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韩元元, 吴 昊.不同土地利用模式情景下贵州印江河流域生态水文响应研究水资源与水工程学报[J].,2015,26(2):129-134
不同土地利用模式情景下贵州印江河流域生态水文响应研究
Research on eco-hydrological response in different land use patterns in Yinjianhe River basin of Guizhou Province
  
DOI:10.11705/j.issn.1672-643X.2015.02.024
中文关键词:  水沙耦合模型  不同土地利用模式情景  生态水文响应  印江河流域
英文关键词:water and sediment coupled model  different scenarios of land use patterns  eco-hydrological response  Yijiang river
基金项目:
作者单位
韩元元, 吴 昊 (贵州省水利水电勘测设计研究院, 贵州 贵阳 550002) 
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中文摘要:
      为定量分析不同土地利用模式情景对贵州印江河流域生态水文的影响,将降雨径流模型(SCS模型)和通用土壤侵蚀方程进行耦合,构建基于栅格的分布式水沙耦合模型,通过设定3种不同土地利用模式情景,定量分析不同土地利用模式情景下的生态水文响应。研究结果表明:构建的水沙耦合模型在研究流域具有较好的模拟精度,径流模拟相对误差均在10%以内,确定性系数0.7以上,泥沙负荷模拟相对误差均在20%以内,确定性系数0.5以上,模型满足水量和泥沙负荷模拟的精度要求;3种土地利用模式情景中,旱地面积增加10%,流域径流深增加11.5%,土壤侵蚀模数增加12.9%;林地和草地面积增加10%,流域径流深分别减少7.5%和6.3%,流域土壤侵蚀模数分别减少14.63%和6.78%,模型研究成果可以为贵州印江河流域生态保护提供参考价值。
英文摘要:
      In order to quantitatively analyzed the effect of different land use patterns on eco-hydrology in the Yinjiang River basin,the paper coupled rainfall-runoff model(SCS model) with universal soil loss equation and Constructed distributed water sediment coupled model based on Grid.Through design three different scenarios of land use,it quantitatively analyzed the effect of different land use patterns. the results show that the coupled model has better simulation accuracy for runoff and sediment,the relative error runoff simulation is less than 10%, and the coefficient of determination is above 0.7, and the relative errors of sediment load simulation is less than 20% and its coefficient of determination above 0.5.The model can meet the accuracy requirements of water and sediment load simulation;under the three kinds of land use pattern scenarios, the dry land area increased by 10%, the runoff increased by 11.5% and soil erosion modulus increased by 12.9%; while the area of wood land and grassland increased by 10 % respectively, the runoff in the basins reduced 7.5% and 6.3%, soil erosion modulus decreased by 14.63% and 6.78%.The result can provide a reference value for ecological protection in the Yinjiang River.
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