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Influence of incision rate, rock strength, and bedload supply on bedrock river gradients and valley-flat widths: Field-based evidence and calibrations from western Alpine rivers (southeast France)

机译:切开速率,岩石强度和基岩供应对基岩河坡度和河谷平坦宽度的影响:来自西部高山河流的现场证据和标定(法国东南部)

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摘要

Several process-based models of river incision have been proposed in recent years that attempt to describe fluvial landform development. Although some field tests have been performed, more data are required to test the ability of these models to predict the observed evolution of fluvial landforms. We have investigated several tens of rivers located in the French western Alps that flow across folded sedimentary rocks with strongly contrasting rock strengths. These rivers record significant variations in some of the parameters controlling river incision, notably bedrock lithology, stream power, incision rate, and sediment flux, potentially allowing discrimination between existing models. Variations in incision rates are driven by variations in the amount of disequilibrium introduced in the river profiles during the last glaciation. We use diagnostic indices to investigate transport- and detachment-limited conditions, which include the channel morphology, the occurrence of lithogenic knickpoints, the continuity of alluvial and bedrock reaches, and the slope-area scaling of the river long profile. We observe transitions from detachment-limited to transport-limited conditions with increasing discharge/drainage area and decreasing incision rate. Bedrock strength influences the location of the transition predictably. The formation of transport-limited rivers coincides with the development of a valley flat wider than the active channel, which accommodates variations in bedrock strength, stream power, and incision rate along the transport-limited reaches. We propose and calibrate a model for the development of valley flats along transport-limited rivers and explore some properties of landscape development in mountain ranges controlled by transport-limited rivers.
机译:近年来,已经提出了几种基于过程的河流切口模型,试图描述河流地貌的发展。尽管已进行了一些现场测试,但仍需要更多数据来测试这些模型预测河流地貌演变的能力。我们已经调查了法国西部阿尔卑斯山脉中数十条河流,这些河流流经折叠的沉积岩,岩石强度形成强烈的对比。这些河流记录了控制河流切割的某些参数的显着变化,特别是基岩岩性,河流动力,切割速率和沉积物通量,这有可能在现有模型之间进行区分。上一次冰川融化过程中,河流剖面中引入的不平衡量的变化驱动着切口率的变化。我们使用诊断指标来调查运输和分离受限的条件,包括河道形态,成岩拐点的出现,冲积层和基岩段的连续性以及河流长剖面的坡面积缩放。我们观察到,随着排泄面积的增加和切开率的降低,从分离受限状态向运输受限状态的转变。基岩强度可预测地影响过渡的位置。受交通限制的河流的形成与比活动河道宽的山谷平坦的发展相吻合,它适应了受交通限制的河段的基岩强度,河流动力和切入率的变化。我们提出并校准了运输受限河流沿线山谷平地的开发模型,并探讨了受运输受限河流控制的山脉景观发展的一些特性。

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