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Turbulent Taylor-Couette vortex flow between large radius ratio concentric cylinders

机译:大半径比同心圆柱之间的湍流Taylor-Couette涡流

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摘要

Turbulent Taylor vortices between two concentric cylinders have been studied at a very high radius ratio of 0.985, equivalent to that found in relatively small underwater thruster units (typically with gaps of 2 mm). In order to study the flow at this radius ratio, a 1.42-m diameter experimental apparatus (with a rotating inner cylinder and a stationary outer cylinder) was constructed possessing a gap of 10 mm. Consequently, air bubbles could be visualised translating in water. A method was developed for identifying Taylor vortex properties from filtered digital images of the air bubbles and summing intensities to produce bubble density distributions. Whereas individual instantaneous images can be misleading, averaged bubble density distributions make it possible to identify vortex separation sizes and the positions of vortex outflow boundaries. [References: 5]
机译:已经研究了两个同心圆柱之间的湍流泰勒涡流,其半径比很高,为0.985,这与在相对较小的水下推进器单元(通常具有2 mm的间隙)中发现的涡流涡流相当。为了研究在此半径比下的流动,构造了一个直径为1.42米的实验设备(带有旋转的内圆柱和固定的外圆柱),其间隙为10 mm。因此,可以看到气泡在水中的平移。开发了一种方法,该方法用于从过滤后的气泡数字图像中识别泰勒涡旋特性,并对强度求和以产生气泡密度分布。尽管单个瞬时图像可能会产生误导,但平均气泡密度分布却可以识别旋涡分离尺寸和旋涡流出边界的位置。 [参考:5]

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