Fast GPU-Based Seismogram Simulation from Microseismic Events in Marine Environments Using Heterogeneous Velocity Models

May 13, 2017 ยท Declared Dead ยท ๐Ÿ› IEEE Transactions on Computational Imaging

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Authors Saptarshi Das, Xi Chen, Michael P. Hobson arXiv ID 1705.04874 Category physics.geo-ph Cross-listed cs.DC, physics.comp-ph Citations 25 Venue IEEE Transactions on Computational Imaging Last Checked 1 month ago
Abstract
A novel approach is presented for fast generation of synthetic seismograms due to microseismic events, using heterogeneous marine velocity models. The partial differential equations (PDEs) for the 3D elastic wave equation have been numerically solved using the Fourier domain pseudo-spectral method which is parallelizable on the graphics processing unit (GPU) cards, thus making it faster compared to traditional CPU based computing platforms. Due to computationally expensive forward simulation of large geological models, several combinations of individual synthetic seismic traces are used for specified microseismic event locations, in order to simulate the effect of realistic microseismic activity patterns in the subsurface. We here explore the patterns generated by few hundreds of microseismic events with different source mechanisms using various combinations, both in event amplitudes and origin times, using the simulated pressure and three component particle velocity fields via 1D, 2D and 3D seismic visualizations.
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