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地质通报  2008 

突发地质灾害预测评价概论

Keywords: 地质灾害,危险性评价,易损性,风险评估

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Abstract:

为了分析阐明突发地质灾害预测评价领域的一些模糊问题,探索预测评价的技术指南,试图将国际上滑坡风险评估管理的理论技术与国内突发地质灾害预测评价相结合,在概要分析突发地质灾害空间预测评价的基本理念、结构层次和核心内容的基础上,重点研究突发地质灾害预测评价工作流程:强调基础性资料调查编录工作的重要性,提倡基础工作质量分级,初步提出基础资料详细程度分级依据;强调定性分析与定量统计、模拟计算评估相结合,提倡实用性技术方法和GIS技术的推广应用,初步提出地质灾害易发性、危险性和风险评估区划的基本原则、实用方法和等级划分标准。最后,简要讨论突发地质灾害预测评价的4个主要难点问题,提出定性分析与相对定量相结合的解决问题的途径,为突发地质灾害预测评价体系的建设和技术指南的编制奠定基础。

References

[1]  殷跃平.长江三峡库区移民迁建新址重大地质灾害及防治研究[M].北京:地质出版社,2004.
[2]  刘传正 刘艳辉 温铭生 等.长江三峡库区地质灾害成困与评价研究[M].北京:地质出版社,2007.51-133.
[3]  刘传正 温铭生 唐灿.中国地质灾害气象预警初步研究[J].地质通报,2004,(4):.
[4]  黄润秋 许强 戚国庆.降雨及水库诱发滑坡的评价与预测[M].北京:科学出版社,2007.35-88.
[5]  吴树仁 董诚 石菊松 张永双 韩金良 何锋.地质灾害信息系统研究――以重庆市丰都县为例[J].第四纪研究,2003,23(6):683-691.
[6]  吴树仁 张永双 石菊松 等.三峡库区重庆市丰都县滑坡灾害危险性评价[J].地质通报,2007(5):573-579.
[7]  石菊松 张永双 董诚等.基于GIS技术的巴东新城区滑坡灾害危险性区划[J].地球学报,2005,26(3):275-282.
[8]  吴树仁 石菊松 张永双 等.滑坡宏观机理研究-以三峡库区为例[J].地质通报,2006,25(7):874-879.
[9]  高克昌 崔鹏 赵纯勇 等.基于地理信息系统和信息量模型的滑坡危险性评价-以重庆万州为例[J].岩石力学与工程学报,2006,25(5):991-996.
[10]  曾忠平 付小林 刘雪梅 等.G1S支持下滑坡斜坡类型定量化及制图研究[J].地理与地理信息科学,2006,22(1):22-25.
[11]  Fell R H K, Lacasse S, Leroi E. A framework for landslide risk assessment and management[M]//Proceedings of the International Conference on Landslide Risk Management. Vancouver, Canada, 2005: 3-25.
[12]  Cascini L, Bonnard Ch, Corominas J, et al. Landslide hazard and risk zoning for urban planning and development[M]//Proceedings of the International Conference on Landslide Risk Management. Vancouver, Canada, 2005: 199-235.
[13]  Farina P, Colombo D, Fumagalli A, et al. Permanent Scatterers for landslide investigations: outcomes from the ESA-SLAM project[J]. Engineering Geology, 2006, 88(3/4): 200-217.
[14]  Paradise T R. Perception of earthquake risk in Agadir, Morocco: A case study from a Muslim community [J]. Global Environmental Change Part B: Environmental Hazards, 2005, 6(3): 167-180.
[15]  Van Westen C J. Landslide hazard and risk zonadon-why is it still so difficult? [J]. Bull. Eng. Geol. Env., 2005, 64: 5-23.
[16]  Metternicht G, Humi L, Gogu R. Remote sensing of landslides: An analysis of the potential contribution to geo-spatial systems for hazard assessment in mountainous environments[J]. Remote Sensing of Environment, 2005, 98(2/3): 284-303.
[17]  Guzzetti F, Reichenbach P, Cardinali M, et al. Probabilistic landslide hazard assessment at the basin scale[J]. Geomorphology, 2005, 72 (1/4): 262-299.
[18]  Guzzetti F, Reichenbach P, Ardizzone F, et al. Estimating the quality of landslide susceptibility models[J]. Geomorphology, 2006, 81 (1/2): 166-184.
[19]  Chaco\\'n J, Irigaray C, Ferna\\' ndez T, et al. Engineering geology maps: landslides and geographical information systems[J]. Bull. Eng. Geol. Environ., 2006, 65:341-411.
