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首页> 外文期刊>Earth Surface Dynamics Discussions >Impacts of a large flood along a mountain river basin: the importance of channel widening and estimating the large wood budget in the upper Emme River (Switzerland)
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Impacts of a large flood along a mountain river basin: the importance of channel widening and estimating the large wood budget in the upper Emme River (Switzerland)

机译:大型洪水沿山区河流流域的影响:通道扩大和估算上部木河大型木材预算的重要性(瑞士)

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On 24?July?2014, an exceptionally large flood (recurrence interval ca. 150?years) caused large-scale inundations, severe overbank sedimentation, and damage to infrastructure and buildings along the Emme River (central Switzerland). Widespread lateral bank erosion occurred along the river, thereby entraining sediment and large wood (LW) from alluvial forest stands. This work analyzes the catchment response to the flood in terms of channel widening and LW recruitment and deposition, but also identifies the factors controlling these processes. We found that hydraulic forces (e.g., stream power index) or geomorphic variables (e.g., channel width, gradient, valley confinement), if considered alone, are not sufficient to explain the flood response. Instead, the spatial variability of channel widening was first driven by precipitation and secondly by geomorphic variables (e.g., channel width, gradient, confinement, and forest length). LW recruitment was mainly caused by channel widening (lateral bank erosion) and thus indirectly driven by precipitation. In contrast, LW deposition was controlled by channel morphology (mainly channel gradient and width). However, we also observed that extending the analysis to the whole upper catchment of the Emme River by including all the tributaries and not only to the most affected zones resulted in a different set of significant explanatory or correlated variables. Our findings highlight the need to continue documenting and analyzing channel widening after floods at different locations and scales for a better process understanding. The identification of controlling factors can also contribute to the identification of critical reaches, which in turn is crucial for the forecasting and design of sound river basin management strategies.
机译:在24岁?七月?2014年,一个特别大的洪水(复发间隔CA.150?年)导致了大规模的洪水,严重的体积沉降,以及沿着瑞士中部的基础设施和建筑物损坏。广泛的横向银行侵蚀沿河发生,从而夹带来自冲积林的沉积物和大型木材(LW)。这项工作分析了渠道扩大和LW招聘和沉积方面对洪水的集水区响应,但也确定了控制这些过程的因素。我们发现液压力(例如,流功率指数)或地貌变量(例如,通道宽度,梯度,谷拦截),如果单独考虑,则不足以解释洪水响应。相反,通道扩展的空间可变性首先由沉淀驱动,其次由地貌变量(例如,通道宽度,梯度,限制和森林长度)。 LW招聘主要是由通道扩大(横向堤岸侵蚀)引起的,因此间接地由降水驱动。相反,通过通道形态(主要是通道梯度和宽度)来控制LW沉积。然而,我们还观察到,通过包括所有支流,不仅包括所有的支流,并且不仅仅是受影响的区域,因此将分析扩展到EMME河的整个上层集水区,导致了不同的显着解释性或相关变量。我们的调查结果强调了在不同地点和尺度的洪水中继续记录和分析通道扩大的必要性,以获得更好的过程理解。控制因素的鉴定也可能有助于识别关键境内,这反过来对声道河流流域管理策略的预测和设计至关重要。

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