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Use of high-water marks and effective discharge calculation to optimize the height of bank revetments in an incised river channel

机译:利用高水位线和有效的流量计算来优化切入河道中河岸护岸的高度

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摘要

In deeply incised rivers, bankfull discharge (i.e. the flow filling the channel to the top of the banks) does not represent channel forming flow and increasingly large flows are associated with increasingly large boundary shear stress. In such rivers, solid bank revetments (rip-rap, gabions, retaining wall) are usually constructed to the top of the banks-similarly as in vertically stable rivers-despite the fact that the upper parts of the banks may never be flooded. To optimize the height of solid bank revetments in deeply incised channels, it is thus important to determine whether a flood magnitude can be identified, for which the combination of flow duration and bedload transport rate results in the highest river efficiency to transport bedload and perform geomorphic work. This question was explored in the Moravka River, Czech Carpathians, which deeply incised into nonresistant flysch bedrock over the past few decades. Observations of high-water marks (e.g. trash lines, wash lines) after a flood in 2014 enabled reconstruction of the peak flood stage in the deeply incised reach and the adjacent, vertically stable reach. These observations, together with post-flood measurements of cross-sectional channel geometry, distances between consecutive cross sections and estimates of channel roughness, were used in one-dimensional hydraulic modelling aimed to determine a peak discharge of the flood in a number of cross sections in both reaches. Despite the close proximity of both reaches, markedly higher discharge values were obtained for the incised reach and the discrepancy was used to calibrate roughness coefficients for the incised reach. A flow-duration curve determined on the basis of a 25-year series of daily discharges in the upstream gauging station together with data about channel geometry and roughness in the incised cross sections were used to simulate bedload transport at successive discharges with the BAGS sediment transport model. The calculations indicated the effective discharge for bedload transport in the incised reach to have the recurrence interval of 7-12 years. The upper limit of the reach-average effective discharge is associated with the stage slightly higher than a half of the bankfull depth. This highlights the disparity between effective and bankfull discharges and indicates that in incised channels, channel forming flow should be linked with the former. The vertical extent of the reach-average effective discharge is proposed as an indicator of the optimal, cost-effective height of solid bank-protection structures in the deeply incised channel and the suitability of this approach is discussed. (C) 2020 The Authors. Published by Elsevier B.V.
机译:在切得很深的河流中,河岸满溢流量(即向河道顶部填充河道的流量)并不代表河道的形成流量,而越来越大的流量会伴随着越来越大的边界切应力。在这样的河流中,通常在堤岸的顶部建造坚固的堤岸护堤(防石墙,石笼,挡土墙),与在垂直稳定的河流中的堤岸类似,尽管事实上,堤坝的上部永远不会被淹没。为了优化深切河道中的固体河岸护岸的高度,因此重要的是确定是否可以确定洪水幅度,对于该洪水幅度,持续时间和河床输水速度的组合导致河水输送河床负荷和进行地貌的最高效率工作。这个问题是在捷克喀尔巴阡山脉的莫拉夫卡河(Moravka River)中进行探索的,在过去的几十年中,该河被深深切割成非抵抗性的复理基岩。 2014年发生洪水后,观察到高水位线(例如垃圾线,冲洗线)使深切河段和相邻的垂直稳定河段的洪峰高峰阶段得以重建。这些观察结果与洪水后横截面通道几何形状的测量结果,连续横截面之间的距离以及通道粗糙度的估计值一起用于一维水力模型,旨在确定多个横截面中洪水的峰值流量在两个方面。尽管两个河段非常接近,但对于已切割的河段仍可获得明显更高的排放值,并且该差异用于校准已切割的河段的粗糙度系数。根据上游测量站25年连续日排放量确定的流量-持续时间曲线以及切面横截面中通道几何形状和粗糙度的数据,用BAGS泥沙运移模拟连续排放时的基床运移。模型。计算结果表明,在切开的河床,有效的排水量可以使复发间隔为7-12年。到达平均有效放电的上限与稍微高于堤岸深度一半的阶段有关。这突显了有效流量和满流量之间的差异,并表明在切开的河道中,河道形成流量应与前者联系在一起。提出了达到平均有效排放量的垂直范围,作为深切槽中固体堤岸保护结构的最佳,具有成本效益的高度的指标,并讨论了这种方法的适用性。 (C)2020作者。由Elsevier B.V.发布

著录项

  • 来源
    《Geomorphology》 |2020年第may1期|107098.1-107098.15|共15页
  • 作者

  • 作者单位

    Polish Acad Sci Inst Nat Conservat Al Mickiewicza 33 PL-31120 Krakow Poland;

    Cracow Univ Technol Fac Civil Engn Ul Warszawska 24 PL-31155 Krakow Poland;

    Univ Ostrava Dept Phys Geog & Geoecol Chittussiho 10 Ostrava 71000 Czech Republic;

    Agr Univ Krakow Dept Hydraul Engn & Geotech Al Mickiewicza 24-28 PL-30059 Krakow Poland;

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

    Incised river; High-water marks; Hydraulic modelling; Effective discharge;

    机译:切河高水位标记;水力建模;有效放电;

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