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Impact Action of Soil Particles on the Crust in Wind Erosion

机译:土壤颗粒在风蚀中对地壳的冲击作用

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摘要

Wind erosion is the process by which the wind looses the soil, abrades the surface and removes soil particles from the surface, and is an essential process of soil desertification.Though soil particles being carried from the surface by wind is the final results of wind erosion,the abrasion of soil particles to the surface plays a major role in wind erosion. In this paper, we calculated the impact force of soil particles based on the 3D (three dimensional) saltating particle-crust collision model, which is different from the existing 2D (two dimensional) model.The results indicated that the angular velocities of soil particles make their lateral and horizontal impact forces on surface increase, so it makes the surface more fragile and easier to erode.The 2D grain-bed collision model could not describe the natural removal of soil particles by wind. Using the probability theory, we obtained the mean impact force and kinetic energy delivered to the crust per unit area per second., This can provide a theoretical prediction of a constant in the formula for wind erosion rate, such as the plastic pressure (Shao 2001), or for developing a new model using the mean impact force and delivery energy.
机译:风蚀是风使土壤疏松,磨损表面并从表​​面清除土壤颗粒的过程,是土壤荒漠化的重要过程。尽管土壤颗粒被风带走是风蚀的最终结果,土壤颗粒对表面的磨损在风蚀中起主要作用。本文基于3D(三维)盐化颗粒-地壳碰撞模型计算了土壤颗粒的冲击力,该模型不同于现有的2D(二维)模型,结果表明土壤颗粒的角速度二维颗粒床碰撞模型无法描述风对土壤颗粒的自然去除作用,因此它们在表面上的横向和水平冲击力会增加,从而使表面更加脆弱且更容易受到侵蚀。使用概率论,我们获得了平均冲击力和每秒传递到地壳每单位面积的动能。这可以为风蚀率公式中的常数(例如塑料压力)提供理论上的预测(Shao 2001 ),或使用平均冲击力和传递能量来开发新模型。

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