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Impact of change in erosion rate and landscape steepness on hillslope and fluvial sediments grain size in the Feather River basin (Sierra Nevada, California)

机译:羽毛河流域(加利福尼亚内华达州)侵蚀速率和景观陡度的变化对山坡和河流沉积物粒度的影响

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The characteristics of the sediment transported by rivers (e.g. sediment flux, grain size distribution – GSD) dictate whether rivers aggrade or erode their substrate. They also condition the architecture and properties of sedimentary successions in basins. In this study, we investigate the relationship between landscape steepness and the grain size of hillslope and fluvial sediments. The study area is located within the Feather River basin in northern California, and studied basins are underlain exclusively by tonalite lithology. Erosion rates in the study area vary over an order of magnitude, from >250 mm ka?1 in the Feather River canyon to <15 mm ka?1 on an adjacent low-relief plateau. We find that the coarseness of hillslope sediment increases with increasing hillslope steepness and erosion rates. We hypothesise that, in our soil samples, the measured 10-fold increase in D50 and doubling of the amount of fragments larger than 1 mm when slope increases from 0.38 to 0.83 m m?1 is due to a decrease in the residence time of rock fragments, causing particles to be exposed for shorter periods of time to processes that can reduce grain size. For slopes in excess of 0.7 m m?1, landslides and scree cones supply much coarser sediment to rivers, with D50 and D84 more than one order of magnitude larger than in soils. In the tributary basins of the Feather River, a prominent break in slope developed in response to the rapid incision of the Feather River. Downstream of the break in slope, fluvial sediment grain size increases, due to an increase in flow competence (mostly driven by channel steepening) as well as a change in sediment source and in sediment dynamics: on the plateau upstream of the break in slope, rivers transport easily mobilised fine-grained sediment derived exclusively from soils. Downstream of the break in slope, mass wasting processes supply a wide range of grain sizes that rivers entrain selectively, depending on the competence of their flow. Our results also suggest that, in this study site, hillslopes respond rapidly to an increase in the rate of base-level lowering compared to rivers.
机译:河流输送的沉积物的特征(例如,沉积物通量,粒度分布– GSD)决定了河流是侵蚀还是侵蚀其底物。它们还限制了盆地沉积演替的结构和性质。在这项研究中,我们调查了景观陡度与山坡和河流沉积物粒度之间的关系。研究区域位于加利福尼亚州北部的Feather河盆地内,被研究的盆地仅由斜长石岩性覆盖。研究区域的侵蚀率变化幅度很大,从羽毛河峡谷中的> 250 mm ka?1到相邻的低洼高原上的<15 mm ka?1。我们发现山坡沉积物的粗糙度随着山坡陡度和侵蚀率的增加而增加。我们假设,在土壤样品中,当坡度从0.38增加到0.83 mm?1时,测得的D50增加了10倍,大于1mm的碎片数量增加了一倍,这是由于岩石碎片的停留时间减少了,导致颗粒在较短时间内暴露于可以减小晶粒尺寸的过程中。对于超过0.7 m m?1的斜坡,滑坡和碎石锥向河流供应的沉积物要多得多,D50和D84比土壤大一个数量级。在羽毛河的支流盆地中,由于羽毛河的迅速切割,斜坡出现了明显的断裂。在坡度折断的下游,由于流量能力的增加(主要是由河道陡峭作用所致)以及沉积物来源和沉积物动力学的变化,河流沉积物的粒度增加了:在坡折断处的上游,河流运输的动静的细颗粒沉积物仅来自土壤。在坡度折断的下游,大量浪费过程提供了各种粒度,河流根据流的能力选择选择性地夹带这些粒度。我们的结果还表明,在该研究地点,与河流相比,山坡对基础水位下降速度的增加有快速反应。

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