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  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    3 KB (422 words) - 22:05, 14 February 2022
  • #REDIRECT [[Oil-oil and oil-source rock correlation]]
    53 bytes (6 words) - 16:58, 29 January 2014
  • #REDIRECT [[Oil correlation case history: Brazilian offshore basins]]
    69 bytes (8 words) - 18:49, 29 January 2014
  • #REDIRECT [[Oil correlation case history: Norwegian sector, North Sea]]
    71 bytes (9 words) - 18:49, 29 January 2014
  • ...rude oil commonly contains solution gas and closely resembles the original oil from the [[reservoir rock]]. [[Hydrocarbon]]s are the most abundant compoun
    941 bytes (133 words) - 19:55, 25 June 2015
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    9 KB (1,313 words) - 22:06, 14 February 2022
  • ...ing it to a sufficiently high temperature, a process called ''retorting.'' Oil shales have a low calorific value and high ash and mineral content. ...0px|Uintah Basin, Utah. Courtesy of [http://etv10news.com/first-commercial-oil-shale-mine-in-nation-to-be-housed-in-utah/ eTV10 News].]]
    6 KB (893 words) - 19:01, 14 March 2016
  • #REDIRECT [[Oil shale]]
    23 bytes (3 words) - 15:59, 1 July 2014
  • 269 bytes (41 words) - 22:59, 18 November 2014
  • | chapter = Enhanced oil recovery ...wn fields in the United States—1976–2000: NPC, Dec.</ref> Several enhanced oil recovery (EOR) techniques—generally grouped together as tertiary producti
    12 KB (1,794 words) - 21:19, 19 January 2022
  • [[file:Fieldwork.JPG|thumb|400px|Early oil finders.]] ...ab oil embargo, which brought a sharp increase in the price of oil. Annual oil production dropped sharply to 19.3 billion bbl.
    5 KB (778 words) - 21:14, 12 March 2019
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    6 KB (826 words) - 14:29, 18 February 2022
  • | chapter = Shale-oil Resource Systems ...atural gas; thus, efforts to move from gas into more liquid-rich and black-oil areas have been another United States exploration and production paradigm s
    97 KB (14,873 words) - 19:53, 11 January 2024
  • | chapter = Oil and condensate analysis ...gineering, and wellsite information to make these interpretations ([[:file:oil-and-condensate-analysis_fig1.png|Figure 1]]).
    14 KB (2,013 words) - 16:48, 20 January 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    5 KB (784 words) - 15:28, 15 February 2022
  • * [[Oil correlation case history: Zala basin, Hungary]] * [[Oil correlation case history: Brazilian offshore basins]]
    964 bytes (130 words) - 16:32, 24 June 2015
  • #REDIRECT [[Oil correlation]]
    29 bytes (3 words) - 16:21, 19 December 2014
  • | chapter = Oil and gas contracts ...ship of oil and gas interests and/or the need to share economic risks, the oil and gas industry has utilized a number of different contractual arrangement
    13 KB (1,979 words) - 19:26, 19 January 2022
  • ...of the oil reserves. [[:file:St54Ch3Figure19.jpg|Figure 1]] depicts global oil production over a 50-year time span. ...ble increment to the supply of liquid fuels. The world will not run out of oil for a good many years yet.
    3 KB (370 words) - 19:44, 9 June 2015
  • ...Basin and the Bakken and Eagle Ford Shales have led to a reversal in U.S. oil production after 20 years of decline. ...portunities for EMD and AAPG membership to learn about the status of tight oil and gas resources through special sessions at conferences, contributions to
    4 KB (570 words) - 20:56, 6 April 2021
  • #REDIRECT [[Static oil pressure gradient estimation]]
    53 bytes (6 words) - 21:45, 4 June 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    4 KB (520 words) - 22:06, 14 February 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    5 KB (718 words) - 17:24, 15 February 2022
  • #REDIRECT [[Oil correlation]]
    29 bytes (3 words) - 14:51, 19 December 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    3 KB (355 words) - 15:18, 17 February 2022
  • • Ravil R. Ibatullin, PhD., CEO, TAL Oil Ltd., Calgary, Alberta, Canada ...ries across the world. The global in- place resources of bitumen and heavy oil are estimated to be 5.9 trillion barrels [938 billion m3], with more than 8
    4 KB (538 words) - 20:27, 20 September 2022
  • | chapter = Determining owners of oil and gas interests, and methods of conveyance Ownership of oil and gas interests, whether privately or publicly owned, is reflected in the
    19 KB (2,972 words) - 19:25, 19 January 2022
  • ...esearch/energy/oil-gas). The site includes an Oklahoma shale gas and tight oil well completions database, currently containing 5,995 records. Wells comple ...izontal wells completed during 2020 range from a trace to 1,142 barrels of oil per day (bopd) at up to 1.5% vitrinite reflectance. Four of the highest ra
    3 KB (445 words) - 22:27, 4 March 2022
  • .../data/alt-browse/aapg-special-volumes/sg25.htm Exploration for heavy crude oil and natural bitumen]: AAPG Studies in Geology 25, p. 3–23.</ref> The degr ==Crude oil Composition==
