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Nondestructive detecting thickness of main concrete channel lining in east line project of China South to North Water Diversion using GPR

机译:中国南方东线工程主混凝土通道衬砌的非破坏性检测厚度使用GPR

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China South to North Water Diversion project includes the longest water channel in the world now. The length of headwater channel which has been built up by May 2009 is over 700km in Shandong Province. All linings of those headwater channels are made of concrete, which thickness was designed from 5 to 12cm. But at some check position with drilling, the actual thickness of concrete lining was found thinner than design. Consequently, as a nondestructive method, Ground Penetrate Radar (GPR) was used to detect the thickness of concrete lining continuously. Reflection wave method is usual way to measure the thickness of object with GPR. After taking reflection time from measured GPR signal, the thickness of concrete lining could be calculated with penetrating time and velocity of GPR wave. In this method, velocity of GPR wave was a key to calculate the thickness well and truly. In order to conform it truly and quickly, some concrete samples were made according to the same composition of lining concrete. And real dielectric constants of those samples were tested using GPR method. Basing on the experiment results, representative dielectric model of lining concrete, relation between water content and velocity of GPR wave were confirmed. The research results show we could present the CRIM formulae to get velocity of GPR wave when calculating thickness with GPR reflection wave method. Case study approved that could improve precision of measured thickness greatly.
机译:中国南到北方地转移项目现在包括世界上最长的水渠道。由2009年5月建立的沿着700公里的沿着700公里的长度。这些沿着混凝土的所有衬里都由混凝土制成,厚度设计为5至12厘米。但在一些钻孔的检查位置,混凝土衬里的实际厚度比设计更薄。因此,作为非破坏性方法,地研磨雷达(GPR)用来连续地检测混凝土衬里的厚度。反射波方法是用GPR测量物体厚度的常用方式。从测量的GPR信号中取出反射时间后,可以用渗透时间和GPR波的速度来计算混凝土衬里的厚度。在这种方法中,GPR波的速度是计算厚度良好和真正的键。为了真正快速地符合它,根据相同的衬里混凝土组成制造一些混凝土样品。使用GPR方法测试这些样品的实际介电常数。基于实验结果,确认了衬里混凝土的代表性介电模型,含水含量与GPR波的速度之间的关系。研究结果表明,在用GPR反射波法计算厚​​度时,我们可以呈现压丝配方以获得GPR波的速度。案例研究批准,可以大大提高测量厚度的精度。

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