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Experimental study of seismic cyclic loading effects on small strain shear modulus of saturated sands

机译:地震循环荷载对饱和砂土小应变剪切模量影响的试验研究

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摘要

The seismic loading on saturated soil deposits induces a decrease in effective stress and a rearrangement of the soil-particle structure, which may both lead to a degradation in undrained stiffness and strength of soils. Only the effective stress influence on small strain shear modulus Gmax is considered in seismic response analysis nowadays, and the cyclic shearing induced fabric changes of the soil-particle structure are neglected. In this paper, undrained cyclic triaxial tests were conducted on saturated sands with the shear wave velocity measured by bender element, to study the influences of seismic loading on Gmax. And Gmax of samples without cyclic loading effects was also investigated for comparison. The test results indicated that Gmax under cyclic loading effects is lower than that without such effects at the same effective stress, and also well correlated with the effective stress variation. Hence it is necessary to reinvestigate the determination of Gmax in seismic response analysis carefully to predict the ground responses during earthquake more reasonably.
机译:饱和土壤沉积物上的地震荷载引起有效应力的减小和土壤颗粒结构的重新排列,这都可能导致不排水的刚度和土壤强度下降。如今,在地震响应分析中只考虑有效应力对小应变剪切模量Gmax的影响,而忽略了循环剪切引起的土-颗粒结构的织物变化。本文对饱和砂土进行了不排水的循环三轴试验,利用弯曲单元测得的剪切波速度,研究了地震荷载对Gmax的影响。并对没有循环加载效应的样品的Gmax进行了比较。试验结果表明,在相同有效应力下,循环荷载作用下的Gmax要低于没有这种作用的情况下的Gmax,并且与有效应力变化也具有很好的相关性。因此,有必要对地震响应分析中Gmax的确定重新进行仔细研究,以更合理地预测地震期间的地面响应。

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