Subsurface Utility Identification at ITERA Campus Using Multi-frequency Ground Penetrating Radar

Andri Yadi Paembonan, Fedy Darma Wijaya Waruwu
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Abstract

Infrastructure development at the Sumatra Institute of Technology is growing rapidly, hence, it requires new utilities installation network such as cables and pipes to supply electricity and clean water. Installing new utility line, it is necessary to secure and know the existence and depth of the previously embedded utility network to avoid damage that could hamper the construction process or cause large losses. Accessing the sub-surface information, geophysical method, such as Ground Penetrating Radar (GPR) can be utilized for identifying buried utility networks, ensuring the safe installation of new utilities and preventing damage to existing embedded utilities. In this study, a GPR device with a frequency range 40 MHz-3.4 GHz comprising 5 tracks was employed. The acquired data underwent processing using GPR Insights software, generating a radargram cross-section that provides information about the subsurface.The results from the radargram reveal a hyperbolic reflection anomaly, signifying the presence of a utility network beneath the surface, suspected to be pipe and cable utilities. The utility network is detected at varying depths of 0.5 m, 0.8 m, 1 m, and 1.2 m at different distances. Furthermore, several anomalies in the form of hyperbolas are observed, suggesting potential utilities due to their continuity with other paths.
使用多频探地雷达识别 ITERA 校园地下公用设施
苏门答腊理工学院的基础设施建设发展迅速,因此需要安装新的公用设施网络,如电缆和管道,以供应电力和清洁水。在安装新的公用设施线路时,有必要确保并了解先前埋设的公用设施网络的存在情况和深度,以避免破坏,以免妨碍施工进程或造成巨大损失。地球物理方法,如地面穿透雷达(GPR),可用于获取地下信息,识别埋设的公用设施网络,确保新公用设施的安全安装,并防止损坏现有的埋设公用设施。在这项研究中,使用了一个频率范围为 40 MHz-3.4 GHz、由 5 条轨道组成的 GPR 设备。通过 GPR Insights 软件对获取的数据进行处理,生成雷达图横截面,提供有关地表下的信息。在 0.5 米、0.8 米、1 米和 1.2 米的不同距离上,探测到了不同深度的公用设施网络。此外,还观察到几个双曲线形式的异常点,由于其与其他路径的连续性,表明可能存在公用设施。
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