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Modelling of the correlation between velocity and reactive scalar gradients in turbulent premixed flames based on DNS data

机译:基于DNS数据的湍流预混火焰中速度与反应性标量梯度之间的相关性建模

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摘要

The interaction between turbulence and reactive scalar fields is discussed for the wrinkled flamelets regime of turbulent premixed combustion. Emphasis is placed on the effects associated with the turbulent straining term. In the regime of turbulent combustion under consideration, which corresponds to Karlovitz and Damkohler numbers such that Ka < 1 and Da > 1, a clear and simple formulation is proposed to explain and to model the influence of the correlation between velocity and reactive scalar gradients. This formulation is based on the conservative variables budget across one-dimensional premixed laminar flamelets. The analysis firmly confirms the dependence on both the Damkohler number and the expansion factor, a feature already foreseen in recent studies. Nevertheless, in contrast with previous work, (i) the scaling arguments used in the present contribution are different from those used in other recent proposals, and (ii) the proposed closures are not only deduced from dimensional arguments but also from the consideration of conservative variable budgets across laminar flamelets. The resulting functional dependence on the expansion factor is found to be influenced by the underlying one-dimensional flamelet representation and two possible closures are put forward to take this dependence into account. (iii) The two closures do not exhibit a proportionality to the mean scalar dissipation rate (epsilon) over tilde (Y) as suggested in previous studies but to the square of this quantity. This results in the presence of a second contribution proportional to (epsilon) over tilde (2)(Y) in the modelled transport equation for the mean scalar dissipation rate, in addition to the modelled molecular dissipation term. (iv) Since previous Direct Numerical Simulation (DNS) studies have been essentially devoted to the influence of the Damkohler number, the present DNS validation step is focused on the effects of the expansion rate. To this purpose, the proposed models are validated against three available DNS databases obtained for turbulent premixed flames with different values of the density ratio between unburned and fully burned gases.
机译:对于湍流预混燃烧的起皱小火焰状态,讨论了湍流和反应性标量场之间的相互作用。重点放在与湍流应变项有关的影响上。在所考虑的湍流燃烧状态下,其对应于Karlovitz和Damkohler数,使得Ka <1和Da> 1,提出了一个清晰而简单的公式来解释和建模速度与反应性标量梯度之间的相关性。该公式基于一维预混层流小火焰的保守变量预算。分析牢固地证实了对Damkohler数和膨胀系数的依赖,这是最近研究中已经预见到的特征。然而,与以前的工作相反,(i)当前文稿中使用的缩放参数与其他最近提案中使用的缩放参数不同,并且(ii)拟议的闭包不仅从尺寸参数中推导出,而且还从保守的考虑中推导出来。层流小火焰的可变预算。发现对扩展因子的最终功能依赖性受基础的一维小火焰表示的影响,并提出了两种可能的闭合来考虑这种依赖性。 (iii)如先前研究中所建议的那样,两个闭合与平均标量耗散率(epsilon)不大于波浪号(​​Y)的比例,而是与该数量的平方成比例。除了建模的分子耗散项之外,这还导致在模型化的传输方程中,平均标量耗散率上存在与波浪号(2)(Y)成正比的第二贡献。 (iv)由于先前的直接数值模拟(DNS)研究基本上都致力于Damkohler数的影响,因此目前的DNS验证步骤着眼于扩展速率的影响。为此,针对三个湍流预混火焰获得的三个可用DNS数据库对提出的模型进行了验证,该预混火焰的未燃烧气体与完全燃烧气体之间的密度比值不同。

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