首页> 外文会议>ASME joint US-European Fluids Engineering Division summer meeting >NUMERICAL AND THEORETICAL ANALYSIS OF LAMINAR COUNTERFLOWING SPRAY FLAMES FOR USE IN TURBULENT COMBUSTION MODELING
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NUMERICAL AND THEORETICAL ANALYSIS OF LAMINAR COUNTERFLOWING SPRAY FLAMES FOR USE IN TURBULENT COMBUSTION MODELING

机译:湍流燃烧模型中层流逆流喷射火焰的数值和理论分析

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The paper presents a combined theoretical and numerical study of laminar counterflow mono-disperse spray flames. The numerical model includes a similarity transformation of the two-dimensional governing gas phase equations into a one-dimensional formulation. The reduced computational time enables the use of detailed chemical reaction mechanisms to study the spray flame structure. In particular, the effect of spray evaporation on combustion is investigated by means of numerical simulations. For this purpose, the transport equation of the scalar dissipation rate of the mixture fraction is derived, where the spray evaporation source term is included. Numerical simulations of laminar liquid and gaseous ethanol and combustion products mono disperse spray flames under fuel-rich conditions are presented and discussed. The parametric dependence of the flame structures on strain rate is studied with emphasis on the spray evaporation. Droplet reversal and oscillation are found to dominate the flame structure, and they determine the location of the main reaction zone as well as the profile of the scalar dissipation rate. The study aims to develop a novel spray flamelet model for use in the numerical simulations of turbulent spray combustion with particular emphasis onflameless conditions.
机译:本文介绍了层流逆流单分散喷雾火焰的理论和数值研究。数值模型包括将二维控制气相方程转换为一维公式的相似性。减少的计算时间使得可以使用详细的化学反应机理来研究喷雾火焰的结构。特别是,通过数值模拟研究了喷雾蒸发对燃烧的影响。为此,导出了混合级分的标量耗散率的输运方程式,其中包括了喷雾蒸发源项。提出并讨论了层流状液体和气态乙醇以及燃烧产物在富油条件下单分散喷雾火焰的数值模拟。研究了火焰结构对应变率的参数依赖性,重点是喷雾蒸发。发现液滴的反转和振荡是火焰结构的主导,它们决定了主要反应区的位置以及标量耗散率的分布。这项研究的目的是开发一种新颖的喷雾小火焰模型,用于湍流喷雾燃烧的数值模拟,特别是在无焰条件下。

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