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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Natural Convection Heat Transfer of Non-Newtonian Power-Law Fluids Within an Array of Elliptic Cylinders
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Natural Convection Heat Transfer of Non-Newtonian Power-Law Fluids Within an Array of Elliptic Cylinders

机译:非牛顿电力法流体的自然对流传热在一系列椭圆缸内

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摘要

In this study, natural convection of non-Newtonian power-law fluids around an array of elliptic cylinders has been investigated numerically. The governing equations have been solved using an in-house computational fluid dynamics code based on the well-known finite volume method. It is assumed that the flow and temperature fields are laminar, steady, and two-dimensional. Furthermore, due to the low-temperature difference between the tube walls and the surrounding fluid, the changes in the physical properties of the fluids are neglected. The numerical results are validated against the available experimental and numerical results. The results show that by increasing the non-Newtonian fluid power-law index, the ratio of average Nusselt number of the ith cylinder to the average Nusselt number of a single cylinder under identical thermal conditions decreases. Moreover, it is found that the increase in the ratio of the distance between elliptic centers and the elliptic vertical diameter increases the ratio of the average Nusselt number of ith cylinder to the average Nusselt number for a single cylinder. Finally, a mathematical expression is given for the array averaged Nusselt number.
机译:在这项研究中,在数值上研究了围绕椭圆缸阵列的非牛顿电力法流体的自然对流。通过基于众所周知的有限体积方法,使用内部计算流体动力学码来解决控制方程。假设流动和温度场是层状,稳定和二维。此外,由于管壁和周围流体之间的低温差,忽略了流体物理性质的变化。数值结果针对可用的实验和数值结果验证。结果表明,通过增加非牛顿流体幂律指数,在相同的热条件下,ITH气缸的平均冲压件的纽扣数量与单个汽缸的平均露天数量的比率降低。此外,发现椭圆中心和椭圆垂直直径之间的距离与椭圆形垂直直径之间的比率的增加会增加ITH圆柱体的平均泡沫数量与单个汽缸的平均衬的比率。最后,给出了数学表达式的阵列平均纽带数。

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