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Experimental investigations on discrepancy in consolidation degrees with deformation and pore pressure variations of natural clays

机译:天然黏土固结度随变形和孔隙压力变化的差异试验研究

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Degrees of consolidation can be determined by two different methods using deformation and excess pore pressure variations for reconstituted and natural clays in laboratory tests and engineering practice. Theoretically, the relationship between the degrees of consolidation determined using the two methods should be unique. However, this study finds the experimental results from fifteen one-dimensional incremental load consolidation tests on five kinds of natural clays deviated from the theoretical line. The experimental relationships correlating the degrees of consolidation determined by the two methods are also found not unique, instead, consisting of a cluster of curves depending on different step stress increments. Two key causes are found to be responsible for the substantial discrepancy between experimental and theoretical results: (1) the nonlinear development of deformation during the dissipation of excess pore pressure; (2) the degree of consolidation determined by excess pore pressure measurements lower than 100% when the degree of consolidation determined based on the deformation-time curve becomes 100%. It is also found that the experimental relationships correlating the degrees of consolidation determined by the two methods are significantly affected by the values of degree of consolidation with excess pore pressure dissipation at 100% of consolidation degree with deformation observations.
机译:固结度可以通过两种不同的方法来确定,即在实验室测试和工程实践中使用变形和天然粘土的变形和过大的孔隙压力变化来确定固结度。从理论上讲,使用两种方法确定的固结度之间的关系应该是唯一的。然而,本研究发现了从15种一维增量荷载固结测试中对偏离理论线的5种天然粘土的实验结果。还发现与通过两种方法确定的固结度相关的实验关系不是唯一的,而是由取决于不同阶跃应力增量的一组曲线组成。发现两个主要原因是造成实验结果与理论结果之间实质性差异的原因:(1)多余孔隙压力消散过程中变形的非线性发展; (2)当基于变形时间曲线确定的固结度变为100%时,由多余的孔隙压力测量值确定的固结度低于100%。还发现,与两种方法确定的固结度相关的实验关系受固结度值与变形观测值在固结度为100%时过大孔压耗散的显着影响。

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