首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Downstream effects of stream flow diversion on channel characteristics and riparian vegetation in the Colorado Rocky Mountains, USA
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Downstream effects of stream flow diversion on channel characteristics and riparian vegetation in the Colorado Rocky Mountains, USA

机译:流向下游对美国科罗拉多洛矶山脉河道特征和河岸植被的影响

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Flow diversions are widespread and numerous throughout the semi-arid mountains of the western United States. Diversions vary greatly in their structure and ability to divert water, but can alter the magnitude and duration of base and peak flows, depending upon their size and management. Channel geometry and riparian plant communities have adapted to unique hydrologic and geomorphic conditions existing in the areas subject to fluvial processes. We use geomorphic and vegetation data from low-gradient (3%) streams in the Rocky Mountains of north-central Colorado to assess potential effects of diversion. Data were collected at 37 reaches, including 16 paired upstream and downstream reaches and five unpaired reaches. Channel geometry data were derived from surveys of bankfull channel dimensions and substrate. Vegetation was sampled using a line-point intercept method along transects oriented perpendicular to the channel, with a total of 100 sampling points per reach. Elevation above and distance from the channel were measured at each vegetation sampling point to analyze differences in lateral and vertical zonation of plant communities between upstream and downstream reaches. Geomorphic data were analyzed using mixed effects models. Bankfull width, depth, and cross-sectional area decreased downstream from diversions. Vegetation data were analyzed using biological diversity metrics, richness, evenness and diversity, as well as multivariate community analysis. Evenness increased downstream from diversions, through reduced frequency of wetland indicator species and increased frequency of upland indicator species. Probability of occurrence for upland species downstream of a diversion increases at a greater rate beginning around 05m above active channel. The results suggest that channel morphology and riparian plant communities along low-gradient reaches in montane environments in the Colorado Rocky Mountains are impacted by diversion-induced flow alteration, with the net effect of simplifying and narrowing the channel and homogenizing and terrestrializing riparian plant communities. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:在美国西部的半干旱山区,流量转移十分普遍,且数量众多。引水的结构和引水能力差异很大,但可以改变流量的大小和持续时间,具体取决于引水的大小和管理方式。河道的几何形状和河岸植物群落已经适应了河流过程中存在的独特的水文和地貌条件。我们使用科罗拉多州中北部落基山脉低梯度(3%)溪流的地貌和植被数据来评估分流的潜在影响。在37个河段收集了数据,包括16个配对的上游和下游河段和5个未配对的河段。通道几何数据来自堤岸满槽尺寸和基底的调查。使用线点截距法沿垂直于通道的样线对植被进行采样,每个范围总共有100个采样点。在每个植被采样点测量通道的海拔高度和距离,以分析上游和下游河段之间植物群落的横向和垂直分区的差异。使用混合效应模型分析了地貌数据。分流下游的河岸宽度,深度和横截面积减小。使用生物多样性指标,丰富度,均匀性和多样性以及多元群落分析对植被数据进行了分析。通过减少湿地指示物种类的频率和增加高地指示物种类的频率,在转移的下游,均匀性增加。在活动河道上方约05m处,引水下游的高地物种发生的可能性以更大的速率增加。结果表明,科罗拉多洛矶山脉山地环境中低坡度河道的河道形态和河岸植物群落受到分流诱导的水流变化的影响,产生了简化和缩小河道并使河岸植物群落均质化和陆生化的净效应。版权所有(c)2014 John Wiley&Sons,Ltd.

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