Monitoring tectonic activity in tunnel walls with radar interferometry: a case study of tunnels of Hormozgan Province, Iran

Desert Pub Date : 2020-06-01 DOI:10.22059/JDESERT.2020.78165
M. Pourkhosravini, A. Mehrabi, Z. Amirjahanshahi
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Abstract

Communication and transportation networks are among the most important infrastructures critically involved in the development of different countries. The structural and tectonic position of Iran causes significant damage to its communication networks every year. Therefore, it is essential to adopt an integrated and flexible approach for assessing seismic risk in terms of available indicators. The differential synthetic aperture radar interferometry (DInSAR) technique is among the most effective and suitable techniques for monitoring land surface change. Therefore, this research aimed to estimate the displacement rate caused by the activity of fault lines over the railway tunnels in Hormozgan. The results revealed that the displacement rate was higher in parts with a higher fault density and intersection. Specifically, the amount of displacement due to tectonic activity in the studied area was estimated between 1.2 and 2.7 cm per year. Accordingly, the railway tunnels of Hormozgan are at risk of destruction over time.
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用雷达干涉测量法监测隧道壁的构造活动——以伊朗霍尔莫兹甘省隧道为例
通信和运输网络是与各国发展密切相关的最重要的基础设施之一。伊朗的构造和构造位置每年都对其通信网络造成重大损害。因此,必须采用一种综合灵活的方法,根据现有指标来评估地震风险。差分合成孔径雷达干涉测量(DInSAR)技术是监测地表变化最有效、最合适的技术之一。因此,本研究旨在估算霍尔木兹干铁路隧道上断层线活动引起的位移率。结果表明,断层密度和交点越高,断层位移率越高。具体而言,研究区由于构造活动造成的位移量估计在每年1.2 - 2.7 cm之间。因此,随着时间的推移,霍尔木兹干铁路隧道有被破坏的危险。
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