    16 KB (2,354 words) - 18:16, 25 April 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    8 KB (1,086 words) - 22:16, 15 February 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    7 KB (1,092 words) - 13:46, 16 February 2022
  • The tight oil and gas (TOG) technical committee created a written report (PDF) annually, ...content includes but not limit to the development and production of tight oil and gas (TOG) plays, method of reporting, and recognition of all committee
    3 KB (417 words) - 20:29, 20 September 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    6 KB (950 words) - 13:46, 16 February 2022
  • | chapter = Nature of the oil and gas lease ...hts of execution (''executive rights'') who conveys leasehold rights as to oil and gas and such other mineral interests as are to be included in the prope
    15 KB (2,397 words) - 19:26, 19 January 2022
  • #REDIRECT [[Owners of oil and gas interests]]
    45 bytes (7 words) - 16:52, 19 December 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    8 KB (1,116 words) - 22:16, 15 February 2022
  • | chapter = Fundamental economic equations for oil and gas property evaluation The purchase of any oil and gas producing property is a complex business venture. The basic economi
    6 KB (842 words) - 19:26, 19 January 2022
  • #REDIRECT [[Economics: fundamental equations for oil and gas property evaluation]]
    82 bytes (10 words) - 19:54, 21 May 2014
  • ...al decline over the last 20 years (e.g., Permian Basin, Eagle Ford). Shale-oil production remained strong at approximately 7.4 million barrels per day due ...certainly high. South America’s potential as unconventional shale gas and oil province is currently assessed in Argentina, but exploration and exploitati
    6 KB (820 words) - 20:57, 6 April 2021
  • ...le:Figure1 2019-20 Comm Rept.jpg|thumb|200px|{{figure number|1}}U.S. total oil production forecasts. Solid lines indicate actual production, dashed lines ...ace orders and safety concerns around travel. Between March and May, tight oil and gas production dropped by nearly 2 million bpd and almost 5 Bcf/day bef
    9 KB (1,373 words) - 20:57, 6 April 2021
  • ...formations with very low permeability has resulted in drastic increases in oil and natural gas production since 2008. ...rels per day). The Eagle Ford and Bakken contribute equally as second most oil producers (around 1,000 thousand barrels per day). For the natural gas, the
    9 KB (1,311 words) - 20:32, 20 September 2022
  • ...on the adoption and utalization of the fourth industrial revolution in the Oil and Gas sector specifically in the exploration and appraisal stage. ...ically explore the applications of the fourth industrial revolution on the oil and gas industry and identify further improvement opportunities.
    21 KB (3,096 words) - 20:59, 21 April 2022
  • #REDIRECT [[Oil correlation case history: Zala basin, Hungary]]
    63 bytes (8 words) - 18:50, 29 January 2014
  • #REDIRECT [[Oil correlation case history: West Siberian basin]]
    63 bytes (8 words) - 18:55, 29 January 2014
  • Great oil, gas, and mineral finders have common characteristics that allow them to su * Think positively (negative-thinking people do not find oil and gas)
    765 bytes (105 words) - 13:37, 7 July 2014
  • #REDIRECT [[Owners of oil and gas interests]]
    45 bytes (7 words) - 16:51, 19 December 2014

Page text matches

  • #REDIRECT [[Oil-oil and oil-source rock correlation]]
    53 bytes (6 words) - 16:58, 29 January 2014
  • #REDIRECT [[Oil-oil and oil-source rock correlation]]
    53 bytes (6 words) - 16:58, 29 January 2014
  • ...Gow, Bonar Alexander Gow, Roughnecks, Rock Bits and Rigs: The Evolution of Oil Well Drilling.</ref>
    544 bytes (96 words) - 20:23, 14 April 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    3 KB (355 words) - 15:18, 17 February 2022
  • * [[Oil correlation case history: Zala basin, Hungary]] * [[Oil correlation case history: Brazilian offshore basins]]
    964 bytes (130 words) - 16:32, 24 June 2015
  • #REDIRECT [[Oil shale]]
    23 bytes (3 words) - 15:59, 1 July 2014
  • #REDIRECT [[Oil correlation]]
    29 bytes (3 words) - 14:24, 12 January 2015
  • #REDIRECT [[Oil correlation]]
    29 bytes (3 words) - 14:51, 19 December 2014
  • #REDIRECT [[Oil correlation]]
    29 bytes (3 words) - 16:21, 19 December 2014
  • #REDIRECT [[Oil correlation]]
    29 bytes (3 words) - 13:51, 14 January 2015
  • Great oil, gas, and mineral finders have common characteristics that allow them to su * Think positively (negative-thinking people do not find oil and gas)
    765 bytes (105 words) - 13:37, 7 July 2014
  • ...of the oil reserves. [[:file:St54Ch3Figure19.jpg|Figure 1]] depicts global oil production over a 50-year time span. ...ble increment to the supply of liquid fuels. The world will not run out of oil for a good many years yet.
