首页> 外文学位 >Linking river, floodplain, and vadose zone hydrology in a coastal wetland impacted by saltwater intrusion: The Loxahatchee River (Florida, USA).
【24h】

Linking river, floodplain, and vadose zone hydrology in a coastal wetland impacted by saltwater intrusion: The Loxahatchee River (Florida, USA).

机译:将受咸水入侵影响的沿海湿地中的河流,洪泛区和渗流带水文联系起来:Loxahatchee河(美国佛罗里达州)。

获取原文
获取原文并翻译 | 示例

摘要

Floodplain forests provide unique ecological structure and function, which are often degraded or lost when watershed hydrology is modified. Restoration of impacted ecosystems requires an understanding of surface water, groundwater, and vadose (unsaturated) zone hydrology in the floodplain. However, finding direct relationships between basic hydrological inputs and floodplain hydrology is hindered by complex interactions between surface water, groundwater, and atmospheric fluxes in a variably saturated matrix with heterogeneous soils, vegetation, and topography. Soil moisture and porewater salinity are of particular importance for seed germination and seedling survival in systems impacted by saltwater intrusion, but are difficult to monitor and often overlooked. This study contributes to the understanding of floodplain hydrology in one of the last bald cypress (Taxodium distichum [L.] Rich.) floodplain swamps in southeast Florida (USA) by investigating hydrology in the floodplain of the Loxahatchee River, where reduced freshwater flow has led to inadequate hydroperiod and saltwater intrusion into historically freshwater wetlands.;Twenty-four dielectric probes measuring soil moisture and porewater salinity every 30 minutes were installed along two transects---one in an upstream, freshwater location; the other in a downstream tidal area. Data collected over four years quantified the spatial variability and temporal dynamics of vadose zone hydrology, showed that soil moisture can be closely predicted based on river stage and topographic elevation, and helped to explain observed vegetation patterns. Groundwater elevation and salinity were measured in a network of twelve wells along a gradient from fresh to saline conditions. Dynamic Factor Analysis (DFA), a time series dimension reduction technique, was used to model temporal variation in groundwater and soil moisture datasets as linear combinations of common trends (which represent unexplained common variability) and appropriate explanatory variables. The resulting dynamic factor models (DFMs) were useful for assessing the effects of ecosystem restoration and management scenarios on floodplain hydrology. These relationships were coupled with ecological performance measures to predict floodplain vegetation dynamics using a spatially distributed ecohydrological model. This study offers a methodological and analytical framework for floodplain monitoring in locations where restoration success depends on vadose zone hydrology and provides relationships for evaluating proposed management scenarios for the Loxahatchee River.
机译:洪泛区森林提供独特的生态结构和功能,而流域水文学被修改后通常会退化或丧失。恢复受影响的生态系统需要了解洪泛区的地表水,地下水和渗流(不饱和)带水文。但是,由于地表水,地下水和具有不同土壤,植被和地形的可变饱和矩阵中的大气通量之间的复杂相互作用,阻碍了基本水文输入与洪泛区水文之间直接关系的发现。在受盐水入侵影响的系统中,土壤水分和孔隙水盐度对于种子发芽和幼苗存活尤为重要,但难以监测且经常被忽视。这项研究通过调查Loxahatchee河泛滥平原的水文学,有助于了解佛罗里达州东南部最后一个秃柏(Taxodium distichum [L.] Rich。)漫滩沼泽中的漫滩水文学。沿历史上的淡水湿地没有足够的水文期和盐水入侵。每24分钟测量24个介电探针,沿着两个样条线测量土壤湿度和孔隙水盐度-一个在上游淡水位置。另一个在下游潮汐区。四年来收集的数据量化了渗流带水文学的空间变异性和时间动态,表明可以根据河段和地形高程来精确预测土壤水分,并有助于解释观测到的植被格局。在十二口井的网络中,沿从淡水到盐分的梯度,测量了地下水的高度和盐度。动态因子分析(DFA)是一种时间序列降维技术,用于对地下水和土壤水分数据集中的时间变化建模为共同趋势(代表无法解释的共同变异)和适当解释变量的线性组合。由此产生的动态因子模型(DFM)可用于评估生态系统恢复和管理方案对洪泛区水文学的影响。这些关系与生态性能指标结合在一起,使用空间分布的生态水文模型预测洪泛区植被动态。这项研究为恢复成功取决于渗流区水文学的地区的洪泛区监测提供了方法学和分析框架,并为评估Loxahatchee河的拟议管理方案提供了关系。

著录项

  • 作者

    Kaplan, David Andrew.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 Hydrology.;Water Resource Management.;Natural Resource Management.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 388 p.
  • 总页数 388
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:16

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