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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >An Improved Model for Anisotropic Dispersion of Small Particles in Turbulent Shear Flows
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An Improved Model for Anisotropic Dispersion of Small Particles in Turbulent Shear Flows

机译:湍流剪切流中小颗粒各向异性扩散的改进模型

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摘要

In order to investigate the dispersion of small particles in a turbulent shear flow,a new model based on accurate modelling of the directional dependence of the fluid Lagrangian time scales is proposed and tested against experimental data in a gas-solid channel flow.The continuum phase is described by a nonlinear low-Reynolds k-epsilon model,thus allowing a fine description of turbulence anisotropy and near-wall effects.The dispersed phase is described by a Lagrangian stochastic method,which is formulated in order to take into account the nonhomogeneity and the anisotropy of turbulence.The fluid Lagrangian time scales in each direction are assessed following a recent proposal supported by channel flow DNS computations.The integral time scales of the fluid seen by the particles are then estimated in taking the inertia and crossing trajectory effects into account.The numerical predictions (particle and fluid statistical quantities) obtained by means of this time scale model and previously available time scale models are compared and confronted to recent experimental data from the literature about the motion of small solid particles in a turbulent vertical channel flow.It is shown that the new Lagrangian time scale formulation leads to very satisfactory results compared to the measurements.
机译:为了研究小颗粒在湍流剪切流中的分散,提出了一种基于流体拉格朗日时间尺度方向相关性精确建模的新模型,并针对气固通道流中的实验数据进行了测试。用非线性低雷诺kε模型描述,因此可以很好地描述湍流各向异性和近壁效应​​。分散相用拉格朗日随机方法描述,该方法的制定是为了考虑非均质性和根据最近由通道流DNS计算支持的提议,评估了每个方向上的流体拉格朗日时间尺度,然后在考虑惯性和交叉轨迹影响的情况下估算了颗粒所看到的流体的整体时间尺度。通过该时间尺度模型和先前的方法获得的数值预测(粒子和流体的统计量)与现有的时标模型进行了比较,并将其与文献中关于湍流垂直通道流中小固体颗粒运动的最新实验数据进行了比较。结果表明,与测量相比,新的拉格朗日时标公式产生了非常令人满意的结果。

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