堆场阶段监测程序的综合调查方法

Awal Rahali, E. Malinverni, R. Pierdicca, A. Pierdicca, Gabriele Potenza, Matteo Lucesoli
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引用次数: 0

摘要

建筑物、建筑工地和土木结构需要一个精确、连续和实时的监测系统。这种必要性是为了检测建筑物和任何居住者的危险情况,特别是在自然或人为事件期间,如地震或侵入性操作的微妙阶段,如挖掘打桩。在这种情况下,结构的静态和动态条件以及与之有关的一切都可能受到损害。重要位移和变形参数的分析和评估是结构控制和健康监测的基础,可以按照不同的交换程序进行。在近年来应用的无损监测技术中,无线传感器在异常检测方面有了显著的发展。从传统的全站仪地形测量出发,利用静态和动态传感器获取重要的变形参数。监测设备涉及三轴无线倾斜仪,它可以精确测量安装点的任何倾斜角,以便在院子阶段监测运动学运动。本实验的主要目的是将倾斜仪收集的数据与机器人全站仪获得的数据进行比较。还安装了三轴加速度计,以获得不同参考点的加速度值。通过对收集到的数据进行处理,证明了尽管使用不同且完全独立的监测系统,但最终结果具有可比性。这些综合调查方法证明了设计基于传感器的监测系统的有效性和效率,该系统可以观察随时间变化的现象,特别是在侵入性手术的微妙阶段,这可能是一种更广泛的低成本和可靠的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated survey approaches for monitoring procedures during yard phases
Buildings, construction sites and civil structures need an accurate, continuous, and real time monitoring system. This necessity arises to detect dangerous situations for the structures and any occupant, especially during natural or anthropogenic events such as earthquakes or delicate phases of invasive operations such as excavations for piling. During these situations, the static and dynamic conditions of a structure and everything related to it could be impaired. The analysis and evaluation of significant displacements and deformation parameters, which are fundamental for structural controls and health monitoring, can be approached following different exchangeable procedures. Among the non-destructive monitoring techniques used in recent years, such as in this research, wireless sensors, are having a remarkable development in detecting anomalies. The acquisition of significant deformation parameters is obtained starting from the traditional topographic survey by total station and using static and dynamic sensors. Monitoring equipment concerns three-axial wireless tiltmeters which allow to measure accurately any angle of inclination in the points where they are installed in order to monitor kinematic movements during yard phases. The main purpose of this experiment is to compare data collected by tiltmeters with those obtained by the robotic total station. Three-axial accelerometers are also installed to obtain the acceleration value of the different reference points. By processing the collected data, it is proved that the final results are comparable, despite using different and completely independent monitoring systems. These integrated survey approaches demonstrate the effectiveness and efficiency of designing a monitoring system based on sensors that are installed to observe changing phenomena over the time, especially during delicate phases of invasive operations, which may represent a more widespread low-cost and reliable solution.
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