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Dynamic mechanism of an extremely severe saltwater intrusion in the Changjiang estuary in February 2014

机译:2014年2月长江河口极其严重的盐水侵犯的动态机制

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摘要

Estuarine saltwater intrusions are mainly controlled by river discharge and tides. Unexpectedly, an extremely severe saltwater intrusion event occurred in February 2014 in the Changjiang estuary under normal river discharge conditions. This intrusion cut off the freshwater input for 23d into the Qingcaosha reservoir, which is the largest estuarine reservoir in the world, creating a severe threat to water safety in Shanghai. No similar catastrophic saltwater intrusion has occurred since records of salinity in the estuary have been kept. During the event, a persistent and strong northerly wind existed, with a maximum speed of 17.6ms?1, lasting 9d and coinciding with a distinct water level rise. Our study demonstrates that the extremely severe saltwater intrusion was caused by this northerly wind, which drove substantial landward net water transport to form a horizontal estuarine circulation that flowed into the northern channel and out of the southern channel. This landward net water transport overpowered the seaward-flowing river runoff and transported a large volume of highly saline water into the northern channel. The mechanisms of this severe saltwater intrusion event, including the northerly wind, residual water level rise, landward water transport and resulting horizontal circulation, etc., were systematically investigated.
机译:河口盐水侵入主要由河流排放和潮汐控制。意外地,2014年2月在正常河流出院条件下的长江河口发生了极其严重的咸水入侵活动。这种入侵将淡水投入切断了23d进入清醒的水库,这是世界上最大的河口储层,在上海的水安全产生严重威胁。由于河口中盐度的记录被保存,因此没有发生类似的灾难性咸水入侵。在活动期间,存在持续和强烈的北方风,最大速度为17.6ms?1,持续9d并与不同的水位升高。我们的研究表明,极其严重的咸水入侵是由这种北风引起的,这使得大量的陆地净水运输,形成流入北部渠道和南部渠道的水平偏卤素循环。这种陆地净水运输量涌现出海流河流径流,并将大量的高等盐水运送到北部通道中。系统地研究了这种严重的咸水入侵事件的机制,包括北风,残留水位上升,陆地水运输和导致水平循环等。

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