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Water use efficiency and TN/TP concentrations as indicators for watershed land-use management: A case study in Miyun District, north China

机译:水分利用效率和总氮/总磷浓度作为流域土地利用管理的指标:以华北密云区为例

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摘要

Under dual influences of climate change and human disturbances, it is an important measure for sustainable watershed development to conduct land use planning with considerations of water saving and pollution control. In this research, the following tasks has been accomplished: (1) identifying runoff variations due to the land use changes, (2) investigating concentration variations in total nitrogen (TN) and total phosphorus (TP) in overland flow of different vegetation, (3) based on the rules found by the analyses above, determining the optimal land use demand of water, grass, forest, farm and construction lands through the adoption of multi-objective linear programming and a hydrological model (i.e., MIKE-SHE), (4) taking the relationship between land use changes and hydrological factors at the watershed scale as a corrected input of CLUE-S model to visually allocate land use under three scenarios (i.e., the most optimal situation, adjustment planning after the check point and the government planning for 2020), and further making the detailed crops distribution map for agricultural management with aim of improving water use efficiency and controlling TN/TP concentrations. Thus the “top-down” land use optimal allocation combining the macro scale and the field scale was implemented. The results can provide useful decision alternatives for the land use management of the watershed. Pine, chestnut and walnut were distributed on relatively steep hillside above 400m. Crops like corn, millet and sweet potato were allocated to the flat areas with the slope less than 3° and the altitude below 400m. The combination of CLUE-S model and MIKE-SHE model improved the accuracy of land use demand and specific vegetation distributions for farmers. The “top-down” land use optimal allocation considering both water saving and pollution control would support decision makers with feasible suggestions of optimizing land management at different scales.
机译:在气候变化和人为干扰的双重影响下,进行节水和污染控制的土地利用规划是流域可持续发展的重要措施。在这项研究中,完成了以下任务:(1)查明土地利用变化引起的径流变化;(2)调查不同植被的陆流中总氮(TN)和总磷(TP)的浓度变化,( 3)根据以上分析得出的规则,通过采用多目标线性规划和水文模型(即MIKE-SHE)确定水,草,森林,农田和建设用地的最佳土地利用需求, (4)以流域尺度的土地利用变化与水文因子之间的关系作为CLUE-S模型的修正输入,在三种情况下(即最佳情况,检查点后的调整计划和土地利用变化)直观地分配土地利用。政府计划到2020年),并进一步制作用于农业管理的详细作物分布图,以提高用水效率和控制TN / TP浓度。因此,实现了将宏观尺度和田间尺度相结合的“自上而下”的土地利用最优分配。结果可以为流域的土地利用管理提供有用的决策选择。松树,栗树和核桃树分布在400m以上相对陡峭的山坡上。诸如玉米,谷子和甘薯等农作物被分配到坡度小于3°且海拔低于400m的平坦区域。 CLUE-S模型和MIKE-SHE模型的结合提高了土地利用需求和农民特定植被分布的准确性。同时考虑节水和污染控制的“自上而下”的土地利用优化分配将为决策者提供优化规模不同土地管理的可行建议。

著录项

  • 来源
    《Ecological indicators》 |2018年第9期|239-253|共15页
  • 作者单位

    State Key Laboratory of Water Environment Simulation, Beijing Normal University,Key Laboratory for Water and Sediment Sciences of Ministry of Education, Beijing Normal University,Department of Environmental Science and Engineering, Beijing Technology and Business University;

    State Key Laboratory of Water Environment Simulation, Beijing Normal University,Key Laboratory for Water and Sediment Sciences of Ministry of Education, Beijing Normal University;

    Key Laboratory for Water and Sediment Sciences of Ministry of Education, Beijing Normal University;

    State Key Laboratory of Water Environment Simulation, Beijing Normal University,Key Laboratory for Water and Sediment Sciences of Ministry of Education, Beijing Normal University;

    State Key Laboratory of Water Environment Simulation, Beijing Normal University,Key Laboratory for Water and Sediment Sciences of Ministry of Education, Beijing Normal University;

    State Key Laboratory of Water Environment Simulation, Beijing Normal University,Key Laboratory for Water and Sediment Sciences of Ministry of Education, Beijing Normal University,Beijing Engineering Research Center for Watershed Environmental Restoration and Integrated Ecological Regulation, Beijing Normal University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Land use planning; Water use efficiency; TN/TP pollution mitigation; CLUE-S model; MIKE-SHE model;

    机译:土地利用规划;水利用效率;TN / TP污染缓解;CLUE-S模型;MIKE-SHE模型;

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