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高雷诺数湍流非预混火焰及NO生成的大涡模拟 被引量:1
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作者 于洲 黄立航 +1 位作者 叶桃红 朱旻明 《空气动力学学报》 CSCD 北大核心 2020年第3期629-640,共12页
采用两种亚网格湍流燃烧模型,即化学建表方法结合假定概率密度模型和稀疏拉格朗日过滤密度函数方法,对高雷诺数湍流非预混火焰Flame D进行数值研究,定量比较不同亚网格模型的差异,并对火焰特征、污染生物生成特性进行分析。结果表明,两... 采用两种亚网格湍流燃烧模型,即化学建表方法结合假定概率密度模型和稀疏拉格朗日过滤密度函数方法,对高雷诺数湍流非预混火焰Flame D进行数值研究,定量比较不同亚网格模型的差异,并对火焰特征、污染生物生成特性进行分析。结果表明,两类亚网格燃烧模型预测的温度及大组分分布相近,稀疏拉格朗日过滤密度函数方法可以更好地模拟CO质量分数分布。不同的假定概率分布均可合理描述湍流与火焰的相互作用,之间的差别主要体现在NO分布,Dirac函数远高估了NO生成,而Top-hat函数则略低估了NO生成,Beta函数表现最优。Flame D的高温区及NO质量分数均主要分布在当量混合线及富燃侧附近。受高温伴流的影响,NO质量分数与温度一直保持高度正相关,峰值主要集中在标量耗散率很小的区域。不同截面上,反应物中的O2和生成物中的H2O均与NO高度相关。 展开更多
关键词 化学建表方法 过滤密度函数方法 假定概率密度函数 湍流非预混火焰 氮氧化物
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Large eddy simulation of hydrogen/air scramjet combustion using tabulated thermo-chemistry approach 被引量:7
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作者 Cao Changmin Ye Taohong Zhao Majie 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2015年第5期1316-1327,共12页
Large eddy simulations (LES) have been performed to investigate the flow and combustion fields in the scramjet of the German Aerospace Center (DLR). Turbulent combustion is mod- eled by the tabulated thermo-chemis... Large eddy simulations (LES) have been performed to investigate the flow and combustion fields in the scramjet of the German Aerospace Center (DLR). Turbulent combustion is mod- eled by the tabulated thermo-chemistry approach in combination with the presumed probability density function (PDF). A/3-function is used to model the distribution of the mixture fraction, while two different PDFs, g-function (Model I) and //-function (Model II), are applied to model the reaction progress. Temperature is obtained by solving filtered energy transport equation and the reaction rate of the progress variable is rescaled by pressure to consider the effects of compressibil- ity. The adaptive mesh refinement (AMR) technique is used to properly capture shock waves, boundary layers, shear layers and flame structures. Statistical results of temperature and velocity predicted by Model II show better accuracy than that predicted by Model I. The results of scatter points and mixture fraction-conditional variables indicate the significant differences between Model I and Model II. It is concluded that second moment information in the presumed PDF of the reaction progress is very important in the simulation of supersonic combustion. It is also found that an unstable flame with extinction and ignition develops in the shear layers of bluff body and a fuel- rich partially premixed flame stabilizes in the central recirculation bubble. 展开更多
关键词 Large eddy simulation(LES) Presumed probability densityfunction (PDF) Scram jet tabulated thermo-chemistry Turbulent combustion model
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