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Effects of high winds on a long-span sea-crossing bridge based on structural health monitoring

机译:高风对基于结构健康监测的长跨度海关桥梁的影响

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摘要

This paper focuses on the effects of high winds on vibrational responses and modal parameter's variation for a unique sea-crossing cable-stayed bridge, i.e. Donghai Bridge, based on the long-term structural health monitoring (SHM) data. This bridge is located in a typhoon-prone area of the northwestern Pacific Ocean, and 80% of the vehicles traversing it are heavy-load container trucks. The relative influence of high winds and heavy-load traffic on the structural vibration responses is investigated by a comparison of typical operational cases. The high wind dominates in the girder's lateral vibration of Donghai Bridge, while the girder's vertical and torsional accelerations are more sensitive to heavy-load traffic rather than high winds. Also, the frequency band of the wind excitation is lower than that of traffic load. During high winds, the modal parameters of this bridge are relatively difficult to stably identify, thereby leading to a well-pronounced discreteness of the parameters' estimates. This paper could serve as a field evidence for the wind-resistant design and the performance evaluation of bridges in similar operational conditions.
机译:本文重点介绍了高风对振动响应和模态参数变异的独特海关斜拉桥,即东海桥,基于长期结构健康监测(SHM)数据。这座桥位于西北太平洋的台风俯卧区,80%的车辆遍历它是重载容器卡车。通过比较典型的操作案例,研究了高风和重载流量对结构振动响应的相对影响。高风在东海大桥的梁横向振动中占主导地位,而梁的垂直和扭转加速度对重载交通而非高风更敏感。而且,风激励的频带低于交通负荷的频带。在高风中,该桥的模态参数相对难以稳定地识别,从而导致参数估计的良好明显的离散性。本文可以作为防风设计的现场证据和类似运营条件下桥梁的性能评估。

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