Time dependent flow visualization in the separated region of an appendage-flat plate junction

Time dependent flow visualization in the separated region of an appendage-flat plate junction 140 Experiments in Fluids 6 (1988) Research Station for the use of their commercial phase-Doppler Bauckhage, K.; Floegel, H. H.; Schone, F. 1986: Analysis of particle sizes with the aid of laser-Doppler anemometry: the instrument. We acknowledge many useful discussions with Dr. A. R. Jones of the Department of Chemical Engineering at Im- influence of specific geometrical and optical properties of perial College. This work is supported in part by a co-funded particles. 3rd Intl. Symposium on Applications of Laser Anemometry to Fluid Mechanics, Lisbon. Paper 18.5 grant awarded by the Science and Engineering Research Council Durst, F.; Zarr, M. 1975: Laser Doppler measurements in two and the Central Electricity Generating Board. AMKPT is sup- ported by a Royal Society 1983 University Research Fellowship. phase flows. In: The accuracy of flow measurements by laser Doppler methods, pp. 403-429. Proceedings LDA Sym- posium, Copenhagen, PO Box 70, DK-2740 Skovlunde, Den- mark References Hardalupas, Y. 1986: Phase-Doppler anemometry for simul- taneous particle size and velocity measurements. Report AI-Chalabi, S. A. M.; Hardalupas, Y.; Jones, A. R.; Taylor, FS/86/14, Fluids Section, Dept. of Mech. Eng., Imperial A. M. K. P. 1987: Calculation of calibration curves for the College, London phase Doppler technique: http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Experiments in Fluids Springer Journals

Time dependent flow visualization in the separated region of an appendage-flat plate junction

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Copyright © 1988 by Springer-Verlag
Engineering; Engineering Fluid Dynamics; Fluid- and Aerodynamics; Engineering Thermodynamics, Heat and Mass Transfer
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