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首页> 外文期刊>Geomorphology >Spatial discontinuity and temporal evolution of channel morphology along a mixed bedrock-alluvial river, upper Drome River, southeast France: Contingent responses to external and internal controls
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Spatial discontinuity and temporal evolution of channel morphology along a mixed bedrock-alluvial river, upper Drome River, southeast France: Contingent responses to external and internal controls

机译:法国东南部德罗姆河上游混合基岩-冲积河沿河道形态的空间不连续性和时间演变:对内部和外部控制的偶然反应

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The rehabilitation of degraded river channels is often guided by assumptions of continuity, yet in response to spatial and temporal variations in controlling conditions rivers typically display discontinuous response in space and time. This study examines the development of a 5 km reach of the Drome River, S.E. France, characterised by alternating alluvial and bedrock zones that are separated by abrupt downstream transitions. This reach is representative of the Drome River as a whole, and other rivers in the European Alps where braided channel planforms have been replaced by more complex, discontinuous morphologies. The primary aims are to understand how this spatial complexity has developed on the Drome; evaluate how temporal channel changes have been affected by local factors, particularly bedrock exposures, and by long-term, catchment-scale changes in sediment supply and the flood activity; and consider the implications of this discontinuous geomorphology for reach management. The development of geomorphological zonation is examined by documenting sequential changes in channel planform between seven periods, using aerial photography (1948-2006) and by analysing change in bed elevation from profiles surveyed in 1928,2003 and 2005. Between 1948 and 2001 bedrock exposed in the channel bed and along the floodplain margins defined discontinuities in sediment connectivity that were largely responsible for the configuration of channel zones. The impact of floods on this system was not proportional to flood magnitude. A modest flood in 1978 was an important event that, by incision and avulsion at key locations, defined a pattern of zonation that persisted until the end of the study in 2006. During the final 5 years of the study, alluvial zones that previously responded to large floods by widening underwent narrowing, despite the occurrence of a large flood, and led to an overall reduction in width variance. This resulted from progressive incision beneath and disconnection from formerly active channel areas, in response to long-term, catchment-scale reductions in sediment supply and flood frequency. In 2006 the pattern of zonation remains distinct, disguising this recent change in channel response and underlining the need for long-term and sequential perspectives of channel development to fully understand the processes in operation; contemporary snapshots of channel form may be misleading. Understanding interactions between inherent channel complexity and prevailing flow and sediment conditions, and how this shapes channel response to individual floods, is essential when interpreting future trajectories of channel change and likely response to management intervention.
机译:退化河道的修复通常以连续性的假设为指导,但是响应控制条件中的时空变化,河流通常在时空上表现出不连续的响应。这项研究调查了南德罗姆河5公里的发展情况。法国的特征是冲积带和基岩带交替出现,被突然的下游过渡区分开。此河段代表了整个Drome河以及欧洲阿尔卑斯山中其他河道,这些河道的辫状河床已被更复杂,不连续的形态所取代。主要目的是了解Drome的这种空间复杂性是如何发展的;评估时空通道的变化如何受到当地因素(尤其是基岩暴露)以及沉积物供应和洪水活动的长期流域尺度变化的影响;并考虑这种不连续的地貌对范围管理的影响。通过记录航迹平面图在七个时期之间的连续变化(使用航空摄影(1948年至2006年)以及通过分析1928年,2003年和2005年调查的剖面中的床高变化)来检查地貌地带的发展。1948年至2001年之间,河床和沿洪泛区边缘定义了沉积物连通性的不连续性,这主要是造成河床带构造的原因。洪水对该系统的影响与洪水的大小不成比例。 1978年的小规模洪水是一个重要事件,通过在关键位置进行切口和撕脱,确定了一种分区模式,这种分区模式一直持续到2006年研究结束。在研究的最后5年中,以前对冲积层产生了响应尽管发生了大洪水,但通过拓宽进行的大洪水却变窄了,并导致宽度变化的总体减小。这是由于对沉积物供应量和洪水频率的长期,集水规模的减少做出了响应,这是由于在下面的渐进切口以及与先前活动的河道区域断开连接所致。在2006年,分区模式仍然很明显,掩盖了渠道响应方面的最新变化,并强调需要长期和顺序的渠道发展视角来充分了解运营过程;频道形式的现代快照可能会产生误导。在解释未来渠道变化的轨迹以及对管理干预的可能响应时,了解固有的渠道复杂性与主要的水流和泥沙条件之间的相互作用,以及这如何塑造渠道对单个洪水的响应,至关重要。

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