A closer look at pore throat size estimators for tight gas formations

Journal of Natural Gas Science and Engineering - Tập 27 - Trang 1252-1260 - 2015
J. Di1, J.L. Jensen1
1Dept. Chem. and Pet. Eng., U. of Calgary, 2500 University Drive NW, Calgary, AB T2N 1N4, Canada

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Adamson, 1990, 41 Aguilera, 2001 Aguilera, 2002, Incorporating capillary pressure, pore aperture radii, height above free water table, and Winland r35 values on Picket plots, AAPG Bull., 86, 605 Amaefule, 1993 Birdi, 2013 Clarkson, 2012, Innovative methods for flow-unit and pore structure analysis in a tight siltstone and shale gas reservoir, AAPG Bull., 96, 355, 10.1306/05181110171 Clarkson, 2012, Nanopore-structure analysis and permeability predictions for a tight gas siltstone reservoir by use of low-pressure adsorption and mercury-intrusion techniques, SPE Reserv. Eval. Eng., 648, 10.2118/155537-PA Clarkson, 2013, Pore structure characterization of North American shale gas reservoirs using USANS/SANS, gas adsorption, and mercury intrusion, Fuel, 103, 606, 10.1016/j.fuel.2012.06.119 Davies, 1997, The lower Triassic Montney Formation, west-central Alberta, Bull. Can. Pet. Geol., 45, 474 Doveton, 2014, 171 Dumore, 1974, Drainage capillary pressure functions and the influence of connate water, SPEJ, 437, 10.2118/4096-PA Giesche, 2006, Mercury porosimetry: a general (practical) overview, Part. Part. Syst. Charact., 23, 9, 10.1002/ppsc.200601009 Good, 1981, The contact angle in mercury intrusion porosimetry, Powder Tech., 29, 53, 10.1016/0032-5910(81)85004-8 Gunter, 2014, Winland pore throat prediction method-a proper retrospect: new examples from carbonates and complex systems Hald, 1952 Hartmann, 1999, Predicting reservoir system quality and performance Heid, 1950, 230 Heseldin, 1974, A method of averaging capillary pressure curves Hinai, 2014, Comparisons of pore size distribution: a case from the Western Australian gas shale formations, J. Unconv. Oil Gas Resour., 8, 1, 10.1016/j.juogr.2014.06.002 Kolodzie, 1980, Analysis of pore throat size and use of the Waxman-Smits equation to determine OOIP in Spindle field, Colorado, paper SPE, 9382, 10 Kuila, 2012, Specific surface area and pore-size distribution in clays and shales, Eur. Assoc. Geosci. Eng., 61, 341 Kwon, 1975 Leverett, 1941, Capillary behavior in porous solids, AIME Trans., 142, 159, 10.2118/941152-G Lindquist, 2000, Pore and throat size distributions measured from synchrotron X-ray tomographic images of Fontainebleau sandstones, J. Geophys. Res., 105, 1, 10.1029/2000JB900208 Liu, 2011, Integrated petrophysical study in North American Cotton Valley tight gas sand Liu, 2014, Nano-pore structure characterization of shale using gas adsorption and mercury intrusion techniques, J. Chem. Pharm. Res., 6, 850 Martin, 1997, Characterization of petrophysical flow units in carbonate reservoirs, AAPG Bull., 81, 734 Montgomery, 1982 Mosteller, 1977 Nabawy, 2010, Pore-throat characterization in highly porous and permeable sandstones, AAPG Bull., 93, 719, 10.1306/03160908131 Nelson, 2009, Pore-throat sizes in sandstones, tight sandstones, and shales, AAPG Bull., 93, 329, 10.1306/10240808059 Newsham, 2004 Nieto, 2013, Seismic lithology prediction: a Montney shale gas case study, CSEG Rec., 34 Pittman, 1992, Relationship of porosity and permeability to various parameters derived from mercury injection-capillary pressure curves for sandstone, AAPG Bull., 76, 191 Rushing, 2004, 237, 373 Shi, 1991, Lognormal simulation of pore size distributions in cementitious materials, J. Am. Ceram. Soc., 74, 1861, 10.1111/j.1151-2916.1991.tb07800.x Sube, 2007 Wardlaw, 1976, Mercury capillary pressure curves and the interpretation of pore structure and capillary behavior, Bull. Can. Pet. Geol., 24, 225 Washburn, 1921, Note on a method of determining the distribution of pore sizes in a porous material, Proc. Natl. Acad. Sci., 7, 115, 10.1073/pnas.7.4.115 Wyllie, 1950, Some theoretical considerations related to the quantitative evaluation of the physical characteristics of reservoir rock from electrical log data, Pet. Trans. AIME, 189, 105 Xu, 2014, Petrophysical rock classification in the Cotton Valley tight-gas sandstone reservoir with a clustering pore-system orthogonality matrix, Interpretation, 2, T13, 10.1190/INT-2013-0063.1 Zambrano, 2013 Ziariani, 2012, Knudsen's permeability correction for tight porous media, Trans. Porous Media, 91, 239, 10.1007/s11242-011-9842-6