    3 KB (370 words) - 19:44, 9 June 2015
  • #REDIRECT [[Limitations of oil correlations]]
    45 bytes (5 words) - 16:54, 29 January 2014
  • ...ther light hydrocarbons that escape from deep reservoirs enter a shallower oil reservoir.<ref name=Petersetal_2012>Peters, Kenneth E., David J. Curry, and
    864 bytes (120 words) - 19:55, 25 June 2015
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    2 KB (230 words) - 19:23, 24 January 2022
  • #REDIRECT [[Statistical analysis in oil correlation]]
    53 bytes (6 words) - 16:54, 29 January 2014
  • #REDIRECT [[Practical suggestions for oil correlation]]
    55 bytes (6 words) - 16:55, 29 January 2014
  • #REDIRECT [[Static oil pressure gradient estimation]]
    53 bytes (6 words) - 21:45, 4 June 2014
  • #REDIRECT [[Owners of oil and gas interests]]
    45 bytes (7 words) - 16:51, 19 December 2014
  • #REDIRECT [[Owners of oil and gas interests]]
    45 bytes (7 words) - 16:52, 19 December 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    2 KB (248 words) - 17:04, 28 March 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    3 KB (438 words) - 15:17, 14 February 2022
  • #REDIRECT [[Oil correlation case history: Brazilian offshore basins]]
    69 bytes (8 words) - 18:49, 29 January 2014
  • #REDIRECT [[Oil correlation case history: Zala basin, Hungary]]
    63 bytes (8 words) - 18:50, 29 January 2014
  • #REDIRECT [[Oil correlation case history: West Siberian basin]]
    63 bytes (8 words) - 18:55, 29 January 2014
  • #REDIRECT [[Oil correlation case history: Norwegian sector, North Sea]]
    71 bytes (9 words) - 18:49, 29 January 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    1 KB (179 words) - 16:23, 13 April 2022
  • #REDIRECT [[Economics: fundamental equations for oil and gas property evaluation]]
    82 bytes (10 words) - 19:54, 21 May 2014
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    1 KB (182 words) - 17:24, 2 February 2022
  • * [[Wikipedia:North Sea oil|Wikipedia North Sea oil article]]
    439 bytes (67 words) - 15:18, 20 October 2016
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    1 KB (189 words) - 18:53, 4 February 2022
  • .... H. Foster, eds., [http://store.aapg.org/detail.aspx?id=545 Exploring for Oil & Gas Traps: AAPG Treatise of Petroleum Geology, Handbook of Petroleum Geol .... H. Foster, eds., [http://store.aapg.org/detail.aspx?id=545 Exploring for Oil & Gas Traps: AAPG Treatise of Petroleum Geology, Handbook of Petroleum Geol
    1 KB (206 words) - 17:37, 27 January 2015
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    2 KB (266 words) - 15:45, 31 March 2022
  • ...ion, development, and production of energy sources other than conventional oil and natural gas. ...luding coal-bed methane, gas hydrates, shale gas & liquids, oil shale, and oil sands), and more recently to renewable energy resources (wind, solar, tidal
    2 KB (294 words) - 23:39, 19 January 2021
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  • ...ing it to a sufficiently high temperature, a process called ''retorting.'' Oil shales have a low calorific value and high ash and mineral content. ...0px|Uintah Basin, Utah. Courtesy of [http://etv10news.com/first-commercial-oil-shale-mine-in-nation-to-be-housed-in-utah/ eTV10 News].]]
