2 Propagation of Hydraulic Fractures# The Vertical Growth of Hydraulic Fractures# Next# Lecture# Stanford|ONLINE gp202.class.stanford.edu#! " " " " " Week 3 – Lecture 5 Rock Strength – Chapter 4 Part I Mark D. Zoback Professor of Geophysics Stanford|ONLINE gp202.class.stanford.edu#! Mark D. Zoback is the Benjamin M. Page Professor of Geophysics at Stanford University, California. *Chan, A.W. His research interests are fault mechanics, in situ stress, and reservoir geomechanics, with an emphasis on shale gas, tight gas and tight oil production. If nothing happens, download the GitHub extension for Visual Studio and try again. is Benjamin M. Page Professor of Earth Sciences and Professor of Geophysics in the Department of Geophysics at Stanford University. Harbison-Fischer Technical Workshop. Das, I. and M.D. 2019. He co-directs SCITS Stanford Center for Induced and Triggered Seismicity (SCITS). We named our instance of the Open edX platform Lagunita, after the name of a cherished lake bed on the Stanford campus, a favorite gathering place of students. My research interests focus mainly on the integration of structural geology, rock physics, geomechanics and their impacts on field development plans and daily operations. Geological Applications of Well Logs. The emphasis of this research recently has been on shale gas, tight gas and tight oil reservoirs. More advanced course continuation of Reservoir Geomechanics, course also available in EdX. Use Git or checkout with SVN using the web URL. Reservoir Geomechanics, published by Cambridge University Press in 2007 is … *Ross, H.E., P. Hagin, and M.D. Haghighat Rassouli Zoback Juanes 2020 Shale, State of stress in areas of induced seismicity across North America, Stress orientation and relative stress magnitudes throughout the North American plate, https://gsa.confex.com/gsa/2020AM/meetingapp.cgi/Paper/353108, Integrated Analysis of the Coupling Between Geomechanics and Operational Parameters to Optimize Hydraulic Fracture Propagation and Proppant Distribution, Injection-induced seismicity and fault-slip potential in the Fort Worth Basin, Texas, Hennings et al 2019 Injection-induced seismicity and fault-slip potential in the Fort Worth Basin, Texas, Variation of the least principal stress with depth and its effect on vertical hydraulic fracture propagation during multi-stage hydraulic fracturing, https://www.onepetro.org/conference-paper/ARMA-2019-0254, Xu Singh Zoback 2019 Variation of the least principal stress with depth, Microseismic evidence for horizontal hydraulic fractures in the Marcellus Shale, southeastern West Virginia, alalli_zoback_2018_microseismic_evidence_for_horizontal_hydraulic_fractures_in_the_marcellus_shale_southeastern_west_virginia.pdf, Frictional properties of shale reservoir rocks, Long-period long-duration seismic events during hydraulic stimulation of shale and tight gas reservoirs — Part 2: Location and mechanisms, Long-period, long-duration seismic events during hydraulic stimulation of shale and tight gas reservoirs — Part 1: Waveform characteristics, Mechanical properties of shale-gas reservoir rocks — Part 1: Static and dynamic elastic properties and anisotropy, Mechanical properties of shale-gas reservoir rocks — Part 2: Ductile creep, brittle strength, and their relation to the elastic modulus, The Evolution of Stimulated Reservoir Volume during Hydraulic Stimulation of Shale Gas Formations, The importance of slow slip on faults during hydraulic fracturing of a shale gas reservoirs, A method to implement permeability anisotropy associated with fault damage zones in reservoir simulation, Hydraulic fracturing, microseismic magnitudes and stress evolution in the Barnett Shale, Texas, USA, Addressing the environmental risks from shale gas development, Oscillation of fluid-filled cracks triggered by degassing of CO2 due to leakage along wellbores, Seismic Detection of CO2 Leakage along Monitoring Wellbores, Thermal aspects of geomechanics and induced fracturing in CO2 injection with application to CO2 sequestration in the Ohio River Valley, Fluid Flow in a Fractured Reservoir Using Geomechanically Constrained Fracture Model for Reservoir Simulation, CO2 storage and enhanced coalbed methane recovery in unmineable coalbeds of the Powder River Basin, Wyoming: Reservoir characterization and fluid flow simulaltions, Assessing economic feasibility or regional deep saline aquifer CO2 injection and sequestration: A geomechanics-based workflow applied to the Rose Run Sandstone in Eastern Ohio, Sub-hydrostatic pore pressure in coalbed and sand aquifers of the Powder River