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首页> 外文期刊>Russian journal of physical chemistry, B. >Direct Numerical Simulation of Turbulent Combustion of Hydrogen-Air Mixtures of Various Compositions in a Two-Dimensional Approximation
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Direct Numerical Simulation of Turbulent Combustion of Hydrogen-Air Mixtures of Various Compositions in a Two-Dimensional Approximation

机译:二维近似下各种组合物氢气混合物湍流燃烧的直接数值模拟

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摘要

A technique of two-dimensional direct numerical simulation of turbulent flame propagation in reacting gas mixtures under stationary homogeneous isotropic turbulence conditions is proposed. This technique is based on a detailed kinetic mechanism of combustion of a multicomponent mixture and uses no fitting parameters. It is applied to the calculation of turbulent combustion of a hydrogen-air mixture. A condition is proposed to compare the results of two-dimensional calculations (dependences of flame propagation velocity on turbulence intensity) with the data of actual three-dimensional experiments. The obtained agreement between the calculated and measured dependences confirmed the validity of the proposed condition. The effects of pressure on the flame propagation velocity were considered. The calculated concentrations of the active reaction centers-hydroxyl (OH) and H and O atoms-in turbulent flame are lower than those in laminar flame, which also agrees with experimental results.
机译:提出了一种湍流火焰繁殖在静止均匀各向同性湍流条件下反应气体混合物中湍流火焰传播的二维直接数值模拟技术。 该技术基于多组分混合物的燃烧的详细动力学机制,并使用不使用拟合参数。 它应用于氢气混合物湍流燃烧的计算。 提出了一种与实际三维实验数据的二维计算的结果(对湍流强度对湍流强度的依赖性)的结果进行比较。 计算和测量依赖之间的获得协议证实了所提出的条件的有效性。 考虑了压力对火焰繁殖速度的影响。 所计算的活性反应中心 - 羟基(OH)和H和H和O原子的湍流火焰的浓度低于层状火焰,这也同意实验结果。

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