中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
GIS-based Evaluation on the Fault Motion-Induced Coseismic Landslides

文献类型:期刊论文

作者Ming-Wey HUANG ; Chien-Yuan CHEN ; Tzu-Hsiu WU ; Chi-Ling CHANG ; Sheu-Yien LIU ; Ching-Yun KAO
刊名Journal of Mountain Science
出版日期2012-10
卷号9期号:5页码:601-612
关键词Coseismic landslide GIS Chi-Chi earthquake
通讯作者Chien-Yuan CHEN
英文摘要Earthquake-induced potential landslides are commonly estimated using landslide susceptibility maps. Nevertheless, the fault location is not identified and the ground motion caused by it is unavailable in the map. Thus, potential coseismic landslides for a specific fault motion-induced earthquake could not be predicted using the map. It is meaningful to incorporate the fault location and ground motion characteristics into the landslide predication model. A new method for a specific fault motion-induced coseismic landslide prediction model using GIS (Geographic Information System) is proposed herein. Location of mountain ridges, slope gradients over 45o, PVGA (Peak Vertical Ground Accelerations) exceeded 0.15 g, and PHGA (Peak Horizontal Ground Accelerations) exceeded 0.25 g of slope units were representing locations that initiated landslides during the 1999 Chi-Chi earthquake in Taiwan. These coseismic landslide characteristics were used to identify areas where landslides occurred during Meishan fault motion-induced strong ground motions in Chiayi County in Taiwan. The strong ground motion (over 8 Gal in the database, 1 Gal = 0.01 m/s2, and 1 g = 981 Gal) characteristics were evaluated by the fault length, site distance to the fault, and topography, and their attenuation relations are presented in GIS. The results of the analysis show that coseismic landslide areas could be identified promptly using GIS. The earthquake intensity and focus depth have visible effects on ground motion. The shallower the focus depth, the larger the magnitude increase of the landslides. The GIS-based landslide predication method is valuable combining the geomorphic characteristics and ground motion attenuation relationships for a potential region landslide hazard assessment and in disaster mitigation planning.
收录类别SCI
语种英语
公开日期2013-04-18
源URL[http://192.168.143.20:8080/handle/131551/5132]  
专题成都山地灾害与环境研究所_Journal of Mountain Science _Journal of Mountain Science-2012_Vol9 No.5
推荐引用方式
GB/T 7714
Ming-Wey HUANG,Chien-Yuan CHEN,Tzu-Hsiu WU,et al. GIS-based Evaluation on the Fault Motion-Induced Coseismic Landslides[J]. Journal of Mountain Science,2012,9(5):601-612.
APA Ming-Wey HUANG,Chien-Yuan CHEN,Tzu-Hsiu WU,Chi-Ling CHANG,Sheu-Yien LIU,&Ching-Yun KAO.(2012).GIS-based Evaluation on the Fault Motion-Induced Coseismic Landslides.Journal of Mountain Science,9(5),601-612.
MLA Ming-Wey HUANG,et al."GIS-based Evaluation on the Fault Motion-Induced Coseismic Landslides".Journal of Mountain Science 9.5(2012):601-612.

入库方式: OAI收割

来源:成都山地灾害与环境研究所

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