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Recent Advances in Experimental Modelling of Unsaturated Soil Behaviour over a Whole Range of Paths and Modes of Deformation

机译:在整个路径和变形模式下非饱和土行为的实验建模的最新进展

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The last few decades have been an era of intensive and sustained experimental efforts that has defined the threshold of our understanding of unsaturated soil behavior. The adoption of matric suction, (u_a - u_w), and the excess of total stress over air pressure, that is, net normal stress, (σ - u_a), as the relevant stress state variables, has facilitated the investigation of key features of unsaturated soil behavior via the axis-translation technique. It is the relative success of this technique that has prompted researchers in the discipline to devote countless hours to fine-tuning myriad details of existing and standardized soil testing devices, and hence keep the focus of their efforts on expanding their testing capabilities. The present Theme Lecturer's paper summarizes some of the most recent advances in experimental modeling of unsaturated soil behavior, over a whole range of suction-controlled paths and modes of deformation, accomplished at the University of Texas at Arlington. Its main sections are devoted to describing the test protocols and analyzing the key results from a series of suction-controlled resonant column, bender elements, biaxial (plane strain), true triaxial (cubical), and ring shear (large displacement) testing programs successfully conducted on compacted samples of sandy soils.
机译:最近几十年是一个密集而持续的实验努力时代,它定义了我们对非饱和土壤行为的理解的门槛。矩阵吸力(u_a-u_w)的采用以及总应力相对于气压的过量值,即净法向应力(σ-u_a),作为相关的应力状态变量,有助于研究以下关键特征通过轴平移技术实现非饱和土的行为。正是这种技术的相对成功促使该领域的研究人员花费了无数的时间来微调现有和标准化土壤测试设备的众多细节,从而使他们的工作重点一直放在扩展测试能力上。本主题演讲者的论文总结了在德克萨斯州阿灵顿大学完成的,在吸力控制的路径和变形模式的整个范围内非饱和土行为的实验建模的一些最新进展。它的主要部分专门描述测试协议,并成功分析了一系列吸力控制共振柱,弯曲元件,双轴(平面应变),真三轴(立方)和环剪切(大位移)测试程序的关键结果在砂土的压实样品上进行。

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