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NASA NTRS · 19750052987

Flame stability in combusting turbulent jets

Abstract

A simplified theoretical model for turbulent methane/air flames from a subscale power plant burner is developed and applied to predict the stability of flames as a function of (1) ambient atmosphere temperature and composition, (2) initial preheat temperature, and (3) percentage of external product gas recirculation. The flame model equates the rate at which mass is supplied per unit volume to the rate it is chemically reacted per unit volume using a one-step reaction and a perfectly stirred reactor (PSR). The model contains a free parameter which is evaluated by comparing the theoretical results to experimental results available in the literature. The stability results show that premixed, turbulent flames are stable over a wide equivalence ratio range if the ambient gas is air; however, if combustion products are entrained, the stability is sharply reduced.

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BibTeXRIS

Nelson, H. F., Kushida, R., England, C.. 1975-04-01. Flame stability in combusting turbulent jets. https://ntrs.nasa.gov/citations/19750052987

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