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Unconventional Energy Resources

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Unconventional Energy Resources ( unconventional-energy-resources )

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American Association of Petroleum Geologists, Energy Minerals Division Figure 9. Drilling statistics related to total rig count, number of vertical and horizontal wells completed on a quarterly basis from 2009 to 2012 in the Alberta portion of the Western Canada Sedimentary Basin (Alberta Energy Regulator 2013, http://www.aer.ca/). billion m3) of oil-in-place, has had only 􏰙17% of its hydrocarbons recovered using conventional technologies. Cardium con- ventional reservoirs are incised estuarine valley-fills, progradational shorefaces, or transgressive sheets. Surrounding these con- ventional reservoirs are ‘‘halos’’ of the lar- gely tight (permeabilities<0.5 mD), thin- bedded, mixed lithologies of very fine sand- stone to shale. This example is one in which there is a clear continuum of fluids, reservoir, and development strategies between the older (but now renewed) conventional fields, and the emerging fringe tight-gas and liq- uids-rich gas accumulations in the distal edges of the conventional fields. 6. The Nikanassin Formation, British Columbia and Alberta, Canada (Fig. 7) has thinner (5–15 m) fluvial channel and thicker (>50– 500 m; >164–1,640 ft) incised-valley-fill res- ervoir sandstones, with porosities of 6–10%, and permeabilities of 0.01–1 lD. Reservoir sandstones are quartz-rich, highly cemented, brittle, and, where productive, extensively fractured. The Nikanassin is a structural play where thrust-belt tectonics has fractured the brittle sandstones to enhance porosity/per- meability. Gas was generated in the associ- ated coals with regional conventional trapping. Nikanassin development fairways are along the leading edges of the NW– SE—trending thrust faults. Early returns show production up to 3.2 Bcf (90,000,000 m3) per well (Oil and Gas Inquirer 2012). 7. The Montney Formation, British Columbia and Alberta, Canada (Fig. 7), commonly called a ‘‘shale gas,’’ is a thin-bedded suc- cession of mixed-bed lithologies, including siltstone and very fine sandstone that over- lies organic-rich shale. Since 2003, the upper and lower Montney tight-gas sandstones/ siltstones have been developed using

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