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Seismic Performance of a Highway Bridge with Different Modeling Techniques for Laminated Rubber Bearings at Low Temperature.

机译:低温下叠层橡胶轴承不同建模技术的公路桥梁的地震性能。

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The current study is devoted towards evaluating the effectiveness of modeling of natural rubber bearings (RBs) and lead rubber bearings (LRBs) on seismic responses of a highway bridge by conducting nonlinear dynamic analysis for six distinct ground motions of level-2 earthquake applied in the longitudinal direction. Three analytical models of isolation bearings are considered for comparison: the conventional design models including the equivalent linear model and the bilinear model, a rate-dependent rheology model, and a proposed simplified model. The novelty of the proposed simplified model is to reproduce the nonlinear elasto-plastic behavior along with strain hardening at high strain levels. Model parameters for the isolation bearings are evaluated from experimental results at low temperature (-20°C). A numerical algorithm for solving the first order governing differential equation of the rheology model has been developed to implement into nonlinear dynamic analysis software. The dynamic responses of the isolation bearings and the rotation responses of the plastic hinge in concrete piers are compared for different modeling. The effect of modeling the isolation bearings at low temperature is significantly observed in the responses indicating that a careful selection of isolation bearing's model is imperative for seismic design of an isolated bridge system.
机译:目前的研究致力于评估天然橡胶轴承(RBS)和铅橡胶轴承(LRBS)对公路桥梁抗震反应的有效性,通过进行非线性动力学分析,对六种不同地震的六种不同地震运动进行非线性动力学分析纵向。考虑了三种隔离轴承的分析模型进行了比较:传统的设计模型,包括等效线性模型和双线性模型,速率依赖流变模型和提出的简化模型。所提出的简化模型的新颖性是在高应变水平下再现非线性弹性塑性行为以及应变硬化。隔离轴承的模型参数由低温(-20°C)的实验结果评估。已经开发了一种求解流变模型的差分方程的第一阶数的数值算法,以实现为非线性动态分析软件。与不同的造型相比,将隔离轴承和塑料铰链的旋转响应的动态响应进行比较。在响应中显着观察到在低温下建模隔离轴承的效果,表明仔细选择隔离轴承的模型是孤立桥系统的地震设计的必要性。

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