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  • File:Waterflooding fig3.png
    ...ency (coverage) as a function of WOR, ''M'', and permeability variation (''V''<sub>DP</sub>), where WOR = 5. (From Dystra and Parson, 1950.)
    (949 × 944 (54 KB)) - 19:18, 14 January 2014
  • File:Waterflooding fig4.png
    ...ency (coverage) as a function of WOR, ''M'', and permeability variation (''V''<sub>DP</sub>), where WOR = 0.1. (From Dystra and Parson, 1950)
    (937 × 927 (20 KB)) - 19:18, 14 January 2014
  • File:BasinCenteredGasFig13.jpg
    ...BCGAs. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (700 × 452 (76 KB)) - 23:56, 29 January 2015
  • ...inematic model for the deformation above an active diapir]: AAPG Bulletin, V. 91, p. 343-363.</ref>]]
    1 KB (142 words) - 15:58, 6 April 2015
  • File:BasinCenteredGasFig10.jpg
    ...1993). From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (400 × 598 (76 KB)) - 19:30, 14 January 2015
  • File:BasinCenteredGasFig12.jpg
    ...1998a). From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (400 × 318 (26 KB)) - 19:34, 14 January 2015
  • * [https://www.youtube.com/watch?v=AslbszrbE2g Excellent video presentation of transgression and regression] * [http://bcs.whfreeman.com/understandingearth5e/content/cat_120/08120-01.htm?v=chapter&i=08120.01&s=08000&n=00120&o=|11000| Animation. with a sample seism
    449 bytes (57 words) - 18:48, 28 August 2014
  • File:BasinCenteredGasFig5.jpg
    ...1989). From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (700 × 753 (121 KB)) - 17:54, 14 January 2015
  • File:BasinCenteredGasFig1.jpg
    ...system. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (500 × 386 (45 KB)) - 20:14, 8 January 2015
  • * [https://www.youtube.com/watch?v=AslbszrbE2g Excellent video presentation of transgression and regression] * [http://bcs.whfreeman.com/understandingearth5e/content/cat_120/08120-01.htm?v=chapter&i=08120.01&s=08000&n=00120&o=|11000| Animation. with a sample seism
    480 bytes (61 words) - 16:30, 28 August 2014
  • File:BasinCenteredGasFig2.jpg
    ...BCGAs. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (500 × 298 (46 KB)) - 22:14, 13 January 2015
  • File:BasinCenteredGasFig3.jpg
    ...on BB'. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (600 × 611 (63 KB)) - 22:19, 13 January 2015
  • File:BasinCenteredGasFig6.jpg
    ...gure 3. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (700 × 442 (70 KB)) - 18:53, 14 January 2015
  • File:AAPGBullFeb2013ZengFigure4.JPG
    ...y). No noise is added to the convolution models. From Zeng, AAPG Bulletin, V. 97, No. 2 February 2013), P. 201–221.
    (800 × 613 (224 KB)) - 18:22, 30 June 2014
  • File:DiapirDiagram.JPG
    ...zon. (c) Structure contour map drawn on the B horizon. From AAPG Bulletin, V. 91, No. 3 (March 2007), P. 343-363, by Hongwei Yin and Richard H. Groshong
    (800 × 870 (270 KB)) - 17:59, 2 January 2015
  • File:BasinCenteredGasFig7.jpg
    ...pencer. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (700 × 392 (40 KB)) - 18:58, 14 January 2015
  • File:BasinCenteredGasFig9.jpg
    ...ure 11. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (500 × 475 (43 KB)) - 19:16, 14 January 2015
  • File:BasinCenteredGasFig8.jpg
    ...pencer. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (700 × 389 (41 KB)) - 19:13, 14 January 2015
  • File:BasinCenteredGasFig4.jpg
    ...(1998). From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (600 × 783 (79 KB)) - 22:22, 13 January 2015
  • File:BasinCenteredGasFig14.jpg
    ...(CMB). From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (400 × 478 (53 KB)) - 16:30, 11 March 2015
  • ...A. B. França, 2007b, Bacia do Paraná: Boletim de Geociências da PETROBRAS, v. 15, no. 2, p. 265–287.</ref> ...os, Estado do Paraná: Boletim de Geociências da PETROBRAS, Rio de Janeiro: v. 15, no. 1, p. 135–162.</ref>.
