Fluctuations and correlations of reactive scalars near chemical equilibrium in incompressible turbulence

Wenwei Wu, E. Calzavarini, F. G. Schmitt, Lipo Wang
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引用次数: 1

Abstract

The statistical properties of species undergoing chemical reactions in a turbulent environment are studied. We focus on the case of reversible multi-component reactions of second and higher orders, in a condition close to chemical equilibrium sustained by random large-scale reactant sources, while the turbulent flow is highly developed. In such a state a competition exists between the chemical reaction that tends to dump reactant concentration fluctuations and enhance their correlation intensity and the turbulent mixing that on the contrary increases fluctuations and remove relative correlations. We show that a unique control parameter, the Damkh\"{o}ler number ($Da_\theta$) that can be constructed from the scalar Taylor micro-scale, the reactant diffusivity and the reaction rate characterises the functional dependence of fluctuations and correlations in a variety of conditions, i.e., at changing the reaction order, the Reynolds and the Schmidt numbers. The larger is such a Damkh\"{o}ler number the more depleted are the scalar fluctuations as compared to the fluctuations of a passive scalar field in the same conditions, and vice-versa the more intense are the correlations. A saturation in this behaviour is observed beyond $Da_\theta \simeq \mathcal{O}(10)$. We provide an analytical prediction for this phenomenon which is in excellent agreement with direct numerical simulation results.
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不可压缩湍流中化学平衡附近反应量的波动和相关性
研究了在湍流环境中进行化学反应的物质的统计性质。我们关注的是二阶和更高阶可逆多组分反应,在接近化学平衡的条件下,由随机的大规模反应物源维持,而湍流是高度发达的。在这种状态下,倾向于倾倒反应物浓度波动并增强其相关性强度的化学反应与相反增加波动并消除相对相关性的湍流混合之间存在竞争。我们证明了一个独特的控制参数,Damkhöler数($Da_\theta$),可以由标量泰勒微尺度,反应物扩散率和反应速率构建,表征波动和相关性在各种条件下的函数依赖,即在改变反应顺序,雷诺兹数和施密特数时。Damkhöler数字越大,与相同条件下被动标量场的波动相比,标量波动就越少,反之亦然,相关性就越强。在$Da_\theta \simeq \mathcal{O}(10)$以上观察到这种行为的饱和。我们对这一现象进行了分析预测,结果与直接数值模拟结果非常吻合。
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