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Soil erosion in the boundary layer flow along a slope: a theoretical study

机译:边坡边界层水土流失的理论研究

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To better understand the phenomena involved in hydraulic erosion of soils, the influence of the eroded mass flow rate on the velocity field of the water flow is investigated by an original theoretical model. We consider the situation of a turbulent two-phase fluid flow over an erodable solid medium, with both turbulent stresses and turbulent particles diffusion in the flow. In the reference frame linked to the ground surface, the flow can be considered as a quasi-steady state and modelled by the boundary layer equations with addition of mass injection from the ground to account for erosion. To solve completely the problem, the prescription of a local erosion criterion is necessary to evaluate the local eroded mass flow rate. We consider here a purely mechanical process: the eroded flow rate is proportional to the difference between the tangential stress induced by the flow and a critical value characteristic of the soil. In this theoretical frame, we can study the influence of several parameters, as the slope of the ground or the sediments density. One of the main results obtained is the existence for a given set of the parameters of a critical slope angle separating two different erosion regimes.
机译:为了更好地理解土壤水力侵蚀所涉及的现象,采用原始理论模型研究了侵蚀质量流率对水流速度场的影响。我们考虑了在易蚀固体介质上的湍流两相流体流的情况,湍流应力和湍流颗粒均在流中扩散。在链接到地面的参考框架中,可以将流动视为准稳态,并通过边界层方程建模,并加上来自地面的质量注入以解决侵蚀。为了完全解决该问题,必须使用局部腐蚀准则来评估局部侵蚀质量流率。在这里,我们认为是纯机械过程:侵蚀的流速与流动引起的切向应力与土壤临界值特征之间的差异成正比。在这个理论框架中,我们可以研究几个参数的影响,例如地面的坡度或沉积物的密度。所获得的主要结果之一是,对于给定的一组临界坡度参数,该参数将两种不同的侵蚀状态分开。

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