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Lifting and Splitting of Nonpremixed Methane/Air Flames Due to Reactant Preheating

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Taylor & Francis Group2016-01-19 更新2026-04-16 收录
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In order to assess the impact of initial reactant temperature on the occurrence of local extinction (LE) and the subsequent lifting process of non-premixed attached flames with increasing fuel injection velocity, hydroxyl radical planar laser-induced fluorescence (OH-PLIF) and high-speed CH*-chemiluminescence visualizations were conducted in a methane/air jet-flame, with preheating up to 1000 K. LE occurrence probability increases when approaching lifting, and the preheating level (T<sub>ox,ref</sub>) affects the probability density function (PDF) shape of LE axial origin. At low T<sub>ox,ref</sub>, partial lifting events occur near the burner lip, eventually leading the flame to lift directly from the very flame base. At higher T<sub>ox,ref</sub>, partial lifting events no longer occur, and LE is mostly witnessed in the flame breakpoint zone (axially from 1 to 3 jet diameters), resulting in a breakpoint lifting process. For very high T<sub>ox,ref</sub> (1000 K), local extinctions become widespread in the breakpoint zone so that a stable split flame is achieved prior to the lifted regime.

提供机构:
Éric Mathieu
创建时间:
2015-10-08
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