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Investigation of Taylor bubble wake structure in liquid nitrogen by PIV technique

机译:液氮中泰勒气泡尾流结构的PIV研究

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摘要

The Taylor bubble wake structures of liquid nitrogen in circular tubes with five different inner diameters under various inclination angles were investigated using particle image velocimetry (PIV) technique. Optical distortions produced by tube curvature and the refractive index difference between the tube and fluid were corrected by a new correction algorithm, which requires fewer equations than the existing one. The uniform grid validation shows the maximum error of the developed algorithm is only 3%. Experimental results have shown that the criterion for determining the wake structure of Taylor bubble in normal atmospheric temperature fluid in vertical tube from reference is still applicable for liquid nitrogen at higher Edtvos numbers 173 and 226; but the criterion is no longer applicable when the Eotvos numbers are at lower values of 8,22 and 57. For the inclined tube, the vortex size in Taylor bubble wake was found to increase with the decreasing of inclination angle.
机译:利用粒子图像测速技术研究了五种不同内径的圆管中液氮的泰勒气泡尾流尾流结构。由管曲率和管与流体之间的折射率差产生的光学畸变已通过一种新的校正算法进行了校正,该算法所需的方程式要少于现有的方程式。统一的网格验证表明,所开发算法的最大误差仅为3%。实验结果表明,从参考中确定垂直管中正常大气温度流体中泰勒气泡的尾流结构的准则仍适用于较高的Edtvos值173和226的液氮。但是当Eotvos数处于8,22和57的较低值时,该标准不再适用。对于倾斜管,发现泰勒气泡尾流中的涡旋尺寸随倾角的减小而增大。

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