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Modeling alluvial landform change in the absence of external environmental forcing

机译:在没有外部环境强迫的情况下模拟冲积地形变化

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Alluvial fan evolution and morphology are often considered to respond primarily to external forcing (e.g., tectonics, climate, and base-level change). Here we present a numerical model of alluvial fan evolution that shows that dramatic and persistent fan entrenchment may occur in the absence of such forcing. This process is driven by positive autogenic feedbacks between flow width, sediment transport, and rate of fan aggradation. Entrenchment is initiated where sediment accommodation space limits continued fan growth. Our results highlight a need to rethink both the representation of fluvial width adjustment in landscape evolution models and the established framework for the interpretation of fluvial landforms as archives of environmental change.
机译:人们通常认为冲积扇的演变和形态主要是对外部强迫(例如构造,气候和基层变化)作出反应。在这里,我们提出了冲积扇演化的数值模型,该模型表明,在没有这种强迫的情况下,可能会发生剧烈而持久的扇形纠缠。此过程由流量宽度,沉积物传输和风机凝结速率之间的积极自生反馈驱动。在沉积物容纳空间限制风扇持续增长的地方开始进行固定。我们的结果表明,有必要重新考虑景观演变模型中河流宽度调整的表示方式以及将河流地貌解释为环境变化档案的既定框架。

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