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3-D measurement of 2-D jet by 3-D 3-C SPIV

机译:通过3-D 3-C SPIV进行2-D喷射的3-D测量

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摘要

The stereo PIV, commonly known as the SPIV, is capable of measuring all the three velocity components in a two-dimensional measurement plane and thus classified as 2-D 3-C PIV. Even though the SPIV utilizes a set of two cameras, the positions of the measurement points are assumed to be located in the central plane of the illuminated volume, which is usually the zone of laser light sheet. This assumption makes the SPIV versatile and its calibration procedure very handy. But, if the three-dimensional orientation of the cameras can be calibrated precisely, the three-dimensional position of the particles that may be distributed in the depth of the illuminated zone can be calculated. The authors of this study have proposed a new algorithm that enables the fully three-dimensional measurement by SPIV and it can be classified as 3-D 3-C SPIV. Presently, the three-dimensional turbulent measurement of a plane jet has been carried out with the use of presently proposed 3-D 3-C SPIV and the transverse distributions of the turbulence statistics have been obtained in the depth direction of 3-D 3-C SPIV. The results are compared with those by standard PIV, i.e., 2-D 2-C PIV, and thus, the accuracy and the applicability of 3-D 3-C SPIV have been evaluated.
机译:立体声PIV(通常称为SPIV)能够测量二维测量平面中的所有三个速度分量,因此被分类为2-D 3-C PIV。即使SPIV使用一组两个摄像机,也假定测量点的位置位于照明体积的中心平面中,该中心平面通常是激光片的区域。这种假设使SPIV变得通用,并且其校准过程非常方便。但是,如果可以精确地校准相机的三维方向,则可以计算出可能分布在照明区域深度中的粒子的三维位置。这项研究的作者提出了一种新的算法,该算法可以通过SPIV进行完整的三维测量,并且可以将其分类为3-D 3-C SPIV。当前,已经使用当前提出的3-D 3-C SPIV进行了平面射流的三维湍流测量,并且已经在3-D 3-的深度方向上获得了湍流统计的横向分布。 C SPIV。将结果与标准PIV(即2-D 2-C PIV)进行比较,从而评估了3-D 3-C SPIV的准确性和适用性。

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