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Lateral geomorphic connectivity in a fluvial landscape system: Unraveling the role of confinement, biogeomorphic interactions, and glacial legacies

机译:河流景观系统中的横向地貌连通性:阐明限制,生物地貌相互作用和冰川遗留的作用

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摘要

The rates at which sediment from the landscape is recruited to channel networks reflect lateral geomorphic connectivity and have significant implications for biophysical river systems. By strongly influencing sediment supply regime, such inputs control the dynamics and characteristics of the channel as well as the associated habitat and biota. The main objective of this research was to disentangle the relative importance of geomorphic and biological factors which define spatial patterns in lateral connectivity by promoting or restricting bank erosion, avulsions, and slope failures. Focusing on a forested, formerly glaciated mountain basin in the interior Pacific Northwest, wecombined extensive field surveys with remote sensing data (LiDAR, aerial imagery) to obtainmetrics representing this complex suite of landscape characteristics. The interpretation of evidence yielded by correlations between these variables, a regime model, and qualitative observations, suggest that, at a multi-decadal timescale between major landscape disturbances, lateral connectivity patterns in Sullivan Creek may be, to a large extent, governed by a combination of biotic factors and glacial legacies. In particular, forest canopy metrics were key predictors of hillslope stability as well as bank and valley floor resistance, suggesting a pivotal influence of root reinforcement. On the other hand, instream large wood abundance was closely related to channel splitting, which reflects its role in promoting channel avulsions. More extensive bank erosion in reaches dominated by drift deposits appeared to indicate glacial legacies. Furthermore, a strong association between bank erosion and colluvial inputs suggested a close coupling within the channel-hillslope system. Lateral confinement - defined as the proportion of the channel length abutting against bedrock, terraces, fans and roads - was negatively associated with channel braiding; the relationships linking confinement with bank erosion and the magnitude of colluvial inputs (negative and positive association, respectively) were relatively weak. Taken together, findings emerging from this research suggest that better understanding of lateral geomorphic connectivity patterns in mountain river basins similar to our study site requires that both channel processes and broader, biophysical landscape system be considered. (C) 2020 Elsevier B.V. All rights reserved.
机译:来自景观的沉积物被收集到河道网络的速率反映了横向地貌连通性,并对生物物理河流系统具有重要意义。通过强烈影响沉积物的供应方式,这些输入控制了河道以及相关的生境和生物区系的动态和特征。这项研究的主要目的是通过促进或限制堤岸侵蚀,撕脱和边坡破坏,弄清地貌和生物学因素的相对重要性,这些因素定义了横向连通性中的空间格局。我们着眼于西北太平洋内陆的一片森林,原为冰川的山区,我们将广泛的野外调查与遥感数据(LiDAR,航空影像)相结合,以获得代表这一复杂景观特征的度量。对这些变量之间的相关性,政权模型和定性观测结果的证据的解释表明,在主要景观扰动之间的多年代时间尺度上,沙利文溪的横向连通性模式在很大程度上可能受一个生物因子和冰川遗留物的结合。特别是,森林冠层指标是坡度稳定性以及河岸和谷底阻力的关键预测指标,表明根系加固的关键影响。另一方面,河道内大量木材丰度与河道分裂密切相关,这反映了其在促进河道撕裂中的作用。在由漂流沉积物为主的河段中,更广泛的河岸侵蚀似乎表明有冰川遗留物。此外,河岸侵蚀与冲积输入之间的密切联系表明,河道-斜坡系统之间存在紧密耦合。横向约束-定义为通道长度与基岩,阶地,风扇和道路邻接的比例-与通道编织负相关;约束与河岸侵蚀和冲积投入量(分别为负向和正向关联)之间的关系相对较弱。综上所述,这项研究得出的发现表明,要更好地了解类似于我们研究地点的山区河流盆地的横向地貌连通性格局,就需要考虑渠道过程和更广泛的生物物理景观系统。 (C)2020 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2020年第1期|107036.1-107036.20|共20页
  • 作者

  • 作者单位

    Univ Illinois Dept Geog & GIS 1301 W Green St Urbana IL 61801 USA;

    Northwest Hydraul Consultants 301 W Holly St Suite U3 Bellingham WA 98225 USA;

    Seattle City Light 700 5th Ave 3200 Seattle WA 98104 USA;

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

    Biogeomorphology; Connectivity; Confinement; Mountain rivers; Glacial legacies;

    机译:生物地貌连接性;禁闭;山区河流;冰川遗产;

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