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Shear crack width assessment in concrete structures by 2D distributed optical fiber

机译:二维分布式光纤在混凝土结构中的剪切裂缝宽度评估

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This paper outlines the second part of an experimental study to show the capabilities of distributed optical fiber sensors (DOFS) in their application to the structural health monitoring (SHM) of the shear performance of concrete structures. SHM seeks to obtain the shear crack characteristics of concrete elements: detection, localization and quantification of shear damage. The two first were discussed in the first part of the experimental study. In the present paper, the quantification is dealt with by proposing a method to obtain the mean shear crack width in concrete beams. The method is based on the experimental data obtained by a DOFS bonded to the concrete surface. First, the basis of the methodology are presented and, later on, experimentally checked by testing of three partially pre-stressed concrete (PPC) beams subjected to a shear test with increasing level of load. The DOFS were deployed in the web of the beams to conform a 2D grid mesh to measure the strain profile along two orthogonal directions. The experimental data was obtained using an OBR (Optical Backscattered Reflectometer) system with high spatial resolution and sensitivity that allow a complete mapping of the cracking pattern and to obtain the required data for the calculation of the crack width. The results show the feasibility of the proposed method in calculating the shear crack width when compared to the results from traditional instrumentation.
机译:本文概述了实验研究的第二部分,以展示分布式光纤传感器(DOFS)在混凝土结构抗剪性能的结构健康监测(SHM)中的应用。 SHM寻求获得混凝土构件的剪切裂缝特征:剪切损伤的检测,定位和量化。在实验研究的第一部分中讨论了两者中的第一个。在本文中,通过提出一种获得混凝土梁平均剪切裂缝宽度的方法来进行量化处理。该方法基于通过将DOFS粘结到混凝土表面获得的实验数据。首先,介绍了该方法的基础,随后,通过对三个部分预应力混凝土(PPC)梁进行了承受载荷增加的剪切测试的试验,进行了实验检验。将DOFS部署在梁的网中,以符合2D网格,以测量沿两个正交方向的应变曲线。实验数据是使用具有高空间分辨率和灵敏度的OBR(光学反向散射反射仪)系统获得的,该系统可以对裂纹图案进行完整映射,并获得计算裂纹宽度所需的数据。与传统仪器的结果相比,结果表明了该方法在计算剪切裂缝宽度方面的可行性。

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