    6 KB (893 words) - 19:01, 14 March 2016
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    3 KB (367 words) - 18:35, 25 January 2022
  • ...rude oil commonly contains solution gas and closely resembles the original oil from the [[reservoir rock]]. [[Hydrocarbon]]s are the most abundant compoun
    941 bytes (133 words) - 19:55, 25 June 2015
  • The tight oil and gas (TOG) technical committee created a written report (PDF) annually, ...content includes but not limit to the development and production of tight oil and gas (TOG) plays, method of reporting, and recognition of all committee
    3 KB (417 words) - 20:29, 20 September 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
    2 KB (250 words) - 17:52, 31 January 2022
  • • Ravil R. Ibatullin, PhD., CEO, TAL Oil Ltd., Calgary, Alberta, Canada ...ries across the world. The global in- place resources of bitumen and heavy oil are estimated to be 5.9 trillion barrels [938 billion m3], with more than 8
    4 KB (538 words) - 20:27, 20 September 2022
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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    3 KB (341 words) - 22:36, 31 January 2022
  • ..., n-exane, or n-heptane. After precipitation of asphaltenes, the remaining oil consists of saturates, aromatics, and nitrogen, sulfur, and/or oxygen (NSO)
    886 bytes (126 words) - 16:34, 25 June 2015
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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  • [[file:Fieldwork.JPG|thumb|400px|Early oil finders.]] ...ab oil embargo, which brought a sharp increase in the price of oil. Annual oil production dropped sharply to 19.3 billion bbl.
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    2 KB (294 words) - 18:11, 31 January 2022
  • ...esearch/energy/oil-gas). The site includes an Oklahoma shale gas and tight oil well completions database, currently containing 5,995 records. Wells comple ...izontal wells completed during 2020 range from a trace to 1,142 barrels of oil per day (bopd) at up to 1.5% vitrinite reflectance. Four of the highest ra
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    4 KB (520 words) - 22:06, 14 February 2022
  • ...cting the demand of oil, and also explains the supply discrepancies of the oil resource. ...ted in explaining the exorbitant issues affecting demand and supply of the oil resource at a global scale.
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    2 KB (317 words) - 19:15, 25 January 2022
  • ...eous]] or metamorphic. It is generally not of interest in exploration for oil and gas, but in some places fractured basement has proven to be a commercia
    264 bytes (40 words) - 15:52, 10 March 2016
  • | image = exploring-for-oil-and-gas-traps.png | title = Exploring for Oil and Gas Traps
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  • ...019, Devon Energy sold its remaining interests in the Barnett Shale to BKV Oil & Gas, a subsidiary of Banpu Pcl (a Thailand-based coal-mining and power-ge ...h condensate making up the bulk of the Barnett’s liquids production; daily oil production is currently around 560 bbl).
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  • ...Basin and the Bakken and Eagle Ford Shales have led to a reversal in U.S. oil production after 20 years of decline. ...portunities for EMD and AAPG membership to learn about the status of tight oil and gas resources through special sessions at conferences, contributions to
    4 KB (570 words) - 20:56, 6 April 2021
  • ...types: nonrenewable ([[oil]], [[natural gas]], [[coal]], [[tar sands]], [[oil shale]]s) and renewable ([[nuclear power|nuclear]], [[hydroelectric power|h ...ame the main source of energy. During the last decade of the 20th century, oil has provided 37% of the world's energy supply. At the same time, the contri
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  • * [[Oil shale]]
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  • * [[Enhanced oil recovery]]
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  • ...and D. Liu, 2012, Formation conditions and exploration potential of tight oil in the Permian saline lacustrine dolomitic rock, Junggar Basin, NW China: P ...hales in the Jimsar Sag and by analyzing the source rocks, reservoirs, and oil-bearing layers, lithofacies distribution and lithology division were studie
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  • ...Geologic models and evaluation of undiscovered conventional and continuous oil and gas resources—Upper Cretaceous Austin Chalk, U.S. Gulf Coast: U.S. Ge ...its located east of the Texas-Louisiana border and are also productive for oil and gas. The Tokio, located mainly in southern Arkansas and northern Louisi
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  • ...omic rates." Other authors have defined tar sands as reservoirs containing oil with a specific gravity of less than 10&deg; API (bitumen) and immobile in ...nds'' will be used in this article to include both bitumen and extra-heavy-oil [[accumulation]]s.
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  • ...o how much of a product or service is desired by buyers at various prices. Oil is an example of a good that experiences derived demand. This is one where ...are also emphasised. The contributions from fears and expectations of the oil producers are further discussed.
