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DNS of differential thermal and mass diffusions in free turbulent shear flows

机译:自由湍流剪切流中的差分热和质量扩散的DNS

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The diffusion of scalars in turbulent flows is the combined effect of the molecular diffusion and the turbulent diffusion, and the latter usually dominates. We investigated the diffusion of scalars with different diffusivities through two canonical free turbulent shear flows, i.e., the mixing layer and the homogeneous isotropic flow, by means of direct numerical simulation (DNS). In the mixing layer, the molecular diffusion has a big impact on the diffusion of scalars in the laminar region where the scalar gradient is high. In the turbulent region, the molecular diffusion has a negligible effect on the diffusion. In the homogeneous isotropic flow, the higher molecular diffusivity strengths the dispersion of scalars of relatively smaller values. However, the molecular diffusion exhibits a counter effect on the scalar diffusion for the relatively larger value. This work is intended to figure out the feasibility of the assumption that the thermal and mass diffusions of a contaminated content are equal, in other words, unit Lewis number assumption, which is often adopted.
机译:标量在湍流中的扩散是分子扩散和湍流扩散的综合影响,后者通常占主导地位。通过直接数值模拟(DNS),我们研究了通过两个规范的自由湍流剪切流量,即混合层和均匀各向同性流动的不同扩散性的扩散。在混合层中,分子扩散对标量梯度高的层状区域中标量的扩散具有大的影响。在湍流区域中,分子扩散对扩散具有可忽略不计的影响。在均相各向同性流动中,较高的分子扩散性强度强度的分散量相对较小的值。然而,分子扩散对相对较大的值的标量扩散表现出反应效应。这项工作旨在弄清楚假设污染含量的热量和质量扩散等于换句话说,换句话说,通常采用。

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