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Shear strength anisotropy of natural London Clay

机译:天然伦敦粘土的剪切力量各向异性

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The paper reports the shear strength anisotropy of the natural, highly overconsolidated, London Clay from Heathrow Terminal 5 as established by comprehensive hollow cylinder apparatus (HCA) testing. Multiple high-quality block samples from 5.2 m and 10.5 m below ground level provided samples for suites of undrained stress-path shear tests performed after consolidation to effective stress states similar to those estimated in situ. The direction of the major principal stress axis, a (or of the principal stress increment, α_(dσ)), and relative magnitude of the intermediate principal stress, b = (σ_2 - σ_3)/ (σ_1-σ_3), were chosen as the controlled stress-related variables and their influence on the peak shear strength was investigated. Strong shear strength anisotropy was proven, and a potential effect of the parameter b was also detected. With b = 0.5, for example, a minimum was noted in peak qlp' at around α = 45-67°, and the maximum value, which was larger by some 40%, developed at α = 0°. A limited set of data obtained with larger test specimens suggested a possibility that loading with α = 90° could also lead to relatively low shear strength. The pre-failure pore water pressure development reflected anisotropy of the deformation characteristics at smaller strains and contributed to the total-stress undrained shear strength anisotropy. Regarding the influence of b, the Mohr-Coulomb failure line passing through the data for b = 0 or 1 provided a lower bound of all the data for a given value of α. The investigation of anisotropy was extended to deeper horizons of the stratum through profiling tests involving triaxial extension and simple shear conditions. Although the results confirmed the general patterns of anisotropy observed at 5.2 and 10.5 m below ground level, the degree of anisotropy appeared to become stronger with depth.
机译:本文报告了由综合空心圆柱装置(HCA)测试建立的自然,高度过度的,伦敦粘土的剪切力量各向异性。在地面5.2米和10.5米以下的多个高质量块样品提供了用于在整合后进行的未推迟应力路径剪切试验的样品,以便与原位估计的有效应力状态相似。选择主要主应力轴的方向,a(或主应力增量,α_(dσ))和中间主应力的相对幅度,b =(σ_2 - σ_3)/(σ_1-σ_3),为研究了受控的应力相关变量及其对峰值剪切强度的影响。已证明强剪力强度各向异性,并且还检测到参数B的潜在效果。例如,具有B = 0.5,在α= 45-67°的峰值QLP'中注意到最小值,并且在α= 0°开发的最大值较大约40%。用较大的试样获得的有限数据数据表明用α= 90°加载的可能性也可能导致相对低的剪切强度。失效前孔隙水压力发育反映了较小菌株的变形特性的各向异性,并有助于总应激不推进的剪切强度各向异性。关于B的影响,通过B = 0或1的数据的MoHR-Coulomb失败线提供了对给定值的所有数据的下限。通过分析涉及三轴延伸和简单剪切条件的分析试验,对各向异性的调查延伸到层的深层视野。虽然结果证实了在5.2和10.5米以下观察到的各向异性的一般模式,各向异性程度似乎与深度变得更强。

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