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Longitudinal variability of geomorphic response to floods

机译:对洪水的纵向反应的纵向变异

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Morphodynamic response of channels and floodplains to flooding reflects interactions of erosive and resistive forces with sediment transport capacity and supply at multiple scales. Monotonic relationships between reach-scale response to floods with independent variables such as flood stream power and channel confinement can be confounded by longitudinal variations in these variables at longer scales. In these cases, channel response depends on both local and upstream drivers. Using high resolution pre- and post-flood digital elevation models, we calculate reach-scale (0.5 to 1 km) and segment scale (10 km) longitudinal variations in channel widening and sediment balance. We relate these responses to longitudinal variations of unit stream power and channel confinement for selected streams impacted by the 2013 Colorado Front Range regional flood event. These streams transition from steep and relatively confined in the canyons of the foothills to less steep and unconfined on the high plains. The channel widening response is more closely linked with reach scale gradients in unit stream power: abrupt widening typically occurred within reaches where a large drop in unit stream power occurred relative to upstream. Sediment balance followed segment scale trends in unit stream power, exhibiting a net erosional trend within the foothills that switches to a net depositional trend within the transition to the plains. These findings indicate that unit stream power gradients mediate channel response at reach to segment scales. Predictive modeling of stream response to floods and fluvial hazards assessments that only consider absolute values of reach-scale stream power may under-estimate fluvial hazards in some settings by ignoring unit stream power gradients. (c) 2018 John Wiley & Sons, Ltd.
机译:渠道和洪泛平流的形势反应反映了沉积物传输能力和多种尺度的沉积物输送能力的相互作用。在洪水流功率和信道限制等独立变量的洪水之间的泛滥响应之间的单调关系可以通过这些变量的纵向变化在更长的尺度上混淆。在这些情况下,频道响应取决于本地和上游驱动程序。使用高分辨率预分辨率和洪水后数字高度模型,我们计算达到尺度(0.5到1 km)和段刻度(10km)通道扩大和沉积物平衡的纵向变化。我们将这些答案与由2013年科罗拉多州前范围区域洪水事件产生影响的所选流的单位流动力和渠道限制的纵向变化。这些物流从陡峭的转变,并且在山麓的峡谷中相对局限于陡峭的峡谷,在高平原上较少陡峭且无限制。通道扩大响应与单位流功率中的达到尺度梯度更紧密相关:突然发生在达到的距离内发生,其中单位流功率的大幅下降发生在相对于上游。沉积物平衡跟随单位流功率的分段刻度趋势,山麓内的净侵蚀趋势,在过渡到平原的过渡期内切换到净沉积趋势。这些发现表明,单位流功率梯度在达到段尺度时调解信道响应。通过忽略单元流功率梯度,仅考虑到速率和河流危害的预测模型,只考虑到尺度流功率的绝对值可能在一些设置中估算河流危险。 (c)2018 John Wiley&Sons,Ltd。

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