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Penetration of methane–oxygen flames through spherical and planar obstacles in a closed cylindrical reactor

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Rubtsov N. M. et al. Penetration of methane–oxygen flames through spherical and planar obstacles in a closed cylindrical reactor // Mendeleev Communications. 2015. Vol. 25. No. 4. pp. 304-306.
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Rubtsov N. M., Seplyarskii B. S., Naboko I. M., Chernysh V. I., Tsvetkov G. I., Troshin K. Y. Penetration of methane–oxygen flames through spherical and planar obstacles in a closed cylindrical reactor // Mendeleev Communications. 2015. Vol. 25. No. 4. pp. 304-306.
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TY - JOUR
DO - 10.1016/j.mencom.2015.07.026
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2015.07.026
TI - Penetration of methane–oxygen flames through spherical and planar obstacles in a closed cylindrical reactor
T2 - Mendeleev Communications
AU - Rubtsov, Nikolai Mihailovich
AU - Seplyarskii, Boris Semenovich
AU - Naboko, Ideya Mikhailovna
AU - Chernysh, Victor Iosifovich
AU - Tsvetkov, Georgii Igorevich
AU - Troshin, Kirill Yakovlevich
PY - 2015
DA - 2015/07/08
PB - Mendeleev Communications
SP - 304-306
IS - 4
VL - 25
ER -
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@article{2015_Rubtsov,
author = {Nikolai Mihailovich Rubtsov and Boris Semenovich Seplyarskii and Ideya Mikhailovna Naboko and Victor Iosifovich Chernysh and Georgii Igorevich Tsvetkov and Kirill Yakovlevich Troshin},
title = {Penetration of methane–oxygen flames through spherical and planar obstacles in a closed cylindrical reactor},
journal = {Mendeleev Communications},
year = {2015},
volume = {25},
publisher = {Mendeleev Communications},
month = {Jul},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2015.07.026},
number = {4},
pages = {304--306},
doi = {10.1016/j.mencom.2015.07.026}
}
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Rubtsov, Nikolai Mihailovich, et al. “Penetration of methane–oxygen flames through spherical and planar obstacles in a closed cylindrical reactor.” Mendeleev Communications, vol. 25, no. 4, Jul. 2015, pp. 304-306. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2015.07.026.

Abstract

The ignition of a dilute methane–oxygen mixture (total pressure, to 200 Torr) after a single obstacle can be observed markedly far from the obstacle surface. The use of meshed sphere as an obstacle leads to an increase in the distance of flame emergence behind the obstacle in comparison with a round opening; two or more close-meshed obstacles strongly suppress flame propagation.

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