EML和GPR技术在地下设施探测中的应用

Syed Idrus Syed Salim, Asrul Zakaria, Norhaira Nordin, Sulzakimin Mohamed
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引用次数: 0

摘要

地下公用事业测绘是提取地下公用事业信息的重要手段,如电力和电话电缆、燃气管道、排水管和水管。电磁定位测量(EML)和探地雷达(GPR)已广泛用于测绘一定深度的地下公用设施和细化公用设施特征。如果涉及到某些土壤,例如涉及到比平常更硬的土壤,那么与较软的土壤相比,探地雷达传播的波可能会更慢。甚至土壤的含水率也会影响探地雷达图像。本文结合探地雷达雷达图中双曲图像的精度,研究了这两种设备的使用方法。实施的方法是通过公用事业安装检测工作和标记检测信息,使用EML和GPR在位于Perumahan Makmur Penor Utara Jaya (PUJ)的同一区域使用相同频率拍摄几张图像,使用GPR模型设备(徕卡DS2000), GPS (Topcon Hyper V)和EML (RD8100)。因此,分析发现,适当的条件是,当电缆可以更容易地检测使用夹紧方法,使用“峰值”模式在8KHz - 33khz频率的EML设备和探地雷达。使用高频(1GHz或更高)更适合于小型设施的检测工作,符合公式0.1*λ,其中λ是波长。因此,本文的研究成果对于提高数据采集工作的质量,增加高质量地下公用事业图的制作具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of EML and GPR Technology for Underground Utilities Detection
Underground utility mapping is important for extracting underground utility information such as electrical and telephone cables, gas pipes, drainage pipes and water pipes. Electromagnetic Location Surveys (EML) and Ground Penetrating Radar (GPR) have been widely used for mapping underground utilities at certain depths and refined utility characteristics. If it involves certain soils such as involving soils that are harder than usual, there is a possibility that the waves transmitted by the GPR are slower as compared to softer soils. Even the moisture rate on the soil also affects the GPR image. This study was conducted to find out how these two equipments are used with reference to the accuracy of hyperbolic images in GPR Radargram. The methodology carried out is by utility installation detection work and marking of detection information using EML and GPR by taking several images using the same frequency in the same area which is located in Perumahan Makmur Penor Utara Jaya (PUJ) using GPR model equipment (Leica DS2000), GPS (Topcon Hyper V) and EML (RD8100). Thus, the analysis found that appropriate conditions was when electrical cables can be detected more easily by using the clamping method which used the "peak" mode at frequencies of 8KHz - 33 KHz for EML devices and for GPR. The use of high frequencies (1GHz or more) is more suitable at making detection work for smaller utilities, in line with the formula 0.1*λ, where λ is the wavelength. Therefore, the results of this study are very important for quality improvement during data collection work as well as an increase in the production of high-quality underground utility maps.
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