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A Particle-Scale Model to Simulate Soil / Regolith Erosion

机译:用于模拟土壤/ go石侵蚀的颗粒模型

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摘要

We have assembled a 2D model to study the dynamics of eolian soil entrainment at the particle scale. This model couples a lattice-Boltzmann computational fluid model with a discrete element model (DEM) to represent individual particles. Grains are entrained into the fluid flow by the computed aerodynamic forces and grain-grain collisional forces. The coupling was implemented using an immersed boundary condition to calculate the fluid forces on grains, and vice versa. The computational model uses a large eddy simulation (LES) turbulence closure model to allow simulations of relatively high Reynolds number, subsonic flows. This model is used to simulate two conditions: flow parallel to the bed, and a planar jet impinging the bed. Results from both of these cases are presented along with comparisons to experimental data and observations.
机译:我们已经组装了一个2D模型来研究风尘土在颗粒尺度上的夹带动力学。该模型将晶格-玻尔兹曼计算流体模型与离散元素模型(DEM)耦合以表示单个粒子。颗粒通过计算的空气动力和颗粒碰撞力被夹带到流体流中。使用沉浸边界条件实现耦合,以计算作用在晶粒上的流体力,反之亦然。该计算模型使用大型涡流仿真(LES)湍流闭合模型,以允许对相对较高的雷诺数,亚音速流进行仿真。该模型用于模拟两个条件:平行于床层的流动和撞击床层的平面射流。给出了这两种情况的结果,并与实验数据和观察结果进行了比较。

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