartmann数量的增加,平均露天数减少。结果以10 {sup} 4的瑞利数呈现,高达10 {sup} 6,并以精简,等温线以及各种瑞利和hartman编号的孤立号码。

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