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2016 | OriginalPaper | Buchkapitel

10. Hydrocarbons and Evaporites

verfasst von : John K. Warren

Erschienen in: Evaporites

Verlag: Springer International Publishing

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Abstract

Even though evaporites constitute less than 2 % of the world’s sedimentary rocks, one-half of the world’s largest oilfields are sealed by evaporites, the other half are sealed by shales (Fig. 10.1; Grunau 1987). Kirkland and Evans (1981) argued that evaporites overlie or seal carbonates containing an estimated 50 % of the world’s known total petroleum reserve. Of the world’s 25 largest gas fields, nine are sealed by evaporites and sixteen by shales and hydrates. Sixteen are capped by Mesozoic seals, 7 by Palaeozoic seals, and only two by Tertiary seals. Fourteen are in the 1,000–2,000 m seal-depth interval, nine in the 2,000–3,000 m interval; and two in the 0–1,000 m interval. As one would expect, more gas fields than oilfields are sealed by Palaeozoic caprocks, and more oilfields than gas fields are sealed by Tertiary caprocks. Surprisingly, the seal depth intervals for the 25 largest oil and gas fields do not differ significantly. However, Grunau argues many “supergiant” gas accumulations below depths of 3,000 m and have either not yet been discovered, or have not yet been put in production (e.g. much of the Khuff-hosted gas in North Dome in the Middle East).

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Fußnoten
1
A giant oil field contains more than 0.5 × 109 barrels of expected ultimate recoverable oil, while a supergiant contains more than 5 × 109 barrels (Fitzgerald 1980). The equivalent separation between giant and supergiant gas fields is 0.5 × 109 and 5 × 109 BOE, respectively.
BOE is barrels of oil equivalent on a BTU basis; 1 barrel of oil = 5.61 ft3, so the respective cutoffs for giant and super giant gas fields are 3 and 30 tcf (trillion cubic feet).
 
2
1P reserves = proven reserves (both proved developed reserves + proved undeveloped reserves).
2P reserves = 1P (proven reserves) + probable reserves; hence proved
AND probable.
3P reserves = the sum of 2P (proven reserves + probable reserves) + possible reserves; hence, all 3Ps are proven AND probable AND possible.
 
3
Name changed to honour former Brazilian President, Luiz Inacio Lula da Silva.
 
4
Entry pressure is the minimum capillary pressure required to force oil or gas from one water-filled pore to the next.
 
5
Gas or methane hydrates (more precisely called clathrates) are the solid form of mostly methane trapped in a crystalline framework of ice and are only found in low temperature seafloor or permafrost conditions. They seal onshore supergiant fields of west Siberia and Timan- Pechora basins of Russia and occur also as solid bacterial-associated products in the deep seafloor, where temperatures are low and water depths exceed 500 m. Seafloor clathrates are thought to contain more than 20 quadrillion cubic metres of methane. In oil equivalents this is around 15 trillion m3 (116 trillion barrels), more than 30 times the likely volume of oil and gas reserves (Hunt 1996).
 
6
Synonymous with minimum displacement pressure.
 
7
In most oilfield applications the millidarcy (md), which is 0.001 darcies, is used as a measure of permeability. Permeability is fundamentally a L2 unit. In SI it is expressed in μm2, which is 10−12 m2. In conventional metric use it is expressed in m2 (metres squared) or cm2. The conversion between oilfield and SI units is 1 darcy = 9.869 × 10−13 m2. In practical terms, 1 md and 1 μm2 are essentially equivalent, while in terms of hydraulic conductivity, 1 darcy = 10−5 m/s.
 
8
The Tiber oilfield was drilled in 2009 by the semi-submersible oil rig Deepwater Horizon. The same rig was destroyed as the result of an explosion 7 months after the discovery at Tiber, while drilling its next well at Macondo in April 2010.
 
