会议论文详细信息
Southeast Asian Conference on Geophysics
Analysis of Ground Penetrating Radar's Capability for Detecting Underground Cavities: A Case Study in Japan Cave of Taman Hutan Raya, Bandung
Azimmah, Azizatun^1 ; Widodo^2
Undergraduate Program of Geophysical Engineering, Institut Teknologi Bandung, Indonesia^1
Applied Geophysics and Exploration Research Group, Faculty of Mining and Petroleum Engineering, Institut Teknologi Bandung, Indonesia^2
关键词: Building construction;    Electromagnetic soundings;    Forward modelling;    Geophysical methods;    Ground Penetrating Radar;    Homogeneous regions;    Shallow subsurface;    Underground cavities;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/62/1/012030/pdf
DOI  :  10.1088/1755-1315/62/1/012030
来源: IOP
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【 摘 要 】

Underground cavities or voids detection is essential especially when it comes to building construction. By knowing the presence of void lying underground, one could consider whether the subsidence is likely to be prevented or not. Ground penetrating radar is a high-frequency electromagnetic sounding technique that has been developed to investigate the shallow subsurface using the contrast of dielectric properties. This geophysical method is suitable to be used to detect and locate voids beneath the surface especially those that lie in shallow depth. This research focused on how GPR could be implemented as void detector using model simulation or forward modelling. The models applied in the forward modelling process are to be made as similar as the real condition in the case study location which took place in Tahura Japan Cave, Bandung, Indonesia. Forward modelling needs to be done so in the future, we might use the modelling results as the references in measuring real GPR data in the location. We used three models that we considered fairly representative to prove that GPR is capable of detecting and locating voids underneath the ground. This research resulted in the different amplitude region around the considerably homogeneous region. The different amplitude region is characterized having an arc shape and is considered to be air which is known as the key component of voids.

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