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NUMERICAL SIMULATION OF SPRAY AUTOIGNITION BY THE FIRST-ORDER CONDITIONAL MOMENT CLOSURE MODEL

机译:一阶条件闭合模型对喷射自燃的数值模拟

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The ignition delay time of a n-heptane spray is calculated by the first-order conditional moment closure (CMC) model. At each time step the mixing field is calculated with the spray models in KIVA3. The CMC equations are then solved by the fractional step method, which sequentially considers transport and reaction terms. The evaporation terms in the variance equation of mixture fraction are treated in three different ways: no source, the model by Holman and Gutheil, and the one-droplet model. They all show similar spatial distributions with differences in the ignition delay time within 0.5%. The evaporation terms in the CMC equations are also treated in three different ways: no source, as a boundary flux on the fuel side, and the one-droplet model. They do not have any noticeable influence on the conditional profiles near the stoichiometric mixture fraction, where most reactions occur. A parametric study is performed to investigate the influence of initial temperature, drop size distribution, spray angle, and injected fuel quantity. The computed ignition delay times show a reasonable comparison with the measurements under different initial temperatures.
机译:通过第一阶条件闭合(CMC)模型计算正庚烷喷雾的点火延迟时间。在每个时间步骤,混合场用Kiva3中的喷涂模型计算。然后通过分数步骤方法解决CMC方程,其顺序地考虑到运输和反应术语。混合级分的方差方程中的蒸发术语以三种不同的方式处理:无源,霍尔曼和Gutheil的模型,以及单滴模型。它们都显示出类似的空间分布,点火延迟时间差异0.5%。 CMC方程中的蒸发术语还以三种不同的方式处理:没有源,作为燃料侧的边界通量,以及单滴模型。它们对化学计量混合物级分附近的条件曲线没有任何明显的影响,其中大多数反应发生。进行参数研究以研究初始温度,下降尺寸分布,喷射角度和注射燃料量的影响。计算的点火延迟时间显示与不同初始温度下的测量值合理的比较。

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