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Field performance of retaining walls reinforced with woven and nonwoven geotextiles

机译:机织和非织造土工织物加固的挡土墙的现场性能

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This paper presents an evaluation of the performance of two instrumented sections of a geosynthetic-reinforced soil wall, 5.6 m high, constructed using a lateritic fine-grained soil. Two sections with identical layout of a nonwoven and a woven geotextile were monitored for comparison purposes. The unconfined tensile stiffness of the nonwoven geotextile was three times smaller than that of the woven geotextile. This allowed direct evaluation of the effect of soil confinement on geotextile stiffness. Instrumentation was used to measure face displacements, reinforcement displacement and strains, and soil matric suction. Rainfall occurred both during and after construction, which facilitated evaluation of the effect of soil wetting on the walls performance. Ultimate and serviceability limit state analyses were conducted to gain further insight into the performance of the two walls. The results show that the performance of the section reinforced with nonwoven geotextile was equivalent to the one reinforced with woven geotextile, even after the observed reduction in matric suction after rainfall. For both sections, the overall deformations occurred during construction. Negligible deformations were observed during service. Maximum face displacements were measured in the lowest instrumented layer for the nonwoven geotextile section whereas it was in the highest layer for the woven geotextile section. These behaviours of face displacement distributions can be the result of the significant differences in global stiffness of the sections. Design analyses and field performance show that soil confinement has a beneficial effect on the nonwoven geotextile stiffness. The significant contribution of the soil cohesion of the lateritic soil played an important role in the behaviour of the nonwoven geotextile-reinforced wall.
机译:本文介绍了使用土红土细粒土建造的土工合成材料加筋土墙(高5.6 m)的两个仪器部分的性能评估。为了比较的目的,监测了具有相同的非织造布和土工布布局的两个部分。非织造土工布的无侧限拉伸刚度比织造土工布小三倍。这可以直接评估土壤限制对土工织物刚度的影响。仪器用于测量面位移,钢筋位移和应变以及土壤基质吸力。施工期间和施工之后都发生了降雨,这有助于评估土壤润湿对墙体性能的影响。进行了极限状态和可使用性极限状态分析,以进一步了解这两堵墙的性能。结果表明,即使观察到降雨后基质吸力降低,用非织造土工布增强的截面的性能也与用织造土工织物增强的截面的性能相同。对于这两个部分,整体变形都在施工过程中发生。维修期间观察到的变形可忽略不计。在非织造土工布部分的最低仪器层中测量最大表面位移,而在织造土工布部分的最高仪器层中测量最大表面位移。面位移分布的这些行为可能是截面整体刚度显着不同的结果。设计分析和现场性能表明,土壤限制对非织造土工布的刚度有有益的影响。红土土壤黏附力的显着贡献在非织造土工织物增强墙的性能中起着重要作用。

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