...
首页> 外文期刊>River research and applications >HYDROLOGIC ALTERATIONS IN THE WABASH RIVER WATERSHED, USA
【24h】

HYDROLOGIC ALTERATIONS IN THE WABASH RIVER WATERSHED, USA

机译:美国瓦巴斯河流域的水力变化

获取原文
获取原文并翻译 | 示例
           

摘要

Flow alteration of streams from anthropogenic impacts is ubiquitous worldwide. In this paper, we examine flow alteration in a single watershed, the Wabash River and suggest potential impacts on aquatic assemblages. The Indicators of Hydrologic Alteration (IHA) software was used to evaluate hydrological variables generated from daily discharge data of 80 USGS gauging stations, during the past several decades. We used the approach of regressions of hydrological variables against time to identify hydrologic change. An average of 6.9 hydrologic variables (of 33 variables) were significantly altered at each station, and stations with larger watersheds had an increased number of altered variables. A principal components (PC) analysis of altered hydrologic variables resulted in three of four PC axes that were correlated with watershed area. Significant results were: (1) larger streams were more likely to have hydrologic alteration than smaller streams; (2) streams with upstream dams had increased minimum flows for 1-, 3-, 7- and 30-day intervals, decreased maximum flows for 1-, 3-, 7- and 30-day intervals, increased fall rates, decreased summer monthly flows and decreased high pulse counts; (3) the presence of agriculture in upstream watersheds resulted in an increased number of zero flow days, increased low pulse counts and decreased high flows during October and April. No significant differences were detected in hydrologic alteration based on urban land-use of upstream watersheds. Hydrologic alterations in the Wabash River watershed have undoubtedly resulted in ecological degradation. We suggest that changes in assemblages during the past century are linked to these hydrologic alterations.
机译:人为影响造成的水流变化在世界范围内普遍存在。在本文中,我们研究了单一流域沃巴什河的水流变化,并提出了对水生生物群落的潜在影响。在过去的几十年中,使用了水文蚀变指标(IHA)软件来评估由80个USGS计量站的日排放数据产生的水文变量。我们使用水文变量对时间的回归方法来识别水文变化。每个站点平均有6.9个水文变量(共33个变量)发生了显着变化,而流域较大的站点的变化变量数量增加。对变化的水文变量进行主成分(PC)分析后,得出了与流域面积相关的四个PC轴中的三个。重要的结果是:(1)较大的河流比较小的河流更有可能发生水文变化; (2)上游大坝的水流在1天,3天,7天和30天的间隔中增加了最小流量,在1天,3天,7天和30天的间隔中减少了最大流量,跌落率增加了,夏季减少了每月流量和减少的高脉搏计数; (3)上游流域的农业活动导致十月和四月的零流量天数增加,低脉冲数增加和高流量减少。基于上游流域的城市土地利用,在水文变化中未发现显着差异。沃巴什河流域的水文变化无疑导致了生态退化。我们建议,过去一个世纪的组合变化与这些水文变化有关。

著录项

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