|
|
|
| LANDSLIDE SUSCEPTIBILITY ASSESSMENT BASED ON GIS AND WEIGHTED INFORMATION VALUE:A CASE STUDY OF WANZHOU DISTRICT,THREE GORGES RESERVOIR |
| WANG Jiajia,YIN Kunlong,XIAO Lili |
| (Faculty of Engineering,China University of Geosciences,Wuhan,Hubei 430074,China) |
|
|
|
|
Abstract The susceptibility evaluation was conducted at Wanzhou district where landslide hazard largely occurred in the reservoir region of Three Gorges. Based on the results of the graded state of index factor and the correlation analysis,seven influence factors were chosen to be the evaluation indices including the gradient,the direction and the structure of slope,the stratum lithology,the geological structure,the role of water,and the land use. The frequency curve of landslide and the magnitude curve of information were drawn according to over 700 sample data of landslides. Catastrophe points on the curve were chosen as the critical value to determine the factor states on dividing the entire factors interval,so that to establish the system of susceptibility evaluation. Based on the grid data model of GIS and the method of weighted information value,the susceptibility evaluation was developed. The results show that the high and relatively high susceptibility areas are mainly the construction land,J2s2 and J2s3 stratum,area of reservoir water fluctuation,river net influenced area and urban area of Wanzhou city. The statistical results indicate that the areas with high and relatively high susceptibility taking up 1210 km2 in total are about 9.71% and 25.9% of the entire area under study respectively. The accuracy of the assessment is about 87%. This paper describes the theoretical methods and technical route of landslide hazards susceptibility evaluation in the district. The research provides a technical support for the regional landslide disaster prevention and forecasting and provides a theoretical guidance and technical reference for the nationwide county landslide hazards evaluation.
|
|
Received: 26 May 2013
|
|
|
|
| [1] 殷坤龙,朱良峰. 滑坡灾害空间区划及GIS应用研究[J]. 地学前缘,2001,8(2):279–284.(YIN Kunlong,ZHU Liangfeng. Landslide hazard zonation and application of GIS[J]. Earth Science Frontiers,2001,8(2):279–284.(in Chinese))
[2] 陈燕平. 基于GIS的贵州省滑坡地质灾害易发性多模型综合评价[硕士学位论文][D]. 长沙:中南大学,2010.(CHEN Yanping. GIS based landslide susceptibility assessment of Guizhou province using multi-model comprehensive evaluation[M. S. Thesis][D]. Changsha:Central South University,2010.(in Chinese))
[3] 范林峰,胡瑞林,曾逢春,等. 加权信息量模型在滑坡易发性评价中的应用——以湖北省恩施市为例[J]. 工程地质学报,2012,20(4):508–513.(FAN Linfeng,HU Ruilin,ZENG Fengchun,et al. Application of weighted information value model to landslide susceptibility assessment:a case study of Enshi city,Hubei Province[J]. Journal of Engineering Geology,2012,20(4):508–513.(in Chinese))
[4] LEE S,MIN K. Statistical analysis of landslide susceptibility at Yongin,Korea[J]. Environmental Geology,2001,40(9):1 095– 1 113.
[5] BAEZA C,COROMINAS J. Assessment of shallow landslide susceptibility by means of multivariate statistical techniques[J]. Earth Surface Processes and Landforms,2001,26(12):1 251–1 263.
[6] YESILNACAR E,TOPAL T. Landslide susceptibility mapping:a comparison of logistic regression and neural networks methods in a medium scale study,Hendek region(Turkey)[J]. Engineering Geology,2005,79(3/4):251–266.