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Zurück zum Zitat Buchbinder, B., 1996, Miocene carbonates of the eastern Mediterranean, the Red Sea and the Mesopotamian Basin: geodynamic and eustatic controls, in E. K. e. a. Franseen, ed., Models for carbonate stratigraphy from Miocene reef complexes of Mediterranean regions, SEPM/Society for Sedimentary Geology; Concepts in Sedimentology and Paleontology, v. 5, p. 89–96. Buchbinder, B., 1996, Miocene carbonates of the eastern Mediterranean, the Red Sea and the Mesopotamian Basin: geodynamic and eustatic controls, in E. K. e. a. Franseen, ed., Models for carbonate stratigraphy from Miocene reef complexes of Mediterranean regions, SEPM/Society for Sedimentary Geology; Concepts in Sedimentology and Paleontology, v. 5, p. 89–96.
Zurück zum Zitat Burwood, R., 1984, Carbonate source rocks for six million barrels of oil per day – Zagros fold belt, southwestern Iran, in J. G. Palacas, ed., Petroleum geochemistry and source rock potential of carbonate rocks, American Association of Petroleum Geologists Studies in Geology 18, p. 206. Burwood, R., 1984, Carbonate source rocks for six million barrels of oil per day – Zagros fold belt, southwestern Iran, in J. G. Palacas, ed., Petroleum geochemistry and source rock potential of carbonate rocks, American Association of Petroleum Geologists Studies in Geology 18, p. 206.
Zurück zum Zitat Broughton, P. L., 2013, Devonian salt dissolution-collapse breccias flooring the Cretaceous Athabasca oil sands deposit and development of lower McMurray Formation sinkholes, northern Alberta Basin, Western Canada: Sedimentary Geology, v. 283, p. 57–82. Broughton, P. L., 2013, Devonian salt dissolution-collapse breccias flooring the Cretaceous Athabasca oil sands deposit and development of lower McMurray Formation sinkholes, northern Alberta Basin, Western Canada: Sedimentary Geology, v. 283, p. 57–82.
Zurück zum Zitat Cantrell, D. L., and R. M. Hagerty, 1999, Microporosity in the Arab Formation Carbonates, Saudi Arabia: GeoArabia, v. 4, p. 129–154. Cantrell, D. L., and R. M. Hagerty, 1999, Microporosity in the Arab Formation Carbonates, Saudi Arabia: GeoArabia, v. 4, p. 129–154.
Zurück zum Zitat Cantrell, D. L., and R. M. Hagerty, 2003, Reservoir rock classification, Arab-D reservoir, Ghawar field, Saudi Arabia: GeoArabia, v. 8, p. 129–154. Cantrell, D. L., and R. M. Hagerty, 2003, Reservoir rock classification, Arab-D reservoir, Ghawar field, Saudi Arabia: GeoArabia, v. 8, p. 129–154.
Zurück zum Zitat Cantrell, D. L., P. K. Swart, C. R. Handford, C. G. S. C. Kendall, and H. Westphal, 2001, Geology and production significance of dolomite, Arab D reservoir, Ghawar Field, Saudi Arabia: GeoArabia, v. 6, p. 45–60. Cantrell, D. L., P. K. Swart, C. R. Handford, C. G. S. C. Kendall, and H. Westphal, 2001, Geology and production significance of dolomite, Arab D reservoir, Ghawar Field, Saudi Arabia: GeoArabia, v. 6, p. 45–60.
Zurück zum Zitat Cartwright, J., M. Huuse, and A. Aplin, 2007, Seal bypass systems: American Association Petroleum Geologists – Bulletin, v. 91, p. 1141–1166. Cartwright, J., M. Huuse, and A. Aplin, 2007, Seal bypass systems: American Association Petroleum Geologists – Bulletin, v. 91, p. 1141–1166.
Zurück zum Zitat Casabianca, D., R. J. H. Jolly, and R. Pollard, 2007, The Machar Oil Field: waterflooding a fractured chalk reservoir: Geological Society, London, Special Publications, v. 270, p. 171–191. Casabianca, D., R. J. H. Jolly, and R. Pollard, 2007, The Machar Oil Field: waterflooding a fractured chalk reservoir: Geological Society, London, Special Publications, v. 270, p. 171–191.
Zurück zum Zitat Cercone, K. R., and K. C. Lohmann, 1986, Diagenetic history of the Union 8 pinnacle reef (Middle Silurian), northern Michigan, USA, in B. Purser, and J. Schroeder, eds., Reef diagenesis.: Berlin, Germany, Elsevier, p. 381–398. Cercone, K. R., and K. C. Lohmann, 1986, Diagenetic history of the Union 8 pinnacle reef (Middle Silurian), northern Michigan, USA, in B. Purser, and J. Schroeder, eds., Reef diagenesis.: Berlin, Germany, Elsevier, p. 381–398.
Zurück zum Zitat Cheng, A., and J. T. Kwan, 2012, Optimal Injection Design Utilizing Tracer and Simulation in a Surfactant Pilot for a Fractured Carbonate Yates Field, Society of Petroleum Engineers. Cheng, A., and J. T. Kwan, 2012, Optimal Injection Design Utilizing Tracer and Simulation in a Surfactant Pilot for a Fractured Carbonate Yates Field, Society of Petroleum Engineers.
Zurück zum Zitat Chengzao, J., and L. Qiming, 2008, Petroleum geology of Kela-2, the most productive gas field in China: Marine and Petroleum Geology, v. 25, p. 335–343. Chengzao, J., and L. Qiming, 2008, Petroleum geology of Kela-2, the most productive gas field in China: Marine and Petroleum Geology, v. 25, p. 335–343.
Zurück zum Zitat Chimene, C. A., 1991, Walker Creek Field – USA, Gulf of Mexico Basin, Arkansas, in E. A. Beaumont, and N. H. Foster, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps II: Tulsa, OK, American Association Petroleum Geologists, p. 55–117. Chimene, C. A., 1991, Walker Creek Field – USA, Gulf of Mexico Basin, Arkansas, in E. A. Beaumont, and N. H. Foster, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps II: Tulsa, OK, American Association Petroleum Geologists, p. 55–117.
Zurück zum Zitat Chuber, S., and W. C. Pusey, 1985, Productive Permian carbonate cycles, San Andres Formation, Reeves field, West Texas, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 289–307. Chuber, S., and W. C. Pusey, 1985, Productive Permian carbonate cycles, San Andres Formation, Reeves field, West Texas, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 289–307.
