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TURBULENT FLOW CHARACTERISTICS OVER OFFSET WALL CONFINED COLUMNS IN A CHANNEL AT LOW REYNOLDS NUMBERS

机译:低雷诺数下通道内偏壁约束柱上的湍流特性

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The current study is focused on the flow through offset, wall confined vertical inserts in a channel. The columns are intended to act as the thermal storage media, which continuously exchange heat with the channel fluid to regulate it thermally. These columns could, for example, be filled with a phase change material (PCM) for passive thermal regulation, or have hot or cold fluid pumped through them for active thermal regulation. The current study has two parts: (1) the flow characterization without heat transfer, and (2) flow characterization during thermal exchange with a PCM used for regulation of bulk fluid temperature. The work presented here is focused only on the first part of the study. The experiments were conducted in a narrow channel, with water as the working fluid. Two geometries of the vertical columns (circular and square) and two offset lengths were considered. For each configuration, experiments were conducted at Reynolds numbers of 20, 50 and 90 (based of the column's characteristic length). Particle image velocimetry was used to measure the two-dimensional velocity field in a horizontal plane at multiple regions of interest along the length of the channel to characterize the flow passing over columns. The results indicate vortex shedding at the two higher Reynolds numbers. The generation, magnitude and decay rate of turbulent energy is shown to have an offset dependency at Re=90, but a column shape dependency at Re=50. The mean flow has a shape dependency due to the difference in separation point over the square and circular columns.
机译:当前的研究集中在流经偏移,壁约束的垂直插入通道中。这些塔旨在用作储热介质,该储热介质与通道流体连续交换热量以对其进行热调节。例如,这些色谱柱可以填充相变材料(PCM)进行被动热调节,也可以将热或冷流体泵入其中以进行主动热调节。当前的研究包括两个部分:(1)不进行传热的流动特性;(2)与用于调节散装流体温度的PCM热交换过程中的流动特性。这里介绍的工作仅集中在研究的第一部分。实验在狭窄的通道中进行,以水为工作液。考虑了垂直列的两个几何形状(圆形和正方形)和两个偏移长度。对于每种配置,均以20、50和90的雷诺数(基于色谱柱的特征长度)进行实验。粒子图像测速仪用于测量沿通道长度在多个感兴趣区域沿水平面的二维速度场,以表征流过色谱柱的流动。结果表明在两个较高的雷诺数下涡旋脱落。湍流能量的产生,大小和衰减率在Re = 90时具有偏移相关性,而在Re = 50时则具有圆柱形状相关性。由于在正方形和圆形列上的分离点的差异,平均流具有形状依赖性。

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