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Storms, channel changes, and a sediment budget for an urban-suburban stream, Difficult Run, Virginia, USA

机译:美国弗吉尼亚州Difficult Run的暴风雨,航道变化和城市郊区水流的泥沙预算

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摘要

Determining erosion and deposition rates in urban-suburban settings and how these processes are affected by large storms is important to understanding geomorphic processes in these landscapes. Sediment yields in the suburban and urban Upper Difficult Run are among the highest ever recorded in the Chesapeake Bay watershed, ranging from 161 to 376 Mg/km(2)/y. Erosion and deposition of streambanks, channel bed, and bars and deposition of floodplains were monitored between 1 March 2010 and 18 January 2013 in Upper Difficult Run, Virginia, USA. We documented the effects of two large storms, Tropical Storm Lee (September 2011), a 100-year event, and Super Storm Sandy (October 2012) a 5-year event, on channel erosion and deposition. Variability in erosion and deposition rates for all geomorphic features, temporally and spatially, are important conclusions of this study. Tropical Storm Lee was an erosive event, where erosion occurred on 82% of all streambanks and where 88% of streambanks that were aggrading before Tropical Storm Lee became erosional. Statistical analysis indicated that drainage area explains linear changes (cm/y) in eroding streambanks and that channel top width explains cross-sectional area changes (cm(2)/y) in eroding streambanks and floodplain deposition (mm/y). A quasi sediment budget constructed for the study period using the streambanks, channel bed, channel bars, and flood plain measurements underestimated the measured suspended-sediment load by 61% (2130 Mg/y). Underestimation of the sediment load may be caused by measurement errors and to contributions from upland sediment sources, which were not measured but estimated at 36% of the gross input of sediment. Eroding streambanks contributed 42% of the gross input of sediment and accounted for 70% of the measured suspended-sediment load. Similar to other urban watersheds, the large percentage of impervious area in Difficult Run and direct runoff of precipitation leads to increased streamflow and streambank erosion. This study emphasizes the importance of streambanks in urban-suburban sediment budgets but also suggests that other sediment sources, such as upland sources, which were not measured in this study, can be an important source of sediment. Published by Elsevier B.V.
机译:确定城市-郊区环境中的侵蚀和沉积速率以及大风暴如何影响这些过程对于了解这些景观中的地貌过程很重要。切萨皮克湾流域的郊区和城市上流困难地区的沉积物产量是有记录以来最高的,介于161至376 Mg / km(2)/ y。在2010年3月1日至2013年1月18日期间,在美国弗吉尼亚州的Upper Difficult Run监测了河岸,河床和河坝的侵蚀和沉积以及滩涂的沉积。我们记录了两次大风暴对河道侵蚀和沉积的影响,这是一次为期100年的热带风暴李(2011年9月)和为期5年的超级风暴桑迪(2012年10月)的影响。所有地貌特征在时间和空间上的侵蚀和沉积速率的变化是这项研究的重要结论。热带风暴李是一个侵蚀性事件,在所有溪流中有82%发生了侵蚀,而在热带风暴李侵蚀之前,有88%的河岸正在侵蚀。统计分析表明,流域解释了侵蚀性河床中的线性变化(cm / y),而河道顶部宽度解释了侵蚀性河岸和洪泛区沉积(mm / y)的横截面积变化(cm(2)/ y)。在研究期间,使用河床,河床,河床坝和洪泛区测量值建立的准沉积物预算低估了所测量的悬浮泥沙负荷61%(2130 Mg / y)。沉积物负荷的低估可能是由于测量误差和山地沉积物来源的贡献所致,这些测量未测出,但估计占沉积物总投入的36%。侵蚀性的河岸占沉积物总输入量的42%,占测得的悬浮泥沙负荷的70%。与其他城市流域相似,“困难径流”的不透水区域和降水的直接径流很大比例导致河流流量增加和河岸侵蚀。这项研究强调了河床在城郊沉积物预算中的重要性,但同时也表明,本研究中未测量的其他沉积物来源(例如高地来源)可能是重要的沉积物来源。由Elsevier B.V.发布

著录项

  • 来源
    《Geomorphology》 |2017年第1期|128-148|共21页
  • 作者单位

    US Geol Survey, Maryland Water Sci Ctr, 5522 Res Pk Dr, Catonsville, MD 21228 USA;

    US Geol Survey, Penn Water Sci Ctr, 215 Limekiln Rd, New Cumberland, PA 17070 USA;

    US Geol Survey, Natl Res Program, 12201 Sunrise Valley Dr, Reston, VA 20192 USA;

    US Geol Survey, Natl Res Program, 12201 Sunrise Valley Dr, Reston, VA 20192 USA;

    Natl Pk Serv, PO 129 17 S Entrance Rd, Grand Canyon, AZ 86023 USA;

    US Geol Survey, Maryland Water Sci Ctr, 5522 Res Pk Dr, Catonsville, MD 21228 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Urban; Sediment budget; Tropical Storm Lee; Super Storm Sandy;

    机译:城市;泥沙预算;热带风暴李;超级风暴桑迪;

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