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Vegetation effects on sediment connectivity and processes in an ephemeral channel in SE Spain

机译:西班牙东南部短暂通道中植被对沉积物连通性和过程的影响

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High sediment delivery due to catchment and channel erosion can impact on waterway health and reservoir sedimentation. Methods that decrease sediment connectivity within the system are needed to address these potential impacts. Vegetation has the potential to decrease channel erosion and sediment transfers in dryland environments by increasing channel bed resistance and roughness. Detailed studies of vegetation and process interactions were undertaken within an ephemeral channel in SE Spain at three scales (channel network, reach and patch) by repeat surveys and mapping after floods. Connectivity mapping showed variations in vegetation type and density along the channel and that these influence sediment retention and channel erosion. Hydraulic calculations of vegetation roughness effects at 25 cross-sections down the channel indicate the influence of different vegetation type and characteristics. Particular attention was paid to the perennial grass Lygeum spartum because of its potential benefits in channel stabilisation. Sedimentation takes place within these reaches, mainly by trapping within and downstream of individual plants. Check dams have a profound influence on vegetation and sediment distribution in this channel but use of vegetated zones may be a more sustainable strategy of sediment control.
机译:由于集水区和河道侵蚀造成的高沉积物输送会影响水道健康和水库沉积。需要采用减少系统内沉积物连通性的方法来解决这些潜在影响。通过增加河床的阻力和粗糙度,植被可以减少旱地环境中的河道侵蚀和沉积物转移。通过洪水后的重复调查和制图,在西班牙东南部的一个临时通道内以三种尺度(通道网络,覆盖范围和斑块)对植被和过程相互作用进行了详细研究。连通性图显示了沿河道的植被类型和密度的变化,这些变化影响了沉积物的保留和河道的侵蚀。河道下25个断面的植被粗糙度影响的水力计算表明了不同植被类型和特征的影响。特别注意多年生草草的草草碎叶草,因为它可以稳定通道。沉积物在这些河段内发生,主要是通过将其截留在单个植物的内部和下游。防洪坝对该河道中的植被和沉积物分布具有深远的影响,但是使用植被带可能是控制沉积物的更可持续的策略。

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