    3 KB (500 words) - 20:53, 4 April 2019
  • ...ol: an example from the Jurassic Smackover Formation, Alabama. Geophysics, v. 65, p. 368–376.</ref>
    2 KB (298 words) - 21:30, 21 November 2014
  • File:FG11.JPG
    ...eposits of the Rosso Ammonitico Veronese (lower member). In AAPG Bulletin, v 96, no. 11, Tectonostratigraphic evolution of the Jurassic extensional basi
    (800 × 648 (291 KB)) - 15:04, 5 August 2014
  • ...rtas Estratigráficas--Boletim de Geociências da Petrobras, Rio de Janeiro, v. 15, n.2, p. 265-287</ref> ...ucatu Formation, Brazil: Palaeogeography, Palaeoclimatology, Palaeoecology v. 250, p. 89-100.</ref>([[:file:Botucatu_2.jpg|Figure 2.]])
    3 KB (432 words) - 17:54, 22 March 2019
  • ...1.htm Practical petrographic classification of limestones]: AAPG Bulletin, v. 43, p. 1–38.</ref> and Dunham<ref name=pt05r50>Dunham, R. J., 1962, [htt
    1,023 bytes (134 words) - 13:25, 27 March 2015
  • ...a water isopotential map with respect to oil or gas, using the formula for V, #*<math>\mbox{V} = \left(\frac{\rho_{\rm w}}{\rho_{\rm w} - \rho_{\rm hc}}\right)\mbox{H}_{
    4 KB (601 words) - 22:27, 17 February 2022
  • File:BasinCenteredGasFig11.jpg
    ...e BCGA. From Law, Ben E., 2002, Basin-centered gas systems: AAPG Bulletin, v. 86, no. 11, p. 1891-1919.
    (700 × 354 (43 KB)) - 19:32, 14 January 2015
  • ...ssification of magma types and their spatial distribution: Bull. Volcanol, v. 55, p. 119–139.</ref> Gramado, Esmeralda and Urubici (Ti/Y<300) in the ...siderações geoquímicas-estratigráficas: Revista Brasileira de Geociências, v. 38, no. 1, p. 178–195.</ref> Caxias do Sul, Santa Maria, Anita Garibaldi
    6 KB (922 words) - 19:45, 11 April 2019
  • ...al in the Gulf Coast (abs.): AAPG Annual Convention Program and Abstracts, v. 5, p. A131.</ref> Although not simply relatable to the shale gouge ratio,
    911 bytes (124 words) - 13:49, 18 March 2019
  • ...shale resource plays: Oklahoma Geological Survey, Oklahoma Geology Notes, v. 76, no. 2, p. 21-30. Northcutt, R.A., and J.A. Campbell, 1998, Geologic pr ...ford-Mississippian tight oil play in northcentral Oklahoma: AAPG Bulletin, v. 103, p. 871-903.
    3 KB (445 words) - 22:27, 4 March 2022
  • ...latest [[Cretaceous]] to early [[Tertiary]].<ref name=Kelley_1951>Kelley, V. C., 1951, Tectonics of the San Juan basin, ''in'' Guidebook of the south a
    3 KB (411 words) - 15:01, 11 January 2016
  • ...b>w</sub> are equipotential surfaces for water. Hubbert called this factor V. The elevation factor (Z) is the difference between the equipotential surfa Substituting U and V in the above equation gives
    4 KB (582 words) - 22:08, 17 February 2022
  • ...tem in international journals: Proceedings of the Geologists’ Association, v. 117, p. 1-4.</ref>
    1 KB (176 words) - 19:07, 11 March 2019
  • ...flooding: Richardson, TX, Society of Petroleum Engineers Monograph Series, v. 3.</ref> ...ency (coverage) as a function of WOR, ''M'', and permeability variation (''V''<sub>DP</sub>), where WOR = 5.<ref name=pt10r11 />
    10 KB (1,468 words) - 18:23, 21 January 2022
  • ..., T. R., 1983, Rock density from [[borehole gravity]] surveys: Geophysics, v. 48, p. 341, DOI: [http://geophysics.geoscienceworld.org/content/48/3/341.a ...r32>LaFehr, T. R., 1991, Standardization in gravity reduction: Geophysics, v. 56, p. 1170, DOI: [http://geophysics.geoscienceworld.org/content/56/8/1170
    6 KB (854 words) - 16:19, 20 January 2022
  • ...ion in the borehole and their relationship to rock properties: Geophysics, v. 47, p. 1215–1228, DOI: 10.1190/1.1441384.</ref> The amplitudes of these ...ng slowness dispersion from arrays of sonic logging waveforms: Geophysics, v. 52, p. 530–544, DOI: 10.1190/1.1442322.</ref> This method can also be us
    10 KB (1,530 words) - 20:47, 19 January 2022
  • ...he Newark East Field and Barnett Shale as a gas reservoir]: AAPG Bulletin, v. 91, no. 4, pp. 399-403.</ref> Development activity continues today with ov ...otal petroleum system, Bend arch--Fort Worth Basin, Texas]: AAPG Bulletin, v. 91, no. 4, pp. 405-436.</ref>]]
    6 KB (909 words) - 19:24, 14 March 2019
  • ...h07.htm Energy resource potential of natural gas hydrates]: AAPG Bulletin, v. 86, no. 11, p. 1971-1992.</ref> ...990, The future of methane as an energy resource: Annual Review of Energy, v. 15, p. 53-83.</ref><ref name=Kvenvolden_1993a>Kvenvolden, K. A., 1993, A p
    7 KB (1,050 words) - 20:53, 6 January 2015
  • ...ce-assessment perspectives for unconventional gas systems]: AAPG Bulletin, v. 86, no. 11, p. 1993-1999.</ref> describes unconventional gas accumulations ...1851.htm Introduction to unconventional petroleum systems]: AAPG Bulletin, v. 86, no. 11, p. 1851-1852.</ref>
    4 KB (556 words) - 22:10, 7 January 2015
  • ...tion status and outlook of Jiyang depression: China Petroleum Exploration, v. 23, p. 11-17. ...onic subsidence and climate, Bohai Bay Basin, China: Organic Geochemistry, v. 42, p. 323–339.
