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Conditional moment closure for large eddy simulation of nonpremixed turbulent reacting flows

机译:条件矩闭合,用于非预混湍流反应流的大涡模拟

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摘要

A method for closing the chemical source terms in the filtered governing equations of motion is proposed. Conditional filtered means of quantities appearing in the chemical reaction rate expressions are approximated by assuming that these conditional filtered means are constant for some ensemble of points in the resolved flow field; for such an ensemble, integral equations can be solved for the conditional filtered means. These conditional filtered means are then used to approximate the conditional filtered mean of the chemical source term by invoking the Conditional Moment Closure hypothesis. The filtered means of the chemical source terms are obtained by integrating their conditional filtered means over the filtered density function of the conditioning variable(s). The method is applied to direct numerical simulation results to directly compare the prediction of the reaction rates with the actual filtered reaction rates. The results of this a priori test appear to show that the method is capable of predicting the filtered reaction rates with adequate accuracy—even in the presence of heat release, and local extinction phenomena. This is especially true for predictions obtained using two conditioning variables.
机译:提出了一种在运动控制方程中关闭化学源项的方法。通过假设这些条件滤波后的平均值对于解析流场中的某些点是恒定的,可以近似地表示化学反应速率表达式中出现的条件滤波后的平均值。对于这样的合奏,可以为条件滤波的手段求解积分方程。然后,通过调用条件矩闭合假设,将这些条件滤波后的均值用于近似化学源项的条件滤波后的均值。化学源项的过滤均值是通过将其条件过滤均值与条件变量的过滤密度函数积分而获得的。该方法用于直接数值模拟结果,以直接将反应速率的预测与实际过滤的反应速率进行比较。此先验测试的结果似乎表明,该方法能够以足够的准确性预测过滤后的反应速率,即使存在放热和局部消光现象也是如此。对于使用两个条件变量获得的预测尤其如此。

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