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An Integrative Structural Health Monitoring System for the Local/Global Responses of a Large-Scale Irregular Building under Construction

机译:一个正在建设的大型不规则建筑物局部/全局响应的综合结构健康监测系统

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摘要

In this study, a practical and integrative SHM system was developed and applied to a large-scale irregular building under construction, where many challenging issues exist. In the proposed sensor network, customized energy-efficient wireless sensing units (sensor nodes, repeater nodes, and master nodes) were employed and comprehensive communications from the sensor node to the remote monitoring server were conducted through wireless communications. The long-term (13-month) monitoring results recorded from a large number of sensors (75 vibrating wire strain gauges, 10 inclinometers, and three laser displacement sensors) indicated that the construction event exhibiting the largest influence on structural behavior was the removal of bents that were temporarily installed to support the free end of the cantilevered members during their construction. The safety of each member could be confirmed based on the quantitative evaluation of each response. Furthermore, it was also confirmed that the relation between these responses (i.e., deflection, strain, and inclination) can provide information about the global behavior of structures induced from specific events. Analysis of the measurement results demonstrates the proposed sensor network system is capable of automatic and real-time monitoring and can be applied and utilized for both the safety evaluation and precise implementation of buildings under construction.
机译:在这项研究中,开发了一种实用且集成的SHM系统,并将其应用于正在建设中的大型不规则建筑物,该建筑物中存在许多具有挑战性的问题。在提出的传感器网络中,采用了定制的节能无线传感单元(传感器节点,转发器节点和主节点),并通过无线通信从传感器节点到远程监控服务器进行了全面的通信。大量传感器(75个振弦应变仪,10个倾角仪和三个激光位移传感器)记录的长期(13个月)监测结果表明,对结构性能影响最大的施工事件是去除了临时安装的弯头,用以支撑悬臂构件在施工过程中的自由端。可以基于每个响应的定量评估来确认每个成员的安全性。此外,还证实了这些响应之间的关系(即挠度,应变和倾斜度)可以提供有关由特定事件引起的结构的整体行为的信息。对测量结果的分析表明,所提出的传感器网络系统能够进行自动和实时监控,并且可以用于在建建筑物的安全评估和精确实施。

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