首页> 外文会议>International Conference on Ground Penetrating Radar >Use of Ground Penetrating Radar measurement combined to resistivity measurement for characterization of the concrete moisture
【24h】

Use of Ground Penetrating Radar measurement combined to resistivity measurement for characterization of the concrete moisture

机译:将探地雷达测量与电阻率测量结合使用以表征混凝土水分

获取原文

摘要

Durability of concrete structures is mainly affected by the corrosion, because corrosion causes extensive damages inside the structure and loss of structural integrity of the material. Basically, the cause of corrosion appearance is contact the reinforcement with water and chlorides, therefore the durability of concrete varies the facility of penetrating of water and chemical agents into concrete. To service the existing concrete structures in order to embalm their durability means to measure water penetrability and water content thereto. In this context the non-destructive techniques of testing structures play promising role, especially the techniques based on electromagnetic waves. Mainly the radar waves emitted by Ground Penetrating Radar (GPR) are very sensitive to water content of the medium through which they propagate. The paper presents great potential of the radar measurement combined with resistivity measurement for the characterization of potential concrete corrosion in an early stage. Two laboratory experiments were performed. First one was performed in order to study the GPR capacity to assess the changing of water content in the concrete samples. Two samples were prepared, one with reinforcement and one without. At the beginning of the test the samples were completely saturated. Then measurement were carried out during 2 months in order to observe the relationship between saturation degree of the concrete and the direct waves amplitude, the propagation velocity of the radar waves, as well as the dielectric permittivity and the resistivity of concrete. It was observed a great agreement between the parameters of the radar waves and concrete moisture. Next experiment were conducted to study the capacity of GPR to assess the water penetrability in hardened concrete. For this purpose concrete specimen was dried in an oven. The specimen had inside the sensors which had been measured the water content. Right after drying the sample had been put into the water and then GPR measurement were acquired. The results shown that there is a link between analyzed wave parameters and the waterfront advance.
机译:混凝土结构的耐用性主要受腐蚀的影响,因为腐蚀会导致结构内部的广泛损坏以及材料结构完整性的损失。基本上,腐蚀现象的原因是钢筋与水和氯化物接触,因此混凝土的耐用性改变了水和化学试剂渗透到混凝土中的便利性。为了维护现有的混凝土结构以使其持久耐用,意味着要测量其水渗透性和水含量。在这种情况下,测试结构的非破坏性技术起着有希望的作用,尤其是基于电磁波的技术。主要是探地雷达(GPR)发射的雷达波对它们传播所通过的介质中的水分非常敏感。本文提出了雷达测量与电阻率测量相结合的巨大潜力,可以在早期表征潜在的混凝土腐蚀。进行了两个实验室实验。为了研究GPR能力以评估混凝土样品中水含量的变化,进行了第一个实验。准备了两个样品,一个带有增强样品,一个没有增强样品。在测试开始时,样品已完全饱和。然后在2个月内进行测量,以观察混凝土的饱和度与直射波振幅,雷达波的传播速度以及介电常数和电阻率之间的关系。观察到雷达波的参数与混凝土湿度之间有很大的一致性。进行了下一个实验,以研究GPR评估硬化混凝土中水渗透性的能力。为此目的,将混凝土样品在烘箱中干燥。样品在传感器内部,已经测量了水含量。干燥后立即将样品放入水中,然后进行GPR测量。结果表明,所分析的波浪参数与滨水区之间存在联系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号