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Rapid Bridge Deck Condition Assessment Using Three-Dimensional Visualization of Impact Echo Data

机译:使用冲击回波数据的三维可视化快速评估桥面状况

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摘要

Ultrasonic seismic methods can be used in the condition assessment of bridge decks by evaluating changes in material characteristics and detecting the development of defects and zones of deterioration. The impact-echo method is of special benefit in the evaluation of corrosion-induced deck delamination because of its nondestructive nature and ability to detect delaminated zones at various stages of deterioration: from initial to progressed and developed. The traditional approach in the condition assessment of bridge decks by impact-echo is based on a review of individual test-point records. A new approach based on three-dimensional data visualization is proposed. The developed three-dimensional visualization platform allows for both the advanced presentation and an automated interpretation of impact-echo data. The data presentation is provided in terms of three-dimensional translucent visualizations of reflectors in a bridge deck section and horizontal and vertical cross sections through all distinctive zones, including a zone of delamination. The associated interpretation platform enables the overall assessment of the condition of the deck, through cumulative distributions of reflection intensity of different reflective layers, and the identification of deteriorated zones of the deck to be repaired or rehabilitated in an efficient and intuitive way.
机译:通过评估材料特性的变化并检测缺陷和劣化区域的发展,可以将超声波地震方法用于桥面板的状态评估。冲击回波法在评估腐蚀引起的甲板分层方面特别有用,因为它具有无损性质,并且能够检测从初期到进展和发展的各个劣化阶段的分层区域。冲击回波评估桥面板状态的传统方法是基于对单个测试点记录的审查。提出了一种基于三维数据可视化的新方法。开发的三维可视化平台可对冲击回波数据进行高级演示和自动解释。数据呈现方式是通过桥面部分的反射镜的三维半透明可视化以及贯穿所有不同区域(包括分层区域)的水平和垂直横截面提供的。关联的解释平台可通过不同反射层的反射强度的累积分布来全面评估甲板的状况,并以有效且直观的方式识别要修复或修复的甲板劣化区域。

著录项

  • 来源
    《Journal of Infrastructure Systems》 |2012年第1期|p.12-24|共13页
  • 作者单位

    Dept. of Civil and Environmental Engineer-ing, Rutgers Univ., 623 Bowser Road, Piscataway, NJ 08854;

    Intelligent Vision and Reasoning Dept., Siemens Corporate Research, 755 College Road East, Princeton, NJ 08540;

    Research Staff, Thomson Corporate Research, 2 Independence Way,Princeton, NJ 08540;

    Intelligent Vision and Reasoning Dept., Siemens Corporate Research, 755 College Road East, Princeton, NJ 08540;

    Center for Advanced Infrastructure and Transportation(CAIT), Rutgers Univ., 100 Brett Road, Piscataway, NJ 08854;

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

    impact echo; visualization; delamination; corrosion; bridge deck; concrete;

    机译:冲击回波可视化分层腐蚀;桥面具体;

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