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Relationship Between Watershed Landscape Pattern Change and Runoff-Sediment in Wind-Water Erosion Crisscross Region

机译:风水侵蚀交错区流域景观格局变化与径流泥沙的关系

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摘要

This paper selected the typical wind-water erosion crisscross region Xiliugou watershed for research to reveal the impact of the landscape pattern change of the underlying surface in wind-water erosion crisscross region where soil erosion is most serious on rainfall and runoff as well as erosion and sediment.Based on the Landsat TM image data and measured data of runoff-sediment in that watershed,the paper analyzed the characteristics of watershed landscape pattern change and runoff-sediment and explored the relationship between landscape index and runoff-sediment yield by means of GIS and Fragstats.The results were included as follows.(1)Grassland was the dominant landscape.In terms of the number of patches and area change rate,from 1985 to 2010,cultivated land,forest land and construction land were most stable,followed by unused land.Unused land,grassland and cultivated land experienced the most dramatic conversion and maximally affected by human activities.(2)The inter-annual difference between annual runoff and annual sediment load was significant.Compared with the annual sediment load,the trend of decreasing runoff was more obvious.The correlation coefficient of runoff-sediment was 0.67,representing a significant correlation.(3)There was a significant correlation between the landscape index and runoff-sediment.The runoff was negatively correlated with the largest patch index,patch cohesion index,aggregation index and contagion index,but positively correlated with landscape morphology index and landscape division index.And the sediment was negatively correlated with the contagion index,aggregation index and plaque cohesion index,but positively correlated with other landscape indexes.The results indicate that with the increase of the largest patch index,patch cohesion index and aggregation index,the rainfall infiltration capacity increase obviously and the soil erosion reduce significantly.Therefore,increasing the largest patch index,patch cohesion and aggregation index of the watershed landscape can enhance the function of water storage and soil conservation as well as ecological optimization in the windwater erosion crisscross region.The results can provide theoretical support for the ecological environment construction and comprehensive utilization of water and soil resources.
机译:本文选择典型的风水侵蚀交错带西柳沟流域进行研究,以揭示土壤侵蚀对降雨和径流以及侵蚀和侵蚀最严重的风水侵蚀交错带下垫面景观格局变化的影响。基于该流域的Landsat TM影像数据和径流泥沙实测数据,分析了流域景观格局变化和径流泥沙的特征,并利用GIS探讨了景观指数与径流泥沙量之间的关系。研究结果如下:(1)草原为优势景观。从斑块数量和面积变化率来看,1985年至2010年,耕地,林地和建设用地最稳定,其次为未使用的土地。未使用的土地,草地和耕地的转化最为剧烈,并且受到人类活动的影响最大。(2)年径流量与年泥沙量之间的相关性显着。与年泥沙量相比,径流量减少的趋势更为明显。径流泥沙的相关系数为0.67,具有显着的相关性。(3)存在显着的相关性。径流与最大斑块指数,斑块内聚指数,聚集度指数和传染指数呈负相关,而与景观形态指数和景观划分指数呈负相关。沉积物与径流沉积物呈负相关。结果表明,随着最大斑块指数,斑块凝聚指数和聚集指数的增加,降雨入渗能力明显增加,土壤侵蚀明显减少。因此,增加了最大的补丁索引,补丁内聚和聚集流域景观指数n可以增强风蚀交错带的蓄水保水功能和生态优化功能,为生态环境建设和水土资源的综合利用提供理论依据。

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  • 来源
    《景观研究:英文版》 |2017年第005期|P.53-58|共6页
  • 作者单位

    Key Laboratory of Soil and Water Loss Process and Control on the Loess Plateau of Ministry of Water Resources, Yellow River Institute of Hydraulic Research;

    Key Laboratory of Ecological Water Conservancy Project in Northwest China, Xi’an University of Technology;

    Hydrological Bureau of Yellow River Conservancy Commission;

    Key Laboratory of Soil and Water Loss Process and Control on the Loess Plateau of Ministry of Water Resources, Yellow River Institute of Hydraulic Research;

    Key Laboratory of Ecological Water Conservancy Project in Northwest China, Xi’an University of Technology;

    Hydrological Bureau of Yellow River Conservancy Commission;

    Key Laboratory of Soil and Water Loss Process and Control on the Loess Plateau of Ministry of Water Resources, Yellow River Institute of Hydraulic Research;

    Key Laboratory of Ecological Water Conservancy Project in Northwest China, Xi’an University of Technology;

    Hydrological Bureau of Yellow River Conservancy Commission;

    Key Laboratory of Soil and Water Loss Process and Control on the Loess Plateau of Ministry of Water Resources, Yellow River Institute of Hydraulic Research;

    Key Laboratory of Ecological Water Conservancy Project in Northwest China, Xi’an University of Technology;

    Hydrological Bureau of Yellow River Conservancy Commission;

    Key Laboratory of Soil and Water Loss Process and Control on the Loess Plateau of Ministry of Water Resources, Yellow River Institute of Hydraulic Research;

    Key Laboratory of Ecological Water Conservancy Project in Northwest China, Xi’an University of Technology;

    Hydrological Bureau of Yellow River Conservancy Commission;

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  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 水文分析与计算;
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