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Effects of inclination angle on conduction-natural convection in divided enclosures filled with different fluids

机译:倾斜角对充满不同流体的分隔外壳中传导自然对流的影响

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Laminar natural convection in inclined enclosures filled with different fluids was studied by a numerical method. The enclosure was divided by a solid impermeable divider. One side of partition of enclosure was filled with air and the other side had water. The enclosure was heated from one vertical wall and cooled from the other while horizontal walls were adiabatic. The governing equations which were written in stream function-vorticity form were solved using a finite difference technique. Results were presented by streamlines, isotherms, mean and local Nusselt numbers for different thermal conductivity ratios of solid impermeable material (plywood or concrete), inclination angle (0°≤φ≤360°) and Grashof numbers (10~3 ≤Gr≤10~6). The code was validated by earlier studies, which are available in the literature on conjugate natural convection heat transfer. Analytical solutions were obtained for low Grashof numbers. Obtained results showed that both heat transfer and flow strength strongly depended on thermal conductivity ratio of the solid material of partition, inclination angle and Grashof numbers. The heat transfer was lower in the air side of the enclosure than that of the water side.
机译:通过数值方法研究了在充满不同流体的倾斜空间中的层流自然对流。外壳由不透水的固体分隔器分隔。外壳隔板的一侧充满空气,另一侧充满水。外壳从一个垂直壁加热,从另一个壁冷却,而水平壁是绝热的。使用有限差分技术求解以流函数涡度形式编写的控制方程。结果由流线,等温线,均值和局部Nusselt值表示,用于不同的导热系数的固体不可渗透材料(胶合板或混凝土),倾斜角(0°≤φ≤360°)和Grashof值(10〜3≤Gr≤10 〜6)。该代码已通过较早的研究验证,这些研究可在共轭自然对流换热的文献中找到。获得低Grashof数的分析溶液。所得结果表明,传热和流动强度都强烈取决于隔板的固体材料的导热系数,倾角和格拉斯霍夫数。外壳的空气侧的传热低于水侧的传热。

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