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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Elastoplastic Simulation of Stress-Strain Response Considering the Cyclic Degradation of Saturated Clay
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Elastoplastic Simulation of Stress-Strain Response Considering the Cyclic Degradation of Saturated Clay

机译:考虑饱和黏土循环退化的应力应变响应弹塑性模拟

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摘要

A modified anisotropic bounding surface model is developed to simulate the stress-strain response of saturated clay under cyclic loading. In this study, kinematic hardening variables are introduced into the equation for a rotational bounding surface, and an anisotropic bounding surface equation is established by strict mathematical derivation from the isotropic and kinematic hardening rules. To characterize the cyclic degeneration behavior of soil stiffness, the accumulated deviatoric plastic strain is incorporated into the plastic modulus interpolation function. This modified model is then validated by comparison to results of undrained cyclic triaxial tests of isotropic and anisotropic consolidated clay samples from the literature. The results show that the performance of the modified model is an improvement over the original model for simulating the hysteresis, accumulation, and cyclic degeneration of stress-strain response.
机译:建立了改进的各向异性边界面模型,以模拟饱和黏土在循环荷载作用下的应力应变响应。在这项研究中,将运动硬化变量引入到旋转边界曲面的方程中,并通过从各向同性和运动硬化规则进行严格的数学推导,建立了各向异性边界曲面方程。为了表征土壤刚度的循环退化行为,将累积的偏向塑性应变纳入塑性模量插值函数。然后,通过与文献中各向同性和各向异性固结黏土样品的不排水循环三轴试验结果进行比较,验证该修改后的模型。结果表明,改进后的模型的性能是对原始模型的改进,用于模拟应力应变响应的滞后,累积和循环退化。

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