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Assessment of highway condition using combined geophysical surveys.

机译:使用组合地球物理调查评估公路状况。

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摘要

Four pavement sections were investigated using ground penetrating radar (GPR) and Ultrasonic Surface Wave (USW). The objective of this research was to compare the effectiveness of two non-destructive geophysical tools, GPR and the PSPA, in assessing the condition of the pavements, composed of different construction materials. The GPR data were acquired using a 1.5 GHz antenna along five traverses spaced at two ft. intervals approximately 1000 ft. long. On the other hand, the PSPA data were acquired at the stations spaced at 1000 ft. along the five GPR traverses. Core samples were collected at each site to constrain the interpretation of the acquired geophysical data. The sites include section US 63 about three miles north of Rolla, US 54 in Camdenton County, MO 179 in Jefferson City, and HWY U in Dent County. The types of pavement in these sites were, asphalt concrete overlaying portland cement concrete (AC/PCC), and full-depth asphalt concrete (AC) pavements or full depth bituminous mix (BM).;Based on the acquired and analyzed data of the GPR and PSPA, the data of both tools correlated reasonably well. The PSPA technique successfully measured the elastic modulus and the thickness of pavement and detected horizontal flaws (e.g. debonding and delaminations). Similarly, the GPR technique successfully measured the thickness of pavement and detected horizontal flaws (e.g. debonding and delaminations) within the pavement. The research demonstrated that both non-destructive geophysical tools (GPR and PSPA) are effective in assessing the condition of different types of pavement.
机译:使用探地雷达(GPR)和超声波表面波(USW)研究了四个路面部分。这项研究的目的是比较两种无损地球物理工具GPR和PSPA在评估由不同建筑材料组成的人行道状况方面的有效性。 GPR数据是使用1.5 GHz天线沿五个导线,以两个导线间隔(约1000英尺长)间隔获取的。另一方面,PSPA数据是在沿五个GPR导线距离1000英尺的站点上采集的。在每个站点收集了核心样本,以限制对获取的地球物理数据的解释。这些地点包括罗拉以北约三英里的US 63地带,Camdenton县的US 54地带,杰斐逊城的MO 179地和Dent县的HWYU。这些场地的人行道类型为沥青混凝土覆盖的硅酸盐水泥混凝土(AC / PCC)和全深度沥青混凝土(AC)道路或全深度沥青混合料(BM)。 GPR和PSPA,这两个工具的数据相关性很好。 PSPA技术成功地测量了路面的弹性模量和厚度,并检测了水平裂缝(例如脱胶和分层)。类似地,GPR技术成功地测量了路面的厚度并检测了路面内的水平缺陷(例如,脱胶和分层)。研究表明,两种非破坏性地球物理工具(GPR和PSPA)均可有效地评估不同类型路面的状况。

著录项

  • 作者

    Dera, Abdallah Alhadi.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Geological engineering.;Civil engineering.;Geophysics.;Geophysical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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