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Turbulent opposed-jet flames: A critical benchmark experiment for combustion LES

机译:湍流对置射流火焰:燃烧LES的关键基准实验

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Turbulent opposed-jet configurations have gained attention as a challenging test case to validate the mixing and combustion models used in the simulation of turbulent combustion. In general, validation requires comprehensive experimental information on flow and scalar fields, and the emergence of combustion large-eddy simulation (CLES) necessitated more advanced diagnostics. These laser-optical techniques allow measurements not only of single-point statistics but of structural information of the flame, such as correlations, gradients, and structure functions. This paper presents thorough experimental and numerical investigations of one isothermal and two reacting turbulent opposed jets with fuel jets consisting of partially premixed methane. Its focus is on one configuration at and one configuration close to the highest possible Reynolds numbers where flames could be stabilized. The experimental data presented comprise information on axial velocity, main species concentrations, temperature, mixture fraction, scalar dissipation rate, joint probability density functions, and structure functions. These quantities are compared to results of highly resolved CLES to show the configuration's suitability as a critical benchmark for state-of-the art combustion LES.
机译:湍流对置射流配置作为具有挑战性的测试案例而受到关注,以验证湍流燃烧模拟中使用的混合和燃烧模型。通常,验证需要有关流场和标量场的全面实验信息,而燃烧大涡模拟(CLES)的出现要求进行更高级的诊断。这些激光光学技术不仅可以测量单点统计数据,还可以测量火焰的结构信息,例如相关性,梯度和结构函数。本文对一个等温和两个反应性湍流对置射流与由部分预混合甲烷组成的燃料射流进行了详尽的实验和数值研究。它的重点是一种配置,一种配置接近于可能使火焰稳定的最高雷诺数。给出的实验数据包括有关轴向速度,主要物质浓度,温度,混合比,标量耗散率,联合概率密度函数和结构函数的信息。将这些数量与高度解析的CLES的结果进行比较,以显示该配置是否适合作为最新燃烧LES的关键基准。

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