Transient behavior of liquid jets injected normal to a high velocity gas stream

The transient effects of the breakup and atomization of liquid jets in a crossflow on the size of droplets within the spray plume was experimentally determined. Water and water/methanol mixtures were injected normal to a high velocity air stream at Mach numbers of 0.48 and 3.0 with ambient stagnatio...

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Main Author: Less, David Matthew
Other Authors: Aerospace Engineering
Format: Others
Language:en_US
Published: Virginia Polytechnic Institute and State University 2015
Subjects:
Online Access:http://hdl.handle.net/10919/53887
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-538872020-12-17T05:32:24Z Transient behavior of liquid jets injected normal to a high velocity gas stream Less, David Matthew Aerospace Engineering LD5655.V856 1985.L477 Gas flow Atomization Jets -- Fluid dynamics The transient effects of the breakup and atomization of liquid jets in a crossflow on the size of droplets within the spray plume was experimentally determined. Water and water/methanol mixtures were injected normal to a high velocity air stream at Mach numbers of 0.48 and 3.0 with ambient stagnation temperature and respective stagnation pressures of 1.4 and 4.3 atm. The liquids were injected at liquid-to-gas momentum flux ratios ranging from 4 to 12. Droplet size distributions were obtained using a Fraunhofer diffraction technique at sampling rates of up to 9 kHz. Liquid mass flow rates were inferred from measurements of the extinction of a laser beam traversing the plume. The droplet sizes were found to fluctuate with frequencies of the order of 1 to 10 kHz. The fluctuations were characterized by a sudden and relatively brief increase in the mean diameter of the droplets caused by the passage of fractured clumps through the spray plume. Also evident in the droplet size distributions was the very small size of the droplets that had been sheared off the windward surfaces of the jet. The jet fracture frequency was related to the frequency of waves propagating along the initial jet column. The column waves are postulated to have been caused by jet perturbations created by vortices in the air flow around the jet column. Ph. D. 2015-06-29T22:07:02Z 2015-06-29T22:07:02Z 1985 Dissertation Text http://hdl.handle.net/10919/53887 en_US OCLC# 13160578 In Copyright http://rightsstatements.org/vocab/InC/1.0/ xiii, 207 leaves application/pdf application/pdf Virginia Polytechnic Institute and State University
collection NDLTD
language en_US
format Others
sources NDLTD
topic LD5655.V856 1985.L477
Gas flow
Atomization
Jets -- Fluid dynamics
spellingShingle LD5655.V856 1985.L477
Gas flow
Atomization
Jets -- Fluid dynamics
Less, David Matthew
Transient behavior of liquid jets injected normal to a high velocity gas stream
description The transient effects of the breakup and atomization of liquid jets in a crossflow on the size of droplets within the spray plume was experimentally determined. Water and water/methanol mixtures were injected normal to a high velocity air stream at Mach numbers of 0.48 and 3.0 with ambient stagnation temperature and respective stagnation pressures of 1.4 and 4.3 atm. The liquids were injected at liquid-to-gas momentum flux ratios ranging from 4 to 12. Droplet size distributions were obtained using a Fraunhofer diffraction technique at sampling rates of up to 9 kHz. Liquid mass flow rates were inferred from measurements of the extinction of a laser beam traversing the plume. The droplet sizes were found to fluctuate with frequencies of the order of 1 to 10 kHz. The fluctuations were characterized by a sudden and relatively brief increase in the mean diameter of the droplets caused by the passage of fractured clumps through the spray plume. Also evident in the droplet size distributions was the very small size of the droplets that had been sheared off the windward surfaces of the jet. The jet fracture frequency was related to the frequency of waves propagating along the initial jet column. The column waves are postulated to have been caused by jet perturbations created by vortices in the air flow around the jet column. === Ph. D.
author2 Aerospace Engineering
author_facet Aerospace Engineering
Less, David Matthew
author Less, David Matthew
author_sort Less, David Matthew
title Transient behavior of liquid jets injected normal to a high velocity gas stream
title_short Transient behavior of liquid jets injected normal to a high velocity gas stream
title_full Transient behavior of liquid jets injected normal to a high velocity gas stream
title_fullStr Transient behavior of liquid jets injected normal to a high velocity gas stream
title_full_unstemmed Transient behavior of liquid jets injected normal to a high velocity gas stream
title_sort transient behavior of liquid jets injected normal to a high velocity gas stream
publisher Virginia Polytechnic Institute and State University
publishDate 2015
url http://hdl.handle.net/10919/53887
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