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The fluvial geomorphology of the Upper Animas River basin, Colorado.

机译:科罗拉多州上阿尼马斯河流域的河流地貌。

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摘要

Recent research identifies mountain environments as especially important for monitoring environmental changes related to both global climate fluctuations and human activities. This dissertation contributes to the numerous studies on human-Earth relationships and addresses a lack of detailed knowledge of spatial relationships in small mountainous headwater basins. The specific research questions addressed herein include: Are the fluvial processes within the watershed representative of the fluvial forms? Can existing morphology classification schemes predict channel form from collected raw data? How do the sediments within the headwater streams reflect change through space? Data collected in the field from streams within the Upper Animas River basin combined with statistical techniques and the use of geographic information science software allowed for the determination of a basin-scale view of the fluvial forms and processes at work in this small mountain watershed. A multivariate analysis of historical mining effects on fluvial forms revealed a statistically significant relationship between mining activities and channel entrenchment. An investigation of the utility of existing channel classification systems detailed the difficulty of classifying the morphology of headwater streams and suggested that existing schemes should only be used in this basin with caution. Data on the river sediment landscape were calculated and mapped in order to investigate downstream spatial patterns. Analyses determined a weak relationship between channel roughness, sediment size, and sediment shape as compared to drainage area due perhaps to the unique nature of mountain streams and the extreme influence of coupled hillslope-fluvial processes. Overall the rivers of this basin are thought to be in a non-equilibrium state.;Key Words: Fluvial Geomorphology, Mountain Watersheds, Human Impacts.
机译:最近的研究表明,山区环境对于监测与全球气候波动和人类活动有关的环境变化特别重要。这篇论文为众多关于人地关系的研究做出了贡献,并解决了在山区山区水源流域缺乏关于空间关系的详细知识的问题。本文涉及的具体研究问题包括:分水岭内的河流过程是否代表河流形态?现有的形态分类方案可以从收集的原始数据中预测通道形式吗?源头溪流中的沉积物如何反映整个空间的变化?从上阿尼马斯河流域内的河流实地收集的数据,结合统计技术和地理信息科学软件的使用,可以确定在这个小山区流域的河流形态和过程的流域尺度视图。对历史采矿对河流形态的影响的多变量分析显示,采矿活动与渠道纠缠之间存在统计学上的显着关系。对现有河道分类系统的实用性进行的调查详细说明了对源头水流形态进行分类的难度,并建议应仅在该流域中谨慎使用现有方案。计算并绘制了河流沉积物景观数据,以调查下游空间格局。分析确定与流域相比,河道粗糙度,沉积物大小和沉积物形状之间的关系较弱,这可能是由于山streams的独特性质以及山坡-河流耦合过程的极端影响所致。总体而言,该盆地的河流被认为处于非平衡状态。关键词:河流地貌,山区流域,人类影响。

著录项

  • 作者

    Conyers, Mindy M.;

  • 作者单位

    Texas State University - San Marcos.;

  • 授予单位 Texas State University - San Marcos.;
  • 学科 Geography.;Geomorphology.;Hydrology.;Physical Geography.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 265 p.
  • 总页数 265
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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