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Computational analysis of natural convection in a parallelogrammic cavity with a hot concentric circular cylinder moving at different vertical locations

机译:平行四边形腔中自然对流的计算分析,其中热同心圆柱在不同的垂直位置移动

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A finite volume numerical simulation of natural convection in a parallelogrammic air-filled cavity having a heated concentric circular cylinder is performed. The left and right sidewalls of the cavity are maintained at a uniform cold temperature, while both upper and lower walls of it are considered thermally insulated. A wide range of significant parameters such as Rayleigh number, inclination angle and cylinder vertical locations are considered in the present study. Comparison with previously published works is made and found to be an excellent agreement. The results show that the strength of the flow circulation and the thickness of thermal boundary layer around the hot circular cylinder are increased dramatically when the Rayleigh number increases. Also, to increase the flow circulation inside the parallelogrammic cavity, it is recommended to make the inner cylinder moves downward until it reaches to [δ = -0.2] and the parallelogrammic cavity sidewalls inclined to [Φ = 15°]. Moreover, it is found that for various values of the inclination angle, the average Nusselt numbers at inner cylinder surface and at both cavity sidewalls, decrease when the cylinder moves upward, while they increase when the cylinder moves downward.
机译:在具有加热的同心圆柱体的平行四边形充气腔中进行自然对流的有限体积数值模拟。腔体的左右侧壁保持在均匀的低温下,而腔体的上下壁都被认为是隔热的。在本研究中考虑了广泛的重要参数,例如瑞利数,倾角和圆柱体垂直位置。与以前发表的作品进行了比较,发现这是一个很好的协议。结果表明,随着瑞利数的增加,热循环圆柱体的流动循环强度和热边界层厚度明显增加。另外,为了增加平行四边形腔内部的流动循环,建议使内圆柱体向下移动,直到达到[δ= -0.2],并且平行四边形腔侧壁倾斜到[Φ= 15°]。而且,发现对于倾斜角的各种值,当缸体向上移动时,在缸体内表面和两个腔体侧壁处的平均努塞尔数减小,而当缸体向下移动时,平均努塞尔数增大。

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