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On the stress-strain alignment in premixed turbulent flames

机译:预混湍流火焰中的应力-应变对准

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摘要

The interaction of large and small scale structures is fundamental to the energy cascade in turbulent flows. The correct representation of this interaction becomes important in the context of large eddy simulation (LES), where the response of small-scale structures to the resolved quantities, or large-scale structures, must be parametrised. This challenging task becomes more demanding when LES of premixed flames are considered, as heat release affects the interaction of turbulence and chemistry occurring at the unresolved scales. In this work, the influence of sub-grid scale (SGS) stresses on the kinetic energy budget of the resolved velocity field in turbulent premixed flames is investigated. In this spirit, the alignment between the SGS stresses and the resolved strain rate has been analysed by interrogating a direct numerical simulation (DNS) database of statistically planar premixed flames subjected to forced isotropic turbulence. It has been found that the alignment between the eigenvectors of the SGS stresses and the resolved strain rate changes across the flame brush and this change is dependent on the level of turbulence experienced by the flame. The influence of different turbulence intensities and different filter widths along with the implications of this misalignment on the SGS modelling are discussed in detail in the paper.
机译:大型结构和小型结构的相互作用是湍流中能量级联的基础。在大涡模拟(LES)的背景下,这种相互作用的正确表示很重要,在该模拟中,必须对小规模结构对解析量或大型结构的响应进行参数化。当考虑预混火焰的LES时,这一挑战性的任务变得更加艰巨,因为热量的释放会影响湍流与未解决尺度上发生的化学反应的相互作用。在这项工作中,研究了子网格尺度(SGS)应力对湍流预混火焰中分解速度场的动能收支的影响。本着这种精神,通过询问受到强迫各向同性湍流的统计平面预混火焰的直接数值模拟(DNS)数据库,分析了SGS应力与分辨应变率之间的对准。已经发现,SGS应力的本征向量和分辨的应变率之间的对准在整个火焰刷上变化,并且该变化取决于火焰所经历的湍流水平。本文详细讨论了不同湍流强度和不同滤波器宽度的影响,以及这种失准对SGS建模的影响。

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