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首页> 外文期刊>Advances in Meteorology >Changes in Different Classes of Precipitation and the Impacts on Sediment Yield in the Hekouzhen-Longmen Region of the Yellow River Basin, China
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Changes in Different Classes of Precipitation and the Impacts on Sediment Yield in the Hekouzhen-Longmen Region of the Yellow River Basin, China

机译:中国黄河流域河口镇龙门地区不同类别的降水和对沉积物产量的影响

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摘要

The sediment yield of the Yellow River Basin has obviously decreased since the 1980s, and the impacts of precipitation on sediment yield changes have become increasingly important with the global climate change. The spatial and temporal variations in annual precipitation and different classes of precipitation in the Hekouzhen-Longmen region (HLR) in the middle reaches of the Yellow River Basin were investigated using data collected from 301 rainfall stations from 1966 to 2016. The impacts of precipitation variation on sediment yield were evaluated, and the hydrological modeling method was used to quantitatively assess the attribution of precipitation and other factors to sediment yield changes in the HLR. The results show that the annual precipitation and P10 increased from the northwest to the southeast of the HLR, suggesting it was drier in the northwest region of the HLR. P25 and P50 were mainly concentrated in the northwestern and southwestern parts of the HLR, reflecting that heavy rain was more likely to occur in these regions of the HLR. All of the annual precipitation and different classes of precipitation had no significant changing trends from 1966 to 2016, and the relationship between rainfall and sediment yield obviously changed in 2006. Compared with the average annual mean values from 1966 to 2016, both the annual precipitation and the different classes of precipitation were higher in the HLR during 2007-2016. The sediment yield decrease during 1990-1999 was mainly influenced by precipitation, while other factors were the main driving factor for the sediment yield decrease in the periods of 1980-1989, 2000-2009, and 2010-2016, and other factors have become the dominant driving factors of the sediment yield change in the HLR since 2000.
机译:自20世纪80年代自20世纪80年代以来,黄河流域的沉积物显然下降,随着全球气候变化,降水对沉积物收益率的影响变得越来越重要。使用从1966年到2016年的301个降雨站收集的数据调查了黄河流域中游的年到距离黄河流域中游的年度降水量和不同类别的降水量。降水变化的影响评估沉积物产量,使用水文建模方法定量评估沉积物和其他因素对HLR的沉积物的变化。结果表明,年降水量和P10从西北部到HLR东南部增加,建议在HLR的西北地区干燥。 P25和P50主要集中在HLR的西北部和西南部,反映了大雨在HLR的这些区域中更有可能发生。从1966年到2016年的每年降水和不同类别的降水没有显着变化的趋势,2006年降雨量和沉积物收益率之间的关系显然发生了变化。与1966年至2016年的平均年平均值相比,年降水量和在2007 - 2016年期间,HLR的不同沉淀类别较高。 1990-1999期间的沉积物产量下降主要受降水的影响,而其他因素是沉积物收益率为1980-1989,2000-2009和2010-2016的主要驱动因素,而其他因素已成为自2000年以来,HLR沉积物收益率变化的主导驾驶因素。

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  • 来源
    《Advances in Meteorology 》 |2018年第3期| 共15页
  • 作者单位

    Yellow River Institute of Hydraulic Research Yellow River Conservancy Commission Zhengzhou 450003 China;

    Yellow River Conservancy Commission Zhengzhou 450003 China;

    Hydrology Bureau of Yellow River Conservancy Commission Zhengzhou 450004 China;

    School of Water Conservancy North China University of Water Resources and Electric Power Zhengzhou 450045 China;

    Key Laboratory of Watershed Geographic Sciences Nanjing Institute of Geography and Limnology Chinese Academy of Sciences Nanjing 210008 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学) ;
  • 关键词

    Changes; Different; Classes;

    机译:变化;不同;课程;

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