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Direct Numerical Simulation of Sediment Transport in Turbulent Open Channel Flow Using the Lattice Boltzmann Method

机译:用晶格Boltzmann方法直接湍流开放通道流动沉积物传输的数值模拟

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The lattice Boltzmann method is employed to conduct direct numerical simulations of turbulent open channel flows with the presence of finite-size spherical sediment particles. The uniform particles have a diameter of approximately 18 wall units and a density of ρp=2.65ρf, where ρp and ρf are the particle and fluid densities, respectively. Three low particle volume fractions ?=0.11%, 0.22%, and 0.44% are used to investigate the particle-turbulence interactions. Simulation results indicate that particles are found to result in a more isotropic distribution of fluid turbulent kinetic energy (TKE) among different velocity components, and a more homogeneous distribution of the fluid TKE in the wall-normal direction. Particles tend to accumulate in the near-wall region due to the settling effect and they preferentially reside in low-speed streaks. The vertical particle volume fraction profiles are self-similar when normalized by the total particle volume fractions. Moreover, several typical transport modes of the sediment particles, such as resuspension, saltation, and rolling, are captured by tracking the trajectories of particles. Finally, the vertical profiles of particle concentration are shown to be consistent with a kinetic model.
机译:用有限尺寸的球形沉积物颗粒的存在,采用格子Boltzmann方法进行湍流开放通道流动的直接数值模拟。均匀颗粒的直径约为18个壁单元,密度为ρp=2.65ρF,其中ρp和ρf分别是颗粒和流体密度。三个低颗粒体积分数?= 0.11%,0.22%和0.44%用于研究颗粒湍流相互作用。仿真结果表明,发现颗粒在不同的速度分量中导致流体湍流动能(TKE)的更各向同性分布,以及在壁正常方向上更均匀地分布流体TKE。由于沉降效果,颗粒倾向于在近壁区域中积聚,并且它们优先于低速条纹。垂直颗粒体积分量分布在通过总粒子体积级分的归一化时是自相似的。此外,通过跟踪颗粒的轨迹,捕获沉积物颗粒的几种典型的典型传输模式,例如重悬浮,盐酸化和轧制。最后,显示颗粒浓度的垂直轮廓与动力学模型一致。

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