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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Application of the Simplified Stiffness Method to Design of Reinforced Soil Walls
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Application of the Simplified Stiffness Method to Design of Reinforced Soil Walls

机译:简化刚度法在加筋土墙设计中的应用

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In an earlier paper, the writers proposed modifications to the AASHTO simplified method to address shortcomings in the method and to improve reinforcement load predictions for walls under operational conditions. The new method is called the simplified stiffness method to emphasize the importance of reinforcement stiffness on reinforcement loads rather than strength as in the current AASHTO approach. The method provides a seamless transition for walls built with soil reinforcing elements ranging from inextensible steel to relatively extensible geosynthetics. The accuracy of the new approach is examined statistically and predicted loads are demonstrated to be more accurate than loads computed using the AASHTO simplified method and a log spiral limit equilibrium-based approach. The paper shows how the simplified stiffness method can be applied within a load and resistance factor design (LRFD) framework. To ensure that the reinforced soil zone remains within working stress conditions, a new limit state to address failure of the soil within the reinforced soil zone is introduced and applied within the LRFD framework. Step-by-step design examples for three different wall cases constructed with cohesionless backfill soils are provided in the Supplemental Data for the paper.
机译:在较早的论文中,作者提出了对AASHTO简化方法的修改,以解决该方法中的缺点,并改善工作条件下墙体的加固荷载预测。新方法称为简化刚度方法,以强调加强刚度对加强载荷的重要性,而不是像当前的AASHTO方法那样强调强度。该方法为用土壤增强元件建造的墙壁提供了无缝过渡,从不可拉伸的钢到相对可扩展的土工合成材料。对新方法的准确性进行统计检验,并证明预测的载荷比使用AASHTO简化方法和基于对数螺旋极限平衡的方法计算的载荷更为精确。本文说明了简化的刚度方法如何在载荷和阻力因子设计(LRFD)框架内应用。为了确保加筋土区域保持在工作应力条件下,在LRFD框架内引入了一种新的极限状态,以解决加筋土区域内土壤的破坏。本文的补充数据中提供了使用无粘性回填土建造的三种不同墙体的分步设计示例。

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