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Hydrologic Processes and Water Resource Management of Tropical Watersheds: An Interdisciplinary Study in Costa Rica.

机译:热带流域的水文过程和水资源管理:哥斯达黎加的跨学科研究。

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摘要

Effective watershed management is essential to maintain water quality and quantity and to protect drinking water for communities. To effectively manage water resources, managers need to understand local hydrologic processes and the temporal changes that influence these processes. However, local hydrologic processes can be complex, as a combination of many factors influences the hydrology of each watershed. In the tropics, the rainy and dry seasons lead to different hydrologic responses. This study addresses the following research questions: 1) how is spring flow generated? 2) how do stable isotopes inform our understanding of the seasonality in the tropics? and 3) does framing water resource issues in terms of spatial and temporal scales allow for new insights to identify, analyze, and resolve natural resource problems in social ecological systems? Answers to these questions are based on a combination of methodology, including stable isotope analysis, hydrometry, modeling in a microwatershed, and community interviews, to investigate hydrologic processes and watershed management in the Cartago province of Costa Rica.;The microwatershed (<1 km2) was a coffee agroforestry watershed in Aquiares, Cartago, Costa Rica. A dual stable isotope approach of oxygen-18 (delta18O) and deuterium (delta2H) was used to characterize precipitation influences in the watershed and to characterize hydrologic components. The physically based distributed Soil Moisture Routing (SMR) model was used to simulate water balance partitioning and hydrologic processes at the study site. A distinct isotopic seasonality in isotopic response was noted in this region, despite a weak hydrologic seasonality. Subsurface flow contributions were assessed to determine that lateral flow plays an important role in storm flow. The results of the SMR model showed that spring flow is an important contributor to stream flow in the study watershed. Finally, the interdisciplinary approach resulted in a tool to identify issues of scale mis-fit and for analysis of water resource management of springs in Costa Rica.
机译:有效的流域管理对于维持水质和水量以及保护社区饮用水至关重要。为了有效地管理水资源,管理人员需要了解当地的水文过程以及影响这些过程的时间变化。但是,由于许多因素的组合会影响每个流域的水文状况,因此当地的水文过程可能很复杂。在热带地区,雨季和干旱季节导致不同的水文响应。这项研究解决了以下研究问题:1)弹簧流是如何产生的? 2)稳定同位素如何使我们了解热带的季节性? (3)以空间和时间尺度来界定水资源问题是否能为社会生态系统中的自然资源问题的识别,分析和解决提供新的见解?这些问题的答案是基于多种方法的结合,包括稳定同位素分析,水文学,微流域建模和社区访谈,以研究哥斯达黎加卡塔哥省的水文过程和流域管理。;微流域(<1 km2 )是哥斯达黎加卡塔哥(Cartago)阿基亚雷斯(Aquiares)的咖啡农林分水岭。使用氧18(delta18O)和氘(delta2H)的双重稳定同位素方法表征流域中的降水影响并表征水文要素。基于物理的分布式土壤水分路由(SMR)模型用于在研究现场模拟水平衡分配和水文过程。尽管该地区水文季节较弱,但该地区的同位素响应仍具有明显的同位素季节性。评估了地下流量贡献,以确定横向流量在风暴流量中起重要作用。 SMR模型的结果表明,春季水流是研究流域中水流的重要因素。最后,跨学科方法产生了一种工具,该工具可以识别规模不匹配的问题并分析哥斯达黎加温泉的水资源管理。

著录项

  • 作者

    Welsh Unwala, Kristen E.;

  • 作者单位

    University of Idaho.;

  • 授予单位 University of Idaho.;
  • 学科 Water resources management.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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