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Erosion potential of the Yangtze Delta under sediment starvation and climate change

机译:沉积物饥饿和气候变化下的长江三角洲侵蚀潜力

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摘要

Deltas are widely threatened by sediment starvation and climate change. Erosion potential is an important indicator of delta vulnerability. Here, we investigate the erosion potential of the Yangtze Delta. We found that over the past half century the Yangtze’s sediment discharge has decreased by 80% due to the construction of >50,000 dams and soil conservation, whereas the wind speed and wave height in the delta region have increased by 5–7%, and the sea level has risen at a rate of 3 mm/yr. According to hydrodynamic measurements and analyses of seabed sediments, the period when bed shear stress due to combined current-wave action under normal weather conditions exceeds the critical bed shear stress for erosion (τ cr) accounts for 63% of the total observed period on average and can reach 100% during peak storms. This explains why net erosion has occurred in some areas of the subaqueous delta. We also found that the increase with depth of τ cr is very gradual in the uppermost several metres of the depositional sequence. We therefore expect that the Yangtze subaqueous delta will experience continuous erosion under sediment starvation and climate change in the next decades of this century or even a few centuries.
机译:三角洲受到沉积物匮乏和气候变化的广泛威胁。潜在的侵蚀是三角洲脆弱性的重要指标。在这里,我们调查了长江三角洲的侵蚀潜力。我们发现,在过去的半个世纪中,由于修建了50,000多座水坝和进行了水土保持,长江的泥沙排放量减少了80%,而三角洲地区的风速和波高增加了5–7%,海平面以每年3毫米的速度上升。根据对海床沉积物的流体动力学测量和分析,正常天气条件下,由电流作用引起的联合剪切应力超过侵蚀的临界剪切应力(τcr)的时间段平均占观测到的总周期的63%并且在暴风雨期间可以达到100%。这解释了为什么在水下三角洲的某些地区发生了净侵蚀。我们还发现,在沉积序列最上方几米处,随着τcr深度的增加,梯度是非常缓慢的。因此,我们预计,在本世纪的下一个几十年甚至几个世纪内,长江三角洲的水下三角洲在沉积物匮乏和气候变化的影响下将持续遭受侵蚀。

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