The role of geophysics in the construction and stability assessment of tunnels

Warta Geologi Pub Date : 2021-12-29 DOI:10.7186/wg473202101
Nik Adib Yaaziz, M. H. Arifin
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Abstract

Geophysics play a vital role in the constructions of any major manmade structures in the world. One of those being the tunnels. In depth understanding of geophysical methods and a lot of information are needed in order to design a tunnel construction project. Comprehensive investigation on the ground condition has to be done before the field preparation study that will determine the stand-up time and the groundwater condition that may disrupt the tunnel construction. For tunnel stability assessment, an integration of geophysical methods is a must in order to obtain the most accurate results. Satellite imaging interpretation emphasizes on the structural tracing of negative lineament while field mapping emphasizes on location of underground seepage and major tectonic structures such as faults, joints and shear zones. Geoelectrical resistivity tomography survey is able to identify the differences in resistivity of Earth’s materials based on the water content inside of them. The best course of remediation could only be chosen once the output from all these studies are made available.
地球物理在隧道施工及稳定性评价中的作用
地球物理在世界上任何主要人工结构的建造中都起着至关重要的作用。其中之一就是隧道。隧道施工方案的设计需要深入了解地球物理方法和大量的信息。在进行现场准备研究之前,必须对地面状况进行全面调查,以确定施工时间和可能破坏隧道施工的地下水状况。在隧道稳定性评价中,为了获得最准确的评价结果,必须综合运用地球物理方法。卫星成像解释侧重于负剖面的构造示踪,野外填图侧重于地下渗流和断层、节理、剪切带等主要构造的定位。地球电阻率断层扫描调查能够根据地球材料内部的含水量来确定其电阻率的差异。只有在获得所有这些研究的成果后,才能选择最佳的补救措施。
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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