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Characterizing braided rivers in two nested watersheds in the Source Region of the Yangtze River on the Qinghai-Tibet Plateau

机译:青藏高原长江源区两个嵌套流域的辫状河特征

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摘要

large and complex braided channels (>1 km wide) in the Source Region of the Yangtze River (SRYR) on the Qinghai-Tibet Plateau, China, are characterized by a unique alpine environment with very high elevations and glacier sources. Yet, little is known about the morphological complexity and changes of large braided channels owing to the scarcity of hydrological and topographical data. In this study, we provided the first insight into these issues using compiled long-term (several decades) climatic and suspended sediment data, and Landsat images of braided channels in two nested headwater watersheds (i.e., Tuotuo and Tongtian river watersheds) in the SRYR. Analysis of annual and monthly mean temperature, precipitation, and water discharges illustrated the nature of the hydrological regime and their response to glacier melting in the two watersheds. Examination of annual mean suspended sediment loads and concentrations (C) led to two sediment rating curves and generally similar C values between the two watersheds. Among a suite of morphological indices for braided rivers, braiding intensity may be quantified using four different ones. After comparing the indices, we showed that they had similar ability of characterizing braiding patterns and adopted branch count index (BIT3) for further analysis. We found that BIT3 was linearly correlated with active valley width (W-R) during both flood and dry seasons for the 17 selected braided reaches distributed within the two nested watersheds. In addition, braiding density, defined as the ratio of BIT3 to W-R, remained approximately unchanged irrespective of elevations and locations of these reaches, indicating clearly that morphological structures of braided channels are spatially uniform in the SRYR. Along the main channels of the two nested watersheds over the entire study period, BIT3 always reached the maximum as R-W, defined as the ratio of water body to exposed active riverbed area, was around 0.43. Furthermore, R-W was always positively correlated with the associated water discharge (Q). Variable degrees of braiding adjustment in response to changes of hydrological regime were represented by hysteresis loops between BIT3 and Q. These results revealed relatively homogeneous morphologic properties of braided channels across the two nested watersheds and provided an important benchmark for future morphodynamic research on braided rivers in the SRYR. (C) 2019 Elsevier B.V. All rights reserved.
机译:青藏高原长江源区的大型复杂辫状河道(宽度> 1 km)具有独特的高山环境,海拔高,冰川源多。然而,由于缺乏水文和地形数据,对于大辫状河道的形态复杂性和变化知之甚少。在这项研究中,我们使用已编译的长期(数十年)气候和悬浮沉积物数据,以及SRYR中两个嵌套源头流域(即Tu陀河和通天河流域)的辫状河道的Landsat影像,对这些问题提供了首次见解。 。对年和月平均温度,降水和水流量的分析说明了水文制度的性质及其对两个流域冰川融化的响应。对年平均悬浮沉积物负荷和浓度(C)的检查得出两条沉积物等级曲线,两个流域之间的C值大致相似。在一组辫状河的形态指标中,可以使用四种不同的方法来量化辫强度。比较这些指标后,我们发现它们具有类似的编织图案特征,并采用了支数索引(BIT3)进行进一步分析。我们发现,在两个嵌套流域内分布的17个辫状河段,BIT3与洪水季节和干旱季节的活动谷宽(W-R)线性相关。此外,编织密度(定义为BIT3与W-R的比率)几乎保持不变,而与这些河段的高低和位置无关,这清楚地表明,SRYR中编织通道的形态结构在空间上是均匀的。在整个研究期间,沿着两个嵌套流域的主要渠道,BIT3始终达到最大值,因为R-W定义为水体与裸露活动河床面积之比约为0.43。此外,R-W始终与相关的排水量(Q)正相关。 BIT3和Q之间的磁滞回线代表了响应水文状况变化而变化的编织调整程度。这些结果揭示了两个嵌套流域的编织河道的形态特征相对均一,这为将来对辫状河的形态动力学研究提供了重要的基准。 SRYR。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2020年第15期|106945.1-106945.11|共11页
  • 作者

  • 作者单位

    Wuhan Univ State Key Lab Water Resources & Hydropower Engn S Wuhan 430072 Peoples R China;

    Changsha Univ Sci & Technol Key Lab Water Sediment Sci & Water Disaster Preve Changsha 410114 Peoples R China;

    Syracuse Univ Dept Geog Syracuse NY 13244 USA;

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

    Braided river; Braiding intensity; Active valley width; Water discharge; Morphological change;

    机译:辫状河编织强度;有效谷宽;排水;形态变化;

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