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Numerical study of natural convection in a vertical porous annulus with an internal heat source: Effect of discrete heating

机译:具有内部热源的垂直多孔环中自然对流的数值研究:离散加热的影响

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This article reports a numerical study of natural convection in a vertical annulus filled with a fluid-saturated porous medium, and with internal heat generation subject to a discrete heating from the inner wall. The relative importance of discrete heating on natural convection in the porous annulus is examined via the Brinkman-extended Darcy equation. The inner wall of the annulus has a discrete heat source and the outer wall is isothermally cooled at a lower temperature. The top and bottom walls and the unheated portions of the inner wall are kept adiabatic. The governing equations are numerically solved using an implicit finite difference method. A wide range of numerical simulations is conducted to understand the effects of various parameters like heat source length, heat source location, Darcy number, radius ratio, and Rayleigh numbers due to external and internal heating on the flow and heat transfer. The numerical results reveal that the placement of the heater near the middle portion of the inner wall yields the maximum heat transfer and minimum hot spots rather than placing the heater near the top and bottom portions of the inner wall. The heat transfer increases with an increase in the external Rayleigh number and Darcy number, while it decreases with an increase in the internal Rayleigh number, porosity of the porous medium, and the size of the heater. Further, we found that the size and location of the heater has a profound influence on the heat transfer rate and maximum temperature in the annular cavity.
机译:本文报道了在垂直环空中自然对流的数值研究,垂直环空中充满了流体饱和的多孔介质,并且内部热量的产生受到来自内壁的离散热量的影响。通过Brinkman扩展的Darcy方程检验了离散加热对多孔环中自然对流的相对重要性。环的内壁具有离散的热源,外壁在较低的温度下被等温冷却。顶壁和底壁以及内壁的未加热部分保持绝热。使用隐式有限差分法对控制方程进行数值求解。进行了广泛的数值模拟,以了解各种参数的影响,例如热源长度,热源位置,达西数,半径比以及由于外部和内部加热对流动和传热的瑞利数的影响。数值结果表明,将加热器放置在内壁中部附近会产生最大的传热和最小热点,而不是将加热器放置在内壁的顶部和底部附近。传热随着外部瑞利数和达西数的增加而增加,而随着内部瑞利数,多孔介质的孔隙率和加热器尺寸的增加而减小。此外,我们发现加热器的尺寸和位置对环形腔内的传热速率和最高温度有深远的影响。

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