Basin, WY and MT, and implications for disposal of coalbed-methane -produced water through injection, Reservoir Geomechanics: Earth Stress and Rock Mechanics Applied to Exploration, Production and Wellbore Stability, Hydraulic fracturing and wellbore completion of coalbed methane (CBM) wells in the Powder River Basin, Wyoming: Implications for water and gas production, Seal integrity and feasibility of CO2 sequestration in the Teapot Dome EOR pilot: geomechanical site characterization, Subsidence in the Louisiana coastal zone due to hydrocarbon production, The Role of Hydrocarbon Production on Land Subsidence and Fault Reactivation in the Louisiana Coastal Zone, Geomechanical aspects of CO2 sequestration in a deep saline reservoir in the Ohio River Valley region. This interdisciplinary book encompasses the fields of rock mechanics, structural geology and petroleum engineering to address a wide range of geomechanical problems that arise during the exploitation of oil and gas reservoirs. Sone, H and M.D. Zoback, M.D., Reservoir Geomechanics: Earth Stress and Rock Mechanics Applied to Exploration, Production and Wellbore Stability, Cambridge Press, Cambridge Press, 449 pp. Zoback, CO2 storage and enhanced coalbed methane recovery in unmineable coalbeds of the Powder River Basin, Wyoming: Reservoir characterization and fluid flow simulaltions, International Journal of Greenhouse Gas Controls, v.3, p. 773-786, doi:10.1016/j_ijggc.2009.06.002. Use of a scientific computing program such MATLAB, Python, or Microsoft Excel is necessary for manipulating and visualizing data. He conducts research on in situ stress, fault mechanics, and reservoir geomechanics with an emphasis on shale gas, tight gas and tight oil production. Xu, Shaochuan, Singh, A., and Zoback, M.D. Reservoir Geomechanics is a practical reference for geoscientists and engineers in the petroleum and geothermal industries, and for research scientists interested in stress measurements and their application to problems of faulting and fluid flow in the crust. Zoback, The Evolution of Stimulated Reservoir Volume during Hydraulic Stimulation of Shale Gas Formations, URTeC 1575434, Unconventional Resources Technology Conference (URTeC) held in Denver, Colorado, USA, 12-14 August 2013. Zoback, Hydraulic fracturing and wellbore completion of coalbed methane (CBM) wells in the Powder River Basin, Wyoming: Implications for water and gas production, American Association of Petroleum Geologists Bulletin, 91,51-67. Unconventional Reservoir Geomechanics This course covers the geophysical and engineering concepts needed to understand the recovery of hydrocarbons from extremely low permeability unconventional oil and gas reservoirs. This interdisciplinary book encompasses the fields of rock mechanics, structural geology and petroleum engineering to address a wide range of geomechanical problems that arise during the exploitation of oil and gas reservoirs. Dr. Zoback conducts research on in situ stress, fault mechanics, and reservoir geomechanics with an emphasis on shale gas, tight gas and tight oil production. The emphasis of this research has recently been shale gas, tight gas, and tight oil reservoirs. He co-directs SCITS Stanford Center for Induced and Triggered Seismicity (SCITS) and the Stanford Center for Carbon Storage (SCCS). Dr. Zoback conducts research on in situ … Reservoir Geomechanics We are carrying out a series of studies, usually in close collaboration with the oil and gas industry, on problems in oil and gas reservoirs, potential CO2 repositories and geothermal reservoirs. Use of a scientific computing program such MATLAB, Python, or Microsoft Excel is necessary for manipulating and visualizing data. Reservoir Geomechanics. Reservoir Geomechanics, offered by Stanford Online through edX, provides the necessary background. Solid Earth, v. 118, 1–17, 17 August, 2013. doi:10.1002/jgrb.50346, 2013. Zoback, M.D., A. Kohli, I. Das and M. McClure, The importance of slow slip on faults during hydraulic fracturing of a shale gas reservoirs, SPE 155476, SPE Americas Unconventional Resources Conference held in Pittsburgh, PA, USA 5-7 June, 2012. Stanford Online offers a lifetime of learning opportunities on campus and beyond. 2020 - Jul 2020 course continuation of Reservoir Geomechanics Lecture # Stanford|ONLINE #! Principal stress with depth and its effect on vertical Hydraulic Fracture Propagation during multi-stage Hydraulic.... Government documents and more mechanics and the Director of the Stanford Natural gas Initiative at Stanford.! 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