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Damage Indexing Method for Shear Critical Tubular Reinforced Concrete Structures based on Crack Image Analysis

机译:基于裂纹图像分析的剪切临界管钢筋混凝土结构损伤分度方法

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Image analysis techniques have been applied to measure the displacements, strain field, and crack distribution of structures in the laboratory environment, and present strong potential for use in structural health monitoring applications. Compared with accelerometers, image analysis is good at monitoring area-based responses, such as crack patterns at critical regions of reinforced concrete (RC) structures. While the quantitative relationship between cracks and structural damage depends on many factors, cracks need to be detected and quantified in an automatic manner for further investigation into structural health monitoring. This work proposes a damage-indexing method by integrating an image-based crack measurement method and a crack quantification method. The image-based crack measurement method identifies cracks locations, opening widths, and orientations. Fractal dimension analysis gives the flexural cracks and shear cracks an overall damage index ranging between 0 and 1. According to the orientations of the cracks analyzed by image analysis, the cracks can be classified as either shear or flexural, and the overall damage index can be separated into shear and flexural damage indices. These damage indices not only quantify the damage of an RC structure, but also the contents of shear and flexural failures. While the engineering significance of the damage indices is structure dependent, when the damage indexing method is used for structural health monitoring, the damage indices safety thresholds can further be defined based on the structure type under consideration. Finally, this paper demonstrates this method by using the results of two experiments on RC tubular containment vessel structures.
机译:已经应用图像分析技术来测量实验室环境中结构的位移,应变场和裂缝分布,并具有在结构健康监测应用中使用的强大潜力。与加速度计相比,图像分析擅长监测基于区域的响应,例如钢筋混凝土(RC)结构的临界区域处的裂纹图案。虽然裂缝与结构损伤之间的定量关系取决于许多因素,但需要以自动方式检测和量化裂缝,以便进一步调查结构性健康监测。这项工作通过集成基于图像的裂缝测量方法和裂缝量化方法来提出损坏分度方法。基于图像的裂缝测量方法识别裂缝位置,开口宽度和方向。分形尺寸分析给出弯曲裂缝和剪切裂缝的整体损伤指数在0和1之间。根据通过图像分析分析的裂缝的取向,裂缝可以被归类为剪切或弯曲,并且整体损伤指数可以分成剪切和弯曲损坏指数。这些损坏指数不仅量化了RC结构的损坏,还可以量化剪切和弯曲故障的内容。虽然损坏指数的工程意义是结构所属的,但是当损伤分度方法用于结构健康监测时,可以基于所考虑的结构类型进一步定义损坏指数安全阈值。最后,本文通过使用两个关于RC管状容纳血管结构的实验结果来说明该方法。

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