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Impact of human activity and climate change on suspended sediment load: the upper Yellow River, China

机译:人类活动和气候变化对悬浮泥沙负荷的影响:中国黄河上游

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Fluvial suspended sediment has multi-fold environmental implications and the study of the variation in suspended sediment load (SSL) of rivers is important both in environmental earth sciences and in river environmental management. Based on data collected for the upper Yellow River of China in the past 50-60 years, the purpose of this study is to elucidate the impact of human activity and climate change on SSL, thereby to provide some knowledge for the improvement of the drainage basin management. The results show that the SSL of the upper Yellow River exhibited a remarkable decreasing trend. A number of reservoirs trapped a considerable amount of sediment, resulting in a reduction in SSL at Toudaoguai station, the most downstream station of the upper Yellow River. The analyses based on Mann-Kendall'U and double-mass plot indicate some turning points, which were caused by the Liujiaxia and Longyangxia Reservoirs, two major reservoirs on the upper Yellow River. The implementation of soil and water conservation measures reduced the runoff coefficient, and therefore, the intensity of soil erosion. The climate change also played a role in reducing sediment yield. The increase in air temperature enhanced the evapo-transpiration and reduced the runoff, by which the SSL decreased. The decreased frequency of sand-dust storms reduced the amount of wind-blown, sand and dust to the river reaches located in desert, also reducing the SSL. Seven influencing variables are selected to describe the changing human activity and climate. As some of the influencing variables are strongly inter-correlated, the principle component regression was used to establish the relationship between SSL and the influencing variables. The squared multiple correlation coefficient is R~2 = 0.823. Some further research is suggested with the minerals and pollutants related with the SSL.
机译:河流悬浮沉积物具有多重环境影响,研究河流悬浮沉积物负荷(SSL)的变化对环境地球科学和河流环境管理都具有重要意义。根据过去50到60年收集的中国黄河上游的数据,本研究的目的是阐明人类活动和气候变化对SSL的影响,从而为流域的改善提供一些知识管理。结果表明,黄河上游的SSL呈现出明显的下降趋势。许多水库捕获了大量的泥沙,导致黄河上游最下游的头岛拐站的SSL减少。基于Mann-Kendall'U和双质量图的分析表明了一些转折点,这些转折点是由黄河上游的两个主要水库刘家峡和龙羊峡水库引起的。水土保持措施的实施降低了径流系数,从而降低了土壤侵蚀的强度。气候变化在减少沉积物产量方面也发挥了作用。空气温度的升高增强了蒸发蒸腾作用并减少了径流,从而使SSL降低了。沙尘暴的频率降低,减少了沙漠河水的风吹,沙尘量,也降低了SSL。选择七个影响变量来描述人类活动和气候的变化。由于某些影响变量之间具有很强的相互关联性,因此使用主成分回归来建立SSL与影响变量之间的关系。乘方相关系数的平方为R〜2 = 0.823。建议对与SSL有关的矿物质和污染物进行进一步研究。

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