Temperature, Pressure, and Infrared Image Survey of an Axisymmetric Heated Exhaust Plume

Temperature, Pressure, and Infrared Image Survey of an Axisymmetric Heated Exhaust Plume

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Publisher's Synopsis

The focus of this research is to numerically predict an infrared image of a jet engine exhaust plume, given field variables such as temperature, pressure, and exhaust plume constituents as a function of spatial position within the plume, and to compare this predicted image directly with measured data. This work is motivated by the need to validate computational fluid dynamic (CFD) codes through infrared imaging. The technique of reducing the three-dimensional field variable domain to a two-dimensional infrared image invokes the use of an inverse Monte Carlo ray trace algorithm and an infrared band model for exhaust gases. This report describes an experiment in which the above-mentioned field variables were carefully measured. Results from this experiment, namely tables of measured temperature and pressure data, as well as measured infrared images, are given. The inverse Monte Carlo ray trace technique is described. Finally, experimentally obtained infrared images are directly compared to infrared images predicted from the measured field variables. Nelson, Edward L. and Mahan, J. Robert and Birckelbaw, Larry D. and Turk, Jeffrey A. and Wardwell, Douglas A. and Hange, Craig E. Ames Research Center EXHAUST GASES; INFRARED IMAGERY; PLUMES; JET EXHAUST; TEMPERATURE DISTRIBUTION; PRESSURE DISTRIBUTION; RAY TRACING; NUMERICAL FLOW VISUALIZATION; MONTE CARLO METHOD; AXISYMMETRIC FLOW; RADIATIVE HEAT TRANSFER; INFRARED RADIATION...

Book information

ISBN: 9781731407979
Publisher: Amazon Digital Services LLC - KDP Print US
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 160
Weight: 386g
Height: 279mm
Width: 216mm
Spine width: 9mm