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Modelling natural convection at complex surfaces and solid bodies using electrochemical techniques and flow visualisation

机译:使用电化学技术和流动可视化对复杂表面和固体的自然对流建模

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摘要

Since the review by Wragg [Journal of Applied Electrochemistry, 21 (1991) 1047] of more than 15 years ago there has been a considerable research output involving the use of combined electrochemical and flow visualisation techniques to investigate complex flows in natural convection situations. This paper reviews recent work involving electrode geometries and orientations such as vertical cylindrical electrodes of varying aspect ratio, down pointing and up pointing pyramidal electrodes, down facing horizontal circular surfaces with different edge conditions, isosceles triangular surfaces of various inclinations, long narrow upward facing linear tracks, open upward facing cavity electrodes, upward and downward facing truncated cones, and inclined disks with either single or both sides active. This constitutes a wide range of experimentation in which new insights into data treatment and correlation have been obtained. We have used approaches taking account of the differing behaviours of the single sides of three dimensional objects and computing interference factors taking account of flow interactions. Some highly successful illustrations of data correlation for extremely complex situations are demonstrated. Flow visualisation for most of the above mentioned situations have been obtained using schlieren photography which has provided good illustrations of flow structure occurring at single faces of objects and in complexly interacting flows. In addition we have combined some flow visualisation sequences with monitoring of the current-time relationships at the onset of convection to illustrate flow development phenomena from the onset of convective instabilities to the achievement of steady state conditions.
机译:自Wragg [Journal of Applied Electrochemistry,21(1991)1047]的评论发表于15年前以来,已有大量研究成果,涉及使用电化学和流动可视化技术相结合的方法来研究自然对流情况下的复杂流动。本文回顾了涉及电极几何形状和方向的最新工作,例如纵横比不同的垂直圆柱形电极,向下和向上的金字塔形电极,具有不同边缘条件的朝下的水平圆形表面,各种倾斜的等腰三角形表面,长而窄的朝上的线性电极。磁道,向上开口的腔电极,向上和向下的截头圆锥以及单侧或两侧均有效的倾斜盘。这构成了广泛的实验,其中获得了对数据处理和相关性的新见解。我们使用的方法考虑了三维对象单面的不同行为,并考虑了流相互作用来计算干扰因子。演示了一些非常复杂的情况下非常成功的数据关联说明。使用schlieren摄影已经获得了针对大多数上述情况的流动可视化功能,该摄影技术很好地说明了在物体的单个表面上以及在复杂相互作用的流动中发生的流动结构。此外,我们将一些流动可视化序列与对流开始时的当前时间关系相结合,以说明从对流不稳定性开始到达到稳态条件的流动发展现象。

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