    8 KB (1,251 words) - 15:51, 14 March 2022
  • ...m Geological applications of capillary pressure: A review]: AAPG Bulletin, v. 76, no. 6, p. 840–850.</ref> ...sylvanian reservoirs, Elk City, Oklahoma: Journal of Petroleum Technology, v. 29, no. 7, SPE Paper 6138, p. 851–866.</ref> Reprinted with permission f
    8 KB (1,182 words) - 20:27, 3 March 2016
  • ...s challenging energy future]: International Atomic Energy Agency Bulletin, v. 42, no. 2, p. 47.</ref></blockquote> ...s challenging energy future]: International Atomic Energy Agency Bulletin, v. 42, no. 2, p. 48.</ref></blockquote>
    9 KB (1,351 words) - 15:58, 12 September 2014
  • ...Massive stimulation effort may double U.S. gas supply, part 3: World Oil, v. 179, no. 6, p. 81-84.</ref> ...low-permeability gas reservoirs in western United States]: AAPG Bulletin, v. 73, p. 613-629.</ref> and Law and Spencer<ref name=Lawandspencer_1993>Law,
    9 KB (1,373 words) - 13:40, 10 March 2015
  • ...ovelli, eds., Advances in Organic Geochemistry 1987: Organic Geochemistry, v. 13, p. 839-845.</ref> have further developed the method. ...stry, in J. Brooks and D. Welte, eds., Advances in Petroleum Geochemistry, v. 1.: Academic Press, London, p. 115-214.</ref> Each technique has limits in
    12 KB (1,616 words) - 17:35, 13 April 2022
  • ...drocarbons generated by the [[source rock]], using the formula <math>\text{V} = \text{A} \times \text{T} \times \text{Y} \times \text{M}</math>, where: #* ''V'' = potential charge volume
    6 KB (834 words) - 20:41, 14 February 2022
  • ...e/sulfer relationships in sulfur-rich Monterey oils: Organic Geochemistry, v. 10, p. 499-516, doi: 10.1016/0146-6380(86)90049-5.</ref> type IIS pathway
    1 KB (205 words) - 21:10, 6 July 2015
  • ...hree Forks Formations of the U.S. Williston Basin Province: AAPG Bulletin, v. 99, no. 4, pp. 639-660. ...ystem: Case of the Bakken and Three Forks in North Dakota: Interpretation, v. 7, no. 3, https://doi.org/10.1190/INT-2018-0213.1
    7 KB (1,004 words) - 22:08, 4 March 2022
  • ...]s in the northern Peruvian Oriente (Maranon) basin: Organic Geochemistry, v. 10, p. 377–389., 10., 1016/0146-6380(86)90037-9</ref><ref name=ch08r54>T
    4 KB (520 words) - 22:06, 14 February 2022
  • :<math>\mbox{V} = \mbox{V}_{1} \times \mbox{P}_{\rm a1}/\mbox{P}_{\rm a} \times \mbox{T}_{\rm a}/\mbo * V = volume, ft<sup>3</sup>
    7 KB (979 words) - 15:24, 17 February 2022
  • * Constants and names or label are roman (i.e. upright, not italic): ''V''<sub>P</sub>. Use '''\mathrm{P}''' in LaTeX math.
    1 KB (207 words) - 16:45, 9 October 2013

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