System-Wide Effects of Local Bed Disturbance on the Morphological Evolution of a Bifurcating Channel Network

IF 3.5 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Weilun Gao, Dongdong Shao, Zheng Bing Wang, Zhenchang Zhu, Zhifeng Yang
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Abstract

Deltaic channel networks are important conduits for water and material supplies to the fluvial and coastal communities. However, increasing human interventions in river deltas have altered the topology and geometry of channel networks as well as their long-term evolution. While the morphological evolution of a single channel has received extensive studies, the system-wide morphological responses of channel networks to local disturbances remain largely unclear. Here we investigate the morphological responses of a bifurcating channel network subject to local disturbance of channel deepening due to dredging and sand mining through idealized simulations, and further compare the results with the reference scenarios of a single channel and theoretical analysis of the phase plane. The results show that the infilling of the local deepening is associated with the erosion of the entire branch, which also causes system-wide effects on the siltation of the other branch. The morphological responses of the bifurcating channel network consist of a relatively short stage for the infilling of the local deepening followed by a relatively long stage for recovering the equilibrium configuration of the river bifurcation. The system-wide effects of the local disturbance arise from the altered water surface slope and water partitioning downstream of the bifurcation due to the local deepening. Also, the prolonged recovery of the equilibrium configuration is consistent with theoretical analysis, which reveals a slow evolution of the bifurcation when approaching the equilibrium. Our results can help understand the long-term morphological responses of large-scale complex channel networks and inform water managements under increasing human interventions.

局部河床扰动对分叉河道网络形态演变的全系统影响
三角洲河道网是向河流和沿岸社区供应水和物质的重要通道。然而,人类对河道三角洲越来越多的干预改变了河道网络的拓扑结构和几何形状及其长期演变。虽然单个河道的形态演变已得到广泛研究,但河道网络对局部干扰的全系统形态响应在很大程度上仍不清楚。在此,我们通过理想化模拟研究了分叉航道网在疏浚和采砂导致航道加深的局部扰动下的形态响应,并进一步将结果与单一航道的参考方案和相平面的理论分析进行了比较。结果表明,局部加深的填充与整个支流的侵蚀有关,这也会对另一支流的淤积造成全系统的影响。分叉河道网络的形态响应包括一个相对较短的局部加深填充阶段,以及一个相对较长的恢复河道分叉平衡配置阶段。局部扰动对整个系统的影响来自于分叉下游因局部加深而改变的水面坡度和水体分区。此外,平衡构型的长期恢复也与理论分析相一致,理论分析表明,在接近平衡时,分叉会缓慢演变。我们的研究结果有助于理解大规模复杂河道网络的长期形态响应,并为人类干预不断增加情况下的水管理提供参考。
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来源期刊
Journal of Geophysical Research: Earth Surface
Journal of Geophysical Research: Earth Surface Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
6.30
自引率
10.30%
发文量
162
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