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Computed flammability limits and spreading rates of upward flame spread over a thin solid in low-speed buoyant flows

研究成果: 會議稿件的類型論文同行評審

摘要

Upward flame spread over a thin solid in low-speed buoyant flows was studied numerically with previous established twodimensional model. In natural convective environments, steady flame spreading was achieved in partial gravity and reduced pressure. The effects of environmental parameters including gravity level, ambient pressure, and oxygen percentage on flame structures, flame spread rates, and flammability limits were investigated, especially for the pressure effects since it was not examined in detail before. At reduced pressure, flame is shorter, but thicker. Flame length and upward flame spread rates increased with pressure to a power from 1.5 to 2. The spreading rates also increased linearly with gravity, with a slope depending on pressure. The extinction boundary using pressure and gravity level as coordinates were constructed and compared with limited available experimental results for the buoyant, reduced pressure flames.

原文英語
出版狀態已出版 - 2007
事件6th Asia-Pacific Conference on Combustion, ASPACC 2007 - Nagoya, Japan, Nagoya, 日本
持續時間: 20 05 200723 05 2007

Conference

Conference6th Asia-Pacific Conference on Combustion, ASPACC 2007
國家/地區日本
城市Nagoya
期間20/05/0723/05/07

文獻附註

Publisher Copyright:
© 2007 Combustion Institute. All Rights Reserved.

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