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A regularized deconvolution method for turbulent closure modeling in implicitly filtered large-eddy simulation

机译:隐式滤波大涡模拟湍流闭合的正则反褶积方法

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摘要

Turbulence closure models that are based on a regularized deconvolution method (RDM) are proposed for application to implicitly filtered Large-Eddy Simulation (LES). This method reconstructs sub-grid scale contributions by approximately recovering filtered quantities through an optimization approach. Physical principles on the boundedness and conservation of reconstructed quantities are preserved by constraining the optimization problem. To account for effects of scales that are not resolved in implicitly filtered LES, a reconstruction method is proposed that combines sub-grid projection and energy-similarity to enrich unresolved scales. With this method, closure models are developed for turbulent scalar fluxes and turbulence-chemistry interaction that are intrinsically consistent with the LES formulation. These closure models are evaluated in application to a piloted turbulent jet flame with inhomogeneous inlet composition, in which combustion is represented by a two-scalar manifold model. The RDM-formulation is benchmarked against simulations obtained using a presumed PDF method and eddy diffusivity closure model. In partially-premixed flame regions, it is observed that RDM improves the prediction of turbulent mixing, and faster grid convergence is observed for results with RDM compared to simulations employing a presumed PDF method. (C) 2019 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:提出了基于正则解卷积方法(RDM)的湍流闭合模型,以应用于隐式滤波的大涡模拟(LES)。该方法通过使用优化方法近似恢复过滤后的数量来重建子网格规模贡献。通过约束最优化问题,可以保留关于重构量的有界性和守恒性的物理原理。为了解决在隐式滤波后的LES中无法解析的尺度的影响,提出了一种重构方法,该方法将子网格投影和能量相似性相结合以丰富未解析的尺度。使用这种方法,开发了与LES公式本质上一致的湍流标量通量和湍流-化学相互作用的封闭模型。这些闭合模型在应用于进气成分不均匀的引流湍流火焰中进行了评估,其中燃烧由两标量歧管模型表示。 RDM公式是根据使用假定的PDF方法和涡流扩散率闭合模型获得的模拟进行基准测试的。在部分预混的火焰区域中,观察到RDM改进了湍流混合的预测,与采用假定的PDF方法的模拟相比,RDM的结果观察到更快的网格收敛。 (C)2019燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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