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Stability analysis of 3D geosynthetic-reinforced earth structures composed of nonhomogeneous cohesive backfills

机译:由非均质粘性回填材料组成的3D土工增强土结构的稳定性分析

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摘要

Soils are assumed to be homogeneous in most designs of geosynthetic-reinforced earth structures (GRESs), thus ignoring the influences of the possible cohesion and cohesion nonhomogeneity of backfills. However, the actual stability of GRESs is directly influenced by the presence of cohesion and cohesion nonhomogeneity of backfills along with the three-dimensional (3D) character of GRESs. In the present study, a chart-based stability analysis of a 3D GRES composed of nonhomogeneous cohesive backfills subjected to the seismic excitation/pore water pressure is conducted by means of the limit analysis method. Work rates by seismic forces and pore water pressure are calculated based on the pseudo-static method and the pore water pressure coefficient, respectively; thereafter the energy balance equation is derived by equating the external work rates of the soil weight and seismic forces/pore water pressure to the sum of the work rate of the geosynthetics and internal energy dissipation caused by soil cohesion. The analytical expression of the required unfactored reinforcement strength is derived and the optimized solutions are consequently captured. A comparison is drawn to verify the present study and a parametric analysis is conducted thereafter to investigate the effects of the 3D character, cohesion nonhomogeneity, seismic excitation and pore water pressure on the stability of GRESs. Finally, a set of stability charts considering the 3D effects, cohesion nonhomogeneity, seismic force and pore water pressure on long-term stability is proposed for preliminary design purposes.
机译:在大多数土工合成材料加筋土结构(GRES)设计中,假定土壤是均质的,因此忽略了回填土可能产生的内聚力和内聚力非均质性的影响。但是,GRES的实际稳定性直接受回填材料的内聚和内聚非均质性以及GRES的三维(3D)特性的影响。在本研究中,通过极限分析方法,对受地震激励/孔隙水压力作用的非均质粘性回填材料组成的3D GRES进行了基于图表的稳定性分析。基于拟静力法和孔隙水压力系数分别计算了地震作用力和孔隙水压力的工作率;此后,通过将土壤重量的外部工作速率和地震力/孔隙水压力等于土工合成材料的工作速率与土壤凝聚力引起的内部能量耗散的总和,得出能量平衡方程。得出了所需的非因数增强强度的解析表达式,并因此获得了优化的解决方案。进行比较以验证本研究,然后进行参数分析以研究3D特征,内聚非均质性,地震激励和孔隙水压力对GRES稳定性的影响。最后,出于初步设计目的,提出了一组考虑3D效应,内聚非均质性,地震力和孔隙水压力对长期稳定性的稳定性图。

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