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Conjugate Natural Convection in a Porous Enclosure with Non-Uniform Heat Generation

机译:在不均匀发热的多孔外壳中共轭自然对流

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摘要

Effects of a conductive wall on natural convection in a square porous enclosure having internal heating at a rate proportional to a power of temperature difference is studied numerically in this article. The horizontal heating is considered, where the vertical walls heated isothermally at different temperatures while the horizontal walls are kept adiabatic. The Darcy model is used in the mathematical formulation for the porous layer and finite difference method is applied to solve the dimensionless governing equations. The governing parameters considered are the Rayleigh number (0 < Ra < 1000), the internal heating and the local exponent parameters (0 ≤ γ ≤ 5), (1 ≤ λ ≤ 3), the wall to porous thermal conductivity ratio (0.44 ≤ Kr ≤ 9.9) and the ratio of wall thickness to its width (0.02 ≤ D ≤ 0.5). The results are presented to show the effect of these parameters on the fluid flow and heat transfer characteristics. It is found a strong internal heating can generate significant maximum fluid temperature more than the conductive solid wall. Increasing value thermal conductivity ratio and/or decreasing the thickness of solid wall can increase the maximum fluid temperature. It is also found that at very low Rayleigh number, the heat transfer across the porous enclosure remain stable for any values of the thermal conductivity ratio.
机译:本文通过数值研究了导电壁对内部加热速度与温度差幂成比例的方形多孔外壳中自然对流的影响。考虑水平加热,其中垂直壁在不同温度下等温加热,同时水平壁保持绝热。将Darcy模型用于多孔层的数学公式中,并采用有限差分法求解无量纲的控制方程。考虑的控制参数为瑞利数(0

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