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On symmetries and averaging of the G-equation for premixed combustion

机译:关于预混燃烧的G方程的对称性和均值

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It is demonstrated that the G-equation for premixed combustion admits a diversity of symmetries properties, i.e. invariance characteristics under certain transformations. Included are those of classical mechanics such as Galilean invariance, rotation invariance and others. Also a new generalized scaling symmetry has been established. It is shown that the generalized scaling symmetry defines the physical property of the G-equation precisely. That is to say the value of G at a given flame front is arbitrary. It is proven that beside the symmetries of classical mechanics, particularly the generalized scaling symmetry uniquely defines the basic structure of the G-equation. It is also proven that the generalized scaling symmetry precludes the application of classical Reynolds ensemble averaging usually employed in statistical turbulence theory in order to avoid non-unique statistical quantities such as for the mean flame position. Finally, a new averaging scheme of the G-field is presented which is fully consistent with all symmetries of the G-equation. Equations for the mean G-field and flame brush thickness are derived and a route to consistent invariant modelling of other quantities derived from the G-field is illustrated. Examples of statistical quantities derived from the G-field both in the context of Reynolds-averaged models as well as subgrid-scale models for large-eddy simulations taken from the literature are investigated as to whether they are compatible with the important generalized scaling symmetry.
机译:证明了用于预混燃烧的G方程允许对称性的多样性,即在某些变换下的不变性。其中包括经典力学的那些,例如伽利略不变性,旋转不变性等。还建立了新的广义比例尺对称性。结果表明,广义尺度对称性精确地定义了G方程的物理性质。也就是说,在给定的火焰前沿的G值是任意的。事实证明,除了经典力学的对称性之外,特别是广义的比例对称性唯一地定义了G方程的基本结构。还证明了广义的比例对称性排除了通常在统计湍流理论中使用的经典雷诺集合平均的应用,从而避免了诸如平均火焰位置之类的非唯一统计量。最后,提出了一种新的G场平均方案,该方案与G方程的所有对称性完全一致。得出了平均G场和火焰刷厚度的方程式,并说明了对从G场得出的其他量进行一致不变建模的途径。研究了从雷诺平均模型以及从文献中获取的大涡流模拟的子网格规模模型的背景下,从G场得出的统计量示例是否与重要的广义缩放对称性兼容。

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