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NASA NTRS · 19860000694

Buoyancy Effects upon Vapor Flame and Explosion Processes

Abstract

The objective of this microgravity project is to develop an experimental and theoretical analyses critical to the understanding of the coupling of buoyancy and turbulence generation and its effect on fuel-air mixing, flame intensity and flame propagation in jet diffusion flames. The experiment is designed to examine certain effects of buoyancy acting on a diffusion flame in which the flame is directed either upward or downward. This change from negative to positive g is observed to significantly alter the flame shape although all other operating conditions are the same for both configurations. However, to perform this experiment a significant coaxial secondary air flow is needed in order to prevent flow reversal when the flame is inverted. The theoretical analysis that has been developed handles the secondary air flow and the extreme change in gravity vector direction. Thus the data will provide a measure of credibility of the analysis which will then be used to assist in the design of the actual zero-g experiment.

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BibTeXRIS

Edelman, R. B., Harsha, P. T.. 1985-05-01. Buoyancy Effects upon Vapor Flame and Explosion Processes. https://ntrs.nasa.gov/citations/19860000694

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