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The problem of predicting the size distribution of sediment supplied by hillslopes to rivers

机译:预测山坡向河流输沙的粒度分布问题

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Sediments link hillslopes to river channels. The size of sediments entering channels is a key control on river morphodynamics across a range of scales, from channel response to human land use to landscape response to changes in tectonic and climatic forcing. However, very little is known about what controls the size distribution of particles eroded from bedrock on hillslopes, and how particle sizes evolve before sediments are delivered to channels. Here we take the first steps toward building a geomorphic transport law to predict the size distribution of particles produced on hillslopes and supplied to channels. We begin by identifying independent variables that can be used to quantify the influence of five key boundary conditions: lithology, climate, life, erosion rate, and topography, which together determine the suite of geomorphic processes that produce and transport sediments on hillslopes. We then consider the physical and chemical mechanisms that determine the initial size distribution of rock fragments supplied to the hillslope weathering system, and the duration and intensity of weathering experienced by particles on their journey from bedrock to the channel. We propose a simple modeling framework with two components. First, the initial rockfragment sizes are set by the distribution of spacing between fractures in unweathered rock, which is influenced by stresses encountered by rock during exhumation and by rock resistance to fracture propagation. That initial size distribution is then transformed by a weathering function that captures the influence of climate and mineralogy on chemical weathering potential, and the influence of erosion rate and soil depth on residence time and the extent of particle size reduction. Model applications illustrate how spatial variation in weathering regime can lead to bimodal size distributions and downstream fining of channel sediment by down-valley fining of hillslope sediment supply, two examples of hillslope control on river sediment size. Overall, this work highlights the rich opportunities for future research into the controls on the size of sediments produced on hillslopes and delivered to channels. (C) 2016 Elsevier B.V. All rights reserved.
机译:沉积物将山坡连接到河道。从河道响应到人类土地利用再到景观响应到构造和气候强迫的变化,进入河道的沉积物的大小是控制河道形态动力学的关键控制。但是,对于如何控制从山坡基岩侵蚀的颗粒的尺寸分布以及在沉积物被输送到河道之前颗粒尺寸如何变化的了解甚少。在这里,我们迈出了建立地貌运移规律的第一步,以预测在山坡上产生并提供给河道的颗粒的尺寸分布。我们首先确定可用于量化五个关键边界条件(岩性,气候,生命,侵蚀速率和地形)的影响的自变量,这些条件共同决定了在山坡上产生和运输沉积物的一系列地貌过程。然后,我们考虑物理和化学机制,这些机制决定了供应给山坡风化系统的碎石的初始尺寸分布,以及颗粒从基岩到河道的风化的持续时间和强度。我们提出了一个包含两个组件的简单建模框架。首先,通过未风化岩石中裂缝之间的间距分布来设置初始岩石碎片的大小,这受岩石在掘尸期间遇到的应力以及岩石对裂缝传播的抵抗力的影响。然后通过风化功能转换初始尺寸分布,该功能捕获了气候和矿物学对化学风化潜力的影响,以及侵蚀速率和土壤深度对停留时间和粒度减小程度的影响。模型应用说明了风化态势的空间变化如何通过对山坡沉积物供应进行降谷精化来导致河道沉积物的双峰尺寸分布和下游精化,这是山坡对河流沉积物尺寸进行控制的两个例子。总的来说,这项工作强调了今后对控制在山坡上产生并输送到河道的沉积物大小的控制的丰富机会。 (C)2016 Elsevier B.V.保留所有权利。

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