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Evolution of Strain Localization in Variable-Width Three-Dimensional Unsaturated Laboratory-Scale Cut Slopes

机译:可变宽度三维不饱和实验室鳞片切割斜坡应变定位的演变

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摘要

To experimentally validate a recently developed theory for predicting the stability of cut slopes under unsaturated conditions, the authors measured increasing strain localization in unsaturated slope cuts prior to abrupt failure. Cut slope width and moisture content were controlled and varied in a laboratory, and a sliding door that extended the height of the free face of the slope was lowered until the cut slope failed. A particle image velocimetry tool was used to quantify soil displacement in the x-y (horizontal) and x-z (vertical) planes, and strain was calculated from the displacement. Areas of maximum strain localization prior to failure were shown to coincide with the location of the eventual failure plane. Experimental failure heights agreed with the recently developed stability theory for unsaturated cut slopes (within 14.3% relative error) for a range of saturation and cut slope widths. A theoretical threshold for sidewall influence on cut slope failures was also proposed to quantify the relationship between normalized sidewall width and critical height. The proposed relationship was consistent with the cut slope experiment results, and is intended for consideration in future geotechnical experiment design. The experimental data of evolution of strain localization presented herein provide a physical basis from which future numerical models of strain localization can be validated. (C) 2017 American Society of Civil Engineers.
机译:为了通过实验验证最近开发的理论,以预测不饱和条件下切割斜率的稳定性,作者在突然发生故障之前测量了不饱和斜坡切割中的应变定位。在实验室中控制并变化切割斜坡宽度和水分含量,并且延伸斜面自由面高度的滑动门在切割斜率失灵后降低。粒子图像速度仪用于量化X-Y(水平)和X-Z(垂直)平面中的土壤位移,并且从位移计算菌株。故障前的最大应变定位区域被显示与最终失效平面的位置一致。实验失效高度与最近开发的不饱和切口斜坡(相对误差14.3%内)的稳定性理论同意,用于一系列饱和度和切割斜率宽度。还提出了对切割斜率故障的侧壁影响的理论阈值,以量化归一化侧壁宽度和临界高度之间的关系。拟议的关系与削减坡度实验结果一致,旨在考虑未来的岩土实验设计。本文呈现的应变定位演化的实验数据提供了物理基础,从中可以验证应变定位的数值模型。 (c)2017美国土木工程师协会。

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