Finite-difference time-domain method of ground penetrating radar images for accurate estimation of subsurface pipe properties

IF 4.1 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Ndt & E International Pub Date : 2024-09-13 DOI:10.1016/j.ndteint.2024.103235
Rain Man Raja, Takahiro Yamaguchi, Tsukasa Mizutani
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Abstract

The increasing length of subsurface pipe causes overlapping, accumulation, and occasionally the old pipe layout is not also available. Consequently, accidents, damages, time delays, and financial losses occur during construction of new structures or installation of new pipes. Therefore, depth, radius, material of the existing pipe, and map of pipe are indispensable for knowing proper construction planning. In this article, an algorithm is proposed to estimate the properties of subsurface pipes and show 3D maps. Using this algorithm, the radius of the field pipes was estimated with 83, 67, and 89 % accuracy and depth with 95, 95, and 98 % accuracy. The effect of pipe radius should be considered to assess the pipe depth with higher accuracy. The material of the field pipe was successfully determined using the evaluated relative permittivity. A 3D map of the field pipe was developed by applying the tracing algorithm and linear regression on estimated depth.

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利用有限差分时域法处理透地雷达图像,准确估算地下管道特性
地下管道的长度不断增加,造成重叠、堆积,有时还无法利用旧管道布局。因此,在建造新建筑物或安装新管道时,会发生事故、损坏、时间延误和经济损失。因此,要了解正确的施工规划,现有管道的深度、半径、材料和管道图是必不可少的。本文提出了一种估算地下管道属性并显示三维地图的算法。使用该算法,现场管道半径的估算精度分别为 83%、67% 和 89%,深度的估算精度分别为 95%、95% 和 98%。要更准确地评估管道深度,应考虑管道半径的影响。利用评估的相对介电常数成功确定了野外管道的材料。通过对估计深度应用追踪算法和线性回归,绘制了野外管道的三维地图。
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来源期刊
Ndt & E International
Ndt & E International 工程技术-材料科学:表征与测试
CiteScore
7.20
自引率
9.50%
发文量
121
审稿时长
55 days
期刊介绍: NDT&E international publishes peer-reviewed results of original research and development in all categories of the fields of nondestructive testing and evaluation including ultrasonics, electromagnetics, radiography, optical and thermal methods. In addition to traditional NDE topics, the emerging technology area of inspection of civil structures and materials is also emphasized. The journal publishes original papers on research and development of new inspection techniques and methods, as well as on novel and innovative applications of established methods. Papers on NDE sensors and their applications both for inspection and process control, as well as papers describing novel NDE systems for structural health monitoring and their performance in industrial settings are also considered. Other regular features include international news, new equipment and a calendar of forthcoming worldwide meetings. This journal is listed in Current Contents.
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