[7] 张桂荣,尹坤龙,刘传正,等. 基于GIS的陕西省旬阳地区滑坡灾害危险性区划[J]. 中国地质灾害与防治学报,2003,14(4):42–46.(ZHANG Guirong,YIN Kunlong,LIU Chuanzheng,et al. The hazard zoning of landslide supported by GIS in Xunyang region of Shaanxi province[J]. The Chinese Journal of Geological Hazard and Control,2003,14(4):42–46.(in Chinese))
[8] 褚洪斌,母海东,王金哲. 层次分析法在太行山区地质灾害危险性分区中的应用[J]. 中国地质灾害与防治学报,2003,14(3):128–132.(CHU Hongbin,MU Haidong,WANG Jinzhe. Application of analytic hierarchy process on zoning hazard degree of geologic disaster in Taihang Mountain Region[J]. The Chinese Journal of Geological Hazard and Control,2003,14(3):128–132.(in Chinese))
[9] 许 冲,戴福初,姚 鑫,等. GIS支持下基于层次分析法的汶川地震区滑坡易发性评价[J]. 岩石力学与工程学报,2009,28(增2):3 978–3 985.(XU Chong,DAI Fuchu,YAO Xin,et al. GIS-based landslide susceptibility assessment using analytical hierarchy process in Wenchuan earthquake region[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(Supp.2):3 978–3 985.(in Chinese))
[10] 程温鸣,彭 令,牛瑞卿. 基于粗糙集理论的滑坡易发性评价——以三峡库区秭归县境内为例[J]. 中南大学学报:自然科学版,2013,44(3):1 083–1 090.(CHENG Wenming,PENG Ling,NIU Ruiqing. Landslide susceptibility assessment based on rough set theory:taking Zigui County territory in Three Gorges Reservoir for example[J]. Journal of Central South University:Science and Technology,2013,44(3):1 083–1 090.( in Chinese))
[11] 殷坤龙. 滑坡灾害预测预报[M]. 武汉:中国地质大学出版社,2004:24–26.(YIN Kunlong. Landslide hazard prediction and evaluation[M]. Wuhan:China University of Geosciences Press,2004:24–26.(in Chinese))
[12] 殷坤龙. 三峡库区万州区近水平地层滑坡成因机制与防治工程研究[M]. 武汉:中国地质大学出版社,2007:1–28.(YIN Kunlong. Study on genetic mechanism and control method of Landslides in horizontal bedded in Wanzhou,Three Gorges Reservoir[M]. Wuhan:China University of Geosciences Press,2007:1–28.(in Chinese))
[13] 刘 斌. 基于WEBGIS的滑坡灾害空间预测与系统开发研究——以三峡坝区至巴东段为例[博士学位论文][D]. 武汉:中国地质大学,2009.(LIU Bin. Zonation of landslide hazard and its system programming based on WEBGIS——Taking section from the Three Gorges Dam to Badong Town as an example[Ph. D. Thesis][D]. Wuhan:China University of Geosciences,2009.(in Chinese))
[14] 楚敬龙,杜加强,滕彦国,等. 基于GIS的重庆市万州区滑坡灾害危险性评价[J]. 地质通报,2008,27(11):1 875–1 881.(CHU Jinglong,DU Jiaqiang,TENG Yanguo,et al. Landslide hazard evaluation for Wanzhou District,Chongqing City,China,using GIS[J]. Geological Bulletin of China,2008,27(11):1 875–1 881.(in Chinese))
[15] 刘雪梅. 三峡库区万州区地貌特征及滑坡演化过程研究[博士学位论文][D]. 武汉:中国地质大学,2010.(LIU Xuemei. A study on Geomorgraphic Character and Landslide Evolution in Wanzhou City,Three Gorges Reservoir[Ph. D. Thesis][D]. Wuhan:China University of Geosciences,2010.(in Chinese))
[16] TANG C,ZHU J,QI X. Landslide hazard assessment of the 2008 Wenchuan earthquake:a case study in Beichuan area[J]. Canadian Geotechnical Journal,2011,48(1):128–145.
[17] GUZZETTI F,CARRARA A,CARDINALI M,et al. Landslide hazard evaluation:a review of current techniques and their application in a multi-scale study,Central Italy[J]. Geomorphology,1999,31(1/4):181–216.
[18] GORSEVSKI P V,JANKOWSKI P. Discerning landslide susceptibility using rough sets[J]. Computers,Environment and Urban Systems,2008,32(1):53–65.
[19] 彭 令,牛瑞卿,陈丽霞. GIS支持下三峡库区秭归县滑坡灾害空间预测[J]. 地理研究,2010,29(10):1 889–1 898.(PENG Ling,NIU Ruiqing,CHEN Lixia. Landslide hazard spatial prediction in Zigui county of the Three Gorges Reservoir area based on GIS[J]. Geographical Research,2010,29(10):1 889–1 898.(in Chinese))
[20] 王卫东,陈燕平,钟 晟. 应用CF和Logistic回归模型编制滑坡危险性区划图[J]. 中南大学学报:自然科学版,2009,40(4):1 127– 1 133.(WANG Weidong,CHEN Yanping,ZHONG Sheng. Landslides susceptibility mapped with CF and Logistic regression model[J]. Journal of Central South University:Science and Technology,2009,40(4):1 127–1 133.(in Chinese))
[21] 石菊松,石 玲,吴树仁. 利用 GIS 技术开展滑坡制图的技术方法与流程[J]. 地质通报,2008,27(11):1 810–1 821.(SHI Jusong,SHI Ling,WU Shuren. Techniques and procedures of applications of the GIS technique in landslide map making[J]. Geological Bulletin of China,2008,27(11):1 810–1 821.(in Chinese))
[22] 汪华斌,吴树仁,汪微波. 滑坡灾害空间智能预测展望[J]. 地质科技情报,2008,27(2):17–20.(WANG Huabin,WU Shuren,WANG Weibo. A framework for intelligent prediction of landslide hazards[J]. Geological Science and Technology Information,2008,27(2):17–20.(in Chinese)) |
|
|
|