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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Coupling between landslides and eroding stream channels reconstructed from spruce tree rings (examples from the Carpathians and Sudetes - Central Europe)
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Coupling between landslides and eroding stream channels reconstructed from spruce tree rings (examples from the Carpathians and Sudetes - Central Europe)

机译:从云杉的年轮重建的滑坡和侵蚀性河道之间的耦合(来自喀尔巴阡山脉和苏德特山脉的例子-中欧)

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摘要

The analysis of the positive feedback between landslides and erosion requires determination of the precise temporal and spatial relations between events of colluvium delivery and fluvial erosion. In our study we use decennial datasets on the occurrence of landsliding and erosion achieved through dendrochronological methods. Four sites covering areas of landslide slopes and adjacent valley floors with stream channels were studied. Landsliding on slopes was dated from the tree-ring eccentricity developed in stems tilted due to bedrock instability. Erosion in channels was dated using the wood anatomy of roots exposed by erosion of the soil cover. Analysis of the temporal relations between dated landsliding, erosion and precipitation record has revealed that two types of repeating sequences can be observed: (1) rainfalllandslidingerosion; (2) rainfallerosionlandsliding. These sequences are an indication of the occurrence of slope-channel positive feedback in the sites studied. In the first type, landsliding triggered by rainfall delivers colluvia into the valley floor and causes its narrowing, which in turn causes increased erosion. In the second type erosion triggered by rainfall disturbs the slope equilibrium and causes landsliding. Landsliding and erosion, once triggered by precipitation, can occur alternately in years with average precipitation and reinforce one another. Bidirectional coupling between landsliding and channel erosion was shown notably through the effects of channel shifting and forced sinuosity and by increased erosion of the slopes opposite the active landslides. Observations also suggest that the repetition of sequences described over longer periods of time can lead to a general widening of the valley floor at the expense of slopes and to a gradual change of the valley cross-profile from narrow, V-shaped into a wide flat-bottomed. Thus landsliding-erosion coupling/positive feedback was recognized as an important factor shaping hillslope-valley topography of the mid-mountain areas studied. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:要对滑坡和侵蚀之间的正反馈进行分析,就需要确定集水区输送和河流侵蚀事件之间的精确时空关系。在我们的研究中,我们使用通过年代学方法实现的滑坡和侵蚀发生的十年数据集。研究了覆盖滑坡和邻近河床底谷地区的四个地点。斜坡上的滑坡可以追溯到由于基岩不稳而倾斜的茎上出现的树轮偏心。通道侵蚀是通过对土壤覆盖物侵蚀暴露的根部进行木质解剖来确定的。对过时的滑坡,侵蚀和降水记录之间的时间关系的分析表明,可以观察到两种重复序列:(1)降雨滑坡侵蚀; (2)降雨侵蚀滑坡。这些序列表明在所研究的地点中存在斜坡通道正反馈。在第一种类型中,降雨引起的滑坡将colluvia输送到山谷底部并使其变窄,进而导致侵蚀加剧。在第二种类型中,降雨引起的侵蚀破坏了坡度平衡并导致滑坡。一旦受到降水的触发,滑坡和侵蚀就会在平均降水数年内交替发生,并相互增强。滑坡与河道侵蚀之间的双向耦合主要通过河道位移和强迫正弦效应以及与活动滑坡相对的边坡的侵蚀增加而显示出来。观察结果还表明,较长时间重复描述的序列会导致谷底普遍增宽,但以坡度为代价,并且谷底剖面从狭窄的V形逐渐变为宽阔的平面逐渐变化。 -底部因此,滑坡-侵蚀耦合/正反馈被认为是影响所研究的中山地区丘陵-山谷地形的重要因素。版权所有(c)2014 John Wiley&Sons,Ltd.

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