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Constructal multiscale cylinders rotating in cross-flow

机译:横流旋转的结构式多尺度圆柱

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This work describes the effect of steady-state laminar forced convection on multiscale rotating cylinders in cross-flow. The objective was to numerically maximise the heat-transfer-rate-density from the multi-scale cylinder assembly under a prescribed pressure drop. Two main configurations were studied, the first was with two different-sized cylinders aligned along the same centreline, and the second configuration was that in which the axis of rotation of the two cylinders was not on the same centreline but the leading edges of the cylinders were on the same line. In both configurations, the cylinders were subjected to two types of rotations, counter-rotation and co-rotation. Numerical solutions for stationary and rotational cylinders were solved to determine the optimum cylinder diameter, spacing and the corresponding maximum heat transfer rate density. The effects of different centres of rotation and the dimensionless pressure drop on the cylinder-to-cylinder spacing, optimal diameter of the cylinder and the maximum heat transfer rate density were reported. Results show that the optimal smaller cylinder diameter was robust with respect to the dimensionless pressure drop number, for both configurations. Results further showed that rotation was only beneficial for cylinders with the same axis of rotation and the effect was minimal when the axis of rotation is different.
机译:这项工作描述了稳态层流强迫对流对横流中多尺度旋转圆柱体的影响。目的是在规定的压降下从数值上最大化多刻度气缸组件的传热速率密度。研究了两种主要配置,第一种配置是两个不同尺寸的圆柱体沿着同一中心线对齐,第二种配置是其中两个圆柱体的旋转轴不在同一中心线上,而是圆柱体的前缘在同一条线上。在两种配置中,气缸都经受两种类型的旋转,即反向旋转和同向旋转。解决了固定和旋转气缸的数值解,以确定最佳气缸直径,间距和相应的最大传热速率密度。报告了不同旋转中心和无因次压降对气缸间距离,气缸最佳直径和最大传热速率密度的影响。结果表明,对于这两种配置,最佳的较小气缸直径相对于无量纲的压降数均很稳定。结果进一步表明,旋转仅对具有相同旋转轴的圆柱体有利,而当旋转轴不同时,效果最小。

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