On the residual opening of cracks with rough faces stimulted by shear slip

dc.contributor.authorBortolan Neto, L.
dc.contributor.authorKotooussov, A.
dc.contributor.conferenceAustralasian Congress on Applied Mechanics (7th : 2012 : Adelaide, S.A.)
dc.date.issued2012
dc.description.abstractThe hydraulic stimulation of fractures has been widely employed worldwide for increasing the productivity of hydrocarbon reservoirs. Many exciting potential applications of this technique, specifically for geothermal reservoirs and coal seam gas (CSG) industries stipulate a strong need for new theoretical models and solutions capable to describe the residual fracture openings after hydraulic stimulations. In this paper a new mechanical model to predict the roughness induced fracture residual opening due to shear slip is developed. It is based on simplified and well established mechanical models of shear slip and contact law of rough surfaces. The solution procedure utilises the distributed dislocation technique, which reduces the governing system to a system of singular equations. The latter is solved using the standard Gauss-Chebyshev quadrature method.
dc.description.statementofresponsibilityLuiz Bortolan Neto and Andrei Kotousov
dc.identifier.citationProceedings of the 7th Australasian Congress on Applied Mechanics,(ACAM 7), December 10-12, 2012, Adelaide, Australia: pp.867-876
dc.identifier.isbn9781922107619
dc.identifier.orcidKotooussov, A. [0000-0001-9337-5095]
dc.identifier.urihttp://hdl.handle.net/2440/78146
dc.language.isoen
dc.publisherEngineers Australia
dc.publisher.placeCDROM / DVDROM
dc.rightsCopyright status unknown
dc.source.urihttp://search.informit.com.au/documentSummary;dn=129054514949169;res=IELENG
dc.subjectDistributed dislocation technique
dc.subjectfracture mechanics
dc.subjectfracture residual opening
dc.subjecthydraulic fracturing
dc.subjectrock mechanics
dc.subjectroughness induced crack opening
dc.subjectslip opening
dc.subjectwell stimulation
dc.titleOn the residual opening of cracks with rough faces stimulted by shear slip
dc.typeConference paper
pubs.publication-statusPublished

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