Flame extinction and low-temperature combustion of isolated fuel droplets of n-alkanes
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Mechanical Engineering,General Chemical Engineering
Reference22 articles.
1. Can cool flames support quasi-steady alkane droplet burning?
2. Droplet Combustion Experiments Aboard the International Space Station
3. Inverse influence of initial diameter on droplet burning rate in cold and hot ambiences: a thermal action of flame in balance with heat loss
4. Spontaneous ignition of liquid droplets from a view of non-homogeneous mixture formation and transient chemical reactions
5. Autoignition and burning rates of fuel droplets under microgravity
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1. Soot formation in combustion of spherically symmetric isolated fuel droplets with different initial diameters;Fuel;2024-05
2. A Most Reactive Mixture Analysis of Ozone- and Temperature-Enhanced n-Heptane Droplet Autoignition and Cool Flame Burning in Microgravity;Combustion Science and Technology;2022-10-17
3. Effectiveness of flame suppressants on cool flames and hot flames;Proceedings of the Combustion Institute;2022-10
4. Extinction characteristics of isolated n-alkane fuel droplets during low temperature cool flame burning in air;Proceedings of the Combustion Institute;2022-09
5. Bioenergy potential of millet chaff via thermogravimetric analysis and combustion process simulation using Aspen Plus;Cleaner Chemical Engineering;2022-09
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