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  • | title = Basin-centered gas systems ...> basins in the Rocky Mountain region were estimated at 6788 tcf. In-place gas estimates in other basins range from 334 to 777 tcf (Table 1).
    9 KB (1,242 words) - 15:47, 11 March 2015
  • #REDIRECT [[Gas chromatography]]
    32 bytes (3 words) - 17:51, 29 January 2014
  • ...rs to come, certainly as long as cheaper, more readily produced sources of gas are available. [[file:USGSgashydratemap014.jpg|thumb|300px|Known and inferred locations of gas hydrate occurrence. [http://woodshole.er.usgs.gov/project-pages/hydrates/pr
    7 KB (1,050 words) - 20:53, 6 January 2015
  • ...ethane is generally depleted in <sup>13</sup>C compared with [[thermogenic gas]].<ref name=Petersetal_2012>Peters, Kenneth E., David J. Curry, and Marek K
    785 bytes (108 words) - 20:01, 25 June 2015
  • Gas chromatography (GC), is a common type of [[chromatography]] used in analyti * [[Gas chromatography: data obtained]]
    727 bytes (79 words) - 19:52, 24 June 2015
  • ...AAPG Bulletin, v. 86, no. 11, p. 1993-1999.</ref> describes unconventional gas accumulations as "continuous accumulations . . . that exist more or less in ...tured shales). As of 2002, they contributed 26% of the total United States gas production.<ref name=LawandCurtis_2002>Law, B. E., and J. B. Curtis, 2002,
    4 KB (556 words) - 22:10, 7 January 2015
  • #REDIRECT [[Gas chromatography]]
    32 bytes (3 words) - 17:53, 29 January 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    6 KB (817 words) - 18:19, 9 February 2022
  • ...ocessing natural gas at natural-gas processing plants are called [[natural-gas plant liquids]] or [[liquefied petroleum gasses]] and consist primarily of ...ore than 200 bbl of NGL per mmcf (million cubic feet) of gas in rich [[wet gas]].
    4 KB (549 words) - 16:31, 25 June 2015
  • | title = Basin-centered gas systems ...are typically characterized by regionally pervasive accumulations that are gas saturated, abnormally pressured, commonly lack a [[downdip]] water contact,
    3 KB (453 words) - 13:28, 10 March 2015
  • | title = Basin-centered gas systems ...ion, expulsion, migration, and accumulation of petroleum. A basin-centered gas system (BCGS) contains all of these components; however, the magnitude and
    4 KB (469 words) - 19:01, 14 March 2016
  • | chapter = Oil and gas contracts ...oil and gas interests and/or the need to share economic risks, the oil and gas industry has utilized a number of different contractual arrangements. The m
    13 KB (1,979 words) - 19:26, 19 January 2022
  • #REDIRECT [[Gas chromatography]]
    32 bytes (3 words) - 17:53, 29 January 2014
  • | chapter = Evaluating tight gas reservoirs ...would not be economical (see [[Stimulation]]). Thus, most low permeability gas reservoirs are considered “unconventional.”
    11 KB (1,444 words) - 21:26, 4 January 2024
  • 157 bytes (18 words) - 17:48, 3 September 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    22 KB (3,123 words) - 21:38, 15 February 2022
  • #REDIRECT [[Tight gas reservoirs: evaluation]]
    46 bytes (5 words) - 20:38, 19 December 2014
  • | chapter = Shale-gas Resource Systems ...oth a source and a reservoir rock for the production of petroleum (oil and gas) or may charge and seal petroleum in juxtaposed, continuous organic-lean in
    73 KB (10,728 words) - 18:16, 11 January 2024
  • ...loped and developing plays in U.S. and international basins. Tight oil and gas or “shale” resources have been the focus of extensive development over ...ies for EMD and AAPG membership to learn about the status of tight oil and gas resources through special sessions at conferences, contributions to AAPG pu
    4 KB (570 words) - 20:56, 6 April 2021
  • | title = Basin-centered gas systems ...APG Bulletin, v. 69, p. 1295-1304.</ref> discussed these phase changes for gas accumulations in low-permeability reservoirs.
    34 KB (4,772 words) - 14:44, 12 March 2019

