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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,不饱和土行为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:过去几十年来一直是密集型和持续的实验努力的时代,这些努力已经确定了我们对不饱和土壤行为的理解的门槛。采用原料吸附,(U_A - U_W)和过量压力在空气压力上,即净正常应力(σ - U_A),作为相关的应力状态变量,促进了对关键特征的调查通过轴翻译技术的不饱和土行为。这项技术的相对成功促使研究人员在学科中投入无数个小时,以微调现有和标准化的土壤测试设备的细节,从而保持其努力扩大其测试能力的焦点。目前的主题讲师的论文总结了在德克萨斯大学在阿灵顿的德克萨斯大学实现的整个吸入的土壤行为的实验模型中的一些最新进展。其主要部分致力于描述测试方案,并分析来自一系列吸入控制的谐振柱,弯曲元件,双轴(平面菌株),真正的三轴(立方体)和环形剪切(大位移)测试程序成功的关键在沙质土壤的压实样品上进行。

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