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Application of optical fiber distributed sensing to health monitoring of concrete structures

机译:光纤分布式传感在混凝土结构健康监测中的应用

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摘要

The use of Optical Backscatter Reflectometer (OBR) sensors is a promising measurement technology for Structural Health Monitoring (SHM) as it offers the possibility of continuous monitoring of strain and temperature along the fiber. Several applications to materials used in the aeronautical construction have demonstrated the feasibility of such technique. These materials (composites, steel, aluminum) apart from having a smooth surface where the bonding of the sensor is easily carried out, they also have a continuous strain field when subject to external loading and therefore the bonding of the OBR on the material surface is not in danger for high levels of loading as the OBR can easily follow the strain in the material. The application of such type of sensor to concrete structures may present some difficulties due to (1) the roughness of the concrete surface and the heterogeneity due to the presence of aggregates of several sizes, (2) the fact that reinforced concrete cracks at very low level of load, appearance of a discontinuity in the surface and the strain field that may provoke a break or debonding of the optical fiber. However the feasibility of using OBR in the SHM of civil engineering constructions made of concrete is also of great interest, mainly because in this type of structures it is impossible to know where the crack may appear and therefore severe cracking (dangerous for the structure operation) can appear without warning of the monitoring if sensors are not placed in the particular location where the crack appears. In order to explore the potentiality of detecting cracks as they appear without failure or debonding, as well as the compatibility of the OBR bonding to the concrete surfaces, this paper shows the test carried out in the loading up to failure of a concrete slab.
机译:光学背向散射反射仪(OBR)传感器的使用是一种用于结构健康监测(SHM)的有前途的测量技术,因为它提供了连续监测沿光纤的应变和温度的可能性。在航空建筑中使用的材料的一些应用证明了这种技术的可行性。这些材料(复合材料,钢,铝)除了具有光滑的表面(易于粘接传感器)之外,在承受外部载荷时还具有连续的应变场,因此OBR在材料表面的粘接是不会因高负荷而产生危险,因为OBR可以轻松跟随材料中的应变。此类传感器在混凝土结构上的应用可能会遇到一些困难,原因是:(1)混凝土表面的粗糙度和由于存在多种尺寸的集料而导致的不均匀性;(2)钢筋混凝土在很低的温度下会产生裂缝负载水平,表面不连续的外观以及可能引起光纤断裂或脱粘的应变场。但是,在混凝土制成的土木工程结构的SHM中使用OBR的可行性也引起了人们的极大兴趣,这主要是因为在这种类型的结构中,无法知道裂纹可能出现的位置,因此无法确定严重的裂纹(对结构运行非常危险)如果未将传感器放置在出现裂缝的特定位置,则可能会出现警告,而不会发出监视警告。为了探索检测裂纹而没有破坏或脱开的可能性,以及OBR结合到混凝土表面的相容性,本文显示了在混凝土板破坏前的荷载下进行的测试。

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