Ab'/> Local human activities overwhelm decreased sediment supply from the Changjiang River: Continued rapid accumulation in the Hangzhou Bay-Qiantang Estuary system
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Local human activities overwhelm decreased sediment supply from the Changjiang River: Continued rapid accumulation in the Hangzhou Bay-Qiantang Estuary system

机译:杭州湾 - 钱塘河口系统持续快速积累,沉积物供应量压倒了沉积物。

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AbstractWe investigate the morphological responses of the Hangzhou Bay, China, located immediately south of the Changjiang Estuary, to the drastic reduction of the sediment load from the Changjiang River and the large-scale coastal embankment schemes over past decades. The spatial patterns of deposition and erosion, sediment volume changes, and the hydrodynamic and sediment dynamic feedback were analyzed, on the basis of historical bathymetric and hydrographic data. The results show that the sedimentation rates in the bay have generally increased rather than decreased over the past decades, despite bed erosion having occurred in the northern bay-mouth. This observation reveals that the influence of the reduction in the Changjiang River sediment supply on the morphological evolution of Hangzhou Bay has to date been insignificant, mainly due to the buffering effect of existing sediment in the outer Changjiang Estuary. The morphological change is mainly related to the implementation process of the coastal embankment. Sediment accumulation induced by progressive seaward coastal embankment has resulted in seaward aggradation from the Qiantang Estuary towards Hangzhou Bay. Analysis of the annually-averaged high and low tidal levels, and durations of rising and falling tides reveals that flood dominance in the inner bay has been increased, due to the coastal embankment and sediment accumulation. The ratio between annually-averaged rising tide and falling tide durations have decreased from 0.85 to 0.63. The tidal prism at the interface between the inner and outer bay has decreased by about 25% since the 1980s, while the net landward sediment flux has been intensified to a certain extent, which is responsible for the intensifying sedimentation in the inner bay. The local human activities have overwhelm the decreased sediment from the Changjiang River. Although the coastal embankment will cease in the near future, the morphological response to human activities is expected to continue on for a longer time.Highlights?Accumulation in the Hangzhou Bay-Qiantang Estuary system has increased despite the Changjiang sediment load reduction.?The seaward accumulation model is related to the progressive downward coastal embankments.?Erosion of Changjiang delta has provides sediment to the Hangzhou Bay-Qiantang Estuary system.?Local human activities changed the shoreline and hydrodynamics, which is responsible for the increased accumulation.]]>
机译:<![cdata [ 抽象 我们调查了杭州湾,中国南部地区的杭州湾的形态回应,达到了剧烈在过去几十年中,减少了长江和大型沿海路堤方案的沉积物。基于历史碱基和水文数据,分析了沉积和腐蚀,沉积体积变化和流体动力学和沉积物动态反馈的空间模式。结果表明,尽管在北部海湾口腔侵蚀,但海湾的沉降率通常增加而不是过去几十年的减少。该观察表明,杭州湾杭州湾的形态演变的减少对杭州湾的形态演变的影响迄今为止,这主要是由于现有沉积物在外的长江口中的缓冲效果。形态变化主要与沿海路堤的实施过程有关。渐进的海上沿海路堤引起的沉积物积累导致了从杭州河口的钱塘口向海洋侵略性。对每年平均的高和低潮汐水平分析,上升和下降潮汐的持续时间表明,由于沿海路堤和沉积物积累,内部海湾的洪水优势已经增加。每年平均上升潮汐和下降潮汐持续时间之间的比率从0.85降至0.63。自20世纪80年代以来,内海湾与外海湾之间的界面处的潮汐棱镜下降了约25%,而净陆沉积物通量已经在一定程度上加剧,这负责内海湾的增强沉降。当地人类活动压倒了长江的沉积物。虽然沿海堤防将停止在不久的将来,但预计对人类活动的形态反应将继续持续更长的时间。 < CE:抽象XMLNS:CE =“http://www.elsevier.com/xml/common/dtd”xmlns =“http://www.elsevier.com/xml/ja/dtd”id =“ab0010”class = “作者 - 突出显示”XML:lang =“en”查看=“全部”> 亮点 杭州湾 - 钱塘河口系统的累积尽管长江沉积物负荷减少了。 海鲜累积模型与之相关渐进的向下沿海堤防。 长江三角洲的侵蚀为杭州湾 - 钱塘河口系统提供沉积物。 本地人类活动改变了海岸线和流体动力学,这负责增加的积累。 ]]>

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