Zurück zum Zitat Clark, D., J. Heaviside, and K. Habib, 2003, Reservoir properties of Arab carbonates, Al Rayyan field, offshore Qatar, in C. J. R. Braithwaite, G. Rizzi, and G. Darke, eds., The geometry and petrogenesis of dolomite hydrocarbon reservoirs, v. 235, Geological Society (London) Special Publication, p. 193–232. Clark, D., J. Heaviside, and K. Habib, 2003, Reservoir properties of Arab carbonates, Al Rayyan field, offshore Qatar, in C. J. R. Braithwaite, G. Rizzi, and G. Darke, eds., The geometry and petrogenesis of dolomite hydrocarbon reservoirs, v. 235, Geological Society (London) Special Publication, p. 193–232.
Zurück zum Zitat Clement, J. H., 1985, Depositional sequences and characteristics of Ordovician Red River Reservoirs, Pennel Field, Williston Basin, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: a case book: New York, Springer Verlag, p. 71–84. Clement, J. H., 1985, Depositional sequences and characteristics of Ordovician Red River Reservoirs, Pennel Field, Williston Basin, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: a case book: New York, Springer Verlag, p. 71–84.
Zurück zum Zitat Cossey, S. P., 2004, Celebrations began with cognac: American Association of Petroleum Geologists Explorer, v. September 2004. Cossey, S. P., 2004, Celebrations began with cognac: American Association of Petroleum Geologists Explorer, v. September 2004.
Zurück zum Zitat Craig, D. H., 1988, Caves and other features of Permian karst in San Andres dolomite, Yates field reservoirs, west Texas, in N. P. James, and P. W. Choquette, eds., Paleokarst: New York, Springer-Verlag, p. 342–363. Craig, D. H., 1988, Caves and other features of Permian karst in San Andres dolomite, Yates field reservoirs, west Texas, in N. P. James, and P. W. Choquette, eds., Paleokarst: New York, Springer-Verlag, p. 342–363.
Zurück zum Zitat Craig, J., U. Biffi, R. F. Galimberti, K. A. R. Ghori, J. D. Gorter, N. Hakhoo, D. P. Le Heron, J. Thurow, and M. Vecoli, 2013, The palaeobiology and geochemistry of Precambrian hydrocarbon source rocks: Marine and Petroleum Geology, v. 40, p. 1–47. Craig, J., U. Biffi, R. F. Galimberti, K. A. R. Ghori, J. D. Gorter, N. Hakhoo, D. P. Le Heron, J. Thurow, and M. Vecoli, 2013, The palaeobiology and geochemistry of Precambrian hydrocarbon source rocks: Marine and Petroleum Geology, v. 40, p. 1–47.
Zurück zum Zitat D’Heur, M., 1990a, West Ekofisk Field--Norway Central Graben, North Sea, Structural Traps IV: Tectonic and Nontectonic Fold Traps, American Association Petroleum Geologists, Special Publication, p. 57–83. D’Heur, M., 1990a, West Ekofisk Field--Norway Central Graben, North Sea, Structural Traps IV: Tectonic and Nontectonic Fold Traps, American Association Petroleum Geologists, Special Publication, p. 57–83.
Zurück zum Zitat D’Heur, M., 1990b, Eldfisk Field--Norway Central Graben, North Sea, Structural Traps IV: Tectonic and Nontectonic Fold Traps, American Association Petroleum Geologists, Special Publication, p. 27–56. D’Heur, M., 1990b, Eldfisk Field--Norway Central Graben, North Sea, Structural Traps IV: Tectonic and Nontectonic Fold Traps, American Association Petroleum Geologists, Special Publication, p. 27–56.
Zurück zum Zitat Dasgupta, S., M. R. Hong, and I. A. Al-Jallal, 2002, Accurate reservoir characterization to reduce drilling risk in Khuff-C carbonate, Ghawar field, Saudi Arabia: GeoArabia, v. 7, p. 81–100. Dasgupta, S., M. R. Hong, and I. A. Al-Jallal, 2002, Accurate reservoir characterization to reduce drilling risk in Khuff-C carbonate, Ghawar field, Saudi Arabia: GeoArabia, v. 7, p. 81–100.
Zurück zum Zitat Davies, G. R., and L. B. Smith, 2006, Structurally controlled hydrothermal dolomite reservoir facies: An overview: Bulletin American Association Petroleum Geologists, v. 90, p. 1641–1690. Davies, G. R., and L. B. Smith, 2006, Structurally controlled hydrothermal dolomite reservoir facies: An overview: Bulletin American Association Petroleum Geologists, v. 90, p. 1641–1690.
Zurück zum Zitat Davis, D. M., and T. Engelder, 1987, Thin-skinned deformation over salt, in I. Lerche, and J. J. O’Brien, eds., Dynamical geology of salt and related structures: New York, Academic Press, p. 301–337. Davis, D. M., and T. Engelder, 1987, Thin-skinned deformation over salt, in I. Lerche, and J. J. O’Brien, eds., Dynamical geology of salt and related structures: New York, Academic Press, p. 301–337.
Zurück zum Zitat Davison, I., G. Alsop, N. Evans, and M. Safaricz, 2000a, Overburden deformation patterns and mechanisms of salt diapir penetration in the Central Graben, North Sea: Marine & Petroleum Geology, v. 17, p. 601–618. Davison, I., G. Alsop, N. Evans, and M. Safaricz, 2000a, Overburden deformation patterns and mechanisms of salt diapir penetration in the Central Graben, North Sea: Marine & Petroleum Geology, v. 17, p. 601–618.
Zurück zum Zitat Davison, I., I. Alsop, P. Birch, C. Elders, N. Evans, H. Nicholson, P. Rorison, D. Wade, J. Woodward, and M. Young, 2000b, Geometry and late-stage structural evolution of Central Graben salt diapirs, North Sea: Marine & Petroleum Geology, v. 17, p. 499–522. Davison, I., I. Alsop, P. Birch, C. Elders, N. Evans, H. Nicholson, P. Rorison, D. Wade, J. Woodward, and M. Young, 2000b, Geometry and late-stage structural evolution of Central Graben salt diapirs, North Sea: Marine & Petroleum Geology, v. 17, p. 499–522.
Zurück zum Zitat DeLuca, M., 1999, Forty-six wells designated subsalt in the Gulf of Mexico: Offshore, v. January Issue, p. 50. DeLuca, M., 1999, Forty-six wells designated subsalt in the Gulf of Mexico: Offshore, v. January Issue, p. 50.
