Engineering PapersSearch

NASA NTRS · 20010074076

Candle Flames in Microgravity

Abstract

The goal of this work is to study both experimentally and numerically the behavior of a candle flame burning in a microgravity environment. Two space experiments (Shuttle and Mir) have shown the candle flame in microgravity to be small (approximately 1.5 cm diameter), dim blue, and hemispherical. Near steady flames with very long flame lifetimes (up to 45 minutes in some tests) existed for many of the tests. Most of the flames spontaneously oscillated with a period of approximately 1 Hz just prior to extinction). In a previous model of candle flame in microgravity, a porous sphere wetted with liquid fuel simulated the evaporating wick. The sphere, with a temperature equal to the boiling temperature of the fuel, was at the end of an inert cone that had a prescribed temperature. This inert cone produces the quenching effect of the candle wax in the real configuration. Although the computed flame shape resembled that observed in the microgravity experiment, the model was not able to differentiate the effect of wick geometry, e.g., a long vs. a short wick. This paper presents recent developments in the numerical model of the candle flame. The primary focus has been to more realistically account for the actual shape of the candle.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Dietrich, D. L., Ross, H. D., Chang, P., T'ien, J. S.. 2001-05-01. Candle Flames in Microgravity. https://ntrs.nasa.gov/citations/20010074076

Cite the original work for its findings. Save a collection to share your selection of sources.