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Methodology for Quantifying Features of Early-Age Concrete Cracking from Laser Scanned 3D Data

机译:从激光扫描3D数据中量化早期混凝土裂缝特征的方法

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摘要

Quantifying the features of concrete cracking is of significance for assessing the bearing capacity and durability of concrete structures. However, there is a lack of efficient and reliable observation and description of the crack features, particularly for very early-age concrete. In this study, a high-precision, noncontact laser scanner is used to dynamically obtain the 3D point cloud data of the cracks in concrete starting from casting until the age of 24 h. A crack point extraction method based on the local density of the scanned points is proposed to recognize the crack points, which are then connected according to the nearest neighbor principle to form crack elements. By setting the angle and the distance thresholds, the crack elements are clustered and expanded into independent cracks, and further, the crack sets. The calculation methods for both the length and the width of the independent cracks as well as the long and the short axis of the crack set are proposed from the scanned 3D data, and thus, the cracks are quantified from one and two dimensions in terms of the independent crack and the crack set, respectively. The reliability of the crack extraction method based on the measured 3D point cloud data is compared to and verified by the traditional crack viewer method. The results of this study can provide a strong algorithm support for intelligently detecting concrete cracks and for predicting crack development.
机译:量化混凝土裂缝的特征对于评估混凝土结构的承载力和耐久性具有重要意义。然而,缺乏有效且可靠的观察和描述裂纹特征,特别是对于非常早期的混凝土。在本研究中,高精度的非接触式激光扫描仪用于动态地从铸件开始动态地获得混凝土中裂缝的3D点云数据,直到24小时的年龄。提出了一种基于扫描点的局部密度的裂缝点提取方法,以识别裂缝点,然后根据最近的邻接原理连接以形成裂缝元件。通过设置角度和距离阈值,裂缝元件被聚集并扩展到独立的裂缝中,进一步地膨胀。从扫描的3D数据提出了独立裂缝的长度和宽度的长度和宽度的计算方法,从而从扫描的3D数据中提出了裂缝,从一个和两个维度量化分别是独立的裂缝和裂缝集。基于测量的3D点云数据的裂缝提取方法的可靠性与传统的裂缝观察方法进行了比较和验证。该研究的结果可以提供强大的算法支持,用于智能地检测混凝土裂缝和预测裂纹开发。

著录项

  • 来源
    《Journal of materials in civil engineering》 |2021年第7期|04021151.1-04021151.12|共12页
  • 作者单位

    Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry Dept. of Civil Engineering Tsinghua Univ. Beijing 100084 China;

    Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry Dept. of Civil Engineering Tsinghua Univ. Beijing 100084 China;

    Key Laboratory of Civil Engineering Safety and Durability of China Education Ministry Dept. of Civil Engineering Tsinghua Univ. Beijing 100084 China;

    Dept. of Civil Engineering Virginia Tech Blacksburg VA 24061;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3D laser scanning; Crack detection; Crack set; Early-age cracking; Point cloud data;

    机译:3D激光扫描;探伤;裂缝;早期开裂;点云数据;

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