...
首页> 外文期刊>Key Engineering Materials >Vibration-based Condition Monitoring of Smart Prefabricated Concrete Elements
【24h】

Vibration-based Condition Monitoring of Smart Prefabricated Concrete Elements

机译:智能预制混凝土构件基于振动的状态监测

获取原文
获取原文并翻译 | 示例
           

摘要

The University of Trento is promoting a research effort aimed at developing an innovative distributed construction system based on smart prefabricated concrete elements that can allow real-time assessment of the condition of bridge structures. So far, two reduced-scale prototypes have been produced, each consisting of a 0.2x0.3x5.6m RC beam specifically designed for permanent instrumentation with 8 long-gauge Fiber Optics Sensors (FOS) at the lower edge. The sensors employed are FBG-based and can measure finite displacements both in statics and dynamics. The acquisition module uses a single commercial interrogation unit and a software-controlled optical switch, allowing acquisition of dynamic multi-channel signals from FBG-FOS, with a sample frequency of 625 Hz per channel. The performance of the system is undergoing validation in the laboratory. The scope of the experiment is to correlate changes in the dynamic response of the beams with different damage scenarios, using a direct modal strain approach. Each specimen is dynamically characterized in the undamaged state and in different condition states, simulating different cracking levels. The location and the extent of damage are evaluated through the calculation of damage indices which take into account changes in frequency and in strain-mode-shapes. This paper presents in detail the results of the experiment as conducted on one of these prototypes and demonstrates how the damage distribution detected by the system is fully compatible with the damage extent appraised by inspection.
机译:特伦托大学正在推动一项研究工作,旨在开发基于智能预制混凝土构件的创新分布式建筑系统,该系统可以实时评估桥梁结构的状况。到目前为止,已经生产出两个缩小规模的原型,每个原型都包含一个0.2x0.3x5.6m RC光束,该光束专门设计用于永久仪器,下边缘有8个长规格的光纤传感器(FOS)。所使用的传感器是基于FBG的,可以测量静态和动态的有限位移。采集模块使用单个商业询问单元和软件控制的光开关,从而允许从FBG-FOS采集动态多通道信号,每个通道的采样频率为625 Hz。该系统的性能正在实验室中进行验证。实验的范围是使用直接模态应变方法将梁的动态响应的变化与不同的损伤情况关联起来。每个试样在未损坏状态和不同状态下都具有动态特征,模拟了不同的开裂程度。通过计算损伤指数来评估损伤的位置和程度,该指数考虑了频率和应变模式形状的变化。本文详细介绍了对其中一个原型进行的实验结果,并演示了系统检测到的损坏分布与检查评估的损坏程度如何完全兼容。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号