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首页> 外文期刊>Environmental earth sciences >Influence of artificial channels on the source and extent of saline water intrusion in the wind tide dominated wetlands of the southern Albemarle estuarine system (USA)
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Influence of artificial channels on the source and extent of saline water intrusion in the wind tide dominated wetlands of the southern Albemarle estuarine system (USA)

机译:人工渠道对南部阿尔伯马尔河口系统(美国)以风潮为主的湿地中咸水入侵源和程度的影响

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摘要

Saline water intrusion is degrading water quality in the channelized coastal wetlands of the southern Albemarle estuarine system (AES). The source, transport and fate of the saline water in the southern AES was determined by monitoring specific conductivity and water levels in small artificial channels, the Alligator River, the Alligator-Pungo Canal and the groundwater system for ~12 months. Results indicate that water levels are affected by wind tides which trigger the movement of saline water into the interior of the wetlands via the small canals. The wind tides are mostly driven by episodic southerly winds pushing saline water into the canal network and the groundwater regime proximal to the Alligator River. The saline waters persist in the canals as long as the wind tide events last. Specific conductivities from canals and groundwater are shown to be unexpectedly higher closer to the source of the Alligator River than toward the Albemarle Sound, suggesting that the large Alligator-Pungo Canal facilitates the northward migration of saline water from the Pamlico Sound to the Alligator River. Overwash and reversals in the flow directions between groundwater and surface water bodies suggest that saline water that is present during wind tide events may migrate into the groundwater system from surface water bodies. The results of this study reveal that whereas the large Alligator-Pungo Canal channels saline water to the AES, small artificial channels may also play significant roles in degrading water quality in the interior of channelized coastal wetlands.
机译:盐水入侵正在使南部的雅宝河口系统(AES)的通道化沿海湿地水质下降。通过监测小型人工河道,短吻鳄河,短吻鳄运河和地下水系统中约12个月的比电导率和水位,来确定南部AES中盐水的来源,运输和结局。结果表明,水位受潮汐的影响,潮汐会触发盐水通过小运河流入湿地内部。风潮主要是由南方的阵风驱动,将咸水推入运河网络和鳄​​鱼河附近的地下水区。只要风潮持续,咸水就会在运河中持续存在。运河和地下水的比传导率出乎意料地比向阿尔伯马尔峡湾更接近扬子鳄河源,这表明大的扬子鳄-榜鹅运河促进了咸水从帕姆利科海湾向北向鳄鱼河的迁移。在地下水和地表水体之间的流动方向上的过度冲洗和逆转表明,在风潮事件中存在的盐水可能会从地表水体迁移到地下水系统中。这项研究的结果表明,虽然大的短吻鳄运河将咸水引导到AES,但是小的人工渠道也可能在渠道化的沿海湿地内部水质下降中发挥重要作用。

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