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首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Experimental and Numerical Study on Combustion Mechanism of Liquid Fuel Spray Entering Gaseous Flame Front
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Experimental and Numerical Study on Combustion Mechanism of Liquid Fuel Spray Entering Gaseous Flame Front

机译:液体燃料喷雾进入气态火焰前沿的燃烧机理实验与数值研究

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摘要

Experimental observations and numerical simulations are conducted on combustion processes of n-decane polydisperse spray entering a gaseous flat flame stabilized in a laminar 2D counterflow configuration. For the gaseous phase, Eulerian mass, momentum, energy, and species conservation equations are solved. For the disperse phase, all individual droplets are tracked without using a droplet parcel model. The experimental results show that blue flames and luminous flames are observed and there are unsteady changes in the behavior. The numerical results show that the spray flame structures vary depending on the supplied quantities of liquid fuel spray. Furthermore, the instantaneous flame structures are consistent with the typical flame structures observed with the experiment.
机译:对正癸烷多分散喷雾进入稳定在层流二维逆流配置中的气态扁平火焰的燃烧过程进行了实验观察和数值模拟。对于气相,求解欧拉质量,动量,能量和物种守恒方程。对于分散阶段,无需使用液滴包裹模型即可跟踪所有单个液滴。实验结果表明,观察到蓝色火焰和发光火焰,并且行为有不稳定的变化。数值结果表明,喷雾火焰的结构根据液体燃料喷雾的供应量而变化。此外,瞬时火焰结构与实验观察到的典型火焰结构一致。

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