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Visualization of natural convection heat transport using heatline method in porous non-isothermally heated triangular cavity

机译:多孔非等温加热三角腔中热线法自然对流传热的可视化

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摘要

Natural convection heat transfer in a porous media filled and non-isothermally heated from the bottom wall of triangular enclosure is analyzed using finite difference technique. Darcy law was used to write equations of porous media. Dimensionless heatfunction was used to visualize the heat transport due to buoyancy forces. Three different boundary conditions were applied for the vertical and inclined boundaries of triangular enclosures as Case I; both vertical and inclined walls were isothermal, Case II; vertical wall was adiabatic and inclined one was isothermal, Case III; vertical wall is isothermal and inclined one is adiabatic. A cosine function was utilized to get non-isothermal wall condition. The study was performed for different aspect ratios (0.25 ≤ AR ≤ 1.0) and Darcy-modified Rayleigh numbers (100 ≤ Ra ≤ 1000). It was observed that heat transfer enhancement was formed when vertical and inclined walls were isothermal while bottom wall was at non-uniform temperature. Heat transfer from bottom wall did not vary when the value of aspect ratio was higher than 0.50. In addition, heatline visualization technique was a useful technique for non-isothermally heated and porous media filled triangular enclosures. © 2008 Elsevier Ltd. All rights reserved.
机译:使用有限差分技术分析了从三角形外壳底壁填充并进行非等温加热的多孔介质中的自然对流换热。达西定律被用来写多孔介质方程。使用无因次热函数来可视化由于浮力产生的热传递。如案例一,对三角形围墙的垂直和倾斜边界应用了三种不同的边界条件。垂直壁和倾斜壁都是等温的,案例二;垂直壁是绝热的,倾斜的是等温的,案例三;垂直壁是等温的且倾斜的是绝热的。利用余弦函数获得非等温壁状态。该研究是针对不同的宽高比(0.25≤AR≤1.0)和达西修饰的瑞利数(100≤Ra≤1000)进行的。观察到,当垂直壁和倾斜壁等温而底壁温度不均匀时,则形成了传热增强。当长宽比的值大于0.50时,从底壁传热不会发生变化。另外,热线可视化技术对于非等温加热和多孔介质填充的三角形外壳是有用的技术。 ©2008 Elsevier Ltd.保留所有权利。

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