Zurück zum Zitat Demaison, G. J., and B. J. Huizinga, 1991, Genetic classification of petroleum systems: Bulletin American Association of Petroleum Geologists, v. 75, p. 1626–1643. Demaison, G. J., and B. J. Huizinga, 1991, Genetic classification of petroleum systems: Bulletin American Association of Petroleum Geologists, v. 75, p. 1626–1643.
Zurück zum Zitat DeMis, W. D., 1992, Elkhorn Ranch Field -USA, Williston Basin, North Dakota, in N. H. Foster, and E. A. Beaumont, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps III: Tulsa, OK, American Association Petroleum Geologists, p. 369–388. DeMis, W. D., 1992, Elkhorn Ranch Field -USA, Williston Basin, North Dakota, in N. H. Foster, and E. A. Beaumont, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps III: Tulsa, OK, American Association Petroleum Geologists, p. 369–388.
Zurück zum Zitat Depowski, S., and T. Peryt, 1985, Carbonate petroleum reservoirs in the Permian dolomites of the Zechstein, Fore-Sudetic area, western Poland, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 251–264. Depowski, S., and T. Peryt, 1985, Carbonate petroleum reservoirs in the Permian dolomites of the Zechstein, Fore-Sudetic area, western Poland, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 251–264.
Zurück zum Zitat Dill, H. G., R. Botz, Z. Berner, D. Stüben, S. Nasir, and H. Al-Saad, 2005, Sedimentary facies, mineralogy, and geochemistry of the sulphate-bearing Miocene Dam Formation in Qatar: Sedimentary Geology, v. 174, p. 63–96. Dill, H. G., R. Botz, Z. Berner, D. Stüben, S. Nasir, and H. Al-Saad, 2005, Sedimentary facies, mineralogy, and geochemistry of the sulphate-bearing Miocene Dam Formation in Qatar: Sedimentary Geology, v. 174, p. 63–96.
Zurück zum Zitat Dill, H. G., S. Nasir, and H. Al-Saad, 2003, Lithological and structural evolution of the northern sector of Dukhan anticline, Qatar, during the early Tertiary: with special reference to sequence stratigraphic bounding surfaces: GeoArabia, v. 8, p. 201–226. Dill, H. G., S. Nasir, and H. Al-Saad, 2003, Lithological and structural evolution of the northern sector of Dukhan anticline, Qatar, during the early Tertiary: with special reference to sequence stratigraphic bounding surfaces: GeoArabia, v. 8, p. 201–226.
Zurück zum Zitat Dooley, T. P., M. P. A. Jackson, and M. R. Hudec, 2009, Inflation and deflation of deeply buried salt stocks during lateral shortening: Journal of Structural Geology, v. 31, p. 582–600. Dooley, T. P., M. P. A. Jackson, and M. R. Hudec, 2009, Inflation and deflation of deeply buried salt stocks during lateral shortening: Journal of Structural Geology, v. 31, p. 582–600.
Zurück zum Zitat Douglas, J. L., and S. A. Members of the ‘Ain Dar/Shedgum Modeling Team, 1996, Geostatistical Model for the Arab-D Reservoir, North ‘Ain Dar Pilot, Ghawar Field, Saudi Arabia: An Improved Reservoir Simulation Model: GeoArabia, v. 1, p. 267–284. Douglas, J. L., and S. A. Members of the ‘Ain Dar/Shedgum Modeling Team, 1996, Geostatistical Model for the Arab-D Reservoir, North ‘Ain Dar Pilot, Ghawar Field, Saudi Arabia: An Improved Reservoir Simulation Model: GeoArabia, v. 1, p. 267–284.
Zurück zum Zitat Downey, M. W., 1984, Evaluating seals for hydrocarbon accumulations: Bulletin American Association of Petroleum Geologists, v. 68, p. 1752–1763. Downey, M. W., 1984, Evaluating seals for hydrocarbon accumulations: Bulletin American Association of Petroleum Geologists, v. 68, p. 1752–1763.
Zurück zum Zitat Dribus, J. R., M. P. A. Jackson, J. Kapoor, and M. F. Smith, 2008, The Prize Beneath the Salt: Oil Field Review (Schlumberger), v. 20, p. 4–17. Dribus, J. R., M. P. A. Jackson, J. Kapoor, and M. F. Smith, 2008, The Prize Beneath the Salt: Oil Field Review (Schlumberger), v. 20, p. 4–17.
Zurück zum Zitat Druckman, Y., and C. H. Moore, 1985, Late subsurface secondary porosity in a Jurassic grainstone reservoir, Smackover formation, Mt Vernon Field, Southern Arkansas, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 369–383. Druckman, Y., and C. H. Moore, 1985, Late subsurface secondary porosity in a Jurassic grainstone reservoir, Smackover formation, Mt Vernon Field, Southern Arkansas, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 369–383.
Zurück zum Zitat Dischinger, J. D., and S. Mitra, 2006, Three-dimensional structural model of the Painter and East Painter reservoir structures, Wyoming fold and thrust belt: Bulletin American Association Petroleum Geologists, v. 90, p. 1171–1185. Dischinger, J. D., and S. Mitra, 2006, Three-dimensional structural model of the Painter and East Painter reservoir structures, Wyoming fold and thrust belt: Bulletin American Association Petroleum Geologists, v. 90, p. 1171–1185.
Zurück zum Zitat Ehgartner, B. L., J. T. Neal, and T. E. Hinkebein, 1998, Gas Releases from Salt: SAND98-1354, Sandia National Laboratories, Albuquerque, NM, June 1998. Ehgartner, B. L., J. T. Neal, and T. E. Hinkebein, 1998, Gas Releases from Salt: SAND98-1354, Sandia National Laboratories, Albuquerque, NM, June 1998.
Zurück zum Zitat Ehrenberg, S. N., P. H. Nadeau, and A. A. M. Aqrawi, 2007, A comparison of Khuff and Arab reservoir potential throughout the Middle East: Bulletin American Association Petroleum Geologists, v. 91, p. 275–286. Ehrenberg, S. N., P. H. Nadeau, and A. A. M. Aqrawi, 2007, A comparison of Khuff and Arab reservoir potential throughout the Middle East: Bulletin American Association Petroleum Geologists, v. 91, p. 275–286.