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  • ...e their specific areas of expertise for the venture to be successful. Some oil companies have separate geology and engineering department, but regardless ...lines within a subsurface team.<ref name=Shepherd_2009>Shepherd, M., 2009, Oil Field Production Geology: [http://store.aapg.org/detail.aspx?id=788 AAPG Me
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  • Sharp reductions in demand for oil and gas dramatically affected drilling in the San Juan Basin of New Mexico ...roadhead, R. F., 2018, The Upper Mancos Shale in the San Juan Basin: Three oil and gas plays, conventional and unconventional: Update, AAPG Search and Dis
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  • ...e condensate]] (the liquids recovered at natural-gas wells or at small gas/oil separators in the field; also called [[field condensate]]) and consist prim ...ndensate production, or both, are commonly reported as part of the [[crude oil]] production, and while production volumes of natural-gas plant liquids are
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  • ...al decline over the last 20 years (e.g., Permian Basin, Eagle Ford). Shale-oil production remained strong at approximately 7.4 million barrels per day due ...certainly high. South America’s potential as unconventional shale gas and oil province is currently assessed in Argentina, but exploration and exploitati
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  • ...rust]] belt of northeastern Utah and southwestern Wyoming and the Covenant oil field, including tectonic elements. SR = San Rafael swell; KU = Kaibab upli ...ne Oil and Gas, in the Kings Meadow Ranches #17-1 well when it encountered oil in the Navajo Formation. Credits for the geologic ideas behind the discover
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  • ** [[Peak oil]] ** [[Crude oil]]
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  • ...ntially large oil and gas province with numerous possible reservoir units. Oil and gas have been, or presently are, produced from the [[Cambro-Ordovician]
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  • ...professionals (YPs). The competition engaged students and YPs to research oil and gas related technical content to be added to the AAPG Wiki in hopes of * Mohammed Y. Aljezan, Saudi Aramco [[Biodegradation of crude oil in reservoirs]]
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  • ...60], pp. 3-22</ref> "includes all the elements and processes needed for an oil and gas accumulation to exist." In Magoon and Dow's definition, the element ...n indirect BCGS has an oil-prone source rock. This fundamental difference, oil-prone vs. gas-prone source rocks, leads to significantly different characte
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  • ...kley et al., 2018). This assessment is less than the 7 billion barrels of oil originally estimated by John et al. (1997). ...eral rights and for working capital (Australis Oil & Gas, 2021a; Australis Oil & Gas, 2021b).
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  • | chapter = Enhanced oil recovery ...wn fields in the United States—1976–2000: NPC, Dec.</ref> Several enhanced oil recovery (EOR) techniques—generally grouped together as tertiary producti
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  • A [[maceral]] group composed of oil-prone hydrogen-rich [[kerogen]] that fluoresces under ultraviolet light. Bo
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  • ...a measure of the resistance of a fluid to flow. The viscosity of liquid [[oil]] depends on its composition, temperature, and pressure.<ref name=Peterseta
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  • ...0 p.</ref> <ref>Independent Producers of Association of America, 1991, The oil and gas producing in your state, 1990-91: IPAA, Sept., 120 p.</ref> ...ncluding producing properties). These rights may be obtained by purchasing oil and gas leases, permits, options, contracts (farm-outs), lease trades, well
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  • ...ng burial [[maturation]] or in a refinery. [[Kerogen]] in source rocks and oil in reservoirs are cracked to generate lighter petroleum products at high te
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  • ...hanisms-and-recovery_fig2.png|thumb|300px|{{figure_number|2}}Producing gas-oil ratio trends by drive mechanism.]] The natural energy of a reservoir can be used to move oil and gas toward the wellbore. Used in such a fashion, these sources of energ
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  • ;BDO:barrels diesel oil ;BLO:barrels load oil
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  • ...ll-known Shengli Oilfield, Jiyang subbasin. Nearly 33% of China’s domestic oil production comes from the Bohai Bay Basin (Hao et al., 2011), which makes i ...Third member of Dongying Formation (Ed3) are the primary targets for shale oil exploration (Xue et al., 2020).
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  • ...ay. For more Fayetteville Shale information, please refer to the Arkansas Oil and Gas Commission’s web link at http://www.aogc.state.ar.us/sales/defaul ...rojects on the Fayetteville Shale and has provided this information to the oil and gas industry and the public to assist with exploration and development
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  • ...ns for its concentration and preservation. Creation of most hydrogen-rich, oil prone, sedimentary organic matter is ultimately attributed to photosynthesi ...s low.<ref>Demaison, G. J., and G. T. Moore, 1980, Anoxic environments and oil source bed genesis: American Association of Petroleum Geologists Bulletin,
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  • ...ay. For more Fayetteville Shale information, please refer to the Arkansas Oil and Gas Commission’s web link at http://www.aogc.state.ar.us/sales/defaul ...rojects on the Fayetteville Shale and has provided this information to the oil and gas industry and the public to assist with exploration and development
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  • ...alculate the degree of transformation of [[kerogen]] in the source rock to oil and gas.<ref name=Petersetal_2012>Peters, Kenneth E., David J. Curry, and M
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  • ...or solid state in the Earth; includes hydrocarbon gases, bitumen, migrated oil, pyrobitumen, and their refined products, but not [[kerogen]]. In European
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  • ...{SITENAME}}''' from the ''AAPG Treatise of Petroleum Geology Exploring for Oil and Gas Traps'' and the ''AAPG Methods in Exploration 10 Development Geolog
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  • ...G Bulletin, vol. 9, p. 1103–1116.</ref> <ref name=Nxon>Nixon, R. P., 1973, Oil Source Beds in Cretaceous Mowry Shale of Northwestern Interior United State ...F, and ~1,200,000 BW<ref>[http://pipeline.wyo.gov/legacywogcce.cfm Wyoming Oil and Gas Conservation Commission]</ref>.
