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A Large-Eddy Simulation and Lagrangian Stochastic Study of Heavy Particle Dispersion in the Convective Boundary Layer

机译:对流边界层中大颗粒弥散的大涡模拟和拉格朗日随机研究

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Large-eddy simulation and Lagrangian stochastic dispersion models were used to study heavy particle dispersion in the convective boundary layer (CBL). The effects of various geostrophic winds, particle diameters, and subgrid-scale (SGS) turbulence were investigated. Results showed an obvious depression in the vertical dispersion of heavy particles in the CBL and major vertical stratification in the distribution of particle concentrations, relative to the passive dispersion. Stronger geostrophic winds tended to increase the dispersion of heavy particles in the lower CBL. The SGS turbulence, particularly near the surface, markedly influenced the dispersion of heavy particles in the CBL. For reference, simulations using passive particles were also conducted; these simulation results agreed well with results from previous convective tank experiments and numerical simulations.
机译:利用大涡模拟和拉格朗日随机色散模型研究对流边界层(CBL)中的重粒子色散。研究了各种地转风,颗粒直径和亚网格尺度(SGS)湍流的影响。结果表明,相对于被动分散,CBL中重颗粒的垂直分散明显降低,颗粒浓度分布中的主要垂直分层明显降低。较强的地转风往往会增加重粒子在较低CBL中的散布。 SGS的湍流,特别是在表面附近,显着影响了CBL中重颗粒的分散。作为参考,还进行了使用无源粒子的仿真。这些模拟结果与先前对流罐实验和数值模拟的结果非常吻合。

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