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Water, Climate and Land Use in a Non-Stationary Tectonically-Active Humid Tropical Environment.

机译:非平稳构造活跃的潮湿热带环境中的水,气候和土地利用。

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摘要

In the tropics, ongoing departure from the long-term climate average is more rapid and significant than anywhere on the planet, predicted to reach unprecedented conditions as early as 2020. Moreover, low latitudes harbor the majority of developing nations with limited capital available for monitoring water resources and climate change. As climate change intensifies, the interaction between altered precipitation regimes and modified vegetation and soil associated with expanding agricultural and pastoral land use can reduce the intrinsic resilience of watersheds and the ecosystems and societies they support.;We provide insight into how climate change and land use affect watershed hydrology and channel morphology in the data-poor humid mountain tropics. We identified an expression of geomorphic equilibrium in mountain river channels unique relative to conventional metrics of geomorphic balance derived from temperate and semi-arid regions. Then, using physically based modeling of surface and subsurface hydrology paired with field-based channel measurements, we evaluated the response exhibited by watersheds in tectonically active steep mountain terrain under existing and altered climate and land cover scenarios. Our efforts provide a rapid and inexpensive procedure for deciphering the effects of land use and climate change without need for long-term datasets or a spatially comprehensive description of subsurface heterogeneity, allowing local resource management efforts to broaden to the watershed scale.
机译:在热带地区,与长期气候平均值相比,持续不断的偏离比地球上任何地方都更为迅速和显着,预计最早将在2020年达到空前的条件。此外,低纬度地区容纳着大多数发展中国家,可用于监测的资金有限水资源和气候变化。随着气候变化的加剧,与不断扩大的农牧业土地利用相关的降水体制与改良的植被和土壤之间的相互作用会降低流域及其支持的生态系统和社会的内在抵御能力。;我们提供有关气候变化和土地利用方式的见解影响贫寒山区热带地区的流域水文和河道形态。我们确定了山区河道中地貌平衡的一种表达,相对于从温带和半干旱地区获得的地貌平衡的常规度量而言,它是独特的。然后,使用基于物理的地表和地下水文学模型,并结合基于野外的河道测量,我们评估了在现有气候变化和土地覆盖情景下,构造活动陡峭山地中的分水岭所表现出的响应。我们的工作提供了一种快速而廉价的程序,可用于解释土地利用和气候变化的影响,而无需长期的数据集或地下异质性的空间综合描述,从而使本地资源管理工作得以扩大到分水岭规模。

著录项

  • 作者

    Joyal, Taylor.;

  • 作者单位

    University of Idaho.;

  • 授予单位 University of Idaho.;
  • 学科 Water Resource Management.;Hydrology.;Geomorphology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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