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Published October 22, 2014 | Submitted
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Image correlation velocimetry

Abstract

This paper focuses on the correlation of two successive scalar images for the purpose of measuring imaged fluid motions. A method is presented for deforming, or transforming, one image to another. Taylor series expansions of the Lagrangian displacement field are used, in conjunction with an integral form of the equations of motion, to approximate this transformation. The proposed method locally correlates images for displacements, rotations, deformations, and higher order displacement gradient fields, and applies a global minimization procedure to insure a global consistency in the results. An integral form of the equations of motion is employed and, as a consequence, no spatial or temporal differentiation of the image data is required in estimating the displacement field. Successive two-dimensional digital CCD images of fluid motion marked with dye, are used to verify the capabilities of the method. The utility of the method is also illustrated using a pair of Voyager 2 images of Jupiter.

Additional Information

©1992 Phillip T. Tokumaru and Paul E. Dimotakis GALCIT Report FM92-1. This research was supported by AFOSR Grant Nos. 90-0304 and F49620-92-J-0290, and in a joint contract with M. Gharib of UCSD by DARPA/Navy Grant No. N00014-91-J-1968. We would also like to thank Stewart (Andy) Collins and his group at JPL for their collaboration.

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