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WIM-based live-load model for advanced analysis of simply supported short- and medium-span highway bridges

机译:基于WIm的活载模型,用于简单支撑的短中跨公路桥梁的高级分析

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摘要

The accuracy of bridge system safety evaluations and reliability assessments obtained through refined structural analysis procedures depends on the proper modeling of traffic load effects. While the live-load models specified in AASHTO procedures were calibrated for use in combination with approximate analysis methods and load-distribution factors commonly used in the United States, these existing models may not produce accurate results when used in association with advanced finite-element analyses of bridge structures. This paper proposes a procedure for calibrating appropriate live-load models that can be used for advanced analyses of multigirder bridges. The calibration procedure is demonstrated using actual truck data collected at a representative set of weigh-in-motion (WIM) stations in New York State. Extreme value theory was used to project traffic-load effects to different service periods. The results are presented as live-load models developed for a 5-year typical rating interval and for a 75-year design life. The outcome of the calibration indicates that maximum traffic-load effects can be calculated using finite-element models with the help of a single truck for short to medium one-lane multigirder bridges and two side-by-side truck configurations for multilane bridges. The proposed analysis trucks have axle configurations of the standard AASHTO 3-S2 and Type 3 legal rating trucks with appropriate factors to amplify their nominal weights. The amplification factors reflected the presence of overweight trucks in the traffic stream and the probability of multiple presence. The proposed live-load models are readily implementable for deterministic refined analyses of highway bridges and for evaluating the reliability of bridges at ultimate limit states considering the system’s behavior.
机译:通过完善的结构分析程序获得的桥梁系统安全评估和可靠性评估的准确性取决于交通荷载影响的正确建模。虽然已校准AASHTO规程中指定的活荷载模型,以与美国常用的近似分析方法和荷载分布因子结合使用,但这些现有模型与先进的有限元分析结合使用时可能无法产生准确的结果桥梁结构。本文提出了一种校准适当活载模型的程序,该模型可用于多梁桥的高级分析。使用从纽约州代表性的一组动态称重(WIM)站收集的实际卡车数据演示了校准过程。极值理论用于预测不同服务时段的交通负荷影响。结果显示为为5年典型额定间隔和75年设计寿命开发的活载模型。校准的结果表明,借助有限元模型,可以在短至中型单车道多梁桥的单个卡车以及多车道桥的两个并排卡车配置的帮助下,使用有限元模型来计算最大的交通负荷效应。拟议中的分析车具有标准AASHTO 3-S2和Type 3合法等级卡车的车轴配置,并带有适当的因素以扩大其标称重量。放大因子反映了交通流中超重卡车的存在以及多次出现的可能性。拟议的活载模型可轻松实现,以对公路桥梁进行确定性的精细分析,并考虑系统行为,在极限极限状态下评估桥梁的可靠性。

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