Search Results - "Welle, E. J."
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Effects of leading edge entrainment on the double flame structure in lifted ethanol spray flames
Published in Experimental thermal and fluid science (01-12-2004)“…OH planar laser-induced fluorescence and smoke visualization have been performed in the near field of a turbulent ethanol spray flame to investigate reaction…”
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2
Determining reaction rate parameters for an energetic material through inverse multi-scale analysis of shock-to-detonation transition
Published in Journal of energetic materials (17-11-2024)Get full text
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3
Effects of leading edge entrainment on the double flame structure in lifted ethanol spray flames
Published in Experimental thermal and fluid science (2005)Get full text
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4
The response of a propane-air counter-flow diffusion flame subjected to a transient flow field
Published in Combustion and flame (01-11-2003)“…OH planar laser-induced fluorescence (PLIF) and particle image velocimetry have been used to study the frequency response of laminar C 3H 8-air counterflow…”
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5
FUEL LEWIS NUMBER EFFECTS IN UNSTEADY BURKE-SCHUMANN HYDROGEN FLAMES
Published in Combustion science and technology (01-01-2005)“…Flame response (as determined by temperature and flame thickness) to unsteady hydrodynamics has been measured in acoustically pulsed Burke-Schumann hydrogen…”
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A study of lactate metabolism without tracer during passive and active postexercise recovery in humans
Published in European Journal of Applied Physiology and Occupational Physiology (1995)“…Tracers have been used extensively to study lactate metabolism in humans during rest and exercise. Nevertheless, quantification of in vivo lactate kinetics as…”
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7
Simultaneous particle-imaging velocimetry and OH planar laser-induced fluorescence measurements in an unsteady counterflow propane/air diffusion flame
Published in Proceedings of the Combustion Institute (2000)“…To study the transient response of a diffusion flame to an unsteady flowfied, quatitative measurements of velocity, using particle-imaging velocimetry, and OH…”
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