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Implications of multi-scale sea level and climate variability for coastal resources A case study for south Florida and Everglades National Park, USA

机译:多尺度海平面和气候变化对沿海资源的影响-以美国南佛罗里达和大沼泽国家公园为例

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摘要

While secular changes in regional sea levels and their implications for coastal zone management have been studied extensively, less attention is being paid to natural fluctuations in sea levels, whose interaction with a higher mean level could have significant impacts on low-lying areas, such as wetlands. Here, the long record of sea level at Key West, FL is studied in terms of both the secular trend and the multi-scale sea level variations. This analysis is then used to explore implications for the Everglades National Park (ENP), which is recognized internationally for its ecological significance, and is the site of the largest wetland restoration project in the world. Very shallow topographic gradients (3-6 cm per km) make the region susceptible to small changes in sea level. Observations of surface water levels from a monitoring network within ENP exhibit both the long-term trends and the interannual-to-(multi)decadal variability that are observed in the Key West record. Water levels recorded at four long-term monitoring stations within ENP exhibit increasing trends approximately equal to or larger than the long-term trend at Key West. Time- and frequency-domain analyses highlight the potential influence of climate mechanisms, such as the El Nino/Southern Oscillation and the North Atlantic Oscillation (NAO), on Key West sea levels and marsh water levels, and the potential modulation of their influence by the background state of the North Atlantic Sea Surface Temperatures. In particular, the Key West sea levels are found to be positively correlated with the NAO index, while the two series exhibit high spectral power during the transition to a cold Atlantic Multidecadal Oscillation (AMO). The correlation between the Key West sea levels and the NINO3 Index reverses its sign in coincidence with a reversal of the AMO phase. Water levels in ENP are also influenced by precipitation and freshwater releases from the northern boundary of the Park. The analysis of both climate variability and climate change in such wetlands is needed to inform management practices in coastal wetland zones around the world.
机译:尽管已广泛研究了区域海平面的长期变化及其对沿海地区管理的影响,但人们对海平面自然波动的关注却较少,其自然波动与较高平均水平的相互作用可能会对低洼地区产生重大影响,例如湿地。在这里,从长期趋势和多尺度海平面变化的角度研究了佛罗里达州基韦斯特的长期海平面记录。然后,该分析用于探索对大沼泽国家公园(ENP)的影响,该公园因其生态意义而得到国际认可,是世界上最大的湿地恢复项目的所在地。非常浅的地形梯度(每公里3-6厘米)使该地区容易受到海平面微小变化的影响。从ENP内的监测网络观察到的地表水水位既显示了长期趋势,又显示了基韦斯特记录中观测到的年际至(多)年代际变化。在ENP的四个长期监测站记录的水位上升趋势大约等于或大于基韦斯特的长期趋势。时域和频域分析强调了诸如厄尔尼诺/南方涛动和北大西洋涛动(NAO)等气候机制对基韦斯特海平面和沼泽水平面的潜在影响,以及它们对气候影响的潜在调节北大西洋海表温度的背景状态。特别是,发现基韦斯特海平面与NAO指数呈正相关,而这两个系列在向冷大西洋多年代际涛动(AMO)过渡期间表现出较高的光谱功率。基韦斯特海平面与NINO3指数之间的相关性使其符号反转,同时又与AMO阶段相反。 ENP中的水位还受到公园北边界的降水和淡水释放的影响。需要对此类湿地的气候变异性和气候变化进行分析,以为全球沿海湿地地区的管理实践提供依据。

著录项

  • 来源
    《Regional Environmental Change》 |2013年第1期|S91-S100|共10页
  • 作者单位

    Earth and Environmental Engineering Department,Columbia University, 500 West 120th Street,Mudd Bldg, NY, NY 10027, USA;

    South Florida Natural Resources Center, Everglades & Biscayne National Parks, 950 N. Krome Ave., 3rd Floor,Homestead, FL 33030, USA,U.S. Geological Survey, Southeast Ecological Science Center,7920 NW 71st Street, Gainesville, FL 32653, USA;

    Earth and Environmental Engineering Department,Columbia University, 500 West 120th Street,Mudd Bldg, NY, NY 10027, USA;

    South Florida Natural Resources Center, Everglades & Biscayne National Parks, 950 N. Krome Ave., 3rd Floor,Homestead, FL 33030, USA;

    U.S. Geological Survey, 600 Fourth Street South, St.,Petersburg, FL 33701, USA;

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

    Sea level fluctuations; Key West; ENSO; NAO; AMO; Everglades National Park;

    机译:海平面波动;基韦斯特;ENSO;NAO;AMO;大沼泽国家公园;

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