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首页> 外文期刊>Soils and foundations >FORMULATION OF Gmax FROM RECONSTITUTED CLAYEY SOILS AND ITS APPLICATION TO Gmax MEASURED IN THE FIELD
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FORMULATION OF Gmax FROM RECONSTITUTED CLAYEY SOILS AND ITS APPLICATION TO Gmax MEASURED IN THE FIELD

机译:重构黏土中Gmax的形成及其在实测中的应用

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摘要

References(38) Cited-By(2) The elastic shear modulus of natural sedimentary clay ground, Gmax, is estimated based on laboratory tests for fifteen different reconstituted clays. Two types of tests were performed, i.e., Bender Element and Cyclic Triaxial tests. The proposed formulation is not based on void ratio, e, but consists of only three parameters: wL (liquid limit), p′ (the current mean effective stress) and p′max (the maximum mean consolidation pressure). To apply it to the field, this equation is modified for using σ′v0 (the in situ effective overburden pressure) and OCR, instead of p′ and p′max. Since existing formulae for Gmax are mostly based on e, they are not able to apply to both reconstituted soil and field, without considering the correction factor for structure. This is because e in the field is much larger than that for reconstituted soil even though their consolidation pressures and OCR are the same for these clays. The applicability of the proposed formula was examined by using investigated results from the in-situ seismic surveys performed at eleven worldwide sites. It is well demonstrated that the proposed equation in this paper is capable of predicting Gmax of natural sedimentary clay deposits with higher accuracy than the existing empirical formulae using a function of e.
机译:参考文献(38)(2)天然沉积粘土地面的弹性剪切模量Gmax是根据针对15种不同再生粘土的实验室测试估算得出的。进行了两种类型的测试,即弯曲元件和循环三轴测试。所提出的公式不是基于空隙率e,而是仅由三个参数组成:wL(液体极限),p'(当前平均有效应力)和p'max(最大平均固结压力)。为了将其应用于现场,对该公式进行了修改,以使用σ'v0(现场有效覆盖压力)和OCR代替p'和p'max。由于现有的Gmax公式大部分是基于e的,因此,如果不考虑结构校正因子,它们将无法应用于重构的土壤和田地。这是因为,即使这些粘土的固结压力和OCR相同,田间的e值也比重新配制的土壤大得多。通过使用在全球11个站点进行的现场地震勘测的调查结果,检验了所提议公式的适用性。充分证明,本文提出的方程能够使用e函数预测自然沉积粘土沉积物的Gmax,其精度要高于现有经验公式。

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