passive seismic methods for hydraulic fracture … seismic methods for hydraulic fracture...

1
Passive seismic methods for hydraulic fracture monitoring: Resolving fracture networks, slow slip and earthquake nucleation processes David W. Eaton 1 , Mirko van der Baan 2 , Mason MacKay 1 , Enrico Caffagni 3 and Megan Zecevic 1 1 Department of Geoscience, University of Calgary 2 Department of Physics, University of Alberta 3 Institut für Meteorologie und Geophysik. Universität Wien Hydraulic fracturing or stimulation methods are widely used for enhancing the permeability of unconventional hydrocarbon or geothermal reservoirs. Passive seismic monitoring, using surface or downhole sensor arrays, is sometimes used to monitor the distribution and characteristics of induced (micro)earthquakes. Within the process zone near the injection site, much of the recorded microseismicity is inferred to arise from activation of slip or tensile opening along pre-existing fractures, due to the effects of both pore pressure and stress perturbations. There is ongoing debate about whether this is also accompanied by slow-slip rupture processes, analogous to some fault systems. In rare cases, basement faults have been activated by hydraulic fracturing, leading to induced earthquakes. The application of template based-methods for event detection and location are effective for illuminating fracture networks and understanding the deformation processes induced by the hydraulic stimulation. Similar techniques show promise for resolving small-scale nucleation processes associated with fault activation. Perspective views (left) and depth sections (right) showing microseismicity from the first 4 treatment stages of hydraulic fracturing in a low-permeability reservoir (Eaton and Caffagni, 2015, First Break, 33(7), 49-55). Panels A and B show the results from initial commercial processing; C,D show results using a matched filtering method. Acknowledgement: This work was supported by the Natural Sciences and Engineering Research Council of Canada (NSERC) and by sponsors of the Microseismic Industry Consortium (www.microseismic-research.com).

Upload: dotram

Post on 12-Jun-2018

229 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: Passive seismic methods for hydraulic fracture … seismic methods for hydraulic fracture monitoring: Resolving fracture networks, slow slip and earthquake nucleation processes David

Passiveseismicmethodsforhydraulicfracturemonitoring:Resolvingfracturenetworks,slowslipandearthquakenucleationprocesses

DavidW.Eaton1,MirkovanderBaan2,MasonMacKay1,EnricoCaffagni3andMeganZecevic1

1DepartmentofGeoscience,UniversityofCalgary2DepartmentofPhysics,UniversityofAlberta

3InstitutfürMeteorologieundGeophysik.UniversitätWienHydraulic fracturing or stimulation methods are widely used for enhancing the permeability ofunconventionalhydrocarbonor geothermal reservoirs. Passive seismicmonitoring,using surfaceordownholesensorarrays,issometimesusedtomonitorthedistributionandcharacteristicsofinduced(micro)earthquakes. Within the process zone near the injection site, much of the recordedmicroseismicity is inferred to arise from activation of slip or tensile opening along pre-existingfractures,duetotheeffectsofbothporepressureandstressperturbations.Thereisongoingdebateabout whether this is also accompanied by slow-slip rupture processes, analogous to some faultsystems. In rare cases, basement faults have been activated by hydraulic fracturing, leading toinduced earthquakes. The applicationof template based-methods for event detection and locationareeffectiveforilluminatingfracturenetworksandunderstandingthedeformationprocessesinducedby the hydraulic stimulation. Similar techniques show promise for resolving small-scale nucleationprocessesassociatedwithfaultactivation.Perspectiveviews(left)anddepthsections(right)showingmicroseismicityfromthefirst4treatmentstagesofhydraulicfracturinginalow-permeabilityreservoir(EatonandCaffagni,2015,FirstBreak,33(7),49-55).Panels A and B show the results from initial commercial processing; C,D show results using a matchedfilteringmethod.

Acknowledgement: This work was supported by the Natural Sciences and Engineering Research Council ofCanada(NSERC)andbysponsorsoftheMicroseismicIndustryConsortium(www.microseismic-research.com).