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Changing fluvial styles and backwater flooding along the Upper Paraguay River plains in the Brazilian Pantanal wetland

机译:巴西潘塔纳尔湿地上巴拉圭河上游平原的河床样式变化和回水洪水

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摘要

The channel-floodplain relationship is used to understand flooding dynamics in the Pantanal wetland. To understand how different fluvial styles along the Upper Paraguay River (UPR) control the hydrology of the Pantanal wetland, we used a database including 11 gauge stations from the Brazilian National Agency of Waters, Landsat series satellite data, GeoCover images circa 1990 and 2000, the SRTM 90 m digital elevation model (DEM) and 34 acoustic Doppler current profiler (ADCP) sections. We defined eight very distinct fluvial zones in the UPR within the Pantanal based on the channel-floodplain morphology, channel pattern, hydrologic function, and channel slope. Three zones are narrowing plains (Amolar, Urucum and Fecho dos Morros) constrained by geological features on the western border of the Pantanal sedimentary basin, which act as bottlenecks for flood runoff and produce backwater effects that delay flood wave transmission. In each of these narrow zones, the flood wave is delayed by flow velocity reduction, generating huge water bodies upstream that store flood water and affect the duration and amplitude of floods. The existence of three bottlenecks and the occurrence of a backwater effect constrain flood waves along the river, conditioning the hydrological regime of the entire wetland and resulting in unusual rating curves at some gauge stations along the UPR. This peculiar hydrological regime is responsible for the functioning of the wetland, including the undesirable "dequada" phenomena (natural fish mortality events). The backwater effect is enhanced by the existence of large flood basins upstream of the bottlenecks, where waters can be temporarily retained for periods of months, delaying the surface runoff and prolonging the flood season, which contributes to the maintenance of the wetland and its rich ecosystem. (C) 2019 Elsevier B.V. All rights reserved.
机译:河床与平原之间的关系用于了解潘塔纳尔湿地的洪水动态。为了了解上巴拉圭河(UPR)上不同的河流样式如何控制潘塔纳尔湿地的水文状况,我们使用了一个数据库,其中包括来自巴西国家水利局的11个轨距站,Landsat系列卫星数据,1990年和2000年左右的GeoCover图像, SRTM 90 m数字高程模型(DEM)和34个声学多普勒电流剖面仪(ADCP)部分。我们根据渠道-洪泛平原的形态,渠道格局,水文功能和渠道坡度,在潘塔纳尔湿地中定义了八个非常不同的河流带。三个地区是狭窄的平原(Amolar,Urucum和Fecho dos Morros),受到潘塔纳尔沉积盆地西边界的地质特征的制约,它们成为洪水径流的瓶颈,并产生回水效应,从而延迟了洪水波的传播。在这些狭窄区域中,每个洪水波都会由于流速降低而延迟,从而在上游产生巨大的水体,从而存储洪水并影响洪水的持续时间和幅度。三个瓶颈的存在和回水效应的出现限制了沿河的洪水波,调节了整个湿地的水文状况,并在普遍定期审议的某些测量站产生了异常的额定曲线。这种特殊的水文状况负责湿地的功能,包括不希望的“ dequada”现象(自然鱼类死亡事件)。瓶颈上游有大型洪泛区,从而可以使水滞留几个月,从而延缓地表径流并延长洪水季节,从而增强了湿地及其丰富的生态系统,从而提高了回水效应。 。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2020年第1期|106906.1-106906.14|共14页
  • 作者

  • 作者单位

    Univ Fed Mato Grosso do Sul UFMS Ave Ranulpho Marques Leal 3484 Tres Lagoas 76620080 MS Brazil|Univ Estadual Maringa Ave Colombo 5790 Maringa 87020900 PR Brazil;

    Univ Estadual Maringa Ave Colombo 5790 Maringa 87020900 PR Brazil;

    Univ Estadual Paulista UNESP Ave 24A 1515 Rio Claro 13506900 SP Brazil;

    Univ Fed Mato Grosso do Sul UFMS Ave Rio Branco 1-270 Corumba MS Brazil;

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

    Pantanal wetland; Flood wave; Alluvial plain; Backwater flooding; Wetland hydrology;

    机译:潘塔纳尔湿地;洪水波冲积平原;回水泛滥;湿地水文学;

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