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北固山湿地水文情势与湿地植被的关系 被引量:29
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作者 吴春笃 孟宪民 +3 位作者 储金宇 付为国 何海舰 孟祥君 《江苏大学学报(自然科学版)》 EI CAS 北大核心 2005年第4期331-335,共5页
湿地水文情势与湿地植被相互关系与作用机制研究是湿地科学的重要内容,为了加强对湿地的优化管理,改善湿地功能和效益,提高湿地生产量.通过对湿地植被、水文情势的调查,计算不同高程滩面的淹水深度与淹水历时,分析湿地水周期与芦苇分布... 湿地水文情势与湿地植被相互关系与作用机制研究是湿地科学的重要内容,为了加强对湿地的优化管理,改善湿地功能和效益,提高湿地生产量.通过对湿地植被、水文情势的调查,计算不同高程滩面的淹水深度与淹水历时,分析湿地水周期与芦苇分布,研究了镇江内江南岸北固山-大东沟湿地的水文情势与湿地植被分布的关系.结果表明:该湿地水文具有显著的年周期、月周期和日周期特征,不同高程植被带的淹水频率、淹水历时和淹水周期都有明显差异,由此控制着湿地植被分布呈现显著的带状特征.研究发现,76.4%的芦苇群落主要集中在3.38~3.88 m的高程滩面上,淹水历时为180天,淹水频率为49.31%,露干周期为11月~次年4月,其中关键的露干时期为3~4月.根据芦苇植被分布范围与水文情势的关系,提出了湿地水文管理建议. 展开更多
关键词 湿地水文情势 湿地植被 湿地水文管理
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Runoff Management, Wetland Hydrology, and Biodiversity Relations in Minnesota's Red River Basin Wetlands
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作者 StevenI.Apfelbaum John. D. Eppicht James A. Solstada 《Journal of Environmental Science and Engineering(A)》 2012年第1期107-124,共18页
The authors assessed if wetlands can contribute to flood damage reduction in the Red River Basin, Minnesota, by providing reliable flood water storage. Hydrology and biodiversity in 28 natural and restored wetlands su... The authors assessed if wetlands can contribute to flood damage reduction in the Red River Basin, Minnesota, by providing reliable flood water storage. Hydrology and biodiversity in 28 natural and restored wetlands suggested uncontrolled natural wetlands provided the highest mean annual flood storage at 15 cm of runoff while single and 2-stage outlet controlled wetlands provided 3.0 and 8.1 cm of runoff control. Natural controlled wetlands, followed by 2-stage and single stage outlet controlled restorations provided 10.2, 6.6, and 2.2 cm of storage for early summer storm events. Two years of recorded water levels and a 20-year continuous meteorological record were used to model "temporary water level increases" in each wetland. Species diversity, hydrology, and watershed land use variables are inversely related where high quality and diverse wetlands had the lowest amplitude and frequency of water level increases, while low quality wetlands had the highest. Uncontrolled natural wetlands had the highest biological diversity and the lowest frequency and magnitude of temporary water levels increased. A significant biodiversity declines were measured where water level increases were greater than 2.7 meters. Strong multi-linear relationships between watershed land uses and watershed/wetland ratio explained wetland hydraulic performance and biodiversity relations (r2 ranging from 0.6-0.8). Non-native wetland plant diversity increased with greater water level dynamics. 展开更多
关键词 Diversity and hydrology floodwater in wetlands water level dynamics.
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