首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2009 >EXPERIMENTAL STUDY OF TAYLOR-COUETTE FLOW WITH CONSTANT RADIAL TEMPERATURE GRADIENT
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EXPERIMENTAL STUDY OF TAYLOR-COUETTE FLOW WITH CONSTANT RADIAL TEMPERATURE GRADIENT

机译:恒径向温度梯度泰勒-库埃特流的实验研究

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The flow between two concentric cylinders with the inner one rotating and with an imposed radial temperature gradient is studied using digital particle image velocimetry (DPIV) method. Four models of the outer cylinder without and with different numbers of slits(6, 9 and 18) are considered, and the radius ratio and aspect ratio of eachnodels were 0.825 and 48, respectively. The flow regime in the Taylor-Couette flow was studied by increasing the Reynolds number. The results showed that smaller number of slits has no obvious effect on the transition process, which only change the shape of the vortex, and the transition to turbulent Taylor vortex is accelerated as the number of slit increases in both isothermal and non-isothermal conditions. It is also shown that the presence of temperature gradient increased the flow instability obviously as the Froude number larger than 0.0045.
机译:使用数字粒子图像测速(DPIV)方法研究了两个同心圆柱体之间的流动,其中一个是内部旋转的,另一个是施加径向温度梯度的。考虑了没有和具有不同缝数(6、9和18)的外圆柱体的四个模型,每个结节的半径比和长宽比分别为0.825和48。通过增加雷诺数来研究泰勒-库特流中的流态。结果表明,狭缝数量较少对过渡过程没有明显影响,只是改变了涡流的形状,在等温和非等温条件下,随着狭缝数量的增加,向湍流泰勒涡流的过渡加速。还表明,当弗劳德数大于0.0045时,温度梯度的存在明显增加了流动的不稳定性。

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