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Cyclic threshold shear strain in pore water pressure generation in clay in situ samples

机译:粘土原位样品孔隙水压力产生中的循环阈值剪切应变

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摘要

The threshold level of the cyclic shear strain required for pore water pressure generation in clay samples is examined through the results of torsional hollow cylinder cyclic shearing tests according to JGS 0543-2009. The study confirms the previous results, namely, that the threshold cyclic shear strain is dependent on the effective consolidation stress and plasticity index (I-p). The average and standard deviations in the estimated threshold strain levels are 0.038 +/- 0.023% (I-p 30, sigma'(c) = 100 kN/m(2)), 0.047 +/- 0.016% (I-p 30, sigma'(c) 100 kN/m(2)), 0.079 +/- 0.028% (30 = I-p 5 0), and 0.143 +/- 0.041% (I-p = 50). As was found in past research, the levels of threshold strain for pore water pressure generation for clay are larger than those for clean sand. An increase in pore water pressure is only observed when the stiffness is reduced to around 80% of its initial value. This delay occurs because there is a difference between the cyclic threshold strain of the pore water pressure generation, c(tp), and the cyclic threshold strain of the stiffness degradation, c(td). Since the test procedure of JGS 0543-2009 is a standard scheme in the practical design process, it is expected that more data will become available in the near future which will allow for further discussions on threshold strain. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:通过根据JGS 0543-2009的扭转空心圆柱体循环剪切试验的结果,检查了粘土样品中产生孔隙水压力所需的循环剪切应变的阈值水平。该研究证实了先前的结果,即,阈值循环剪切应变取决于有效固结应力和可塑性指数(I-p)。估算的阈值应变水平的平均偏差和标准偏差为0.038 +/- 0.023%(Ip <30,sigma'(c)<= 100 kN / m(2)),0.047 +/- 0.016%(Ip <30, σ(c)> 100 kN / m(2)),0.079 +/- 0.028%(30 <= Ip <5 0)和0.143 +/- 0.041%(Ip> = 50)。正如过去的研究所发现的那样,粘土产生孔隙水压力的阈值应变水平要比干净沙子高。仅当刚度降低到其初始值的80%时,才能观察到孔隙水压力的增加。之所以发生这种延迟,是因为孔隙水压力产生的循环阈值应变c(tp)与刚度降低的循环阈值应变c(td)之间存在差异。由于JGS 0543-2009的测试程序是实际设计过程中的标准方案,因此预计不久的将来将有更多数据可用,这将允许对阈值应变进行进一步的讨论。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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