Large-scale sedimentary shift induced by a mega-dam in deltaic flats

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-11-29 DOI:10.1111/sed.13168
Jie Wang, Zhijun Dai, Sergio Fagherazzi, Yaying Lou, Xuefei Mei, Binbin Ma
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Abstract

Deltas are crucial for land building and ecological services due to their ability to store mineral sediment, carbon and potential pollutants. A decline in suspended sediment discharge in large rivers caused by the construction of mega-dams might imperil deltaic flats and wetlands. However, there has not been clear evidence of a sedimentary shift in the downstream tidal flats that feed coastal wetlands and the intertidal zone with sediments. Here, integrated intertidal/subaqueous sediment samples, multi-year bathymetries, fluvial and deltaic hydrological and sediment transport data in the Nanhui tidal flats and Nanhui Shoal in the Changjiang (Yangtze) Delta, one of the largest mega-deltas in the world, were analyzed to discern how sedimentary environments changed in response to the operations of the Three Gorges Dam. Results reveal that the coarser sediment fractions of surficial sediments in the subaqueous Nanhui Shoal increased between 2004 to 2021, and the overall grain size coarsened from 18.5 to 27.3 μm. Moreover, intertidal sediments in cores coarsened by 25% after the 1990s. During that period, the northern part of the Nanhui Shoal suffered large-scale erosion, while the southern part accreted in recent decades. Reduced suspended sediment discharge of the Changjiang River combined with local resuspension of fine-grained sediments are responsible for tidal flats erosion. that the spatial pattern of grain-size parameters has shifted from crossing the bathymetric isobaths to being parallel to them. Higher tide level and tidal range induced by sea-level rise, an upstream increase in bed shear stress and larger waves likely further exacerbated erosion and sediment coarsening in deltaic flats. As a result, this sediment-starved estuary coupled with sea-level rise and artificial reclamations have enhanced the vulnerability of tidal flats in Changjiang Delta, this research is informative to the sedimentary shift of worldwide mega-deltas.
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巨型水坝在三角洲平原引起的大规模沉积移位
三角洲具有储存矿物沉积物、碳和潜在污染物的能力,因此对土地建设和生态服务至关重要。大型水坝建设造成的大河中悬浮沉积物排放量的减少可能危及三角洲平原和湿地。然而,目前还没有明确的证据表明,为沿海湿地和潮间带提供沉积物的下游潮滩发生了沉积转移。本文利用长江三角洲南汇潮滩和南汇浅滩的潮间带/水下沉积物综合样本、多年测深数据、河流和三角洲水文及泥沙输运数据,分析了三峡大坝运行对沉积环境的影响。结果表明:2004 ~ 2021年,南会浅滩浅层沉积物粗粒组分呈增加趋势,整体粒度由18.5 μm粗化至27.3 μm;此外,20世纪90年代以后,岩心潮间带沉积物粗化了25%。在此期间,南汇浅滩北部遭受了大规模的侵蚀,而南部则在近几十年出现了增生。长江输沙量的减少和细粒泥沙的局部再悬浮是造成潮滩侵蚀的主要原因。粒度参数的空间格局已经从跨越等深线向平行等深线转变。海平面上升、上游河床剪应力增大、海浪增大等因素导致的高潮位和潮差可能进一步加剧了三角洲滩涂的侵蚀和泥沙粗化。由于河口泥沙匮乏,加之海平面上升和人工填海,使得长江三角洲滩涂的脆弱性增强,这一研究结果对世界范围内大型三角洲的沉积转移具有参考价值。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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