汶川地震触发平溪村滑坡特征及成因分析
详细信息 本馆镜像全文    |  推荐本文 | | 获取馆网全文
摘要
平溪村滑坡是汶川地震触发的高速岩质滑坡,面积为3.7×104m2,体积约65×104m3。滑坡距离映秀—北川发震断裂带中的石坎断层不足500m,在强大地震力作用下,滑坡滑动面陡峭、粗糙,与重力作用下呈圆弧、平滑的滑面迥异。地震触发的滑坡可分为三个阶段:①震动拉裂阶段;②摩擦阻力降低、"锁固段"剪断阶段;③滑体溃滑,高速流动堆积阶段。然后结合结构面的力学分析,通过数值模拟对地震作用下的应力变化和震裂机制进行了初步分析。
The Pingxi landslide is a highspeed rock landslide located in Pingwu County of Mianyang City.It was triggered by the Wenchuan earthquake.It covers an area of 3.7×104 m2 and its volume is 65×104 m3,the sliding direction is about 340°.This landslide is mainly composed of Cambrian crystalline limestone,with the development of the following two control structural plane: ① N55°-65°W /NE and ② N75°-85°E /SE.The distance between the landslide and the Shikan fault in Yingxiu-Beichuan seismogenic fault is 500 m or less.Different from the smooth and somewhat arcwall slip surface caused by gravity force,the slip surface of landslide triggered by seismic force is steep and rough.The cause of earthquake-landslide can be divided into three stages: ① the stage of shattering cracking,② the stage of friction decrease and "locked section" snipping,and ③ the stage of slope mass sliding-accumulating.Shock cracking occurs within the rockmass,causing the debacle surface to form and interconnect,and constituting the perimeter of slope mass to slide.After the sliding perimeter occurs,"locked section"in the landslide front is snipped sharply,and slope mass slides with high speed along the slip surface.Combining with mechanical analysis of structural plane and using numerical simulation to analyze the stress and earthquake-induced deformation under earthquake are of important significance to the study of earthquake-landslides.
引文
[1]黄润秋.汶川8.0级地震触发崩滑灾害机制及其地质力学模式[J].岩石力学与工程学报,2009,28(6):1239-1249.[HUANG R Q.Mechanism andgeomechanical modes of landslide hazards triggerrd byWenChuan 8.0 earthquake[J].Chinese Journal ofRocks Mechanics and Engineering,2009,28(6):1239-1249.(in Chinese)]
    [2]祁生文,伍法权,刘春玲,等.地震边坡稳定性工程地质分析[J].岩石力学与工程学报,2004,28(6):2792-2797.[QI S W,WU F Q,LIU C L,etal.Engineering geology analysis on stability of slopeunder earthauake[J].Chinese Journal of RocksMechanics and Engineering,2004,28(6):2792-2797.(in Chinese)]
    [3]张振南,葛修润.地震荷载作用下的节理岩体破裂模型[J].岩石力学与工程学报,2005,24(10):1645-1648.[ZHANG Z N,GE X R.Fracture modelof jointed rock mass subjected to seismic loading[J].Chinese Journal of Rocks Mechanics and Engineering,2005,24(10):1645-1648.(in Chinese)]
    [4]张倬元,王士天,王兰生.工程地质分析原理第二版[M].北京:地质出版社,1994:97-99.[ZHANG Z Y,WANG S T,WANG L S.Principles ofengineering geological analysis[M].Beijing:TheGeological Publishing House,1994:97-99.(inChinese)]
    [5]殷跃平.汶川八级地震滑坡高速远程分析[J].工程地质学报,2009,17(2):153-166.[YIN Y P.Rapid and long run-out features of landslides triggeredby the WenChuan earyhquake[J].Journal ofEngineering Geology,2009,17(2):153-166.(inChinese)]
    [6]冯文凯,黄润秋,许强,等.震裂斜坡形成机理及变形破坏模式研究[J].水文地质工程地质,2009,36(6):42-48.[FENG W K,HUANG R Q,XU Q,et al.Study on formation mechanism and deformationfailure models of fhatter slopes[J].Hydrogeology&Engineering Geology,2009,36(6):42-48.(inChinese)]
    [7]胡厚田.高速远程滑坡流体动力学理论的研究[M].成都:西南交通大学出版社,2003:120-123.[HU H T.Research on fluid dynamics theoryofhigh-speed remote landslide[M].Chengdu:SouthwestJiaotong University House,2003:120-123.(inChinese)]

版权所有:© 2023 中国地质图书馆 中国地质调查局地学文献中心