Zurück zum Zitat Eichenseer, H. T., F. R. Walgenwitz, and P. J. Biondi, 1999, Stratigraphic Control on Facies and Diagenesis of Dolomitized Oolitic Siliciclastic Ramp Sequences (Pinda Group, Albian, Offshore Angola): Bulletin American Association Petroleum Geologists, v. 83, p. 1729–1758. Eichenseer, H. T., F. R. Walgenwitz, and P. J. Biondi, 1999, Stratigraphic Control on Facies and Diagenesis of Dolomitized Oolitic Siliciclastic Ramp Sequences (Pinda Group, Albian, Offshore Angola): Bulletin American Association Petroleum Geologists, v. 83, p. 1729–1758.
Zurück zum Zitat El Taki, H., and B. R. Pratt, 2010, Syndepositional tectonic activity in an epicontinental basin revealed by deformation of subaqueous carbonate laminites and evaporites : RedRiver strata (Upper Ordovician) of Southern Saskatchewan, Canada: Bulletin Canadian Petroleum Geology, v. 60, p. 37–58. El Taki, H., and B. R. Pratt, 2010, Syndepositional tectonic activity in an epicontinental basin revealed by deformation of subaqueous carbonate laminites and evaporites : RedRiver strata (Upper Ordovician) of Southern Saskatchewan, Canada: Bulletin Canadian Petroleum Geology, v. 60, p. 37–58.
Zurück zum Zitat Elias, A. R. D., L. F. De Ros, A. M. P. Mizusaki, and S. M. C. Anjos, 2004, Diagenetic patterns in eolian/coastal sabkha reservoirs of the Solimões Basin, Northern Brazil: Sedimentary Geology, v. 169, p. 191–217. Elias, A. R. D., L. F. De Ros, A. M. P. Mizusaki, and S. M. C. Anjos, 2004, Diagenetic patterns in eolian/coastal sabkha reservoirs of the Solimões Basin, Northern Brazil: Sedimentary Geology, v. 169, p. 191–217.
Zurück zum Zitat Elliott, L. A., and J. K. Warren, 1989, Stratigraphy and depositional environment of lower San Andres Formation in subsurface and equivalent outcrops; Chaves, Lincoln, and Roosevelt counties, New Mexico: Bulletin American Association of Petroleum Geologists, v. 73, p. 1307–1325. Elliott, L. A., and J. K. Warren, 1989, Stratigraphy and depositional environment of lower San Andres Formation in subsurface and equivalent outcrops; Chaves, Lincoln, and Roosevelt counties, New Mexico: Bulletin American Association of Petroleum Geologists, v. 73, p. 1307–1325.
Zurück zum Zitat Enger, S., and A. Logan, 2001, Ultradeepwater play paces gulf, North America: Oil & Gas Journal, v. 99, p. 80–85. Enger, S., and A. Logan, 2001, Ultradeepwater play paces gulf, North America: Oil & Gas Journal, v. 99, p. 80–85.
Zurück zum Zitat Fabricius, I. L., B. Røgen, and L. Gommesen, 2007, How depositional texture and diagenesis control petrophysical and elastic properties of samples from five North Sea chalk fields: Petroleum Geoscience, v. 13, p. 81–95. Fabricius, I. L., B. Røgen, and L. Gommesen, 2007, How depositional texture and diagenesis control petrophysical and elastic properties of samples from five North Sea chalk fields: Petroleum Geoscience, v. 13, p. 81–95.
Zurück zum Zitat Fard, A., M. Sepehr, and S. Sherkati, 2011, Neogene salt in SW Iran and its interaction with Zagros folding: Geological Magazine, v. 148, p. 854–867. Fard, A., M. Sepehr, and S. Sherkati, 2011, Neogene salt in SW Iran and its interaction with Zagros folding: Geological Magazine, v. 148, p. 854–867.
Zurück zum Zitat Feazel, C. T., 1985, Diagenesis of Jurassic grainstone reservoirs in the Smackover Formation, Chatom Field, Alabama, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 357–367. Feazel, C. T., 1985, Diagenesis of Jurassic grainstone reservoirs in the Smackover Formation, Chatom Field, Alabama, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum reservoirs: New York, Springer-Verlag, p. 357–367.
Zurück zum Zitat Fischer, D., T. Heck, and L. C. Gerhard, 1990, Medicine Pole Hills Field, Williston Basin, North Dakota, in E. A. Beaumont, and N. H. Foster, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps I: Tulsa, OK, American Association Petroleum Geologists, p. 229–255. Fischer, D., T. Heck, and L. C. Gerhard, 1990, Medicine Pole Hills Field, Williston Basin, North Dakota, in E. A. Beaumont, and N. H. Foster, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps I: Tulsa, OK, American Association Petroleum Geologists, p. 229–255.
Zurück zum Zitat Fitzgerald, T. A., 1980, Giant oil field discoveries 1968–1978; An overview, in M. T. Halbouty, ed., Giant oil and gas fields of the decade 1968–1978: Tulsa, OK, American Association of Petroleum Geologists Memoir 30. Fitzgerald, T. A., 1980, Giant oil field discoveries 1968–1978; An overview, in M. T. Halbouty, ed., Giant oil and gas fields of the decade 1968–1978: Tulsa, OK, American Association of Petroleum Geologists Memoir 30.
Zurück zum Zitat Foster, P. T., and P. R. Rattey, 1993, The evolution of fractured chalk reservoir: Machar oilfield, UK, North Sea: Petroleum Geology of Northwest Europe, Barbican Conference Proceedings, Geological Society of London, v. 2, p. 1445–1452. Foster, P. T., and P. R. Rattey, 1993, The evolution of fractured chalk reservoir: Machar oilfield, UK, North Sea: Petroleum Geology of Northwest Europe, Barbican Conference Proceedings, Geological Society of London, v. 2, p. 1445–1452.
Zurück zum Zitat Frey, M. G., and W. H. Grimes, 1970, Bay Marchand – Timbalier Bay – Caillou Island Salt Complex, Louisiana: American Association Petroleum Geologists – Memoir, v. 14, p. 277–291. Frey, M. G., and W. H. Grimes, 1970, Bay Marchand – Timbalier Bay – Caillou Island Salt Complex, Louisiana: American Association Petroleum Geologists – Memoir, v. 14, p. 277–291.
