首页> 外文OA文献 >Investigation of cyclic response in unsaturated soils: Including hydraulic and mechanical hystereses
【2h】

Investigation of cyclic response in unsaturated soils: Including hydraulic and mechanical hystereses

机译:在非饱和土壤中的循环响应研究:包括水力和机械滞后

摘要

Monotonic and cyclic responses of unsaturated soil have been investigated through an extensive program of laboratory testing. Based on the observations made a fully coupled hydro-mechanical flow and deformation model has been presented including hydraulic and mechanical hysteresis, and stress path dependency of the flow rule. In addition, a new mapping rule is proposed to facilitate simulation of complex stress reversals for practical application.The effect of hydraulic hysteresis on the variation of effective stress in unsaturated soils during drying-wetting cycles and in transition from drying to wetting was studied through a novel experimental program. It was shown that upon suction reversal, i.e. from drying to wetting, the effective stress parameter decreased with decreasing suction until it reached a point of minimum, beyond which it increased with reducing suction.The stress increment directionality of plastic flow was investigated through a comprehensive programme of stress probing in which identical samples of clay and clayey sand, with different initial stress history and saturation levels were subjected to stress perturbations in different directions. The results showed that there was a strong stress increment direction dependency of plastic strains. It was also found that suction had no discernible effect on the flow rule provided. The model was presented in an effective stress space.A series of constant water content monotonic and cyclic loading tests were conducted on samples of loose sand with different initial degrees of saturation to examine the effect of suction on the potential of liquefaction/instability in loose granular soils. The results indicate that even with the slightest unsaturation, the potential for instability in loose granular materials is reduced.Baseline experiments were also conducted for a range of controlled suction and constant water content conditions to examine the basic concepts advocated in the constitutive modelling of unsaturated soils and characterise the test materials.In addition to the original laboratory testing program performed, the key theoretical contributions made in the thesis include: a revised model for the effective stress parameter for unsaturated soils including hydraulic hysteresis, a new stress direction dependent flow rule for saturated as well as unsaturated soils, a new mapping rule for cyclic analysis of geo-materials and a fully coupled hydro-mechanical model for cyclic analysis of unsaturated soils.
机译:已通过广泛的实验室测试程序研究了非饱和土壤的单调和循环响应。基于这些观察结果,提出了一种完全耦合的水力-机械流动和变形模型,其中包括水力和机械滞后以及流动规律对应力路径的依赖性。此外,提出了一种新的映射规则,以方便实际应用中模拟复杂的应力反转。研究了水力滞后对非饱和土壤在干湿循环过程中以及从干湿过渡到湿润过程中有效应力变化的影响。新颖的实验程序。结果表明,在吸力反转时,即从干燥到湿润,有效应力参数随着吸力的减小而减小,直到达到最小值为止,超过该值则随着吸力的减小而增大。通过综合研究了塑性流的应力增量方向应力探测程序,其中相同的粘土和黏土砂样品,具有不同的初始应力历程和饱和度,在不同的方向上受到应力扰动。结果表明,塑性应变具有很强的应力增量方向依赖性。还发现吸力对提供的流量规则没有明显的影响。在有效应力空间中建立了模型。对具有不同初始饱和度的松散砂岩样品进行了一系列恒定含水量的单调和循环载荷试验,以研究吸力对松散颗粒液化/失稳潜力的影响。土壤。结果表明即使不饱和度最小,松散颗粒状材料中失稳的可能性也降低了。还针对一定范围内的受控吸力和恒定含水量条件进行了基准试验,以检验非饱和土本构模型中提倡的基本概念除了执行原始的实验室测试程序外,论文的主要理论贡献还包括:修订了包括水力滞后在内的非饱和土有效应力参数的模型,建立了新的应力方向相关的饱和流法则以及非饱和土壤,一个新的映射规则用于土工材料的循环分析和一个完全耦合的水力模型,用于非饱和土壤的循环分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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