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A multi-technique approach for evaluating sand dynamics in a complex engineered piedmont river system

机译:一种评估复杂的皮埃蒙特河系统中沙土动力学的多技术方法

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摘要

A multi-technique approach is proposed to study sand dynamics in an engineered piedmont river. Only a few studies focused on such systems and innovative methodological protocols still need to be designed to better understand sand transport in piedmont rivers where bedload dynamics has been largely modified with nowadays a residual sand transport on a fixed gravel matrix. The proposed methodology is based on an analysis of bathymetry and turbidity measurements and on modelling, including the development of sediment rating curves and 2D numerical modelling, and using sediment budgeting for cross-validation. Its application to the Isere-Rhone confluence (France) provided some insights of sand fluxes in this complex river system where few sediment flux data are available. Indeed, a substantial amount of sand sporadically reaches the downstream part of the Isere River because of the presence of a series of dams, and jeopardizes navigation and flood management at the confluence. Based on the analysis of the 2015 flushing event, it was found that the sediment transport capacity was reached during the event whereas sand supply can be considered as null when dam bottom gates are closed. Suspended load of sand was prevailing downstream of the last dam but quickly settled down at the confluence. The sand deposit was eventually evacuated from the confluence during the small floods occurring after the flushing event with a minimum discharge of approximately 500 m(3)/s in the Isere River and 1000 m(3)/s in the headrace canal of the Rhone River. The presented methodology can be transferred to other sites with similar issues. (C) 2018 Elsevier B.V. All rights reserved.
机译:提出了一种多技术方法来研究工程山麓河中的砂土动力学。仍需要设计一些针对此类系统和创新方法规程的研究,以更好地了解山麓河流中的砂运,在这些地区,河床动力学已大大改变,如今在固定的砾石基质上残留砂运。所提出的方法基于水深和浊度测量的分析以及建模,包括沉积物额定值曲线和二维数值建模的开发,以及使用沉积物预算进行交叉验证。将其应用到Isere-Rhone汇合处(法国),可在缺乏泥沙通量数据的复杂河流系统中获得一些沙通量的见解。确实,由于存在一系列水坝,大量的沙子零星地流向伊塞雷河的下游,并危及汇合处的航行和洪水管理。根据对2015年冲洗事件的分析,发现在该事件期间达到了泥沙输送能力,而当关闭大坝底闸时,可以将供砂视为无效。最后一个大坝的下游主要是悬浮的砂土,但在汇合处很快就沉降了。最终,在冲洗事件发生后的小洪灾期间,从沉积物汇流中撤出了沙土,伊塞尔河的最低流量约为500 m(3)/ s,罗纳河的头渠的最低流量约为1000 m(3)/ s。河。所提出的方法可以转移到存在类似问题的其他站点。 (C)2018 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第20期|485-497|共13页
  • 作者单位

    Irstea, UR RiverLy, Ctr Lyon Villeurbanne, 5 Rue Doua,CS 20244, F-69625 Villeurbanne, France;

    Irstea, UR RiverLy, Ctr Lyon Villeurbanne, 5 Rue Doua,CS 20244, F-69625 Villeurbanne, France|CNR, DCOS CACOH, 4 Rue Chalon Saone, F-69007 Lyon, France;

    Irstea, UR RiverLy, Ctr Lyon Villeurbanne, 5 Rue Doua,CS 20244, F-69625 Villeurbanne, France;

    Irstea, UR RiverLy, Ctr Lyon Villeurbanne, 5 Rue Doua,CS 20244, F-69625 Villeurbanne, France;

    Irstea, UR RiverLy, Ctr Lyon Villeurbanne, 5 Rue Doua,CS 20244, F-69625 Villeurbanne, France;

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

    Sand dynamics; Engineered piedmont river; Isere-Rhone confluence; Dam flushing;

    机译:砂动力学;山前工程河;伊瑟尔-罗纳河交汇处;大坝冲洗;

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