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Subgrid-Scale Modeling of Reacting Scalar Fluxes in Large-Eddy Simulations of Atmospheric Boundary Layers

机译:大气边界层大涡模拟中标量通量的亚网格尺度建模

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摘要

In large-eddy simulations of atmospheric boundary layer turbulence, the lumped coefficient in the eddy-diffusion subgrid-scale (SGS) model is known to depend on scale for the case of inert scalars. This scale dependence is predominant near the surface. In this paper, a scale-dependent dynamic SGS model for the turbulent transport of reacting scalars is implemented in large-eddy simulations of a neutral boundary layer. Since the model coefficient is computed dynamically from the dynamics of the resolved scales, the simulations are free from any parameter tuning. A set of chemical cases representative of various turbulent reacting flow regimes is examined. The reactants are involved in a first-order reaction and are injected in the atmospheric boundary layer with a constant and uniform surface flux. Emphasis is placed on studying the combined effects of resolution and chemical regime on the performance of the SGS model. Simulations with the scale-dependent dynamic model yield the expected trends of the coefficients as function of resolution, position in the flow and chemical regime, leading to resolution-independent turbulent reactant fluxes.
机译:在大气边界层湍流的大涡模拟中,涡旋扩散子网格规模(SGS)模型中的集总系数对于惰性标量而言取决于规模。这种比例依赖性主要在表面附近。在本文中,在中性边界层的大涡模拟中实现了与标尺有关的动态SGS模型,用于反应标量的湍流传输。由于模型系数是根据解析比例的动力学动态计算得出的,因此仿真无需任何参数调整。检查了一组代表各种湍流反应流态的化学情况。反应物参与一级反应,并以恒定且均匀的表面通量注入大气边界层。重点是研究分辨率和化学状态对SGS模型性能的综合影响。使用与比例有关的动态模型进行仿真,可以得出与分辨率,流动位置和化学状态有关的系数的预期趋势,从而产生与分辨率无关的湍流反应物通量。

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