Investigation of soil contamination by iron pipe corrosion and its influence on GPR detection

S. Pennock, T. M. Abed, G. Curioni, D. Chapman, U. E. John, C. Jenks
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引用次数: 4

Abstract

It has been observed that the corrosion of iron pipes in soil can produce variations in ground conductivity around the pipe, and that the visibility of such pipes to GPR can be greatly reduced. This new investigation and measurement of the permittivity and conductivity of soil contaminated by iron pipe corrosion products produces more accurate knowledge of permittivity and conductivity data and their likely spatial variation with distance from the corroding pipe. The experimental data are the result of monitoring accelerated corrosion over a period of several weeks and using TDR and direct conductivity measurement schemes. FDTD simulations of GPR signals show how the corrosion induced variation in the visibility of the pipe varies with the thickness and shape of the new spatial variations permittivity and conductivity. The results indicate that in the earlier stages of pipe corrosion use of lower GPR frequencies will still detect the pipe, although at lower spatial resolution.
铁管腐蚀污染土壤及其对探地雷达探测的影响研究
据观察,铁管道在土壤中的腐蚀会使管道周围的土壤电导率发生变化,并且这种管道对探地雷达的能见度会大大降低。这种对被铁管腐蚀产物污染的土壤的介电常数和电导率的新研究和测量,可以更准确地了解介电常数和电导率数据及其与腐蚀管道距离的可能空间变化。实验数据是在几个星期内监测加速腐蚀并使用TDR和直接电导率测量方案的结果。GPR信号的时域有限差分模拟表明,腐蚀引起的管道可见性变化随新的空间变化的厚度和形状而变化。结果表明,在管道腐蚀的早期阶段,使用较低的探地雷达频率仍然可以探测到管道,尽管空间分辨率较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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