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Small strain stiffness and stiffness degradation curve of Bangkok Clays

机译:曼谷黏土的小应变刚度和刚度退化曲线

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The small strain stiffness and the stiffness degradation curve of soils are required in advanced numerical analyses of geotechnical engineering problems. The shear modulus at small strain (G_(max)) and the reference shear strain parameter (γ_(0.7)) are, for instance, two of the input parameters in a finite element analysis with the hardening soil model with small strain stiffness. The stiffness and strength parameters for the hardening soil model of soft and stiff Bangkok Clays has recently been published (Surarak et al., 2012). This paper is a continuation on the previous study on the stiffness of Bangkok Clay, and focuses on the small strain characteristics. The data are from the Bangkok MRT Blue line project as well as comprehensive studies at Chulalongkorn University and the Asian Institute of Technology. Based on these laboratory and field testing data, the parameters G_(max) and γ_(0.7) can be determined using well-known empirical correlations and the concept of threshold shear strain. Finally, a comparison between the measured data and predictions is made.
机译:在岩土工程问题的高级数值分析中,要求土具有较小的应变刚度和刚度退化曲线。例如,在具有小应变刚度的硬化土模型的有限元分析中,小应变下的剪切模量(G_(max))和参考剪切应变参数(γ_(0.7))是两个输入参数。刚硬的曼谷粘土的硬化土模型的刚度和强度参数最近已经发表(Surarak等,2012)。本文是对曼谷黏土刚度的先前研究的延续,重点是小应变特性。数据来自曼谷捷运蓝线项目以及朱拉隆功大学和亚洲技术学院的综合研究。基于这些实验室和现场测试数据,可以使用众所周知的经验相关性和阈值剪应变的概念来确定参数G_(max)和γ_(0.7)。最后,在测量数据和预测之间进行比较。

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