[20]  Van Westen C J, Soeters R, Sijmons K. Digital geomorphological landslide hazard mapping of the Alpago area, Italy[J]. International Journal of Applied Earth Observation and Geoinformation, 2000, 2 (1): 51-60.
[21]  Wong H N. Landslide risk assessment for individual facilities[M]// Proceedings of the International Conference on Landslide Risk Management. Vancouver, Canada, 2005: 237-296.
[22]  Dai F C, Lee C F, Ngai Y Y. Landslide risk assessment and management: an overview[J].Engineering Geology, 2002, 64(1): 65-87.
[23]  Nichol J E, Shaker A, Wong M-S. Application of highresolution stereo satellite images to detailed landslide hazard assessment[J]. Geomorphology, 2006, 76(1/2): 68-75.
[24]  WU Shuren, JIN Yimin, ZHANG Yongshuang, et al. Investigations and assessment of the landslide hazards of Fengdu county in the reservoir region of the Three Gorges Project on the Yangtze River [J]. Environmental Geology, 2004,45: 560-566.
[25]  WU Shuren, SHI Ling, WANG Ruijiang, et al. Zonation of the landslides hazards in the forerservoir region of the Three Gorges Project on the Yangtze River[J]. Engineering Geology, 2001, 59: 51-58.
[26]  Australian Geomechanics Society. Landslide risk management [M]. Australian Geomechanics, 2007, 42(1): 13-36.
[27]  黄润秋 许强.斜坡失稳时间的协同预测模型[J].山地研究,:.
[28]  殷跃平 李媛.区域地质灾害趋势预测理论与方法[J].工程地质学报,:.
[29]  丁铭绩 张永波.地理信息系统在滑坡预测预报中的应用[J].山西科技,2002(1):6-48.
[30]  胡新丽 胡新丽.GIS支持的斜坡地质灾害空间预测系统框架设计[J].地质科技情报,2002,21(1):99-103.
[31]  文宝萍.滑坡预测预报研究现状与发展趋势[J].地学前缘,:.
[32]  刘传正 李铁锋 温铭生 王晓朋 杨冰.三峡库区地质灾害空间评价预警研究[J].水文地质工程地质,2004,31(4):9―19.
[33]  吴树仁.突发地质灾害研究某些新进展[J].地质力学学报,2006,12(2):265-273.
[34]  赵建华 陈汉林 杨树锋.滑坡灾害危险性评价模型比较[J].自然灾害学报,2006,15:128-134.
[35]  朱阿兴 裴韬 乔建平 陈永波 周成虎 蔡强国.基于专家知识的滑坡危险性模糊评估方法[J].地理科学进展,2006,25(4):1-12.
[36]  曾忠平 汪华斌 张志 等.地理信息系统/遥感技术支持下三峡库区青干河流域滑坡危险性评价[J].岩石力学与工程学报,2006,25(增刊):677-2684.
[37]  丛威青 潘懋 李铁锋 等.基于GIS的滑坡、泥石流灾害危险性区划关键问题研究[J].地学前缘,2006,13(1):185-190.
[38]  张桂荣 殷坤龙.区域滑坡空间预测方法研究及结果分析[J].岩石力学与工程学报,2005,24(23):4297-4302.
[39]  Huabin W, Gangjun L, Weiya X, et al. GIS-based landslide hazard assessment:an overview[J]. Progress in Physical Geography, 2005, 29 (4): 548-567.
[40]  Ayalew L, Yamagishi H. The application of GIS-based logistic regression for landslide susceptibility mapping in the Kakuda-Yahiko Mountains, Central Japan[J]. Geomorphology, 2005, 65(1/2): 15-31.
[41]  Ayalew L, Yamagishi H, Marui H, et al. Landslides in Sado Island of Japan: Part Ⅱ. GIS-based susceptibility mapping with comparisons of results from two methods and verifications[J]. Engineering Geology, 2(105, 81(4): 432-445.
[42]  吴树仁 石菊松 姚鑫 等.四川汶川地震地质灾害活动强度分析评价[J].地质通报,2008,27(11):1900-1906.

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