首页> 外文期刊>Computers and Geotechnics >Anisotropic bounding-surface plasticity model for the cyclic shakedown and degradation of saturated clay
【24h】

Anisotropic bounding-surface plasticity model for the cyclic shakedown and degradation of saturated clay

机译:饱和黏土循环振动和降解的各向异性边界面塑性模型

获取原文
获取原文并翻译 | 示例

摘要

The cyclic behaviours of embedded offshore structures under different cyclic loading levels are related to the cyclic shakedown and degradation of the surrounding soils. In the present study, a damage-dependent bounding-surface model based on a newly proposed hardening rule was developed to predict the cyclic shakedown and degradation of saturated clay and the effect of the initial anisotropic stress state. By extending the Masing's rule to the bounding-surface plasticity theory, the stress reversal point is taken as the generalised homological centre of the bounding surface. With movement of the generalised homological centre, at lower stress amplitudes, the cyclic process ends at a steady state, and cyclic shakedown is reached. At higher stress amplitudes, a damage parameter related to the accumulated deviatoric plastic strain is incorporated into the form of the bounding surface, which is hence able to contract to model degradations in stiffness and strength. To take into account the effects of initial anisotropic conditions on the cyclic behaviour of soils, an initial anisotropic tensor is introduced in the bounding surface. The developed model is validated through undrained isotropic and anisotropic cyclic triaxial tests in normally consolidated and overconsolidated saturated clay under both one-way and two-way loadings. Both cyclic shakedown and degradation are well reproduced by the model, as is the anisotropy effect induced by the initial anisotropic consolidation process.
机译:嵌入式海上结构在不同循环荷载水平下的循环行为与周围土壤的循环沉降和退化有关。在本研究中,基于新提出的硬化规则的损伤相关边界表面模型被开发出来,以预测饱和黏土的循环振动和降解以及初始各向异性应力状态的影响。通过将Masing法则扩展到边界面可塑性理论,将应力反转点作为边界面的广义同源中心。随着广义同源中心的移动,在较低的应力振幅下,循环过程以稳定状态结束,并且达到了循环振动。在较高的应力振幅下,与累积的偏斜塑性应变有关的损伤参数会合并到边界表面的形式中,因此可以收缩以模拟刚度和强度的下降。为了考虑初始各向异性条件对土壤循环行为的影响,在边界表面引入了初始各向异性张量。通过单向和双向荷载下正常固结和超固结的饱和黏土的不排水各向同性和各向异性循环三轴试验验证了开发的模型。该模型很好地再现了循环摇动和退化,以及初始各向异性固结过程引起的各向异性效应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号