Zurück zum Zitat Galloway, W. E., T. E. Ewing, C. M. Garret, N. Tyler, and D. G. Bebout, 1983, Atlas of major Texas oil reservoirs: The University of Texas at Austin, Bureau of Economic Geology special publication, 139 p. Galloway, W. E., T. E. Ewing, C. M. Garret, N. Tyler, and D. G. Bebout, 1983, Atlas of major Texas oil reservoirs: The University of Texas at Austin, Bureau of Economic Geology special publication, 139 p.
Zurück zum Zitat Gerdes, K. D., P. Winefield, M. D. Simmons, and C. Van Oosterhout, 2010, The influence of basin architecture and eustacy on the evolution of Tethyan Mesozoic and Cenozoic carbonate sequences: Geological Society, London, Special Publications, v. 329, p. 9–41. Gerdes, K. D., P. Winefield, M. D. Simmons, and C. Van Oosterhout, 2010, The influence of basin architecture and eustacy on the evolution of Tethyan Mesozoic and Cenozoic carbonate sequences: Geological Society, London, Special Publications, v. 329, p. 9–41.
Zurück zum Zitat Gerhard, L. C., 1985, Porosity development in the Mississippian pisolitic limestones of the Mission Canyon formation, Glenburn field, Williston basin, North Dakota., in P. O. Roehl, and P. W. Choquette, eds., Carbonate Petroleum Reservoirs, Springer-Verlag, p. 191–205. Gerhard, L. C., 1985, Porosity development in the Mississippian pisolitic limestones of the Mission Canyon formation, Glenburn field, Williston basin, North Dakota., in P. O. Roehl, and P. W. Choquette, eds., Carbonate Petroleum Reservoirs, Springer-Verlag, p. 191–205.
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Zurück zum Zitat Holail, H. H. M., M. M. N. Shaaban, A. S. Mansour, and I. Rifai, 2005, Diagenesis of the middle Eocene upper Dammam subformation, Qatar: Petrographic and isotopic evidence: Carbonates and Evaporites, v. 20, p. 72–81. Holail, H. H. M., M. M. N. Shaaban, A. S. Mansour, and I. Rifai, 2005, Diagenesis of the middle Eocene upper Dammam subformation, Qatar: Petrographic and isotopic evidence: Carbonates and Evaporites, v. 20, p. 72–81.
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Zurück zum Zitat Hopkins, J. C., 1987, Contemporaneous subsidence and fluvial channel sedimentation: Upper Mannville C Pool, Berry Field, Lower Cretaceous of Alberta: Bulletin American Association of Petroleum Geologists, v. 71, p. 334–345. Hopkins, J. C., 1987, Contemporaneous subsidence and fluvial channel sedimentation: Upper Mannville C Pool, Berry Field, Lower Cretaceous of Alberta: Bulletin American Association of Petroleum Geologists, v. 71, p. 334–345.
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Zurück zum Zitat Jiang, L., C. F. Cai, R. H. Worden, K. K. Li, and L. Xiang, 2013, Reflux dolomitization of the Upper Permian Changxing Formation and the Lower Triassic Feixianguan Formation, NE Sichuan Basin, China: Geofluids, v. 13, p. 232–245. Jiang, L., C. F. Cai, R. H. Worden, K. K. Li, and L. Xiang, 2013, Reflux dolomitization of the Upper Permian Changxing Formation and the Lower Triassic Feixianguan Formation, NE Sichuan Basin, China: Geofluids, v. 13, p. 232–245.
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Zurück zum Zitat Karnin, W. D., E. Idiz, D. Merkel, and E. Ruprecht, 1996, The Zechstein Stassfurt carbonate hydrocarbon system of the Thuringian Basin, Germany: Petroleum Geoscience, v. 2, p. 53–58. Karnin, W. D., E. Idiz, D. Merkel, and E. Ruprecht, 1996, The Zechstein Stassfurt carbonate hydrocarbon system of the Thuringian Basin, Germany: Petroleum Geoscience, v. 2, p. 53–58.
Zurück zum Zitat Kashfi, M. S., 1983, Variations in tectonic styles in the Zagros geosyncline and their relation to the diapirism of salt in Southern Iran: Journal of Petroleum Geology, v. 6, p. 195–206. Kashfi, M. S., 1983, Variations in tectonic styles in the Zagros geosyncline and their relation to the diapirism of salt in Southern Iran: Journal of Petroleum Geology, v. 6, p. 195–206.
Zurück zum Zitat Kashfi, M. S., 1985, The Pre-Zagros integrity of the Iranian Platform: Journal of Petroleum Geology, v. 8, p. 353–360. Kashfi, M. S., 1985, The Pre-Zagros integrity of the Iranian Platform: Journal of Petroleum Geology, v. 8, p. 353–360.
Zurück zum Zitat Kendall, A. C., 1983, Unconformity-associated replacement limestones after anhydrite in Mississippian of Williston Basin: American Association of Petroleum Geologists Bulletin, v. 67, p. 494–495. Kendall, A. C., 1983, Unconformity-associated replacement limestones after anhydrite in Mississippian of Williston Basin: American Association of Petroleum Geologists Bulletin, v. 67, p. 494–495.
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Zurück zum Zitat Luebking, G. A., M. W. Longman, and W. J. Carlisle, 2001, Unconformity-related chert/dolomite production in the Pennsylvanian Amsden Formation, Wolf Springs fields, Bull Mountains basin of central Montana: American Association of Petroleum Geologists Bulletin, v. 85, p. 131–148. Luebking, G. A., M. W. Longman, and W. J. Carlisle, 2001, Unconformity-related chert/dolomite production in the Pennsylvanian Amsden Formation, Wolf Springs fields, Bull Mountains basin of central Montana: American Association of Petroleum Geologists Bulletin, v. 85, p. 131–148.
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Zurück zum Zitat Mann, S. D., 1988, Subaqueous Evaporites of the Buckner Member, Haynesville Formation, Northeastern Mobile County, Alabama: Gulf Coast Association of Geological Societies Transactions, v. 38, p. 187–196. Mann, S. D., 1988, Subaqueous Evaporites of the Buckner Member, Haynesville Formation, Northeastern Mobile County, Alabama: Gulf Coast Association of Geological Societies Transactions, v. 38, p. 187–196.
