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Titlebook: Laser Techniques for Fluid Mechanics; Selected Papers from R. J. Adrian,D. F. G. Durao,J. H. Whitelaw Conference proceedings 2002 Springer-

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ere they facilitate new improved fluid mechanic research. Attention was placed on laser-Doppler anemometry, particle sizing and other methods for the measurement of velocity and scalars, such a978-3-642-07677-0978-3-662-08263-8
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that the refined implementations are equivalent to their high-level specifications. The novelty of each of these techniques is that they use a combination of formal techniques to do scalable verification of sys978-1-4939-0101-2978-1-4419-9359-5
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3-Component Doppler laser-two-focus velocimetry applied to a transonic centrifugal compressorrection of the optical axis is determined by analyzing the Doppler frequency shift of the scattered light. The system was developed with respect to an application in a transonic centrifugal compressor and designed in the shape of an optical probe shown in Fig. 1. The set-up and all important compone
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Maximum likelihood approaches for sound field measurement using LDVast squares (LS) estimators, using . information of the signal, are developed. Their estimation capabilities are evaluated on simulated signals and a preliminary testing with experimental signals is presented.
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On the accuracy of scalar dissipation measurements by laser Rayleigh scateringasurements. An expression to evaluate the scalar dissipation offset, as a function of the shot noise variance, was derived. The results obtained are illustrated in the figure below, which represent the effect of the LRS shot noise correction in the raw scalar dissipation measurements obtained..The n
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Transient temperature measurement of unburned gas using optic heterodyne interferometry converter and the length of the test section. Moreover, a polarization-preserving fiber was used to deliver the test beam to and from the test section to improve the feasibility of the system as a sensor probe. It may also be applied to other system requiring fast response density and temperature m
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Generic formulation of a generalized Lorenz-Mie theory for pulsed laser illumination illuminated by continuous plane waves. Another line of extension is derived by considering the case of illumination by pulses (single pulses or train of pulses), viewed as continuous arbitrary shaped beams modulated by a pulse envelope..Nowadays, pulsed laser beams have become of common use, with a
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