Distinction of tendon ducts and rebars by GPR reflection signal patterns

G. K. Sharma, T. Kind
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Abstract

We investigated the possibility of surrounding waves along with perimeter of large diameter tendon ducts during ground penetrating radar (GPR) testing of concrete structures. The surrounding waves influence the primary reflection from tendon duct and alter the phase as well as amplitude of signal depending on the diameter of the tendon duct. This phenomenon was studied in detail by conducting several simulations using a commercial software Reflexw®. Finite Difference Time Domain method was adopted to analyze reflection patterns from objects of various diameters located at different depths in concrete media. The proposed methodology will be useful in qualitative assessment of size of metallic objects greater than a diameter of 6 cm. In general, the identification of large diameter tendon ducts in a civil structure is carried out by prior knowledge of the civil plan and its diagonal appearance to smaller diameter object mesh. The proposed methodology will enhance the confidence in identification of the larger diameter tendon ducts even if the civil plan is not known accurately.
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用探地雷达反射信号模式区分肌腱管和钢筋
我们研究了在探地雷达(GPR)测试混凝土结构时,大直径跟腱管周长周围波的可能性。周围波影响来自肌腱管的初级反射,并根据肌腱管的直径改变信号的相位和振幅。使用商业软件Reflexw®进行了多次模拟,详细研究了这一现象。采用时域有限差分法分析了混凝土介质中不同深度、不同直径物体的反射模式。所提出的方法将有助于对直径大于6厘米的金属物体的尺寸进行定性评估。一般来说,土建结构中大直径肌腱管的识别是通过对土建平面及其对角线外观的先验知识来进行的。所提出的方法将增强识别大直径肌腱管的信心,即使不知道准确的民用计划。
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