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Validated Simulation Models for Lateral Response of Bridge Abutments with Typical Backfills

机译:带有典型回填的桥台横向响应的经过验证的仿真模型

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摘要

Abutment-backfill soil interaction can significantly influence the seismic response of bridges. In the present study, we provide numerical simulation models that are validated using data from recent experiments on the lateral response of typical abutment systems. Those tests involve well-compacted clayey silt and silty sand backfill materials. The simulation methods considered include a method of slices approach for the backfill materials with an assumed log-spiral failure surface coupled with hyperbolic soil stress-strain relationships [referred to as "log-spiral hyperbolic (LSH) model"] as well as detailed finite-element models, both of which were found to compare well with test data. Through parametric studies on the validated LSH model, we develop equations for the lateral load-displacement backbone curves for abutments of varying height for the two aforementioned backfill types. The equations describe a hyperbolic relationship between lateral load per unit width of the abutment wall and the wall deflection and are amendable to practical application in seismic response simulations of bridge systems.
机译:桥台与回填土的相互作用会显着影响桥梁的地震响应。在当前的研究中,我们提供了数值模拟模型,该模型使用了来自最近的典型基台系统横向响应实验数据进行了验证。这些测试涉及压实的黏土粉砂和粉砂回填材料。考虑的模拟方法包括采用假定的对数-螺旋破坏面与双曲线土壤应力-应变关系耦合的回填材料的切片方法[称为“对数-螺旋双曲线(LSH)模型”]以及详细的有限元法。元素模型,发现两者都能很好地与测试数据进行比较。通过对经过验证的LSH模型进行参数研究,我们为上述两种回填类型的不同高度的桥墩开发了侧向荷载-位移主干曲线的方程式。该方程式描述了基台墙的每单位宽度的横向载荷与墙体挠度之间的双曲线关系,并且可以在桥梁系统的地震响应模拟中实际应用进行修正。

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