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  • ...vals of the Three Forks Formation and the Pronghorn member. Bakken-sourced oil is also found in Lodgepole Formation limestones (Gaswirth and Marra, 2015; Oil production in the Bakken and Three Forks Formations began in the early 1950
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  • ...aterflooding, water is injected into one or more injection wells while the oil is produced from surrounding producing wells spaced according to the desire waterflooding_fig5.png|{{figure number|5}}Effect of mobility ratio on oil production for the five-spot pattern.<ref name=pt10r8 />
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  • ...ivity throughout the country, but until the 1990s only small quantities of oil and gas had been discovered and produced. In 1999 the focus of exploration ...-slip faults, and the normal fault system of the Galilee. Numbers refer to oil fields and hydrocarbon shows detailed in Table 1. 50 km (31.1 mi).
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  • ...umont and N. H. Foster, eds., Handbook of Petroleum Geology: Exploring for Oil and Gas Traps, [http://store.aapg.org/detail.aspx?id=545 AAPG Treatise #3],
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  • ...nued finding oil and gas as an independent and joined with Wolverine Gas & Oil to get his central Utah prospects drilled. After Wolverine’s discovery of ..._ugs790273.htm?q=%2BauthorStrip%3Astrickland Petroleum Geology of Covenant Oil Field, Central Utah Thrust Belt], in Utah Geological Association
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  • ...eservoirs in the Illinois Basin. The New Albany Shale itself produces both oil and gas[2, 6]. Natural gas produced from the New Albany Shale is a mixture ...ucky produced both oil and gas. These six wells produced 23,649 barrels of oil and 246 MMcf of gas in approximately 18 months[6].
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  • ...le:Figure1 2019-20 Comm Rept.jpg|thumb|200px|{{figure number|1}}U.S. total oil production forecasts. Solid lines indicate actual production, dashed lines ...ace orders and safety concerns around travel. Between March and May, tight oil and gas production dropped by nearly 2 million bpd and almost 5 Bcf/day bef
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  • Production engineers often design all equipment on the lease. After the oil and gas leaves the lease, pipeline or facilities engineers take over. ...e if the wellhead pressure is at least twice the flowline pressure. For an oil well, the Gilbert equation is commonly used:
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  • ...ing top and fault seal], in E. A. Beaumont and N. H. Foster, Exploring for Oil and Gas Traps: [http://store.aapg.org/detail.aspx?id=545 AAPG Treatise in P
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  • ...major-oil-and-gas-formations/haynesville-bossier-shale/ and from Louisiana Oil and Gas association http://dnr.louisiana.gov/index.cfm?md=pagebuilder&tmp=h ...s of petrophysical factors on Haynesville fluid flow and production: World Oil, D79-D82.
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  • ...ing history of a well and the results of drilling. In the past in the USA oil companies employed scouts, who watched competitors' drilling operations fro
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  • ...or gas reserves, and coal resources are estimated to be about 17 times the oil resources and 20 times the gas resources.
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  • ...8 billion barrels of oil equivalent (BOE); more than half of this (57%) is oil. As of 2007, GACB reservoirs produced at rates of approximately 16 MMBO and
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  • ...range counties of Colorado, thermally mature Niobrara source rocks produce oil and gas (Higley and Cox, 2007). Further east in Colorado, as well as in sou ...DJ Basin production peaked in November 2019 and has since declined (World Oil, 2020).
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  • | chapter = Oil and condensate analysis ...gineering, and wellsite information to make these interpretations ([[:file:oil-and-condensate-analysis_fig1.png|Figure 1]]).
