首页> 外文期刊>Environmental Geology >Predicting stream channel erosion in the lacustrine core of the upper Nemadji River, Minnesota (USA) using stream geomorphology metrics
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Predicting stream channel erosion in the lacustrine core of the upper Nemadji River, Minnesota (USA) using stream geomorphology metrics

机译:使用河流地貌学指标预测美国明尼苏达州内马吉河上游湖心的河道侵蚀

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摘要

The USA Clean Water Act requires the development of a total maximum daily load (TMDL) when Minnesota's water quality standard for turbidity is exceeded; however, regions underlain with fine-grained lacustrine deposits yield large natural background loads of suspended inorganic sediment. A review of hydrogeologic pathways was conducted along with the statistical analysis of geomorphic metrics, collected at 15 sites with varying drainage areas in the upper Nemadji River basin, northeastern Minnesota. Regression analysis indicated a strong linkage between bankfull cross-sectional area and drainage area. Dimensionless geomorphic metric ratios were developed to predict channel evolution potential and associated channel erosion risk. Sites located in drainage areas less than 2 km2 had low erosion risk and showed a correlation between channel slope and relative roughness (D_(84)/mean bankfull channel depth, 88%). A principal components analysis explained over 98% of the variance between sites and indicated five important channel shape metrics to predict channel erosion: bankfull width, bankfull depth, maximum depth, cross-sectional area, and valley beltwidth. Mass wasting of cohesive stream channel sediment was influenced by groundwater discharge and produced turbid waters in the upper Nemadji River.
机译:当超过明尼苏达州的浊度水质标准时,《美国清洁水法》要求制定总最大日负荷(TMDL);然而,有细颗粒湖床沉积的地区会产生大量的自然背景悬浮无机沉积物。在明尼苏达州东北部内马吉河流域上游15个具有不同流域的地点收集的水文地质路径以及地貌指标的统计分析进行了回顾。回归分析表明,河岸满截面积和排水面积之间有很强的联系。开发了无量纲地貌度量比率以预测河道演化潜力和相关的河道侵蚀风险。排水面积小于2 km2的场地具有较低的侵蚀风险,并且显示出河道坡度与相对粗糙度之间的相关性(D_(84)/平均河岸满河道深度为88%)。主成分分析解释了站点之间98%以上的方差,并指出了五个重要的渠道形状指标来预测渠道侵蚀:堤岸宽度,堤岸深度,最大深度,横截面积和谷地带宽度。内河三角洲上游的地下水排放影响了粘性河道沉积物的大量浪费,并产生了浑浊的水。

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