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Characterization of pore systems of air/water-cured concrete using ground penetrating radar (GPR) through continuous water injection

机译:通过连续注水的地面穿透雷达(GPR)表征气/水固化混凝土的孔隙系统

摘要

This paper describes a series of experiments in characterizing the pore systems of mature and hardened air-cured and water-cured concrete specimens. The characterization was achieved by measuring the real part of complex permittivity (ε′) and energy attenuation (dB/m) through continuous injection of pressurized fresh water over a period of 48 h in each test run. The measurements were based on coupling a 1 GHz Ground Penetrating Radar (GPR) on the surfaces of concrete specimens. At different degrees of water saturation (S w) received by the specimens, the air-cured and water-cured concrete specimens were characterized by recognizing different patterns depicted in the plots of ε′ vs S w and dB/m vs S w. These differences in patterns are attributed to the pore size distributions, as a result of different curing histories.
机译:本文描述了一系列表征成熟和硬化的空气固化和水固化混凝土标本的孔隙系统的实验。通过在每次测试运行中在48小时内连续注入加压淡水来测量复介电常数(ε')和能量衰减(dB / m)的实部,从而实现了表征。测量是基于在混凝土试样表面耦合1 GHz探地雷达(GPR)的结果。在样品接收到不同程度的水饱和度(S w)时,通过识别ε'vs S w和dB / m vs S w曲线中描绘的不同图案来表征空气固化和水固化的混凝土样品。由于不同的固化历史,这些图案差异归因于孔径分布。

著录项

  • 作者

    Lai WL; Tsang WF;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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