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首页> 外文期刊>Engineering Geology >First-time landslides in Vashon advance glaciolacustrine deposits, Puget Lowland, U.S.A.
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First-time landslides in Vashon advance glaciolacustrine deposits, Puget Lowland, U.S.A.

机译:vashon的首次滑坡前进Gugiolacustrine沉积物,Puget Lowland,U.S.A.

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摘要

Advance glaciolacustrine (Qglv) deposits from the last continental glaciation are widespread in the densely populated Puget Lowland and are prone to shallow landsliding. Much less frequently in historic time, new landslides propagate deeply within intactQglvdeposits. The exceptional volume and highly mobile nature of the 22 March 2014, State Route 530 (Oso) landslide generated considerable uncertainty and public concern about the likelihood for similar deep-seated failures initiating from most any slope where these deposits crop out. The primary study objectives are to utilize geotechnical data from the small data set of available published and public-domain investigations to characterize, in general terms, hydrogeologic, geotechnical and geomorphic factors and their relative contribution to initiating deep-seated landslides within intactQglvdeposits; and to inform future hazard and risk assessments for first-time landslides within these deposits.Qglvdeposits are overconsolidated, very stiff to hard, laminated to massive, silt and clay. Shear strength is anisotropic, with cohesion being a significant component of bedding-parallel strength and friction dominating strength perpendicular to bedding. Hydraulic conductivity is likely also anisotropic. Multi-year records of pore pressures withinQglvdeposits show no to minor seasonal flux; only minor pore pressure responses to multi-day to multi-week episodes of heavy precipitation have been detected. Back analyses using limit-equilibrium methods and peak anisotropic strength under drained conditions demonstrate initial stability of the slopes. Instability occurs near the fully softened strength. We conclude that, over the long term, loss of cohesive strength, rather than hydroclimatic pore pressure response, is the more important contributor to diminishing stability and, in some cases, initiation of first-time landslides inQglvdeposits. The shape and location of the slide surface is strongly influenced by strength anisotropy and stress state. Sliding surfaces developed near the basal contact of theQglvdeposits in all of the five studied landslides. Higher stress states associated with increasing sequence thickness of the landslide masses decrease stability. The length of the basal slide surface, and thus the aspect ratio of the landslide mass, appears to increase proportionally with sequence thickness of the landslide mass.
机译:前一欧式冰川的预先魅力(QGLV)沉积物在密集的Puget低地普及,并且易于浅层滑坡。在历史时期,频繁频繁地,新的山体滑坡在贴心QGLVDeposits内深深地传播。 2014年3月22日,国家航线530(OSO)Landslide的卓越体积和高度移动性质产生了相当大的不确定性和公众关注,关于类似的深层失败从大多数任何坡度发出的类似深度座位失败的可能性。主要研究目标是利用来自可用发布和公共领域调查的小型数据集的岩土数据,以表征,通常,水文地质,岩土性和地貌因素及其相对贡献,以在贴心QGDeposits内启动深层山体滑坡;并告知未来的危险和在这些存款中对首次山体滑坡的危险和风险评估。QGLVDeposits过度巩固,非常坚硬,难以覆盖,层压到巨大的,淤泥和粘土。剪切强度是各向异性的,内聚力是床上用品平行强度和垂直于床上用品的摩擦主导强度的重要组成部分。液压导电性也可能是各向异性的。在近谷群内的孔隙压力的多年记录显示为小季节性通量否;仅检测到对多日期到多周的重度降水剧集的小孔隙压力响应。在排水条件下使用极限平衡方法和峰各向异性强度的回分析表明了斜坡的初始稳定性。不稳定发生在完全软化的强度附近。我们得出结论,从长期来看,粘性强度的丧失,而不是肝胆孔隙压力反应,是稳定性稳定性的更重要的因素,并且在某些情况下,在某些情况下启动INQGLVDeposits的首次山体滑坡。滑动表面的形状和位置受强度各向异性和应力状态的强烈影响。在AQGLVDeposits的所有五个学习山体滑坡中发布的滑动表面。与增加山体积块的序列厚度增加相关的较高的应力状态会降低稳定性。基底滑动表面的长度,因此裂开质量的纵横比似乎与滑坡质量的序列厚度成比例地增加。

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