Physics-based seismic evaluation method: Evaluating possible seismic moment based on microseismic information due to fluid stimulation
Author(s) -
Yusuke Mukuhira,
Hiroshi Asanuma,
Takatoshi Ito,
Markus Häring
Publication year - 2016
Publication title -
geophysics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.178
H-Index - 172
eISSN - 1942-2156
pISSN - 0016-8033
DOI - 10.1190/geo2015-0648.1
Subject(s) - seismic moment , microseism , seismic hazard , moment (physics) , geology , seismology , induced seismicity , seismic to simulation , seismic noise , magnitude (astronomy) , seismic inversion , fault (geology) , physics , mathematics , geometry , classical mechanics , astronomy , azimuth
The forecasting and risk assessment of induced seismicity associated with fluid injection have considerable importance for subsurface energy development. We have developed a seismic evaluation method called the possible seismic moment (PoSeMo) model to assess the potential seismic moment that could be released in the future based on current seismic activity. The PoSeMo model assumes the existence of a representative parameter that can describe the seismic characteristics of a given field. This parameter is defined as the seismic moment density, which quantifies the seismic moment able to be released per rock volume. The rock volume presumed to be in critical condition because of stimulation is defined as the stimulated rock volume. The current stimulation condition for the PoSeMo model can be estimated from the product of these two parameters. The difference between the output of the PoSeMo model and the observed cumulative seismic moment corresponds to the cumulative seismic moment that could be ...
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