The last decade has seen a significantly increased interest in microseismic monitoring by the hydrocarbon industry due to the recent surge in unconventional resources such as shale-gas and heavy-oil plays. Both hydraulic fracturing and steam injection create changes in local pore pressures and in situ stresses and thereby brittle failure in intact rock plus additional slip/shearing in naturally fractured rock. Local rock failure or slip yields an acoustic emission, which is also known as a microseismic event. The microseismic cloud represents thus a volumetric map of the extent of induced fracture shearing, opening and closing. Microseismic monitoring can provide pertinent information on in situ reservoir deformation due to fluid stimulation, thus ultimately facilitating reservoir drainage. This paper reviews some of the current key questions and research in microseismicity, ranging from acquisition, processing to interpretation.
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ISRM International Conference for Effective and Sustainable Hydraulic Fracturing
May 20–22, 2013
Brisbane, Australia
Microseismic Monitoring Developments in Hydraulic Fracture Stimulation Available to Purchase
Mirko van der Baan;
Mirko van der Baan
University of Alberta
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Maurice Dusseault
Maurice Dusseault
University of Waterloo
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Paper presented at the ISRM International Conference for Effective and Sustainable Hydraulic Fracturing, Brisbane, Australia, May 2013.
Paper Number:
ISRM-ICHF-2013-003
Published:
May 20 2013
Citation
van der Baan, Mirko, Eaton, David, and Maurice Dusseault. "Microseismic Monitoring Developments in Hydraulic Fracture Stimulation." Paper presented at the ISRM International Conference for Effective and Sustainable Hydraulic Fracturing, Brisbane, Australia, May 2013.
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