首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Identification of Priority Areas for Soil and Water Conservation Planning Based on Multi-Criteria Decision Analysis Using Choquet Integral
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Identification of Priority Areas for Soil and Water Conservation Planning Based on Multi-Criteria Decision Analysis Using Choquet Integral

机译:基于Choquet积分的多准则决策分析确定水土保持规划重点区域。

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摘要

Soil erosion risk assessment is an essential foundation for the planning and implementation of soil and water conservation projects. The commonality among existing studies is that they considered different indicators (e.g., rainfall and slope) in order to determine the soil erosion risk; however, the majority of studies in China neglect one important indicator, namely the slope aspect. It is widely accepted that the vegetation and distribution of rainfall differs according to the different slope aspects (such as sunny slope and shady slope) and these attributes will accordingly influence the soil erosion. Thus, existing studies neglecting this indicator cannot reflect the soil erosion well. To address this problem, a flexible soil erosion risk assessment method that supports decision makers in identifying priority areas in soil and water conservation planning was developed in the present study. Firstly, in order to verify the impact of the slope aspect on soil erosion, field investigations were conducted, and its impact on the characteristics of the community in the study area was analyzed. Secondly, six assessment indicators were selected, including slope gradient, precipitation, NDVI, land use, soil texture and slope aspect. Next, a developed multi-criteria decision analysis (MCDA) method based on the Choquet integral was adopted to assess the soil erosion risk. The MCDA method, combining objective data with subjective assessment based on Choquet integral, could solve the weight problem encountered when using the quantitative method. The parameters required can be modified according to the soil erosion types, assessment scales, and data availability. The synergistic and inhibitory effects among the soil erosion parameters were also considered in the assessment. Finally, the soil erosion risk results in the Xinshui River watershed revealed that more attention should be paid to the slope of farmland and grassland during the planning and management of soil and water conservation projects. The methodology used in the current study can support decision makers in planning and implementing soil and water conservation measures in regions with different erosion types.
机译:水土流失风险评估是水土保持项目规划和实施的重要基础。现有研究的共同点是,为了确定土壤侵蚀风险,他们考虑了不同的指标(例如降雨和坡度);但是,中国的大多数研究都忽略了一个重要指标,即坡度方面。人们普遍认为,植被和降雨分布因坡度的不同而有所不同(例如晴天坡和阴坡),这些属性会相应地影响土壤侵蚀。因此,现有研究忽略了该指标不能很好地反映土壤侵蚀。为了解决这个问题,本研究开发了一种灵活的土壤侵蚀风险评估方法,该方法可支持决策者确定水土保持计划的优先领域。首先,为了验证坡度对土壤侵蚀的影响,进行了实地调查,并分析了其对研究区社区特征的影响。其次,选择了六个评价指标,包括坡度,降水,NDVI,土地利用,土壤质地和坡度。接下来,采用了基于Choquet积分的多标准决策分析(MCDA)方法来评估土壤侵蚀风险。 MCDA方法结合客观数据和基于Choquet积分的主观评估,可以解决使用定量方法时遇到的权重问题。可以根据土壤侵蚀类型,评估规模和数据可用性来修改所需的参数。在评估中还考虑了土壤侵蚀参数之间的协同和抑制作用。最后,新水河流域的水土流失风险结果表明,在水土保持工程的规划和管理过程中,应更加重视农田和草地的坡度。当前研究中使用的方法可以支持决策者在具有不同侵蚀类型的地区规划和实施水土保持措施。

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