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Different fates of the Yangtze and Mississippi deltaic wetlands under similar riverine sediment decline and sea-level rise

机译:相似河流沉积物下滑和海平面下的长江和密西西比州湿地的不同股权

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摘要

The Yangtze River has experienced a sharp sediment decrease as a result of extensive dam constructions since the 1980s, similar to the sediment decline in the Mississippi River since the 1950s. Historical land losses in the Mississippi Delta have been reported extensively, but this issue in the Yangtze Delta is still under debate. Here we presented the morphological responses of deltaic wetlands to the sediment decline with the comparison of hydrodynamic forces in the Yangtze and Mississippi deltas. We found that the wetlands of the Yangtze Delta continued their expansion even after the sediment decline since 2003 when the Three Gorges Dam began operation, in contrast to the historical scenario in the Mississippi. Based on observations at water depth around 10m in both of the open subaqueous deltas, the bed shear stresses caused by waves and currents (tau cw) during neap and spring tides were 0.18-0.30 N/m(2) in the Yangtze Delta and 0.09-0.10 N/m(2) in the Mississippi Delta under fair weather conditions. The periods of tau cw tau cr (the critical bed shear stress for erosion) occupied on average 80% of a tidal cycle in the Yangtze Delta but only 47% of a cycle in the Mississippi Delta. The rates of relative sea-level rise and riverine sediment decrease in these two deltas are similar, but the sediment-supply capacity to the deltaic wetlands from the Yangtze's subaqueous delta is much larger than that of the Mississippi Delta. Thus, we infer that in contrast to the historical land loss after sediment decline in the Mississippi Delta, the Yangtze deltaic wetlands stand still with a good opportunity to survive for years to decades with the aid of abundant sediment from the subaqueous delta due to higher capacity of seabed erodibility by stronger coastal hydrodynamics. (C) 2021 Elsevier B.V. All rights reserved.
机译:由于20世纪80年代以来,长江由于大坝建设以来,长江经历了尖锐的沉积物,类似于20世纪50年代以来密西西比河的沉积物下降。密西西比三角洲的历史土地损失已经广泛举报,但长江三角洲的这个问题仍在辩论下。在这里,随着长江和密西西比斯特拓的流体动力力量的比较,我们向沉积物呈现对沉积物的形态学响应。我们发现长江三角洲的湿地即使在2003年的沉积物下降之后,当三峡大坝开始运作时,仍然在沉积物下降之后,与密西西比州的历史情景相比。基于在两个开放的subayΔ中的水深约为10米的水深,在长化三角洲的Neap和春季潮汐期间由波浪和电流(Tau Cw)引起的床剪切应力为0.18-0.30 n / m(2),并为0.09 -0.10 n / m(2)在密西西比二角洲在公平的天气条件下。 tau cw& Tau Cr(侵蚀的临界床剪切应力)平均占据了长江三角洲的潮汐周期的80%,但仅仅是密西西比三角洲的47%。这两种三角洲相似的相对海平升高和河流沉积物的速度是相似的,但长江的Suba水三角洲的红细胞湿地的沉积物供应能力远大于密西西比三角洲。因此,我们推断与密西西比三角洲沉积物下降后的历史土地损失相比,长江湿地仍然有多年来借助来自水分中的沉积物,由于容量较高,仍然有多年来生存的好机会沿海流体动力学强的海底蚀刻性。 (c)2021 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2021年第15期|107646.1-107646.11|共11页
  • 作者单位

    East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China|Changjiang Water Resources Commiss Bur Hydrol Changjiang River Estuary Bur Hydrol & Water Resou Shanghai 200136 Peoples R China|Louisiana State Univ Dept Oceanog & Coastal Sci Baton Rouge LA 70803 USA;

    East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China;

    Changjiang Water Resources Commiss Bur Hydrol Changjiang River Estuary Bur Hydrol & Water Resou Shanghai 200136 Peoples R China;

    East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China;

    Louisiana State Univ Dept Oceanog & Coastal Sci Baton Rouge LA 70803 USA|Univ Maryland Horn Point Lab Ctr Environm Sci Cambridge MD 21613 USA;

    Changjiang Water Resources Commiss Bur Hydrol Changjiang River Estuary Bur Hydrol & Water Resou Shanghai 200136 Peoples R China;

    Louisiana State Univ Dept Oceanog & Coastal Sci Baton Rouge LA 70803 USA|Louisiana State Univ Coastal Studies Inst Baton Rouge LA 70803 USA;

    East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China;

    East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China;

    East China Normal Univ State Key Lab Estuarine & Coastal Res Shanghai 200062 Peoples R China;

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

    Yangtze River; Mississippi River; Deltaic wetland; Topographic response; Hydrodynamic force; Sediment load decline; Bed shear stress;

    机译:长江;密西西比河;红叶湿地;地形响应;流体动力学力;沉积物负荷下降;床剪切应力;

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