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首页> 外文期刊>International Journal of Heat and Fluid Flow >A structure-based model for the transport of passive scalars in homogeneous turbulent flows
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A structure-based model for the transport of passive scalars in homogeneous turbulent flows

机译:基于结构的均质湍流中被动标量传输模型

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A structure-based model has been constructed, for the first time, for the study of passive scalar transport in turbulent flows. The scalar variance and the large-scale scalar gradient variance are proposed as the two turbulence scales needed for closure of the scalar equations in the framework of the Interacting Particle Representation Model (IPRM). The scalar dissipation rate is modeled in terms of the scalar variance and the large-scale enstrophy of the velocity field. Model parameters are defined by matching the decay rates in freely isotropic turbulence. The model is validated for a large number of cases of deformation in both fixed and rotating frames, showing encouraging results. The model shows good agreement with DNS results for the case of pure shear flow in the presence of either transverse or streamwise mean scalar gradient, while it correctly predicts the presence of direct cascade for the passive scalar variance in two dimensional isotropic turbulence. (C) 2015 Elsevier Inc. All rights reserved.
机译:首次构建了基于结构的模型,用于研究湍流中的被动标量传输。提出了标量方差和大规模标量梯度方差,作为在相互作用粒子表示模型(IPRM)框架中关闭标量方程所需的两个湍流标度。标量耗散率是根据标量方差和速度场的大规模回旋来建模的。通过匹配自由各向同性湍流中的衰减率来定义模型参数。该模型针对固定框架和旋转框架中的大量变形情况进行了验证,结果令人鼓舞。对于存在横向或沿流平均标量梯度的纯剪切流,该模型与DNS结果显示出良好的一致性,同时它可以正确预测二维各向同性湍流中被动标量方差的直接级联。 (C)2015 Elsevier Inc.保留所有权利。

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