考虑环境变异性的基于振动的结构健康监测的量化价值

A. Kamariotis, E. Chatzi, D. Štraub
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引用次数: 1

摘要

结构健康监测(SHM)的价值可以量化为两种不同维护计划策略之间预期总生命周期成本的差异,一种代表标准评估手段,即间歇性目视检查,另一种基于连续SHM数据的可用性。我们展示了如何量化基于振动的SHM值,条件是结构寿命期间的损伤历史。我们通过一个两跨桥梁系统的数值基准模型来展示分析,该模型在整个生命周期中受到中间弹性支撑逐渐退化和突然损坏的影响,模拟了冲刷的情况。利用杨氏模量随温度(E-T)变化的随机模型,分析了环境变率的影响。数值研究提供了与温度变化以及目测质量对SHM值的影响有关的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QUANTIFYING THE VALUE OF VIBRATION-BASED STRUCTURAL HEALTH MONITORING CONSIDERING ENVIRONMENTAL VARIABILITY
The value of structural health monitoring (SHM) can be quantified as the difference in expected total life-cycle costs between two different maintenance planning strategies, one representing the standard means to assessment, namely intermittent visual inspections, and the other based on availability of continuous SHM data. We show how to quantify the value of vibration-based SHM conditional on a damage history over the structural lifetime. We showcase the analysis through application on a numerical benchmark model of a two-span bridge system subjected to gradual deterioration and sudden damages in the middle elastic support over its life-cycle, simulating the case of scour. The effect of environmental variability is included in the analysis by means of a stochastic model for the dependence of the Young’s modulus on temperature (E-T). The numerical investigations provide insights related to the effect of the temperature variability, as well as the visual inspections’ quality, on the value of SHM.
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