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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Non-Newtonian power-law fluid flow and heat transfer computation across a pair of confined elliptical cylinders in the line array
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Non-Newtonian power-law fluid flow and heat transfer computation across a pair of confined elliptical cylinders in the line array

机译:线阵列中一对约束椭圆圆柱上的非牛顿幂律流体流动和传热计算

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摘要

This paper presents a numerical study of two dimensional incompressible flow of non-Newtonian power-law fluid over a pair of elliptical tandem cylinders confined in a channel. The studied range of condition is 0.2 ≤ n≤ 1.8, (power-law index), 1 ≤ Pr ≤ 100 (Prandtl number), 0.25≤ E≤2 (aspect ratio) and 1.25 ≤ L≤ 20 (cylinders' distance) for 1 ≤ Re ≤ 40. The effect of those parameters on the drag coefficient and heat transfer characteristic of both cylinders are examined in detail. This research addresses the combined characteristics of the flow and the heat transfer for power-law fluids and completes the previous research in the field by taking the generalized form of the cylinder geometry in the confined region. The results demonstrate by employing the highly shear-thinning fluid, the heat transfer is maximized while minimizing the momentum loss. The Nusselt number over drag coefficient ratio, NDR, is proposed as a design parameter in initial sizing of small scale heat exchangers. The NDR shows an elliptical cylinder with aspect ratio E= 0.5 can be more efficient than circular cylinders for a range of moderate Re numbers.
机译:本文提出了一个非牛顿幂律流体的二维不可压缩流动的数值研究,该流体在一个限制在通道中的一对椭圆串联圆柱上流动。所研究的条件范围为0.2≤n≤1.8(幂律指数),1≤Pr≤100(普朗特数),0.25≤E≤2(纵横比)和1.25≤L≤20(圆柱距离) 1≤Re≤40。详细研究了这些参数对两个气缸的阻力系数和传热特性的影响。这项研究解决了幂律流体的流动和传热的组合特征,并通过采用受限区域中圆柱几何形状的广义形式,完成了该领域的先前研究。结果表明,通过使用高剪切稀化流体,可以最大程度地提高热传递,同时将动量损失降至最低。 Nusselt数与阻力系数之比NDR被提议作为小型热交换器初始尺寸的设计参数。 NDR显示,对于中等Re值范围,纵横比E = 0.5的椭圆圆柱可能比圆柱更有效。

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