Page text matches

  • Gas chromatography (GC), is a common type of [[chromatography]] used in analyti * [[Gas chromatography: data obtained]]
    727 bytes (79 words) - 19:52, 24 June 2015
  • File:Figure2 FayettevilleShale2019-20CommRpt.jpg
    Annual and cumulative gas production of the Fayetteville Shale gas play.
    (979 × 529 (106 KB)) - 22:21, 2 June 2021
  • File:Evaluating-top-and-fault-seal fig10-45.png
    {{copyright|Oil &amp; Gas Journal}} After Leach, 1993b. Copyright: Oil &amp; Gas Journal.
    (1,270 × 1,454 (95 KB)) - 15:29, 31 January 2014
  • File:Evaluating-top-and-fault-seal fig10-46.png
    {{copyright|Oil &amp; Gas Journal}} After Leach, 1993b. Copyright: Oil &amp; Gas Journal.
    (1,653 × 837 (495 KB)) - 15:30, 31 January 2014
  • File:BasinCenteredGasFig2.jpg
    ...(A) direct and (B) indirect 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:Surface-geochemical-exploration-for-petroleum fig18-6.png
    {{copyright|Rice, 1989; courtesy Oil &amp; Gas Journal}} Modified. Copyright: Rice, 1989; courtesy Oil &amp; Gas Journal.
    (1,612 × 961 (1.19 MB)) - 18:31, 18 January 2014
  • File:Figure3 2019-20 Comm Rept.jpg
    Status of major U.S. tight gas plays. Data source: U.S. EIA, U.S. Tight gas production report (all y-axis values in billions of scf/day).
    (1,500 × 1,875 (495 KB)) - 19:34, 5 April 2021
  • File:Figure4 2019-20 Comm Rept.jpg
    ...nts over the last 12 months according to Baker Hughes (oil wells in green, gas wells in red); [[https://rigcount.bakerhughes.com/na-rig-count]].
    (1,500 × 1,875 (423 KB)) - 19:44, 5 April 2021
  • File:BasinCenteredGasFig11.jpg
    ...minor water production in the 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
  • File:BasinCenteredGasFig1.jpg
    ...hown along the side of each 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
  • File:Migration-of-petroleum fig7-14.png
    {{copyright|McDowell (1975); courtesy Oil &amp; Gas Journal}} . Copyright: McDowell (1975); courtesy Oil &amp; Gas Journal.
    (974 × 1,324 (96 KB)) - 15:34, 28 January 2014
  • File:Figure5MancosCommRept.jpg
    ...well on the left (A) is designated as a gas well by the New Mexico Oil and Gas Conservation Division whereas the well on the right (B) is designated as an
    (1,320 × 556 (175 KB)) - 20:52, 14 April 2021
  • File:BasinCenteredGasFig3.jpg
    ...Wheel wells, and cross section 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:Oiloil-and-oilsource-rock-correlations fig8-2.png
    {{copyright|Kennicutt and Brooks (1988); courtesy Oil &amp; Gas Journal}} . Copyright: Kennicutt and Brooks (1988); courtesy Oil &amp; Gas Journal.
    (520 × 310 (14 KB)) - 16:37, 29 January 2014
  • File:BasinCenteredGasFig6.jpg
    ...of cross section shown on Figure 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
  • ...ethane is generally depleted in <sup>13</sup>C compared with [[thermogenic gas]].<ref name=Petersetal_2012>Peters, Kenneth E., David J. Curry, and Marek K
    785 bytes (108 words) - 20:01, 25 June 2015
  • #REDIRECT [[Gas chromatography]]
    32 bytes (3 words) - 17:53, 29 January 2014
  • #REDIRECT [[Gas chromatography]]
    32 bytes (3 words) - 17:53, 29 January 2014
  • #REDIRECT [[Gas chromatography]]
    32 bytes (3 words) - 17:51, 29 January 2014
  • #REDIRECT [[Gas chromatography]]
    32 bytes (3 words) - 17:51, 29 January 2014

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