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  • The Eagle Ford Group (or Shale) is a major oil, natural gas, and condensate/natural gas liquids play in southwest to centr ...,000 ft (Fig. 2) across a roughly northwest to southeast trend. Eagle Ford oil is also widely produced in Texas and parts of Louisiana from wells in the o
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  • .../[secific gravity at 16&deg;C]-131.5&deg;). A higher API indicates lighter oil. Fresh water has a gravity of 10&deg; API. Heavy oils have less than 25&deg
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  • ...EagleFord2019-20CommRept.jpg|300px|thumb|{{figure number|1}}Initial gas-to-oil ratios, play footprint, elevation contours, and thickness contours for the The Eagle Ford Group (or Shale) is a major oil, natural gas, and condensate/natural gas liquids play in southwest to centr
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  • ...tural gas was not seriously considered, and finding gas when searching for oil was commonly considered a calamity. ...Europe, Japan, and elsewhere; (2) more gas was needed to be reinjected in oil fields in an advanced state of depletion; (3) the technologies of gas lique
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  • ...pt05r13>Anderson, W. G., 1986a, Wettability literature survey—Part 1, Rock/oil/brine interactions and the effects of [[core handling]] on wettability: Jou ...hemistry of Surfaces, 4th ed.: New York, John Wiley and Sons.</ref> For an oil, water, and solid system, the equation would be
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  • * [[Oil]] * [[Oil quality]]
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  • ...formations with very low permeability has resulted in drastic increases in oil and natural gas production since 2008. ...rels per day). The Eagle Ford and Bakken contribute equally as second most oil producers (around 1,000 thousand barrels per day). For the natural gas, the
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  • ...is becomes important when porous formations, particularly those containing oil or gas, are drilled. In porous formations, the drilling fluid may penetrate Drilling fluids include three main types: ''water-based muds, oil-based muds'', and ''air''. Air drilling fluids, such as mist, foams, and st
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  • * API gravity see oil gravity * biodegradation http://www.oiltracers.com/services/exploration-geochemistry/oil-biodegradation.aspx
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  • ...y reservoir charged by the underlying prolific Eagle Ford Group, producing oil and gas from naturally fractured zones that allow horizontal drilling to co ...Karnes County (Fig. 3). (Also, notice the water-jumping curves in US tight oil and gas production linked to the pandemic and O&G price collapse in 2020) (
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  • Highly oil-prone organic matter having [[Rock-Eval pyrolysis]] [[hydrogen]] indices gr
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  • ...ranging from <1 micron to 100 micron . Pore characteristic will determine oil recovery method. ...θ = 90°. If θ<60°, then the rock are water wet, and if θ>120° the rock has oil/gas wet. Intermediate wet has gotten if the θ around 90° (between 60° an
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  • ...e=TRC>Texas Railroad Commission, [http://www.rrc.state.tx.us/oil-gas/major-oil-gas-formations/barnett-shale-information/ Barnett Shale Information.]</ref> ...ce for petroleum in the Fort Worth Basin, and has been the source rock of oil and gas for other conventional reservoir systems in the basin such as the E
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  • ...lithology track.) This evaluation can also include qualitative analysis of oil fluorimetry, refractometry, and [[geochemistry]].
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  • ...n energy and frequency factor. Most petroleum system modeling assumes that oil and gas generation can be described by a series of parallel first-order kin
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  • Oil-prone organic matter having [[Rock-Eval pyrolysis]] [[hydrogen]] indices in
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  • ...er hydrocarbons that may eventually become producible; this includes known oil and gas deposits present that cannot be technologically or economically rec ...ly to gas evolving from the oil as pressure and temperature are decreased, oil at the surface occupies less space than it does in the subsurface. Converse
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  • ...intervals of the Three Forks and the intervening Pronghorn Member. Bakken oil is also found in limestones of the Lodgepole Formation (<ref name=GaswirthM ...red, technically recoverable resource estimates of 3.65 billion barrels of oil (BBO) for the Bakken and 3.73 BBO for the Three Forks Formation (total mean
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  • ...Exploring for stratigraphic traps]][[Category:Predicting the occurrence of oil and gas traps]]
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  • ...uality and Performance], in E. A. Beaumont and N. H. Foster, Exploring for Oil and Gas Traps, [http://store.aapg.org/detail.aspx?id=545 AAPG Treatise of P
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  • ...the first step in converting the raw log data into estimated quantities of oil, gas, and water in a formation. These estimated quantities are used to eval ...ght be radioactive productive zones. <sup>2</sup>Shaly zones might produce oil or gas even if they have low resistivity.<ref name=AsquithandKrygowski_2006
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  • ...=pt05r123>Park, A., 1985, Coring, Part 2—core barrel types and uses: World Oil, v. 200, p. 83–90.</ref> Data from continuous core are typically combined ...Keelan, 1985, Coring, Part 7—analytical aspects of sidewall coring: World Oil, v. 201, p. 77–90.</ref> (See also [[Sidewall coring]].)
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  • ...ulic fluid are pumped to the surface, the oil is separated and some of the oil is reused as the power fluid. ...pumping systems were one of the first type of artificial lift used in the oil field and are still the most widely used means of artificial lift. A beam p
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  • ...h December 2000, more than 17.2 million m<sup>3</sup> (108 million bbl) of oil and 2.7 billion m<sup>3</sup> (94 billion ft<sup>3</sup>) of gas from upper ...ted about 15% of more than 1.9 billion m<sup>3</sup> (12.3 billion bbl) of oil produced in the area since 1864. Because Stevens oils derive from Monterey
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  • ...]] [[reservoir]]s may contain any of the three fluid phases—water (brine), oil, or gas. The initial distribution of phases depends on depth, [[Wikipedia:T ...naries.com/us/definition/american_english/cap-rock cap rock]. Gas overlies oil, which overlies water. However, because the reservoir pores are usually sat
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  • # gas-oil or water-oil contacts, and ...also distinguishable from the water. The location of the gas-oil and water-oil contacts can also be determined from the formation pressure profile.
