首页> 外文期刊>Journal of porous media >NUMERICAL STUDY OF NON-DARCY NATURAL CONVECTION FROM TWO DISCRETE HEAT SOURCES IN A VERTICAL ANNULUS
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NUMERICAL STUDY OF NON-DARCY NATURAL CONVECTION FROM TWO DISCRETE HEAT SOURCES IN A VERTICAL ANNULUS

机译:垂直环面两个离散热源非达西自然对流的数值研究

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A numerical investigation of natural convection heat transfer induced by two discrete heat sources placed on the inner wall of a vertical porous annulus has been carried out in this article. The outer wall is maintained at a lower temperature, while top and bottom walls and unheated portions of inner wall are kept adiabatic. The porous medium is modeled by using the Brinkman extended Darcy equation. An implicit and stable finite difference technique has been used to solve the nonlinear and coupled governing equations of the flow system. For a wide range of modified Rayleigh and Darcy numbers and aspect and radius ratios, the analysis is carried out to understand the effect of discrete heating on the streamlines, isotherms, and the average Nusselt number. The qualitative changes in the flow patterns and isotherms due to discrete heating caused by two heat sources are successfully captured in the present analysis. It was observed that the heat transfer can be enhanced by increasing the radius ratio, modified Rayleigh number, and Darcy number, while it decreases with an increase in aspect ratio. Among the two heat sources, the bottom heater is found to dissipate higher heat transfer compared to top heater. The maximum temperature at the heat sources is also determined. We discuss many issues of the maximum temperature for different values of the modified Rayleigh and Darcy numbers, radius, and aspect ratios.
机译:本文对放置在垂直多孔环内壁上的两个离散热源引起的自然对流换热进行了数值研究。外壁保持较低的温度,而顶壁和底壁以及内壁的未加热部分保持绝热。使用Brinkman扩展达西方程对多孔介质进行建模。隐式和稳定的有限差分技术已用于求解流动系统的非线性和耦合控制方程。对于各种修改后的瑞利和达西数以及宽高比和半径比,进行了分析以了解离散加热对流线,等温线和平均努塞尔数的影响。在本分析中,成功捕获了由两个热源引起的离散加热引起的流型和等温线的质变。观察到,可以通过增加半径比,修改的瑞利数和达西数来增强传热,而随着纵横比的增加而减小。在两个热源中,发现底部加热器比顶部加热器具有更高的热传递。还确定了热源处的最高温度。我们讨论了修改后的瑞利和达西数,半径和纵横比的不同值的最高温度的许多问题。

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