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Effect of soil variability on the bearing capacity of clay and in slope stability problems

机译:土壤变化对黏土承载力和边坡稳定性问题的影响

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摘要

Site-specific geotechnical data are always random and variable in space. In the present study, a procedure for quantifying the variability in geotechnical characterization and design parameters is discussed using the site-specific cone tip resistance data (q_c) obtained from static cone penetration test (SCPT). The parameters for the spatial variability modeling of geotechnical parameters i.e. (i) existing trend function in the in situ q_c data; (ii) second moment statistics i.e. analysis of mean, variance, and auto-correlation structure of the soil strength and stiffness parameters; and (iii) inputs from the spatial correlation analysis, are utilized in the numerical modeling procedures using the finite difference numerical code FLAC 5.0. The influence of consideration of spatially variable soil parameters on the reliability-based geotechnical deign is studied for the two cases i.e. (a) bearing capacity analysis of a shallow foundation resting on a clayey soil, and (b) analysis of stability and deformation pattern of a cohesive-frictional soil slope. The study highlights the procedure for conducting a site-specific study using field test data such as SCPT in geotechnical analysis and demonstrates that a few additional computations involving soil variability provide a better insight into the role of variability in designs.
机译:特定于站点的岩土数据在空间上总是随机且可变的。在本研究中,使用从静态圆锥体渗透试验(SCPT)获得的特定于现场的圆锥体顶头阻力数据(q_c),讨论了量化岩土特征和设计参数变异性的程序。用于岩土参数空间变异性建模的参数,即(i)原位q_c数据中现有的趋势函数; (ii)二阶矩统计,即土壤强度和刚度参数的均值,方差和自相关结构的分析; (iii)来自空间相关性分析的输入,将在使用有限差分数字代码FLAC 5.0的数字建模过程中使用。在以下两种情况下研究了考虑空间可变土壤参数对基于可靠度的岩土设计的影响:(a)基于黏土的浅层基础的承载力分析,以及(b)土体的稳定性和变形模式分析粘性摩擦土坡。这项研究强调了在土力分析中使用SCPT等现场测试数据进行特定地点研究的程序,并证明了一些涉及土壤变异性的额外计算,可以更好地了解变异性在设计中的作用。

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