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HYDROSEDIMENTOLOGY OF THE PARAGUAY RIVER IN THE CORUMBA FLUVIAL REACH, PANTANAL WETLAND

机译:Corumba河流堤防的Paraguay河流河,Pantanal Wetland

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UThe Pantanal wetland is a complex landscape with distinct hydrogeomorphic compartments, with singular hydrosedimentary processes. Examining these processes draws great interest in understanding Pantanal dynamics for both the management of the system and the geological record predicted by facies models. Hydrosedimentary data in the Pantanal remain scarce, in spite of government efforts to improve and increase data collection in the Upper Paraguay Basin. This study aims to enhance the understanding of active hydrosedimentary processes in the Pantanal Paraguay trunk-river system in the Corumba reach. Hydrosedimentary surveys were accomplished in the main channel and tributaries of the Paraguay River. These surveys helped characterize the hydrosedimentary dynamics to consider the active sedimentary processes in this reach. The Paraguay River interacts complexly with its floodplain, which functions as a reservoir retaining flood water and disturbing river discharge. Bathymetric surveying showed that Paraguay River channel has longitudinal compound bar bedforms built by superimposition of ripples. The backwater effect, possibly related with both hydrological regime and geomorphological characteristics of the area, was detected by means of rating-curve analysis of the gauge stations. This effect is hydrologically produced by the out-of-phase flood pulse of the Pantanal and geomorphically driven by the hydraulic bottleneck of the Urucum and Bodoquena massifs. Both factors possibly occur simultaneously. The hydrogeomorphic characteristics (morphology, river competence, and stream power) of the Paraguay River denote that the elaboration of models more appropriate to the Pantanal context is needed.
机译:Uthe Pantanal Wetland是一种复杂的景观,具有不同的水电站隔室,具有奇异的Hydritive方法。审查这些过程非常兴趣了解系统管理的爪肉动力学以及面部模型预测的地质记录。尽管政府努力改善和增加了上巴拉圭盆地的数据收集,但爪子中的亲息数据仍然稀缺。本研究旨在加强对Corumba Reach中的爪子巴拉圭干燥河流系统中积极的亲密过程的理解。在巴拉圭河的主要渠道和支流中完成了加密调查。这些调查有助于表征了加密动力,以考虑这一覆盖范围内的活性沉积过程。巴拉圭河与其洪泛区的复杂互动,其作为水库保留洪水和令人不安的河流放电。碱基测量表明,巴拉圭河道具有纵向复合棒床形,由涟漪叠加。通过测量站的额定曲线分析,检测到可能与该区域的水文制度和地貌特征有关的反水效应。这种效果是通过尿道和尿布Quena Massifs的液压瓶颈的爪子和几何驱动的矛盾和几何驱动的水性生产。这两个因素可能会同时发生。巴拉圭河的水力态特征(形态,河流竞争力和流动力)表示需要更适合于爪肉背景的模型。

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