会议论文详细信息
Southeast Asian Conference on Geophysics
The Preliminary Results of GMSTech: A Software Development for Microseismic Characterization
Rohaman, Maman^1 ; Suhendi, Cahli^1 ; Verdhora Ry, Rexha^1 ; Sugiartono Prabowo, Billy^2 ; Widiyantoro, Sri^3 ; Dian Nugraha, Andri^3 ; Yudistira, Tedi^3 ; Mujihardi, Bambang^4
Master Program of Geophysical Engineering, Faculty of Mining and Petroleum Engineering, Institut Teknologi Bandung, Indonesia^1
Volcanology and Geothermal Laboratory, Faculty of Mining and Petroleum Engineering, Institut Teknologi Bandung, Indonesia^2
Global Geophysics Research Group, Faculty of Mining and Petroleum Engineering, Institut Teknologi Bandung, Indonesia^3
Pertamina UTC, Indonesia^4
关键词: Grid-search method;    Microseismic events;    Microseismic technology;    Non-linear inverse problem;    Processing modules;    Seismic tomography;    Simulated annealing method;    Velocity structure;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/62/1/012024/pdf
DOI  :  10.1088/1755-1315/62/1/012024
来源: IOP
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【 摘 要 】

The processing of microseismic data requires reliable software for imaging the condition of subsurface related to occurring microseismicity. In general, the currently available software is only specific for certain processing module and developed by the different developer. However, the software with integrated processing modules will give a better value because the users can use it easier and faster. We developed GMSTech (Ganesha Microseismic Technology), a C# language-based standing-alone software consisting several modules for processing of microseismic data. Its function is to solve a non-linear inverse problem and imaging the subsurface. C# library is supported by ILNumerics to reduce time consumption and give good visualization. In this preliminary result, we will present four developed modules: (1) hypocenter determination, (2) moment magnitude calculation, and (3) 3D seismic tomography. In the first module, we provide four methods for locating the microseismic events that can be chosen by a user independently: simulated annealing method, guided grid-search method, Geiger's method, and joint hypocenter determination (JHD). The second module can be used for calculating moment magnitude using Brune method and to estimate the released energy of the event. At last, we also provided the module of 3-D seismic tomography for imaging the velocity structures based on delay time tomography. We demonstrated the software using both a synthetic data and a real data from a certain geothermal field in Indonesia. The results for all modules are reliable and remarkable, reviewed statistically by RMS error. We will keep examining the software using another set of data and developing further modules of processing.

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