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Zurück zum Zitat McQuillan, H., 1985, Fracture-controlled production from the Oligocene-Miocene Asmari Formation in Gachsaran and Bibi Hakimeh fields, Southwest Iran, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum resevoirs: New York, Springer-Verlag, p. 511–523. McQuillan, H., 1985, Fracture-controlled production from the Oligocene-Miocene Asmari Formation in Gachsaran and Bibi Hakimeh fields, Southwest Iran, in P. O. Roehl, and P. W. Choquette, eds., Carbonate petroleum resevoirs: New York, Springer-Verlag, p. 511–523.
Zurück zum Zitat McTavish, G. J., and L. W. Vigrass, 1987, Salt dissolution and tectonics, south-central Saskatchewan, in C. G. Carlson, and J. E. Christopher, eds., Proceedings of the fifth international Williston basin symposium, v. 9, Saskatchewan Geological Society, Special Publication, p. 157–168. McTavish, G. J., and L. W. Vigrass, 1987, Salt dissolution and tectonics, south-central Saskatchewan, in C. G. Carlson, and J. E. Christopher, eds., Proceedings of the fifth international Williston basin symposium, v. 9, Saskatchewan Geological Society, Special Publication, p. 157–168.
Zurück zum Zitat Meijer Drees, N. C., 1994, Chapter 10 – Devonian Elk Point Group of the Western Canada Sedimentary Basin, Atlas of the Western Canada Sedimentary Basin, Canadian Geological Survey, p. 129–147. Meijer Drees, N. C., 1994, Chapter 10 – Devonian Elk Point Group of the Western Canada Sedimentary Basin, Atlas of the Western Canada Sedimentary Basin, Canadian Geological Survey, p. 129–147.
Zurück zum Zitat Melas, F. F., and G. M. Friedman, 1992, Petrophysical characteristics of the Jurassic Smackover Formation, Jay Field, Conecuh embayment, Alabama and Florida: American Association of Petroleum Geologists Bulletin, v. 76, p. 81–100. Melas, F. F., and G. M. Friedman, 1992, Petrophysical characteristics of the Jurassic Smackover Formation, Jay Field, Conecuh embayment, Alabama and Florida: American Association of Petroleum Geologists Bulletin, v. 76, p. 81–100.
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Zurück zum Zitat Mitchell, J. C., P. J. Lehmann, D. L. Cantrell, I. A. Al-Jallal, and M. A. R. Al Thagafy, 1988, Lithofacies, diagenesis and depositional sequence; Arab-D Member, Ghawar field, Saudi Arabia, in A. J. Lomando, and P. M. Harris, eds., Giant oil and gas fields – A core workshop: Tulsa, OK, SEPM core Workshop No. 12, p. 459–514. Mitchell, J. C., P. J. Lehmann, D. L. Cantrell, I. A. Al-Jallal, and M. A. R. Al Thagafy, 1988, Lithofacies, diagenesis and depositional sequence; Arab-D Member, Ghawar field, Saudi Arabia, in A. J. Lomando, and P. M. Harris, eds., Giant oil and gas fields – A core workshop: Tulsa, OK, SEPM core Workshop No. 12, p. 459–514.
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Zurück zum Zitat Mohr, M., P. A. Kukla, J. L. Urai, and G. Bresser, 2004, New Insights to the evolution and mechanisms of salt tectonics in the Central European Basin system: An integrated modeling study from Northwest Germany, In: Salt-sediment interactions and hydrocarbon prospectivity: concepts, applications and case studies for the 21st Century. Papers presented at the 24th Annual Gulf Coast Section SEPM Foundation Bob F. Perkins Research Conference, Houston Tx, December 5–8, 2004 (CD publication), p. 90–118. Mohr, M., P. A. Kukla, J. L. Urai, and G. Bresser, 2004, New Insights to the evolution and mechanisms of salt tectonics in the Central European Basin system: An integrated modeling study from Northwest Germany, In: Salt-sediment interactions and hydrocarbon prospectivity: concepts, applications and case studies for the 21st Century. Papers presented at the 24th Annual Gulf Coast Section SEPM Foundation Bob F. Perkins Research Conference, Houston Tx, December 5–8, 2004 (CD publication), p. 90–118.
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Zurück zum Zitat Montgomery, S. L., R. Karlewicz, and D. Ziegler, 1999b, Upper Jurassic “Reef” play, east Texas Basin: An updated overview: Part 2 – Inboard trend: American Association Petroleum Geologists – Bulletin, v. 83, p. 869–888. Montgomery, S. L., R. Karlewicz, and D. Ziegler, 1999b, Upper Jurassic “Reef” play, east Texas Basin: An updated overview: Part 2 – Inboard trend: American Association Petroleum Geologists – Bulletin, v. 83, p. 869–888.
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Zurück zum Zitat Moore, C. H., 1984, The upper Smackover of the Gulf rim: depositional systems, diagenesis, porosity evolution and hydrocarbon production, in W. P. S. Ventress, B. M. Bebout, B. F. Perkins, and C. H. Moore, eds., The Jurassic of the Gulf rim, Gulf Coast Section, SEPM, p. 283–307. Moore, C. H., 1984, The upper Smackover of the Gulf rim: depositional systems, diagenesis, porosity evolution and hydrocarbon production, in W. P. S. Ventress, B. M. Bebout, B. F. Perkins, and C. H. Moore, eds., The Jurassic of the Gulf rim, Gulf Coast Section, SEPM, p. 283–307.
Zurück zum Zitat Moore, C. H., and Y. Druckman, 1981, Burial diagenesis and porosity evolution, Upper Jurassic Smackover, Arkansas and Louisiana: American Association of Petroleum Geologists Bulletin, v. 65, p. 597–628. Moore, C. H., and Y. Druckman, 1981, Burial diagenesis and porosity evolution, Upper Jurassic Smackover, Arkansas and Louisiana: American Association of Petroleum Geologists Bulletin, v. 65, p. 597–628.
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Zurück zum Zitat Mossadegh, Z. K., D. W. Haig, T. Allan, M. H. Adabi, and A. Sadeghi, 2009, Salinity changes during Late Oligocene to Early Miocene Asmari Formation deposition, Zagros Mountains, Iran: Palaeogeography, Palaeoclimatology, Palaeoecology, v. 272, p. 17–36. Mossadegh, Z. K., D. W. Haig, T. Allan, M. H. Adabi, and A. Sadeghi, 2009, Salinity changes during Late Oligocene to Early Miocene Asmari Formation deposition, Zagros Mountains, Iran: Palaeogeography, Palaeoclimatology, Palaeoecology, v. 272, p. 17–36.
