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Variation in annual runoff of the Wudinghe River as influenced by climate change and human activity

机译:气候变化和人类活动影响下无定河年径流量变化

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摘要

Response of river runoff to climate change and human activity is an important issue in hydrological sciences. Considering the Wudinghe River, a tributary of the middle Yellow River, a study has been made on the influence of climate change and human activity on annual runoff. Both the measured and natural annual runoffs showed a decreasing trend, and the areas of four types of soil and water conservation measures and water diversion increased. A comparison between the "base-line" period (1956-1971) and the "measure" period indicates that, for the former period, 78.6% and 72.9% of variations in the measured annual runoff and natural runoff respectively can be explained by variation in annual precipitation; but for the latter period, they lowered to 42.5% and 50.2%, indicating that after soil and water conservation measures, the control of precipitation on runoff generation became much weaker. There were close negative correlations between annual runoff and the areas of four types of soil and water conservation measures. Step-wise multiple regression analysis has been performed, and the contributions from water diversion, maximum 30-day cumulative precipitation, maximum 1-day precipitation, annual precipitation and the weighted average of the area of soil and water conservation measures to the variation in annual runoff were calculated as 37.5%, 26.9%, 9.4%, 14.5% and 11.8% respectively.
机译:河流径流对气候变化和人类活动的响应是水文科学中的重要问题。考虑到黄河中游支流无定河,对气候变化和人类活动对年径流量的影响进行了研究。实测年径流量和自然年径流量均呈下降趋势,四种水土保持措施和调水面积增加。 “基准”时期(1956-1971年)和“量度”时期之间的比较表明,对于前一个时期,可以通过变化来解释测得的年径流量和自然径流量分别的78.6%和72.9%的变化。年降水量但在后期,分别降低到42.5%和50.2%,这表明在采取水土保持措施之后,降雨对径流产生的控制变得很弱。年径流量与四种水土保持措施面积之间存在密切的负相关关系。进行了逐步多元回归分析,分水,最大30天累积降水,最大1天降水,年度降水以及水土保持措施面积加权平均值对年度变化的贡献径流分别计算为37.5%,26.9%,9.4%,14.5%和11.8%。

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  • 来源
    《Quaternary International》 |2011年第2期|p.230-237|共8页
  • 作者

    Jiongxin Xu;

  • 作者单位

    Institute of Geographical Sciences and Natural Resources Research, Key Laboratory for Water Cycle and Land Surface Processes, Chinese Academy of Sciences, Beijing 100101, China;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:35:43

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