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Performance Enhancement Of Bridge Infrastructure Systems: Long-span Bridge, Moving Trucks And Wind With Tuned Mass Dampers

机译:桥梁基础设施系统的性能增强:大跨度桥梁,移动卡车和带有调谐质量阻尼器的风

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摘要

A long-span bridge infrastructure system (BIS) consists of a long-span bridge, traffic on the bridge, and a natural environment, such as wind. As a type of slender structure, long-span bridges usually experience strong dynamic vibration under both wind and busy traffic loadings, which act on the bridge simultaneously most of the time. However, just like traditional long-span bridge dynamic analyses, existing structural control studies of a long-span bridge usually consider either only wind loading or moving vehicles, but not both at the same time. In addition to causing the bridge to vibrate, a strong crosswind on the bridge deck also endangers the stability of moving vehicles on the bridge. An integrated analytical model was thus developed for a long-span bridge, with moving vehicles under windy conditions, to which is attached tuned mass dampers (TMDs). Since TMD control shares similar fundamental mechanisms with many other structural control measures, the proposed analytical model based on TMD control can also be used for various control studies of long-span bridges as well as with vehicles as a coupled system. First, with this framework considering the vehicles, wind, the bridge and the control system integrally, the structural control of long-span bridges can be designed and evaluated on a more realistic basis; second, the performance of the bridge-vehicle system with tuned mass dampers under windy conditions is parametrically studied for several different control schemes such as when TMDs are installed on the bridge, on a truck and on both; finally some observations of the coupled control system are discussed and the feasibility of developing a temporary control measure to protect unloaded or partially-loaded high-sided trucks from rollover accidents in windy conditions is studied.
机译:大跨度桥梁基础设施系统(BIS)由大跨度桥梁,桥梁上的交通以及自然环境(例如风)组成。作为一种细长的结构,大跨度的桥梁通常在风和繁忙的交通负荷下都会经历强烈的动态振动,而振动通常在大多数时候同时作用在桥梁上。但是,就像传统的大跨度桥梁动力分析一样,现有的大跨度桥梁结构控制研究通常只考虑风荷载或移动车辆,而不同时考虑两者。除了使桥梁振动之外,桥面甲板上的强侧风也危害在桥梁上行驶的车辆的稳定性。因此,为大跨度桥梁开发了一个综合分析模型,在有风的条件下移动车辆,并附有调谐质量阻尼器(TMD)。由于TMD控制与许多其他结构控制措施具有相似的基本机制,因此基于TMD控制的建议分析模型也可用于大跨度桥梁以及车辆作为耦合系统的各种控制研究。首先,在这个框架中综合考虑车辆,风,桥梁和控制系统,可以在更现实的基础上设计和评估大跨度桥梁的结构控制;其次,针对几种不同的控制方案(例如,将TMD安装在桥上,卡车上以及两者上时),对有风条件下具有调谐质量阻尼器的桥梁车辆系统的性能进行了参数研究。最后讨论了耦合控制系统的一些观察结果,并研究了开发临时控制措施以保护空载或部分装载的高侧卡车在大风天下不发生侧翻事故的可行性。

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