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Change in Flame Geometry of an Ethanol Spray Flame by Varying the Spray Characteristics

机译:通过改变喷雾特性改变乙醇喷雾火焰的火焰几何形状

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Turbulent swirl flames using fuel sprays are found in many combustion systems. Since sprays with different characteristics can be produced, pulsed spray injection allows the realization of different flame types using the same burner. Two different flame types have been studied experimentally and numerically: a burner-attached and a lifted flame. Large eddy simulations using Lagrangian particles to represent the spray, and a combined presumed PDF and tabulated chemistry approach to model the turbulent combustion are able to represent the different flame types. A simple-to-implement improvement of the numerical algorithm for the droplets is proposed, consisting of the redistribution of the droplet source terms between all neighbor cells of the gas phase. This improvement stabilizes the numerical method and allows the use of large time steps. The numerical results have been used to investigate the phenomena leading to the different flame geometries. They show that the burner-attached flame is caused by a destructive interaction between the spray droplets and the central recirculation zone (CRZ). In the case of the lifted flame, the CRZ is preserved.
机译:在许多燃烧系统中都发现了使用燃油喷雾的湍流旋流火焰。由于可以产生具有不同特性的喷雾,因此脉冲喷雾可以使用同一台燃烧器实现不同的火焰类型。已经通过实验和数值研究了两种不同的火焰类型:附有燃烧器的火焰和提升的火焰。使用拉格朗日粒子表示喷雾的大型涡流模拟,以及将湍流燃烧建模的组合假定PDF和列表化学方法,均能够表示不同的火焰类型。提出了液滴数值算法的一种易于实现的改进,包括在气相的所有相邻单元之间重新分配液滴源项。这种改进使数值方法更加稳定,并允许使用较大的时间步长。数值结果已用于研究导致不同火焰几何形状的现象。他们表明,附着在燃烧器上的火焰是由液滴与中央再循环区(CRZ)之间的破坏性相互作用引起的。在举起火焰的情况下,保留CRZ。

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