Zurück zum Zitat Muir, I. D., and J. J. Dravis, 1995, Incorporation of Core and Petrographic Data – Key to Improved Management and Exploitation of Middle Devonian Keg River Carbonate Pools in Rainbow Sub-Basin, Alberta, Western Canada (abs.): Bulletin American Association of Petroleum Geologists, v. 79, p. 69. Muir, I. D., and J. J. Dravis, 1995, Incorporation of Core and Petrographic Data – Key to Improved Management and Exploitation of Middle Devonian Keg River Carbonate Pools in Rainbow Sub-Basin, Alberta, Western Canada (abs.): Bulletin American Association of Petroleum Geologists, v. 79, p. 69.
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Zurück zum Zitat O’Dell, P. M., 1998, The Athel: A Challenging Formation in South Oman: SPE 50981; presented at the 1997 SPE Middle East Oil Show held in Bahrain, 15–18 March. O’Dell, P. M., 1998, The Athel: A Challenging Formation in South Oman: SPE 50981; presented at the 1997 SPE Middle East Oil Show held in Bahrain, 15–18 March.
Zurück zum Zitat Obermajer, M., M. G. Fowler, L. R. Snowdon, and R. W. Macqueen, 2000, Compositional variability of crude oils and source kerogen in the Silurian carbonate-evaporite sequences of the eastern Michigan Basin, Ontario, Canada: Bulletin of Canadian Petroleum Geology, v. 48, p. 307–322. Obermajer, M., M. G. Fowler, L. R. Snowdon, and R. W. Macqueen, 2000, Compositional variability of crude oils and source kerogen in the Silurian carbonate-evaporite sequences of the eastern Michigan Basin, Ontario, Canada: Bulletin of Canadian Petroleum Geology, v. 48, p. 307–322.
Zurück zum Zitat Orszag-Sperber, F., G. Harwood, A. Kendall, and B. H. Purser, 1998, A review of evaporites of the Red Sea – Gulf of Suez rift, in B. H. Purser, and D. W. J. Bosence, eds., Sedimentation and Tectonics of Rift Basins: Red Sea – Gulf of Aden: London, Chapman and Hall, p. 409–428. Orszag-Sperber, F., G. Harwood, A. Kendall, and B. H. Purser, 1998, A review of evaporites of the Red Sea – Gulf of Suez rift, in B. H. Purser, and D. W. J. Bosence, eds., Sedimentation and Tectonics of Rift Basins: Red Sea – Gulf of Aden: London, Chapman and Hall, p. 409–428.
Zurück zum Zitat Oswald, E. J., 1992, Dolomitization of a Miocene reef complex; Mallorca, Spain: doctoral thesis, State University of New York at Stony Brook, 437 p. Oswald, E. J., 1992, Dolomitization of a Miocene reef complex; Mallorca, Spain: doctoral thesis, State University of New York at Stony Brook, 437 p.
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Zurück zum Zitat Perkins, R. D., 1991, Early and late diagenetic alteration of Ordovician Red River carbonates, Tioga Deep Field, Williston Basin, North Dakota: Bulletin American Association of Petroleum Geologists, v. 75, p. 652. Perkins, R. D., 1991, Early and late diagenetic alteration of Ordovician Red River carbonates, Tioga Deep Field, Williston Basin, North Dakota: Bulletin American Association of Petroleum Geologists, v. 75, p. 652.
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Zurück zum Zitat Peterson, J. A., 1992, Aneth Field -USA, Paradox Basin, Utah, in N. H. Foster, and E. A. Beaumont, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps III: Tulsa, OK, American Association Petroleum Geologists, p. 41–82. Peterson, J. A., 1992, Aneth Field -USA, Paradox Basin, Utah, in N. H. Foster, and E. A. Beaumont, eds., Treatise of Petroleum Geology; Atlas of Oil and Gas Fields: Stratigraphic Traps III: Tulsa, OK, American Association Petroleum Geologists, p. 41–82.
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Zurück zum Zitat Pu, R., and H. Qing, 2003, Pool characterization of Ordovician Midale field: Implication for Red River play in northern Williston basin, southeastern Saskatchewan, Canada: American Association Petroleum Geologists – Bulletin, v. 87, p. 1699–1715. Pu, R., and H. Qing, 2003, Pool characterization of Ordovician Midale field: Implication for Red River play in northern Williston basin, southeastern Saskatchewan, Canada: American Association Petroleum Geologists – Bulletin, v. 87, p. 1699–1715.
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Zurück zum Zitat Ramseyer, K., J. E. Amthor, A. Matter, T. Pettke, M. Wille, and A. E. Fallick, 2013, Primary silica precipitate at the Precambrian/ Cambrian boundary in the South Oman Salt Basin, Sultanate of Oman: Marine and Petroleum Geology, v. 39, p. 187–197. Ramseyer, K., J. E. Amthor, A. Matter, T. Pettke, M. Wille, and A. E. Fallick, 2013, Primary silica precipitate at the Precambrian/ Cambrian boundary in the South Oman Salt Basin, Sultanate of Oman: Marine and Petroleum Geology, v. 39, p. 187–197.
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Zurück zum Zitat Schoenherr, J., R. Littke, J. L. Urai, P. A. Kukla, and Z. Rawahi, 2007a, Polyphase thermal evolution in the Infra-Cambrian Ara Group (South Oman Salt Basin) as deduced by maturity of solid reservoir bitumen: Organic Geochemistry, v. 38, p. 1293–1318. Schoenherr, J., R. Littke, J. L. Urai, P. A. Kukla, and Z. Rawahi, 2007a, Polyphase thermal evolution in the Infra-Cambrian Ara Group (South Oman Salt Basin) as deduced by maturity of solid reservoir bitumen: Organic Geochemistry, v. 38, p. 1293–1318.
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Metadaten
Titel
Hydrocarbons and Evaporites
verfasst von
John K. Warren
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-13512-0_10