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元江—红河界河地区土壤侵蚀研究

张伟华, 赵志芳, 谈树成, 李益敏, 王爱芸

张伟华, 赵志芳, 谈树成, 等. 元江—红河界河地区土壤侵蚀研究[J]. 中国地质调查, 2017, 4(3): 64-69. DOI: 10.19388/j.zgdzdc.2017.03.10
引用本文: 张伟华, 赵志芳, 谈树成, 等. 元江—红河界河地区土壤侵蚀研究[J]. 中国地质调查, 2017, 4(3): 64-69. DOI: 10.19388/j.zgdzdc.2017.03.10
ZHANG Weihua, ZHAO Zhifang, TAN Shucheng, et al. Study on the soil erosion in the Yuanjiang-Honghe boundary river areas[J]. Geological Survey of China, 2017, 4(3): 64-69. DOI: 10.19388/j.zgdzdc.2017.03.10
Citation: ZHANG Weihua, ZHAO Zhifang, TAN Shucheng, et al. Study on the soil erosion in the Yuanjiang-Honghe boundary river areas[J]. Geological Survey of China, 2017, 4(3): 64-69. DOI: 10.19388/j.zgdzdc.2017.03.10

元江—红河界河地区土壤侵蚀研究

基金项目: 中国地质调查局 “全国边海防地区基础地质遥感调查(编号: DD20160076)”和云南省“云岭学者云南大学项目(编号: C6153001)”联合资助
详细信息
    作者简介:

    张伟华(1991—),男,硕士研究生,主要研究方向为遥感基础资源调查。Email:839070317@qq.com。

    通信作者:

    赵志芳(1971—),女,教授,主要从事遥感地质调查、矿产资源遥感监测等工作。Email:371863896@qq.com。

  • 中图分类号: TP79

Study on the soil erosion in the Yuanjiang-Honghe boundary river areas

  • 摘要: 为支撑我国界河地区国土防护工作,以中国、越南交界的元江—红河界河地区为研究区,基于3S技术进行界河地区的土壤侵蚀研究。采用Landsat 8卫星遥感数据,基于水体指数、植被覆盖度、土壤可蚀性及坡度进行土壤侵蚀强度研究,初步建立了界河地区的土壤侵蚀强度遥感评价方法,提出了界河地区国土防护措施与建议。
    Abstract: In order to provide support for the territorial protection of our boundary river areas, the authors has taken the Yuanjiang-Honghe boundary river areas in China and Vietnam border as the study areas, and studied the soil erosion of the study areas by 3S technology in the study areas. Landsat 8 satellite remote sensing data and the soil erosion factors (normalized difference water index, vegetation coverage,soil erodibility and slope) were used to study the intensity of soil erosion. The remote sensing evaluation method about the intensity of soil erosion in the boundary river areas was preliminarily established. And some measures and suggestions for the territorial protection of our boundary river areas were put forward.
  • [1] D Ploey.Erosional systems and perspectives for erosion control in European loess areas[J].Soil Technology Series,1989(1):93-102.
    [2] Pimentel D,Kounang N.Ecology of soil erosion in ecosystems[J].Ecosystems,1998,1(5):416-426.
    [3] Nagle G N,Fahey T J,Lassoie J P.Management of sedimentation in tropical watersheds[J].Environ Manage,1999,23(4):441-452.
    [4] Gobin A,Kirkby M,Govers G.Pan-European soil risk assessment[M]//Francaviglia R.Agricultural Impacts on Soil Erosion and Soil Biodiversity:Developing Indicators for Policy Analysis.Rome:OECD,2003.
    [5] Servenay A,Prat C.Erosion extension of indurated volcanic soils of Mexico by aerial photographs and remote sensing analysis[J].Geoderma,2003,117(3-4):367-375.
    [6] Shrestha D P,Zinck J A,Van R E.Modelling land degradation in the Nepalese Himalaya[J].Catena,2004,57(2):135-156.
    [7] Bakker M M,Govers G,Rounsevell M D A.The crop productivity-erosion relationship:an analysis based on experimental work[J].Catena,2004,57(1):55-76.
    [8] 杨显华,黄洁,田立,等.四川省矿山遥感监测主要成果与进展[J].中国地质调查,2016,3(5):41-47.
    [9] 强建华,于浩.新疆矿山环境遥感监测成果综述[J].中国地质调查,2016,3(5):28-34.
    [10] 薛庆,吴蔚,李名松,等.遥感技术在辽宁省矿山环境监测中的应用[J].中国地质调查,2016,3(5):54-59.
    [11] 安国英,雷英凭,温静,等.广西岩溶石漠化演变趋势及影响因素分析[J].中国地质调查,2016,3(5):67-75.
    [12] 林惠花.典型区域土壤侵蚀的地理学分析——以福建长汀为例[D].福州:福建师范大学,2009.
    [13] 陈万辉,刘良云,张超,等.基于遥感的土壤侵蚀快速监测方法[J].水土保持研究,2005,12(6):8-10.
    [14] 江辉.基于遥感的植被覆盖度估算及其动态研究[D].南昌:南昌大学,2005.
    [15] 唐世浩,朱启疆,周宇宇,等.一种简单的估算植被覆盖度和恢复背景信息的方法[J].中国图象图形学报,2003,8(11):1304-1308.
    [16] Jensen J R.Introductory Digital Image Processing:A Remote Sensing Perspective[M].4th ed Upper Saddle River,NJ,USA:Pearson Prentice Hall,2015.
    [17] 周为峰.基于遥感和GIS的区域土壤侵蚀调查研究[D].北京:中国科学院研究生院(遥感应用研究所),2005.
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出版历程
  • 收稿日期:  2017-03-29
  • 修回日期:  2017-05-01
  • 刊出日期:  2017-06-19

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