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An analysis of using ground penetrating radar refraction/reflection methods to investigate possible fractures and cavities in concrete sea walls

机译:使用探地雷达折射/反射方法研究混凝土海堤中可能存在的裂缝和空洞的分析

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In the study we attempt to use a wide angle refraction/reflection method, as well as the conventional reflection radargrams to help identify the fractures and cavities in the concrete sea walls retaining a reclaimed land near the campus of National Taiwan Ocean University. First, we acquired GPR reflection radargrams along nine 30-m-long parallel lines with 1-m apart using three different antenna frequencies, including 38 MHz, 75 MHz, and 150 MHz in the study area. We have determined that the radargram with antenna central frequency of 150 MHz has the best resolution for the possible structures in the sea wall. Second, we collected GPR data at the area adjacent to the previous survey area with four 454-m-long parallel lines. Since the survey lines are 2-m apart, we are able to perform a pseudo 3D model for an area of 454 m × 8 m. We have identified several parabolic structures showing the possible locations of the fractures and cavities. Lastly we conducted wide angle refraction/reflection methods along the 454-m-long line to provide additional information for the existence of the fractures and cavities. First arrival time for the direct wave and the first reflected wave was picked automatically and the data were inverted with the GeotomCG inversion code. With the overlapped images from the reflection radargrams and the inverted velocity tomograms, we have indicated several possible cavities and fractures in the sea wall structures. Future study will focus on the verification of our GPR findings for the potential breaching spots.
机译:在这项研究中,我们尝试使用广角折射/反射方法以及传统的反射雷达图来帮助识别保留台湾国立海洋大学校园附近开垦土地的混凝土海墙中的裂缝和空洞。首先,我们使用三个不同的天线频率(包括研究区域中的38 MHz,75 MHz和150 MHz)沿着9条30米长,间隔1米的平行线获取了GPR反射雷达图。我们已经确定,天线中心频率为150 MHz的雷达图对于防波堤中的可能结构具有最佳分辨率。其次,我们使用四条454米长的平行线在与上一个调查区域相邻的区域收集了GPR数据。由于测量线相距2 m,因此我们能够对454 m×8 m的区域执行伪3D模型。我们已经确定了几个抛物线形结构,显示出裂缝和空洞的可能位置。最后,我们沿着454米长的线进行了广角折射/反射方法,以提供有关裂缝和空洞存在的其他信息。自动选择直接波和第一个反射波的首次到达时间,并使用GeotomCG反转代码反转数据。利用来自反射雷达图和反向速度层析成像的重叠图像,我们已经指出了海堤结构中的几种可能的空腔和裂缝。未来的研究将侧重于验证我们的GPR调查结果中潜在的违规点。

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