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Full-scale monitoring of wind and suspension bridge response

机译:风和悬架桥梁的全面监测

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Monitoring of real structures is important for many reasons. For structures susceptible to environmental actions, full-scale observations can provide valuable information about the environmental conditions at the site, as well as the characteristics of the excitation acting on the structure. The recorded data, if properly analyzed, can be used to validate and/or update experiments and models used in the design of new structures, such, as the load description and modelling of the structural response. Various aspects of full-scale monitoring are discussed in the paper and the full-scale wind engineering laboratory at the Lysefjord suspension bridge introduced. The natural excitation of the bridge comes from wind and traffic. The surrounding terrain is complex and its effect on the wind flow can only be fully studied on site, in full-scale. The monitoring program and associated data analysis are described. These include various studies of the relevant turbulence characteristics, identification of dynamic properties and estimation of wind- and traffic-induced response parameters. The overall monitoring activity also included a novel application of the remote optical sensing in bridge engineering, which is found to have an important potential to complement traditional "single-point" wind observations by sonic anemometers.
机译:实际结构的监测有很多原因是很重要的。对于结构容易受环境的行动,全面观察可以提供关于在现场的环境条件有价值的信息,以及作用在结构激励的特性。所记录的数据,如果适当分析,可以用来在新的结构,例如在设计用于验证和/或更新的实验和模型,作为负载描述和结构响应建模。的全面监控各个方面的文件,并在推出的吕瑟峡湾的吊桥满级风工程实验室讨论。桥的自然激发来自风能和交通。周围的地形非常复杂,其对风量的效果只能是充分研究的网站,在全量程。监视程序和相关的数据分析中描述。这些包括有关湍流特性的各种研究,动态属性的识别和风能和交通诱导响应参数估计。整体监测活动也包括在桥梁工程远程光学感测,其被发现具有通过声波风速计,以补充传统的“单点”风观测的一个重要的潜在的新的应用程序。

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