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首页> 外文期刊>Geomorphology >Point-bar brink and channel thalweg trajectories depicting interaction between vertical and lateral shifts of microtidal channels in the Venice Lagoon (Italy)
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Point-bar brink and channel thalweg trajectories depicting interaction between vertical and lateral shifts of microtidal channels in the Venice Lagoon (Italy)

机译:点线边缘和海道thalweg轨迹描绘了威尼斯泻湖(意大利)中微潮河道的垂直和横向位移之间的相互作用

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Although in tidal point bars, the point-bar brink (i.e. the break-in-slope between bar top and bar slope) and the channel thalweg (i.e. the deepest part of the channel) are thought to shift horizontally toward the outer bank, the occurrence of stable to slow-migrating channels in high-aggradational settings, e.g. salt marshes, is likely to promote a mixed, latero-vertical shift of meandering channel systems. The present study focuses on the trajectories of point bar brink and channel thalweg of eight point bars located in the salt marshes of the Venice Lagoon, in order to understand how vertical aggradation can interact with lateral migration to shape their stratal geometries. High resolution facies-analysis carried out on closely-spaced sediment cores, collected along the bar axis, allowed us to define specific trajectories, which were classified either as ascending or descending, and linear or non-linear. All the analyzed brink trajectories are ascending, and show evidence of lateral shift of the bar brink under aggradational conditions of surrounding marshes. Development of non-linear brink trajectories is linked with changes in the ratio between vertical and lateral shift rates of the brink, which is in turn dictated by changes in local base level due to substrate compaction. Conversely, the thalweg trajectories can be either ascending or descending, reflecting an interaction between rates of lateral shift and aggradation/degradation of the channel floor. The brink and thalweg can either shift consistently (e.g., both trajectories are ascending) or incongruously (e.g., ascending brink vs. descending thalweg trajectory), reflecting different attitudes of the channel to maintain or increase its cross-sectional area. (C) 2019 Elsevier B.V. All rights reserved.
机译:尽管在潮汐点坝中,点坝边缘(即,坝顶和坝坡之间的折入坡度)和河道thalweg(即河道最深的部分)被认为是朝着外岸水平移动,在高聚集环境中发生稳定到缓慢迁移的通道,例如盐沼很可能会促进蜿蜒河道系统的混合,横向-垂直移动。本研究的重点是位于威尼斯泻湖盐沼中的八个点状棒的点状棒边缘和通道thalweg的轨迹,以了解垂直凝结如何与横向迁移相互作用以形成其地层几何形状。沿条形轴对紧密分布的沉积物岩心进行高分辨率相分析,使我们能够定义特定的轨迹,这些轨迹分为升序或降序,线性或非线性。所有分析的边缘轨迹都在上升,并显示出在周围沼泽的侵蚀条件下条形边缘的横向移动的证据。非线性边缘轨迹的发展与边缘的垂直和横向移动速率之比的变化有关,而该变化又由基底压实引起的局部基面水平的变化所决定。相反,thalweg轨迹可以是上升的或下降的,反映了横向偏移速率与河床底板的凝结/退化之间的相互作用。边缘和海藻既可以一致地移动(例如,两个轨迹都上升),也可以不协调地(例如,边缘与海藻的上升轨迹相对)移动,反映出通道保持或增大其截面积的不同态度。 (C)2019 Elsevier B.V.保留所有权利。

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