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  • ...organic sulfur (8-14 wt. %, atomic S/C &ge; 0.04) and begin to generate [[oil]] at a lower [[thermal maturation|thermal maturity]] than typical type II k
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  • ...ploration_Fig_2.png|{{figure number|2}}Hydrocarbon reservoir with gas cap, oil zone, and water zone (Source: Saudi Aramco<ref name = SaudiAramco />) ...ration_Fig_3.png|{{figure number|3}}Hydrocarbon reservoir with no gas cap (oil and water zones only; Source: Saudi Aramco<ref name = SaudiAramco /)
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  • * ''q''<sub>o</sub> = oil production rate (STB/day) ===Productivity index equation for undersaturated oil===
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  • | chapter = Fundamental economic equations for oil and gas property evaluation The purchase of any oil and gas producing property is a complex business venture. The basic economi
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  • ...c-rich intervals, the Vaca Muerta has garnered interest from international oil and gas companies such as ExxonMobil, Chevron, TOTAL, YPF, and Repsol, as w ...ta-Figure1.png|300px|center|framed|{{figure number|1}}Charts demonstrating oil and gas production from the Vaca Muerta Play. From Rystad Energy (2021)]]
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  • The Point Pleasant play has shown a steady increase of production of oil, natural gas and natural gas liquids in Ohio since coming online in 2011. P ..., up to 600 feet in Pennsylvania. Thermal maturity can be divided into the oil window, wet gas window, and dry gas zone which increases in maturity to the
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  • * How does oil escape from the [[source rock]]? * Does oil migrate out of the [[trap]]?
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  • | chapter = Oil and gas contracts ...ship of oil and gas interests and/or the need to share economic risks, the oil and gas industry has utilized a number of different contractual arrangement
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  • ...neral types: ''wellhead'' or ''production taxes'', which are paid when the oil and gas are produced regardless of the amount of profit (or loss), and ''in ...ates, 212 p.</ref> <ref name=pt02r17>Thompson, R. S., Wright, J. D., 1992, Oil and gas property evaluation, 3rd ed.: Golden, CO, Thompson-Wright Associate
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  • .../data/alt-browse/aapg-special-volumes/sg25.htm Exploration for heavy crude oil and natural bitumen]: AAPG Studies in Geology 25, p. 3–23.</ref> The degr ==Crude oil Composition==
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  • ...tion of co-produced water is shown by the dashed line on the left. The gas-oil contact is controlled by the volume of gas in the trap, not the capillary p ...ield.slb.com/en/Terms.aspx?LookIn=term%20name&filter=gas-oil%20contact gas-oil contact]'' is the elevation above which gas is the produced hydrocarbon pha
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  • The production of oil or gas from underground reservoirs involves chemical and mechanical process ...er is pulled toward the well, resulting in a cone-shaped distortion of the oil-water contact. If a well is produced too hard, water breakthrough can occur
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  • ...ng oil fields. The total reserves exceed 44 billion barrels of recoverable oil and 37 trillion cubic feet of gas. The [[Silurian]] and Upper [[Cretaceous] ...rolific oil basin in Africa, contains 89% of Libya’s reserves and 16 giant oil fields. [[Reservoir rock]]s range in age from Precambrian to Eocene. The Up
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  • ...1974, Massive stimulation effort may double U.S. gas supply, part 3: World Oil, v. 179, no. 6, p. 81-84.</ref> ...osium on enhanced oil and gas recovery and improved drilling methods, v. 3-oil and gas recovery: Tulsa, Oklahoma, Petroleum Publishing, p. K-2/1-K-2/13.</
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  • ...e in organic solvents, and the term is used here in a restricted sense for oil generated in petroleum source rocks before it is expelled. ...n even lower percentage of this buried fraction is converted to petroleum (oil and gas), expelled, migrated, concentrated, and trapped in reservoirs.
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  • | chapter = Determining owners of oil and gas interests, and methods of conveyance Ownership of oil and gas interests, whether privately or publicly owned, is reflected in the
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  • ...he Dead Sea Basin and include numerous oil and gas seeps, tar sands, heavy oil, and floating asphalt blocks in Dead Sea waters and on the shoreline. Never ...ig02.jpg|Figure 2]]) and the mid-Cretaceous sourced and reservoired Hamzeh oil field in central northern Jordan.
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  • | chapter = Nature of the oil and gas lease ...hts of execution (''executive rights'') who conveys leasehold rights as to oil and gas and such other mineral interests as are to be included in the prope
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