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SWAT模型在汤河西支流域水土流失模拟中的应用研究 被引量:1
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作者 吴喜军 《水土保持应用技术》 2016年第1期8-10,共3页
以汤河西支流域为研究区域,引入SWAT模型,模拟汤河西支流域水土流失时空分布,并设定2种气候变化情景模式(气温升高2℃和气温降低2℃),以SWAT模型为模拟平台,定量分析不同气候变化情景模式对流域水土流失的影响。研究结果表明:SWAT模... 以汤河西支流域为研究区域,引入SWAT模型,模拟汤河西支流域水土流失时空分布,并设定2种气候变化情景模式(气温升高2℃和气温降低2℃),以SWAT模型为模拟平台,定量分析不同气候变化情景模式对流域水土流失的影响。研究结果表明:SWAT模型模拟的汤河西支流域2000—2010年输沙量和实测输沙量之间的相对误差小于15%,模拟的月含沙量和实测月含沙量之间的拟合系数达到0.7以上,满足流域水土流失预测精度要求,适用于汤河西支流域水土流失模拟;流域年输沙量分布主要受降雨空间分布的影响,年输沙量为0.6×108~3.5×108t的区域主要在流域东北部;气温升高2℃,流域产沙量减少8.7%,气温降低2℃,流域产沙量增加10.2%,研究成果对于汤河西支流域内水土流失保护和治理规划提供一定的参考价值。 展开更多
关键词 SWAT模型 水土流失预测 不同气候变化模式 产沙量分析 汤河西支流域
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Analysis of the contribution of multiple factors to the recent decrease in discharge and sediment yield in the Yellow River Basin, China 被引量:8
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作者 姚文艺 肖培青 +2 位作者 申震洲 王金花 焦鹏 《Journal of Geographical Sciences》 SCIE CSCD 2016年第9期1289-1304,共16页
The Yellow River basin is well known for its high sediment yield. However, this sediment yield has clearly decreased since the 1980 s, especially after the year 2000. The annual average sediment yield was 1.2 billion ... The Yellow River basin is well known for its high sediment yield. However, this sediment yield has clearly decreased since the 1980 s, especially after the year 2000. The annual average sediment yield was 1.2 billion tons before 2000, but has significantly decreased to 0.3 billion tons over the last 10 years. Changes in discharge and sediment yield for the Yellow River have attracted the attention of both the Central Government and local communities. This study aimed to identify the individual contributions of changes in precipitation and human activities(e.g. water conservancy projects, terracing, silt dams, socio-economic and needs, and soil and water conservation measures) to the decrease in discharge and sediment yield of the Yellow River. The study used both improved the hydrological method and the soil and water conservation method. The study focused on discharge analysis for the upper reaches and the investigation of sediments for the middle reaches of the river. The results showed that discharge and sediment yield have both presented significant decreasing trends over the past 50 years. Precipitation showed an insignificant decreasing trend over the same period. The annual average discharge decreased by 5.68 billion m3 above Lanzhou reach of the Yellow River from 2000 to 2012; human activities(e.g. socio-economic water use) contributed 43.4% of the total reduction, whereas natural factors(e.g. evaporation from lakes, wetlands and reservoirs) accounted for 56.6%. The decrease in annual discharge and sediment yield of the section between Hekouzhen station and Tongguan station were 12.4 billion m3 and 1.24 billion tons, respectively. Human activities contributed 76.5% and 72.2% of the total reduction in discharge and sediment yield, respectively, and were therefore the dominant factors in the changes in discharge and sediment yield of the Yellow River. 展开更多
关键词 human activities soil and water conservation climate change discharge and sediment yield YellowRiver China
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