Evaluation of rock mass units using a non-invasive geophysical approach

被引:0
作者
Muhammad Hasan
Yanjun Shang
Qingsen Meng
机构
[1] Chinese Academy of Sciences,Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics
[2] University of Chinese Academy of Sciences,College of Earth and Planetary Sciences
[3] Chinese Academy of Sciences,Innovation Academy for Earth Science
来源
Scientific Reports | / 13卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Thorough and accurate assessment of rock mass units is important for development of engineering infrastructures and groundwater resources assessments. Rock mass units are widely evaluated by reliable geomechanical parameters namely rock quality designation (RQD) and rock core index (RCI). Conventionally, these parameters are acquired via an extensive number of geotechnical tests. Such tests, however, suffer efficiency for data coverage, cost, equipment and topographic constrictions, and hence cause ambiguity in geological models for a detailed evaluation of rock mass integrity. Conversely, geophysical surveys offer fast, more user-friendly, less invasive, more cost-effective and less time-consuming approach for geological investigations. The past research confirms a useful link between geophysical and geotechnical parameters. But, none of the past studies provides a suitable and generalized relation between these parameters which can reduce geotechnical model uncertainty mostly caused by inadequate data and subsurface heterogeneity. This paper proposes a meaningful and feasible method to obtain geomechanical parameters using a certain number of drillings and geophysical data of four different sites. Based on electrical resistivity obtained from electrical resistivity tomography (ERT) and controlled-source audio-frequency magneto telluric (CSAMT), this research provides the general and adaptable formulas for geotechnical parameter estimation and reduces geological model uncertainty for more detailed 2D/3D imaging of RQD and RCI covering the whole sites where even no drilling data exists. Thus, the investigated sites are assessed laterally and vertically along each geophysical profile via distinct value ranges of geological parameters for a thorough and reliable evaluation of rock mass units in highly heterogeneous setting. Our research reduces the ambiguity caused by structural heterogeneities and scarce data, fills the gap between inadequate well tests and the true geological models, and gives new insights into the rock mass units for proper engineering design and groundwater exploitation.
引用
收藏
相关论文
共 196 条
[21]  
Bianchini-Ciampoli L(2018)Correlation of p-wave velocity with rock quality designation (RQD) in volcanic rocks J. Appl. Geol. 3 101-347
[22]  
D’Amico F(2002)Applications of electrical and electromagnetic methods for environmental and geotechnical investigations Surv. Geophys. 23 109-92
[23]  
Calvi A(2013)Underground cavity investigation within the city of Rome (Italy): A multi-disciplinary approach combining geological and geophysical data Eng. Geol. 152 89-430
[24]  
Tosti F(2013)Geophysical characterization of the Salna Sinking Zone, Garhwal Himalaya, India Surv Geophys. 34 737-17
[25]  
De Giorgi L(2013)Gravity effect of water storage changes in a weathered hard-rock aquifer in West Africa: Results from joint absolute gravity, hydrological monitoring and geophysical prospection Geophys. J. Int. 194 83-757
[26]  
Leucci G(2014)Using electrical resistivity tomography (ERT) as a tool in geotechnical investigation of the substrate of a highway Stud. Quat. 31 101-192
[27]  
Butchibabu B(2015)Numerical evaluation 2D electrical resistivity tomography for investigations of subsoil Tech. Trans. Environ. Eng. Ser. 24 335-1062
[28]  
Sandeep N(2016)An electric and electromagnetic geophysical approach for subsurface investigation of anthropogenic mounds in an urban environment Geomorphology 273 82-213
[29]  
Sivaram YV(2018)Application of geophysical methods in a dam project: Life cycle perspective and Taiwan experience J. Appl. Geophys. 158 621-514
[30]  
Jha PC(2019)Characterization of geological structures under thick quaternary formations with CSAMT method in Taiyuan City, Northern China J. Environ. Eng. Geophys. 24 4394-22