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首页> 外文期刊>International Journal of Automotive Technology >CONDITIONAL MOMENT CLOSURE MODELING OF TURBULENT SPRAY COMBUSTION IN A DIRECT INJECTION DIESEL ENGINE
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CONDITIONAL MOMENT CLOSURE MODELING OF TURBULENT SPRAY COMBUSTION IN A DIRECT INJECTION DIESEL ENGINE

机译:直接喷射柴油机中湍流喷雾燃烧的条件矩闭合模型

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Combustion of turbulent sprays in a direct injection diesel engine is modeled by the conditional moment closure (CMC) model. The CMC routines are combined with the KIVA code to provide conditional flame structures to determine mean state variables, instead of mean reaction rates. An independent transport equation is solved for each flame group with equal mass of sequentially evaporating fuel vapor. CMC calculation begins as the fuel mass for each flame group begins to evaporate with corresponding initialization conditions. Comparison is made with measured pressure traces for four operating conditions at different rpm's and injection conditions. Results show that the CMC model with multiple flame histories can successfully be applied to ignition and mixing-controlled combustion phases of a diesel engine.
机译:直喷式柴油机中湍流喷雾的燃烧通过条件矩闭合(CMC)模型进行建模。 CMC例程与KIVA代码结合使用,以提供条件火焰结构来确定平均状态变量,而不是平均反应速率。对于具有相等质量的顺序蒸发的燃料蒸气的每个火焰组,求解独立的输运方程。随着每个火焰组的燃料质量在相应的初始化条件下开始蒸发,CMC计算开始。比较了在四个不同转速和喷射条件下的工况下测得的压力曲线。结果表明,具有多个火焰历史记录的CMC模型可以成功地应用于柴油机的点火和混合控制燃烧阶段。

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