Integration of field mapping, lineament interpretation and electrical resistivity tomography survey to characterize granitic rock mass lining by shotcrete

Q3 Earth and Planetary Sciences Bulletin of the Geological Society of Malaysia Pub Date : 2020-05-31 DOI:10.7186/bgsm69202004
H. Hussin, M. H. Arifin, T. Jamaluddin, Muhammad Fahmi Abdul Ghani, N. Ismail, Abdul Manan Abdullah
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Abstract

Rock mass characterization is important to identify the condition of rock especially in major infrastructure like a tunnel. Rock mass characterization can be done either before, during or after construction completed. In this case study, this characterization was done after almost 20 years of tunnel operation. Characterization could not be done directly to the field as half of the rock mass along tunnel was covered by shotcrete layer. To overcome this problem, three integration methods which are field mapping, satellite image interpretation and geoelectrical tomography resistivity survey been approached. Satellite image interpretation is to emphasise negative lineament structure tracing while field mapping is to emphasis the location of groundwater intrusion and major tectonic structures like fault, joint and shear zone. Geoelectrical tomography resistivity survey was conducted using ABEM SAS 400 system and dipole-dipole array while raw data were processed using Res2DINV software. Data analysis showed three difference resistivity values which are high resistivity (> 1500 Ω.m), moderate (100-500 Ω.m) and low (<25 Ω.m). Findings from field mapping and lineament interpretation were used to interpret pseudosection. All three resistivity values were interpreted as high water content zone (low resistivity), lineament effected and highly fractured granitic rock mass (moderate resistivity) and low fractured granitic rock (high resistivity).
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结合现场测绘、线理解释和电阻率层析成像测量来表征喷射混凝土衬砌的花岗岩岩体
岩体表征对于确定岩体的状态非常重要,特别是在隧道等重大基础设施中。岩体特征可以在施工完成之前、期间或之后进行。在本案例研究中,该特征是在隧道运行近20年后完成的。由于隧道沿线一半的岩体被喷射混凝土层覆盖,无法直接对现场进行表征。为解决这一问题,探讨了野外填图、卫星影像解译和地电层析电阻率测量三种集成方法。卫星影像解译强调的是逆线性构造的追踪,野外填图强调的是地下水侵入和断层、节理、剪切带等主要构造的位置。采用ABEM SAS 400系统和偶极-偶极阵列进行地电层析电阻率测量,原始数据采用Res2DINV软件处理。数据分析显示电阻率差异值为高电阻率(> 1500 Ω.m)、中电阻率(100-500 Ω.m)和低电阻率(<25 Ω.m)。利用野外测绘和线状解释的结果来解释伪剖面。3个电阻率值分别为高含水带(低电阻率)、受线状影响且高度断裂的花岗岩岩体(中电阻率)和低断裂的花岗岩岩体(高电阻率)。
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来源期刊
Bulletin of the Geological Society of Malaysia
Bulletin of the Geological Society of Malaysia Earth and Planetary Sciences-Earth and Planetary Sciences (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
15
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