基于GIS RS与AHP耦合技术的矿山水力侵蚀研究Water-power erosion in mines coupling GIS, RS and AHP model
武强,傅耀军,杨明,沈智慧,董东林,孙占启,白喜庆
WU Qiang 1;FU Yao-jun 1;YANG Ming 1;SHEN Zhi-hui 2;DONG Dong-lin 1;SUN Zhan-qi 2;BAI Xi-qing 2(1.The Key Laboratory of Coal Resources;
摘要(Abstract):
晋陕蒙 (西 )地区的水力侵蚀受控于多种因素。在详尽地分析了影响水力侵蚀的各种因子基础上 ,确定母质类型、植被覆盖、地貌类型、沟壑密度、地形坡度、土地利用类型、矿山开发面积、降雨强度、水土保持、大风强度作为其主控致灾因子。根据遥感 (RS)解译成果 ,应用GIS分别建立了各主控因子的专题层图 ,利用先进的层次分析方法 (AHP) ,确定影响水力侵蚀的各致灾因子的权重系数。通过GIS、RS与AHP耦合技术的应用 ,对各子专题层图进行加权复合叠加 ,利用频率和频数分布直方图 ,确定出水力侵蚀的分区阈值 ,构建水力侵蚀的危险度评价的多源地学信息复合叠加模型 ,并对水力侵蚀危险度进行了分区评价。水力侵蚀模型的建立 ,为水力侵蚀的分区评价与预测提供了理论依据 ,使评价结果更加科学、合理、准确。
The water-power erosion is controlled by several geological factors in Shaanxi Province, the Inner Mongolia Autonomous Region and Shaanxi Province. On basis of analysis of geological factors, dominating factors are selected including soil type, vegetation, landform, ravine, topography slope, soil-using type, mine area, rainfall intensity, water and soil conservation, and wind intensity. The thematic layer of every dominating factor is constructed by GIS and RS interpretation, and weight coefficient of every dominating factor is determined by AHP method. With application of coupling GIS,RS,AHP model, thematic layers are superimposed according to the respective weight and subarea threshold is taken by frequency histogram, finally, coupling model with multi-source geology information is built to assess danger degree of water-power erosion and subarea assessment is carried based on danger degree. The construction of coupling model has laid a solid theory foundation for subarea assessment and forecast and makes it more scientific, rational and quantitative.
关键词(KeyWords):
水力侵蚀;地理信息系统;遥感;层次分析法;专题层
water-power erosion; GIS; RS; AHP; thematic layer
基金项目(Foundation): 教育部跨世纪优秀人才基金 (2 0 0 3- 3);; 教育部青年骨干教师基金 (2 0 0 0 - 6 5 );; 国土资源大调查项目(2 0 0 0 12 30 0 15 2 33)资助
作者(Authors):
武强,傅耀军,杨明,沈智慧,董东林,孙占启,白喜庆
WU Qiang 1;FU Yao-jun 1;YANG Ming 1;SHEN Zhi-hui 2;DONG Dong-lin 1;SUN Zhan-qi 2;BAI Xi-qing 2(1.The Key Laboratory of Coal Resources;
参考文献(References):
- [1] WischmeierWH ,SmithDD .Predictingrainfallerosionlossesfromcorplandeastoftheroockymountains[A].AgriculturalHandbookNo.282[C].AgriculturalResearchService,UnitedStateDepartementofAgriculture,PurdueAgriculturalExperimentStation,1965.
- [2] WischmeierWH ,SmithDD .Predictingrainfallerosionlosses-aguidetoconservationplanningwiththeuniveralsoillossequation(USLE)[A].AgricultureHandbookNo.537[C].UnitedStatesDe partmentofAgriculture,Springfield,USA .1978.
- [3] RenardKG ,etal.Predictingsoilerosionbywater.Aguidetocon servationplanningwiththereviseduniversalsoillossequation(RE SUL)[A].U .S .DepartmentofAgriculture,AgricultureHandbook703[C].USDA ,Washington,D .C .,1992.
- [4] RenardKG ,etal.RUSLErevisited:Status,question,answers,andthefuture[J].JournalofSoilandWaterConversation,1994,49(3):213-220.
- [5] YoderD ,LownJ.TheFutureofRUSLE :Insidethenewreviseduni versalsoillossequation[J].JournalofSoilandWaterConservation,1995,50(5):484-489.
- [6] 周佩.2000年中国水力侵蚀趋势预测与防治对策[A].中国科学院水土保持研究所集刊[C].1988,7:57-71.
- [7] 杨艳生.区域性土壤流失预测方程的初步研究[J].土壤学报,1990,27(1):73-78.
- [8] 谢志仁,肖彬.水力侵蚀区划与评价模型试验—以江苏为例[J].南京师大学报,2002,25(1):12-18.
- [9] 何东劲.水土保持效能影响因子数学模型初探[J].福建林学院学报,1999,19(1):26-29.
- [10] 龚健雅.地理信息系统[M].北京:科学出版社,2001.
- [11] 武强等.基于GIS地质灾害和水资源研究理论与方法[M ].北京:地质出版社,2001.
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- 武强
- 傅耀军
- 杨明
- 沈智慧
- 董东林
- 孙占启
- 白喜庆
WU Qiang 1 - FU Yao-jun 1
- YANG Ming 1
- SHEN Zhi-hui 2
- DONG Dong-lin 1
- SUN Zhan-qi 2
- BAI Xi-qing 2(1.The Key Laboratory of Coal Resources
- 武强
- 傅耀军
- 杨明
- 沈智慧
- 董东林
- 孙占启
- 白喜庆
WU Qiang 1 - FU Yao-jun 1
- YANG Ming 1
- SHEN Zhi-hui 2
- DONG Dong-lin 1
- SUN Zhan-qi 2
- BAI Xi-qing 2(1.The Key Laboratory of Coal Resources