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Conditional dissipation of scalars in homogeneous turbulence: Closure for MMC modelling

机译:标量在均匀湍流中的条件耗散:MMC建模的闭合

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摘要

While the mean and unconditional variance are to be predicted well by any reasonable turbulent combustion model, these are generally not sufficient for the accurate modelling of complex phenomena such as extinction/reignition. An additional criterion has been recently introduced: accurate modelling of the dissipation timescales associated with fluctuations of scalars about their conditional mean (conditional dissipation timescales). Analysis of Direct Numerical Simulation (DNS) results for a passive scalar shows that the conditional dissipation timescale is of the order of the integral timescale and smaller than the unconditional dissipation timescale. A model is proposed: the conditional dissipation timescale is proportional to the integral timescale. This model is used in Multiple Mapping Conditioning (MMC) modelling for a passive scalar case and a reactive scalar case, comparing to DNS results for both. The results show that this model improves the accuracy of MMC predictions so as to match the DNS results more closely using a relatively-coarse spatial resolution compared to other turbulent combustion models.
机译:尽管平均和无条件方差都可以通过任何合理的湍流燃烧模型很好地预测,但是这些通常不足以对复杂的现象(例如灭绝/复燃)进行精确的建模。最近引入了另一个标准:与标量的条件均值波动有关的耗散时间尺度的精确建模(条件耗散时间尺度)。对无源标量的直接数值模拟(DNS)结果的分析表明,条件耗散时间量级约为积分时间量级,并且小于无条件耗散时间量级。提出了一个模型:条件耗散时间尺度与积分时间尺度成比例。将该模型用于被动标量情况和反应标量情况的多重映射条件(MMC)建模中,并与两者的DNS结果进行比较。结果表明,与其他湍流燃烧模型相比,该模型提高了MMC预测的准确性,从而使用相对粗略的空间分辨率更紧密地匹配DNS结果。

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