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Unsaturated soil-woven geotextile interface strength properties from small-scale pullout and interface tests

机译:小型拉拔和界面测试得出的不饱和土织土工布界面强度特性

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摘要

One main concern related to the performance of unsaturated soils during the construction and service life of earthen structures is loss of matric suction due to the seasonal variations of gravimetric water content (GWC), ground water infiltration and possible development of excess pore water pressure. In addition to reducing the soil shear strength, loss of matric suction as a result of wetting could also reduce the soil-reinforcement interface shear strength in comparison with the as-built value at a lower GWC. This paper presents the results of small-scale pullout and interface tests on a woven geotextile reinforcement material in different marginal soils in order to quantify the difference in the soil-geotextile interface shear strength as a function of GWC for practical applications. A moisture reduction factor [MRF = mu(omega)] is used to account for the reduction in the soil-geotextile interface shear strength as a function of matric suction over a range of GWC values that includes the dry and wet sides of the soil optimum gravimetric water content (GWC(opt)) or optimum moisture content (OMC). It was observed that the interface shear strength of geotextile reinforcement in marginal soils could be significantly lower (e.g. by as much 50%) at only 2% wet of optimum (i.e. OMC+2%) in comparison with OMC-2%, which is assumed to represent the as-built condition.
机译:与非饱和土在土工结构的建造和使用寿命期间的性能有关的一个主要问题是由于重力水含量(GWC)的季节性变化,地下水的渗透以及可能产生的过高孔隙水压力而导致的基质吸力损失。除了降低土壤的抗剪强度外,由于润湿而导致的基质吸力损失也可能与较低的GWC时的竣工值相比降低了土壤-增强界面的抗剪强度。本文介绍了在不同边缘土壤中编织土工织物增强材料的小规模拉拔和界面测试的结果,以便量化土工复合材料界面抗剪强度随GWC的变化,以进行实际应用。水分减少因子[MRF = mu(Ω)]用于说明在包括土壤最优值的干湿两面的一系列GWC值范围内,土壤-土工织物界面抗剪强度随基质吸力的变化情况重量水分含量(GWC(opt))或最佳水分含量(OMC)。观察到,在最佳湿润度仅为2%(即OMC + 2%)的情况下,与OMC-2%相比,土质织物在边缘土壤中的界面抗剪强度可能会大大降低(例如降低50%)。假定代表竣工条件。

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