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成兰铁路两河口至松潘段选线研究 被引量:1

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摘要 成兰铁路两河口至松潘的岷江河谷地段选线,成功运用了高烈度地震山区铁路综合选线原则,主要是线路通过或伴行活动断裂带的选线原则,最大程度地减轻了活动断裂和地震次生灾害对工程的影响,可供类似项目借鉴。
出处 《四川建材》 2012年第3期126-128,共3页 Sichuan Building Materials
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  • 1李忠生.国内外地震滑坡灾害研究综述[J].灾害学,2003,18(4):64-70. 被引量:107
  • 2鲍叶静,高孟潭,姜慧.地震诱发滑坡的概率分析[J].岩石力学与工程学报,2005,24(1):66-70. 被引量:26
  • 3陈运泰.汶川地震何以如此严重[EB/OL].(2008-06-27)[2008-09-23].http://www.sciencenet.cn/htmlnews/2008/6/200862781145413208421.html.
  • 4Keefer, D. K.. Landslides caused by earthquakes [ J ]. Geol. Soc. Am. Bull. 1984,95,406-421.
  • 5Yao Qinglin. Study on earthquake - induced landslide hazards in loess region. M. S Paper at the Geological Institute, SSB, 1986.
  • 6Slonenko, V. P.. Landslides of collapses in seismic zone and other prediction. Bull of IAEG, 1976,15.
  • 7Keefer D V. Statistical analysis of an earthquake - induced land-slide distribution the 1989 Loma Prieta, California event [ J ]. Engineering Geology, 2000, 58,231 - 249.
  • 8Jibson R W, Harp E L, and Michael J A. A method for producing digital probabilistic seismic landslide hazard maps[J]. Engineering Geology, Special Issue, 2000, (58) :3-4.
  • 9Mohammad R. Mahdavifar, Shahryar Solaymani, Mohammad K. Jafari. Landslides triggered by the Avaj, Iran earthquake of June 22, 2002[J]. Engineering Geology, 2006, 86, 166 -182.
  • 10Wang W N, Nakamura H, Tsuchiya S, Chen C C. Distributions of landslides triggered by the Chi - Chi earthquake in Central Taiwan on September 21, 1999[J]. Journal of the Japan Landslide Society, 2002,38(4) :318 - 326.

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  • 1张亨纲,李光辉.宝鸡至成都铁路地质选线及主要工程地质问题[J].铁道工程学报,2005,22(z1):204-209. 被引量:3
  • 2鄢毅.宝成铁路滑坡与降雨关系探讨[J].水文地质工程地质,1993,20(4):14-16. 被引量:16
  • 3周荣军,李勇,Alexander L Densmore,Michael A Ellis,何玉林,王凤林,黎小刚.青藏高原东缘活动构造[J].矿物岩石,2006,26(2):40-51. 被引量:144
  • 4王恭先,王应先,马惠民.滑坡防治100例[M].北京:人民交通出版社,2008.
  • 5唐荣昌,蒋能强,刘盛利. 迭溪7. 5 级地震的地质构造背景及其对发震构造条件的认识[J]. 地震研究,1983,6(3):327-338.
  • 6Katz O, Reichenbach P, Guzzetti F. Rock fall hazard along the railway corridor to Jerusalem, Israel, in the Soreq and Refaim valleys [J]. Natural Hazards, 2010, 56 (3) : 649 -665.
  • 7Bednarik M, Magulovd B, Matys M, et al. Landslide susceptibility assessment of the Kralovany-Liptovsky Mikulas railway case study [Jl. Physics and Chemistry of the Earth, Parts A/B/C, 2010. 35 (3/5) : 162 - 171.
  • 8Lan Heng-xing, Martin C D, Lim C I1. Rockfali analyst: A GIS extension for three-dimenslonal and spatially distributed rockfall hazard modeling [ J]. Computers & Geosciences, 2007, 33 (2) : 262 - 279.
  • 9Keefer D K, Wilson R C. Predicting earthquake-induced landslides, with emphasis on arid and semi-add environments [J]. Landslides in a Semi-Arid Environment, 1989, 2:118 149.
  • 10Chung C F, Fabbri A G. Validation of spatial prediction models for landslide Hazard Mapping [ J]. Natural Hazards, 2003, 30 (3): 451 N472.

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