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平缓红砂岩滑坡特征及警示分析
引用本文:袁从华,王荣彪,周健,施伟忠. 平缓红砂岩滑坡特征及警示分析[J]. 岩土力学, 2006, 27(11): 2050-2055
作者姓名:袁从华  王荣彪  周健  施伟忠
作者单位:1.中国科学院武汉岩土力学研究所,武汉430071;2.上海市岩土地质研究院有限公司,上海 200072; 3.湖北沪蓉西高速公路指挥部,湖北 恩施 445000;4.湖北省国土资源厅,武汉 430061
摘    要:通过调查研究朝阳坡平缓泥质粉砂岩滑坡,对其滑坡产生的地质条件、软弱夹层与斜坡和冲沟的关系、软弱夹层的强度指标、裂缝的发展等进行了分析。根据对红砂岩滑坡规律的认识,及时在滑坡发展阶段撤离该地区居民,避免了生命财产的重大损失。平缓红砂岩滑坡的内在因素是软弱夹层及其临空,外在因素是强降雨使其抗剪强度降低。通过实例加深了对滑坡机制的认识,为从事类似滑坡调查和相关工程的科研设计、施工、监理人员提供了参考。

关 键 词:红砂岩  平缓  软弱夹层  滑坡  
文章编号:1000-7598-(2006)11-2050-06
收稿时间:2005-08-30
修稿时间:2005-08-302005-12-08

Landslide features of gentle inclined red sandstones and their alarming analyses
YUAN Cong-hua,WANG Rong-biao,ZHOU Jian,SHI Wei-zhong. Landslide features of gentle inclined red sandstones and their alarming analyses[J]. Rock and Soil Mechanics, 2006, 27(11): 2050-2055
Authors:YUAN Cong-hua  WANG Rong-biao  ZHOU Jian  SHI Wei-zhong
Affiliation:1.Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, China; 2.Shanghai Institute of Geo-technical Engineering, Co. Ltd, Shanghai 200072, China; 3.Hurong West Freeway Construction Headquarter in Hubei Province, Enshi 445000, China; 4.Department of Land and Resources of Hubei Province, Wuhan 430061, China
Abstract:Chaoyang slope is a typical landslide,which is composed of gentle inclined argillaceous sandstone.By investigation of the slope,its engineering geologic conditions,buried weak layers,gullies' relationships,strength parameters and the development of fractures are acquired and analyzed.Based on the knowledge of landslides of red sandstones,residents on it can remove to safety place before the onset of the landslide;and then heavy accident can be avoided.The intrinsic factors of red sandstones' landslides are buried weak layers and the formation of their free faces;and the external course is the decrease of shear strength due to the heavy rainfalls.Chaoyang slope is a good example of landslides;and its analyses should be useful for any workers related to landslides.
Keywords:red sandstone   gentle inclined   buried weak layer   landslide
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