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Variance consistent mean shift particle model for treating differential molecular diffusion in transported PDF methods for turbulent reactive flows

机译:湍流反应流量治疗输送PDF方法中差分分子扩散的差异一致性平均移位粒子模型

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The mean shift (MS) particle model (McDermott and Pope, Journal of Computational Physics, 2007, 226, 947-993) was introduced to ensure consistent DNS limit for scalar variance production/dissipation and to incorporate the spatial differential molecular diffusion effect in the transported PDF method. Two significant issues are raised about the MS model in this work. First, the MS model misses molecular diffusion for the scalar variance transport and causes an inconsistent model behavior. Second, a correction algorithm is needed to ensure that the particle scalars remain bounded. The effect of this boundedness correction on the accuracy, consistency, and convergence of the MS model has not been fully examined. This work aims to address these two issues by developing a fully variance consistent mean shift (VCMS) model and by developing and examining correction algorithms for boundedness violation of particle scalars. A turbulent mixing layer problem is employed to validate the VCMS model and the boundedness correction algorithms.
机译:(麦克德莫特和教皇,计算物理,2007年,226,947-993)引入均值漂移(MS)粒子模型以确保标量方差生产/耗散一致DNS极限并把在空间微分分子扩散作用运输PDF方法。两个显著问题提出了在此工作的MS模型。首先,MS模型未命中标量方差运输分子扩散,并导致不一致的模型的行为。第二,需要一种校正算法,以确保粒子的标量保持有界。对精度,一致性和MS模型收敛这有界校正的效果还没有充分研究。这项工作的目的是通过开发一个完全一致的方差均值漂移(VCMS)模型,并通过开发和检验校正算法对违反界标量的粒子来解决这两个问题。湍流混合层问题被用来验证VCMS模型和有界校正算法。

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