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利用长期交通监测数据评估大型桥梁的概率交通荷载效应。

Evaluating Probabilistic Traffic Load Effects on Large Bridges Using Long-Term Traffic Monitoring Data.

机构信息

School of Civil Engineering, Changsha University of Science and Technology, Changsha 410114, China.

School of Civil Engineering, Hunan University of Science, Zhuzhou 412007, China.

出版信息

Sensors (Basel). 2019 Nov 19;19(22):5056. doi: 10.3390/s19225056.

Abstract

With the steadily growing of global transportation market, the traffic load has increased dramatically over the past decades, which may develop into a risk source for existing bridges. The simultaneous presence of heavy trucks that are random in nature governs the serviceability limit for large bridges. This study investigated probabilistic traffic load effects on large bridges under actual heavy traffic load. Initially, critical stochastic traffic loading scenarios were simulated based on millions of traffic monitoring data in a highway bridge in China. A methodology of extrapolating maximum traffic load effects was presented based on the level-crossing theory. The effectiveness of the proposed method was demonstrated by probabilistic deflection investigation of a suspension bridge. Influence of traffic density variation and overloading control on the maximum deflection was investigated as recommendations for designers and managers. The numerical results show that the congested traffic mostly governs the critical traffic load effects on large bridges. Traffic growth results in higher maximum deformations and probabilities of failure of the bridge in its lifetime. Since the critical loading scenario contains multi-types of overloaded trucks, an effective overloading control measure has a remarkable influence on the lifetime maximum deflection. The stochastic traffic model and corresponding computational framework is expected to be developed to more types of bridges.

摘要

随着全球交通市场的稳步增长,过去几十年来交通负荷显著增加,这可能成为现有桥梁的一个风险源。大量随机出现的重载卡车共同作用控制着大型桥梁的使用极限。本研究调查了在实际重载交通下大型桥梁的概率交通荷载效应。首先,根据中国一座公路桥上数百万条交通监测数据,模拟了关键随机交通加载场景。基于超越理论提出了一种外推最大交通荷载效应的方法。通过对悬索桥的概率挠度研究验证了所提出方法的有效性。研究了交通密度变化和超载控制对最大挠度的影响,为设计人员和管理人员提供了建议。数值结果表明,拥挤的交通主要控制着大型桥梁的临界交通荷载效应。交通增长会导致桥梁在其使用寿命内的最大变形和失效概率增加。由于临界加载场景包含多种类型的超载卡车,有效的超载控制措施对桥梁的使用寿命最大挠度有显著影响。预计将开发出更适用于多种类型桥梁的随机交通模型和相应的计算框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f1e/6891727/f3514656935d/sensors-19-05056-g001.jpg

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