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Bedrock incision by bedload: insights from direct numerical simulations

机译:通过基岩载荷进行基岩切割:直接数值模拟的见解

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Bedload sediment transport is one of the main processes that contribute to bedrock incision in a river and is therefore one of the key control parameters in the evolution of mountainous landscapes. In recent years, many studies have addressed this issue through experimental setups, direct measurements in the field, or various analytical models. In this article, we present a new direct numerical approach: using the classical methods of discrete-element simulations applied to granular materials, we explicitly compute the trajectories of a number of pebbles entrained by a turbulent water stream over a rough solid surface. This method allows us to extract quantitatively the amount of energy that successive impacts of pebbles deliver to the bedrock, as a function of both the amount of sediment available and the Shields number. We show that we reproduce qualitatively the behaviour observed experimentally by Sklar and Dietrich (2001) and observe both a "tool effect" and a "cover effect". Converting the energy delivered to the bedrock into an average long-term incision rate of the river leads to predictions consistent with observations in the field. Finally, we reformulate the dependency of this incision rate with Shields number and sediment flux, and predict that the cover term should decay linearly at low sediment supply and exponentially at high sediment supply.
机译:底质泥沙输送是导致河流基岩切割的主要过程之一,因此是山区景观演变的关键控制参数之一。近年来,许多研究通过实验设置,现场直接测量或各种分析模型解决了这个问题。在本文中,我们提出了一种新的直接数值方法:使用适用于粒状材料的经典离散元模拟方法,我们显式计算出湍流在粗糙固体表面上夹带的许多卵石的轨迹。这种方法使我们能够定量地提取卵石的连续冲击传递给基岩的能量,该能量是可利用的沉积物量和Shields数的函数。我们表明,我们定性地再现了Sklar和Dietrich(2001)实验观察到的行为,并观察到“工具效应”和“掩盖效应”。将传递给基岩的能量转换为河流的平均长期切入率,可以得出与实地观测相一致的预测。最后,我们用Shields数和泥沙通量来重新定义该切入率的依赖性,并预测覆盖率在低泥沙供应时线性衰减,而在高泥沙供应时呈指数衰减。

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