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CFD simulation of dense gas dispersion in neutral atmospheric boundary layer with OpenFOAM

机译:用OpenFoam中性大气边界层致密气体分散的CFD模拟

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摘要

In this study, Monin-Obukhov similarity theory is used to specify the profiles of velocity, turbulent kinetic energy (k), and eddy dissipation rate in atmospheric boundary layer (ABL) flow. The OpenFOAM standard solver buoyantSimpleFoam is modified to simulate neutrally stratified ABL. The solver is able to obtain equilibrium ABL. For gas dispersion simulation, buoyantNonReactingFoam is developed to take into account fluid properties change due to temperature, buoyancy effect, and variable turbulent Schmidt number. The solver is validated for dense gas dispersion in wind tunnel test and field test of liquefied natural gas vapour dispersion in neutrally stratified ABL.
机译:在该研究中,Monin-Obukhov相似性理论用于指定速度,湍流动能(K)和大气边界层(ABL)流动的涡流耗散速率的曲线。 修改了OpenFoam标准求解器BuoyantsImpleFoam以模拟中性分层的ABL。 求解器能够获得平衡ABL。 对于气体色散仿真,开发了浮能未反应,以考虑因温度,浮力效应和可变湍流施密量而考虑的流体性能变化。 求解器被验证,用于风隧道试验和中性分层ABL中的液化天然气蒸汽分散体的静脉隧道试验和现场试验。

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