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Numerical Investigation of Natural Convection Heat Transfer from Square Cylinder in a Vented Enclosure

机译:排气外壳中方圆柱自然对流热传递的数值研究

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In the present work, the natural convection heat transfer from horizontal cylinder with square cross section situated in a square enclosure, vented symmetrically from the top and the bottom was investigated numerically. The work investigate the effect of the Ra, enclosure width and opening size of the enclosure on the streamlines, isotherms and heat transfer results. The numerical work included the solution of the governing equations in the vorticity-stream function formulation which were transformed into body fitted coordinate system. The transformations are based initially on algebraic grid generation and elliptic grid generation to map the physical domain between the heated horizontal cylinder and the vented enclosure into a computational domain. A hybrid scheme finite volume based finite difference method was used. The study included the following ranges of the studied variables:- 0 < Ra ≤ 6.5× 10~5 1.5 ≤ W/H ≤ 4 0.375 < O/H ≤ 4 The numerical results were compared with experimental results, which showed good agreement. The effect of cylinder cross section, Ra, enclosure width, and opening size on the Nu, mass flowrate, flow patterns and isotherms were investigated. The results show that the cylinder cross section has a large influence on the results especially the Nu. The Nu is proportional with Ra and inversely proportional with enclosure width and opening size. The flow patterns and isotherms display the flow and temperature behaviors with changing studied variables. The results show that the starting of natural convection heat transfer depended on the cylinder cross-section, enclosure width and opening size in addition with Ra. In addition, the results display that the hydrodynamic and thermal boundary layer thickness decreases with increasing Ra. Nomenclature
机译:在本作工作中,从横截面的水平圆柱体的自然对流传热,方形横截面在方形外壳中,从顶部和底部对称排空,底部进行了数量的。该工作研究了RA,外壳宽度和外壳的开口尺寸在流线上,等温线和传热结果的效果。数值作品包括在涡旋流函数制剂中的控制方程的解,其转变为身体拟合坐标系。最初,变换基于代数网格生成和椭圆形网格生成,以将加热的水平圆筒和通风机箱之间的物理域映射到计算域中。使用杂化方案有限体积的有限差分方法。该研究包括以下研究的范围: - 0

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