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Laser Doppler field sensor for high resolution flow velocity imaging without camera

Authors :
Voigt, Andreas
Bayer, Christian
Shirai, Katsuaki
Buttner, Lars
Czarske, Jurgen
Source :
Applied Optics. Sept 20, 2008, Vol. 47 Issue 27, p5028, 13 p.
Publication Year :
2008

Abstract

In this paper we present a laser sensor for highly spatially resolved flow imaging without using a camera. The sensor is an extension of the principle of laser Doppler anemometry (LDA). Instead of a parallel fringe system, diverging and converging fringes are employed. This method facilitates the determination of the tracer particle position within the measurement volume and leads to an increased spatial and velocity resolution compared to conventional LDA. Using a total number of four fringe systems the flow is resolved in two spatial dimensions and the orthogonal velocity component. Since no camera is used, the resolution of the sensor is not influenced by pixel size effects. A spatial resolution of 4 [micro]m in the x direction and 16 [micro]m in the y direction and a relative velocity resolution of 1 x [10.sup.-3] have been demonstrated up to now. As a first application we present the velocity measurement of an injection nozzle flow. The sensor is also highly suitable for applications in nano- and microfluidics, e.g., for the measurement of flow rates. OCIS codes: 120.3940, 120.7250, 170.3340.

Details

Language :
English
ISSN :
1559128X
Volume :
47
Issue :
27
Database :
Gale General OneFile
Journal :
Applied Optics
Publication Type :
Academic Journal
Accession number :
edsgcl.188157429