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Structural analysis of bridges and beams using long-gage fiber optic sensors

机译:使用长距离光纤传感器的桥梁和梁的结构分析

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Abstract: The security of civil engineering works demands a periodical monitoring of the structures. The current methods (such as triangulation, water levels, vibrating strings or mechanical extensometers) are often of tedious application and require the intervention of specialized operators. The resulting complexity and costs limit the frequency of these measurements. The obtained spatial resolution is in general low and only the presence of anomalies in the global behavior urges a deeper and more precise evaluation. There is therefore a real need for a tool allowing an automatic and permanent monitoring from within the structure itself and with high precision and good spatial resolution. In many civil structures like bridges, tunnels and dams, the deformations are the most relevant parameter to be monitored in both short and long-terms. Strain monitoring gives only local information about the material behavior and too many such sensors would therefore be necessary to gain a complete understanding of the structure's behavior. We have found that fiber optic deformation sensors, with measurement bases of the order of one to a few meters, can give useful information both during the construction phases and in the long term. In the case of beams and bridges, long-gate sensors can be used to evaluate the curvature variations and calculate the horizontal and vertical displacements by double integration of the curvatures. !10
机译:摘要:土木工程的安全性要求对结构进行定期监控。当前的方法(例如三角测量,水位测量,振动弦或机械引伸计)通常应用繁琐,需要专业人员的干预。由此产生的复杂性和成本限制了这些测量的频率。所获得的空间分辨率通常较低,只有全局行为中存在异常,才能进行更深入,更精确的评估。因此,真正需要一种工具,该工具能够从结构本身内部进行自动且永久的监视,并具有高精度和良好的空间分辨率。在许多土木结构中,如桥梁,隧道和大坝,无论短期还是长期,变形都是最相关的参数。应变监控仅提供有关材料行为的局部信息,因此,对于完整了解结构行为而言,太多的此类传感器将是必需的。我们发现,光纤变形传感器的测量基础大约为一米到几米,可以在施工阶段和长期内提供有用的信息。在梁和桥的情况下,长门传感器可用于评估曲率变化并通过曲率的双重积分来计算水平和垂直位移。 !10

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