首页> 外文学位 >Seasonal and Flood-Induced Variations in Groundwater-Surface Water Exchange Dynamics in a Shallow Aquifer System: Amity Creek, MN.
【24h】

Seasonal and Flood-Induced Variations in Groundwater-Surface Water Exchange Dynamics in a Shallow Aquifer System: Amity Creek, MN.

机译:浅层含水层系统中地下水和地表水交换动力学的季节性和洪水诱发变化:明尼苏达州阿米蒂溪。

获取原文
获取原文并翻译 | 示例

摘要

Excellent brook trout habitat can be found in segments of many streams on the North Shore of Lake Superior. Optimal riverine brook trout habitat includes clear, cold spring-fed water and studies have shown that areas of groundwater upwelling in streams tend to be more important than other site selection variables. Observations of historical brook trout and temperature data in the Amity Creek sub-watershed of Lake Superior South HUC-8 led us to hypothesize that reaches with healthy and stable brook trout communities are likely connected to groundwater storage, exchange, and upwelling.;Climate trend models for the Midwest predict future changes in temperature, annual precipitation, and storm event frequency for Northern Minnesota. Streams along the North Shore of Lake Superior are susceptible to increased temperatures and insufficient late summer to early winter flows due to climate change and the unique regional geology. Understanding groundwater-surface water hydrology interactions, watershed connectivity, and related flood-induced geomorphic and hydrologic changes is important because they relate to the overall stability and aquatic health of the stream and the biological communities that inhabit it.;The objectives of this study were to identify groundwater storage zones, upwelling zones and seasonal variations; and assess how these relationships change as result of a major flood. A study reach on East Branch Amity Creek is incising through clay-rich glacial tills overlying bedrock and has avulsed multiple times in the past, stranding discrete remnant channels cut into till. A 500-year storm hit Duluth, MN, USA on June 19-20th 2012, producing 8-inches of rain in a 24-hour duration which resulted in flash flooding across the region. Pre-flood and post-flood groundwater and surface water level data were collected through a series of piezometers with pressure transducers and an in-channel stream gage. Stable isotope analyses of Deuterium and Oxygen-18 were conducted on water samples with varying temporal and spatial variability to provide information on watershed and reach scale source hydrology and evaluate flood-induced changes.;Results show groundwater upwelling variability within the greater watershed and identify two discrete groundwater storage zones within a smaller study reach. Pre- and post-flood analyses show a correlation between incision in main stem and remnant channels and a lowered water table, following the flood. Isotope analysis indicates a temporary post-flood change in subsurface source water. Because much of the greater North Shore of Lake Superior has the same geology as the study area, the results of this study may provide insight to hydrology studies of other North Shore streams.
机译:在苏必利尔湖北岸的许多溪流中都可以找到出色的溪鳟鱼栖息地。最佳的河溪鳟鱼栖息地包括清澈的冷泉水,研究表明,溪流中上升的地下水区域比其他选址变量更重要。在南苏必利尔湖南部HUC-8的Amity Creek子流域对小河鳟的历史和温度数据的观察使我们假设,健康稳定的小河鳟群落可能与地下水的储存,交换和上升有关。中西部的模型可以预测明尼苏达州北部的温度,年降水量和风暴事件频率的未来变化。由于气候变化和独特的区域地质,苏必利尔湖北岸的溪流易受温度升高的影响,夏末至冬初的流量不足。了解地下水与地表水文的相互作用,流域的连通性以及洪水引起的地貌和水文变化是很重要的,因为它们与河流及其所居住的生物群落的总体稳定性和水生健康有关。确定地下水储存区,上升流区和季节变化;并评估这些关系在大洪水后如何变化。东分公司Amity Creek的一项研究范围正在穿越覆盖在基岩上的富含粘土的冰川耕作,并且在过去曾多次撕裂,将离散的残余渠道搁置到耕作中。 2012年6月19日至20日,一场500年的暴风雨袭击了美国明尼苏达州的德卢斯,在24小时内产生了8英寸的降雨,导致整个地区发生山洪泛滥。洪水前后的地下水和地表水位数据是通过一系列带有压力传感器和通道内流量计的压力计收集的。对随时间和空间变化而变化的水样本进行了氘和氧18的稳定同位素分析,以提供有关流域的信息并达到规模水源水文并评估洪水引起的变化;结果显示了较大流域内的地下水上升变化并确定了两个研究范围较小的离散地下水存储区。洪水前和洪水后的分析表明,洪水发生后,主茎和残留通道的切口与地下水位降低之间存在相关性。同位素分析表明地下水源水发生了短暂的洪水后变化。由于苏必利尔湖大北岸的大部分地区都与研究区域具有相同的地质状况,因此本研究的结果可能为其他北岸溪流的水文学研究提供见识。

著录项

  • 作者

    Jasperson, Jenny L.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Hydrologic sciences.;Geomorphology.;Climate change.
  • 学位 M.S.
  • 年度 2016
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号