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首页> 外文期刊>Journal of bridge engineering >Fatigue Stress Spectra and Reliability Evaluation of Short- to Medium-Span Bridges under Stochastic and Dynamic Traffic Loads
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Fatigue Stress Spectra and Reliability Evaluation of Short- to Medium-Span Bridges under Stochastic and Dynamic Traffic Loads

机译:随机和动态交通荷载作用下中跨桥梁的疲劳应力谱和可靠性评估

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摘要

This study presents a novel approach to simulating the fatigue stress spectra of short- to medium-span bridges under stochastic and dynamic traffic loads. The stochastic traffic load is simulated based on the weigh-in-motion (WIM) measurements of a heavy-duty highway bridge in China, and the dynamic effects are modeled using a vehicle-bridge coupled vibration system. An interpolation RSM is used to approximate the effective stress ranges of a bridge with respect to road roughness conditions, gross vehicle weights, vehicle configurations, and driving speeds. The RSM provides a platform for an efficient spectrum simulation of bridges under stochastic and dynamic traffic loads. A case study of a simply supported T-girder bridge demonstrates the effectiveness and efficiency of the proposed approach. The proposed computational framework provides an effective approach for simulating the fatigue stress spectra for short- to medium-span bridges with WIM data. However, the efficiency of the approach depends on the number of intervals of driving speed and gross vehicle weight in the interpolation RSM. Additionally, overloading control has a considerable influence on the probability density of the high-amplitude stresses in the fatigue stress spectrum. Even a relatively high overloading limit value will considerably increase the fatigue reliability of a bridge. In addition, the numerical results provide a theoretical basis for bridge deck retrofitting and truck overloading control measures. (C) 2017 American Society of Civil Engineers.
机译:这项研究提出了一种模拟随机和动态交通荷载下中短跨度桥梁疲劳应力谱的新颖方法。基于中国重型公路桥梁的动态称重(WIM)测量,模拟了随机交通负荷,并使用车桥耦合振动系统对动态影响进行了建模。内插RSM用于根据道路不平整条件,车辆总重,车辆配置和行驶速度来估算桥梁的有效应力范围。 RSM为在随机和动态交通负荷下桥梁的有效频谱仿真提供了一个平台。一个简单支撑的T梁桥的案例研究证明了该方法的有效性和效率。所提出的计算框架为利用WIM数据模拟中短跨度桥梁的疲劳应力谱提供了一种有效的方法。但是,该方法的效率取决于插值RSM中行驶速度和车辆总重的间隔数。另外,过载控制对疲劳应力谱中高振幅应力的概率密度有很大影响。甚至相对较高的过载极限值也将大大提高桥梁的疲劳可靠性。此外,数值结果为桥梁桥面改造和卡车超载控制措施提供了理论依据。 (C)2017年美国土木工程师学会。

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