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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >An experimental GPR detection study of environmentally-influenced structural defects in hydraulic engineering
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An experimental GPR detection study of environmentally-influenced structural defects in hydraulic engineering

机译:液压工程环境影响结构缺陷的实验GPR检测研究

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摘要

Structural defects such as separation between concrete slab and foundation, and structural voids often occur in hydraulic engineering, which threatens the safety of hydraulic engineering. As the size and internal material of the hydraulic engineering can be queried, ground penetration radar (GPR) detection has the advantage to detect these defects when compared with other nondestructive detection methods. At the same time, when GPR detection is applied to defect these structural defects in hydraulic engineering, complex environmental factors including the uneven structural surface, clutter interference, water reflection, etc. have to be taken into account. In this work, two experimental models are designed to represent two different types of hydraulic structures and the structural defects including separation between concrete slab and its bottom material and void or hole defects are simulated on the two test models, respectively. Through the GPR detection on the two experimental models, the effects of the three environmental factors on the radar images and the signatures of the radar images under the influence of the three environmental factors are studied. Then, different image processing methods are adopted to reduce the influence of the three different environmental factors, and the effects of these methods are verified using the radar images obtained from the experiments. Finally, the GPR detection on a practical hydraulic engineering influenced by the environmental factors and the image processing methods are investigated, which successfully verify the experimental investigation results. It is expected that this study would provide significant technology support for structural defects detection in hydraulic engineering.
机译:液压工程中经常出现混凝土板和基础之间的分离等结构缺陷,威胁液压工程安全。随着液压工程的尺寸和内部材料可以被验证,地面穿透雷达(GPR)检测具有在与其他无损检测方法相比时检测这些缺陷的优点。同时,当施用GPR检测以缺陷液压工程中的这些结构缺陷时,必须考虑包括不均匀结构表面,杂波干扰,水反射等的复杂的环境因素。在这项工作中,两种实验模型设计成代表两种不同类型的液压结构,并且在两个测试模型上分别模拟包括混凝土板和其底材料和空隙或空隙或空隙或孔缺陷之间的结构缺陷。通过了两种实验模型的GPR检测,研究了三种环境因素对雷达图像上的三种环境因素的影响以及在三种环境因素的影响下的雷达图像的签名。然后,采用不同的图像处理方法来减少三种不同环境因素的影响,并且使用从实验中获得的雷达图像来验证这些方法的效果。最后,研究了对受环境因素影响的实际液压工程的GPR检测,成功验证了实验研究结果。预计本研究将为水力工程中的结构缺陷检测提供显着的技术支持。

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