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Field observations and numerical simulations of groundwater dynamics within Cabretta Island, a barrier island off the coast of Georgia.

机译:佐治亚州沿海的隔离岛卡布雷塔岛内的地下水动力学实地观测和数值模拟。

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摘要

The demand for knowledge of groundwater resources and nutrient exchange in coastal settings has increased in response to rapid population growth. I present field and numerical results that (1) provide a better understanding of groundwater dynamics during calm weather periods, and (2) investigate the impacts of high energy storms on groundwater properties within Cabretta Island, a barrier island in Georgia. Field and numerical results showed that tidal exchange is the predominant driving force for groundwater flow in the marsh and beach, reaching velocities greater than 10 cm/d and 30 cm/d respectively. Topography along with atmospheric exchange generated flow velocities of 5 cm/d in the upland. Results showed that groundwater flow is downward in shallow marsh mud sediments, horizontal in the confined aquifer below the marsh, downward in the upland, and predominantly horizontal beneath the beach.;In August 2008, Tropical Storm Fay came within 200 kilometers of the study site, bringing a one meter storm surge and 8.5 centimeters of precipitation. Groundwater monitoring data showed that the storm significantly altered hydraulic gradients and increased hydraulic head by 50 centimeters in the marsh and 1 meter in the dunes. Both field and numerical results suggest high energy storms have the potential to drastically change flow directions and salinities from pre-storm conditions, which also directly impacts rates of nutrient transport to coastal ecosystems. Results from this study have implications that suggest the distribution of marsh macrophytes are hydraulically dependent, stratigraphy determines freshwater lens geometry within transgressive barrier islands, and topography of the beach-upland transition has an effect on groundwater salinities within the intertidal zone of a barrier island beach.
机译:随着人口的快速增长,对沿海地区地下水资源和养分交换知识的需求增加了。我提供的田野和数值结果表明:(1)可以更好地了解平静天气期间的地下水动力学,(2)研究高能风暴对格鲁吉亚的障碍岛Cabretta岛内地下水属性的影响。现场和数值结果表明,潮汐交换是沼泽和海滩中地下水流动的主要驱动力,分别达到大于10 cm / d和30 cm / d的速度。地形和大气交换在山地产生的流速为5 cm / d。结果表明,浅层沼泽泥沙沉积物中的地下水流向下,在沼泽以下的承压含水层中水平,在高地向下,在海滩下方主要水平; 2008年8月,热带风暴Fay进入了研究地点200公里以内带来一米的风暴潮和8.5厘米的降水。地下水监测数据表明,暴风雨显着改变了水力梯度,使沼泽地的水力头增加了50厘米,沙丘的水头增加了1米。现场和数值结果均表明,高能风暴有可能极大地改变暴风雨前的流向和盐度,这也直接影响了养分向沿海生态系统的输送速度。这项研究的结果表明,沼泽大型植物的分布与水力有关,地层学决定了海侵性障碍岛内的淡水透镜的几何形状,而海滩-高地过渡的地形对障碍岛海滩潮间带内的地下水盐度有影响。 。

著录项

  • 作者

    Anderson, Joseph.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Geology.;Hydrology.
  • 学位 M.S.
  • 年度 2010
  • 页码 67 p.
  • 总页数 67
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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