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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Stereoscopic particle image velocimetry measurements of the flow around a Rushton turbine
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Stereoscopic particle image velocimetry measurements of the flow around a Rushton turbine

机译:Rushton涡轮机周围流的立体粒子图像测速仪测量

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摘要

The principles of stereoscopic particle image velocimetry (PIV), including distortion compensation, were applied to the turbulent flow in a vessel stirred by a Rushton turbine. An angular offset configuration was used and tilt-axis lens mounts were incorporated in order to satisfy the Scheimpflug condition, significantly reducing the ordinarily large depth of field requirements of such configurations. A distortion compensation procedure, or in situ calibration, was utilized in place of the ray tracing, or mechanical registration, used in previous studies. The calibration procedure was validated using two tests, one a rigid translation of a speckle target, the other the viscous flow between two concentric cylinders. The results of the tests suggest the success with which the distortion compensation procedure may be applied to real fluid flows. Phase-locked instantaneous data were ensemble averaged and interpolated in order to obtain mean 3-D velocity fields on a cylindrical shell enclosing the turbine blade. From these fields, the tip vortex pairs and the radial jet documented in previous studies of mixer flows were easily identified. [References: 13]
机译:立体粒子图像测速(PIV)的原理(包括畸变补偿)被应用于由Rushton涡轮搅拌的容器中的湍流。为了满足Scheimpflug条件,使用了角度偏移配置并结合了倾斜轴镜头座,从而大大降低了此类配置通常对景深的要求。利用失真补偿程序或原位校准来代替先前研究中使用的光线追踪或机械配准。使用两个测试对校准程序进行了验证,一个测试是对斑点目标进行刚性平移,另一个测试是在两个同心圆柱之间进行粘性流动。测试结果表明可以成功地将畸变补偿程序应用于实际流体流动。对锁相瞬时数据进行综合平均并进行插值,以便在包围涡轮机叶片的圆柱壳上获得平均3-D速度场。从这些领域中,可以很容易地识别出先前在混合器流动研究中记录的尖端涡流对和径向射流。 [参考:13]

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