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Autogenic entrenchment patterns and terraces due to coupling with lateral erosion in incising alluvial channels

机译:切入冲积河道时由于与侧向侵蚀相结合而导致的自生固结模式和阶地

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摘要

The abandonment of terraces in incising alluvial rivers can be used to infer tectonic and climatic histories. A river incising into alluvium erodes both vertically and laterally as it abandons fill-cut terraces. We argue that the input of sediment from the valley walls during entrenchment can alter the incision dynamics of a stream by promoting vertical incision over lateral erosion. Using a numerical model, we investigate how valley wall feedbacks may affect incision rates and terrace abandonment as the channel becomes progressively more entrenched in its valley. We postulate that erosion of taller valley walls delivers large pulses of sediment to the incising channel, potentially overwhelming the local sediment transport capacity. Based on field observations, we propose that these pulses of sediment can form talus piles that shield the valley wall from subsequent erosion and potentially force progressive channel narrowing. Our model shows that this positive feedback mechanism can enhance vertical incision relative to 1-D predictions that ignore lateral erosion. We find that incision is most significantly enhanced when sediment transport rates are low relative to the typical volume of material collapsed from the valley walls. The model also shows a systematic erosion of the youngest terraces when river incision slows down. The autogenic entrenchment due to lateral feedbacks with valley walls should be taken into account in the interpretation of complex-response terraces.
机译:冲积河流切割中的梯田遗弃可用于推断构造和气候历史。一条切入冲积层的河流在放弃填挖台地时会在垂直和横向上受到侵蚀。我们认为,在固结过程中,来自谷壁的沉积物输入可通过促进垂直切口而不是侧向侵蚀来改变河流的切口动力学。使用数值模型,我们研究了随着通道逐渐在其山谷中更加根深蒂固,山谷墙的反馈如何影响切开率和梯田废弃。我们假设较高的谷壁的侵蚀将大量脉动的沉积物输送至切入通道,可能使当地的沉积物输送能力不堪重负。根据野外观察,我们建议这些沉积物脉冲可以形成距骨桩,从而使谷壁免受随后的侵蚀,并有可能迫使渐进河道变窄。我们的模型表明,相对于忽略横向腐蚀的一维预测,这种正反馈机制可以增强垂直切口。我们发现,当相对于从谷壁塌陷的典型物质体积而言,沉积物的输送速度较低时,切口会得到最大程度的增强。该模型还显示,当河缝减慢时,最小的梯田会受到系统性侵蚀。在解释复杂响应阶地时,应考虑到由于与谷壁的横向反馈而引起的自生根深蒂固。

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