Skip to main content
Top
Published in: Arabian Journal for Science and Engineering 6/2021

15-01-2021 | Research Article-Earth Sciences

Control of Lithofacies and Geomechanical Characteristics on Natural Fracture Systems in Qusaiba Shale, Rub’ Al-Khali Basin, Saudi Arabia

Authors: Ayyaz Mustafa, Mohamed Omar Abouelresh, Abdulazeez Abdulraheem

Published in: Arabian Journal for Science and Engineering | Issue 6/2021

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The lower Silurian Qusaiba Shale is one of the major source rocks for Paleozoic oil/gas reservoirs in Saudi Arabia and recently considered a potential unconventional shale gas resource. The study aims to evaluate the reservoir heterogeneity and production potential of Qusaiba Shale through the integration of geological, geomechanical and fractures characteristics. Three lithofacies were identified in Qusaiba shale. Mineralogical composition resulted in variable amounts of quartz ranging from 39 to 40, 45–55 and 60–78% for Lithofacies-I, II and III, respectively. Inter-granular porosity of these lithofacies is very low; however, fractures along laminations, at angle with laminations, and few micro-faults enhance porosity up to 5–6, 2–3, and < 1% in Lithofacies-I, II and III, respectively. The Lithofacies-I hosts the lowest fracture density (1.2 fractures/foot), likely due to the relatively lower quartz content (39%) as compared to other lithofacies. The fracture densities in Lithofacies-II and III are 2.1 and 3.2 fractures/foot, respectively. Lithofacies-I exhibits low stiffness in terms of low Young’s modulus (average 26 GPa) and high Poisson’s ratio (average 0.34). Mineralogy- and elastic parameters-based brittleness indices exhibited ductile behavior of this lithofacies. The brittleness index exhibited brittle behavior for silica-rich Lithofacies-III and has highest intensity of natural fractures. Hence, it is concluded that mineralogy and geological characteristics are the main controlling factors on shale brittleness, mechanical properties and fractures characteristics. The integration of geology, mineralogy and geomechanics plays the key role to better evaluate the prospectivity of shale reservoirs.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Schmoker, J.W.: Resource-assessment perspectives for unconventional gas systems. AAPG (Am. Assoc. Pet. Geol.) Bull. 86(11), 1993–1999 (2002) Schmoker, J.W.: Resource-assessment perspectives for unconventional gas systems. AAPG (Am. Assoc. Pet. Geol.) Bull. 86(11), 1993–1999 (2002)
2.
go back to reference Kawata, Y.; Fujita, K.: Some prediction of possible unconventional hydrocarbon availability until 2100. In: SPE Asia Pacific Oil and Gas Conference, Jakarta. Society of Petroleum Engineers, SPE, vol. 68755, pp. 1–10 (2001) Kawata, Y.; Fujita, K.: Some prediction of possible unconventional hydrocarbon availability until 2100. In: SPE Asia Pacific Oil and Gas Conference, Jakarta. Society of Petroleum Engineers, SPE, vol. 68755, pp. 1–10 (2001)
3.
go back to reference Moujahed, A.H.: Old Sandstones New Horizons. Middle East Well Evaluation review, Issue 11 (1991) Moujahed, A.H.: Old Sandstones New Horizons. Middle East Well Evaluation review, Issue 11 (1991)
4.
go back to reference Arouri, R.K.; Van Laer, J.P.; Prudden, H.M.; Jenden, D.J.; Carrigan, J.W.; Al-Hajji, A.A.: Controls on hydrocarbon properties in a Paleozoic petroleum system in Saudi Arabia: exploration and development implications. AAPG Bull. 94(2), 163–188 (2010)CrossRef Arouri, R.K.; Van Laer, J.P.; Prudden, H.M.; Jenden, D.J.; Carrigan, J.W.; Al-Hajji, A.A.: Controls on hydrocarbon properties in a Paleozoic petroleum system in Saudi Arabia: exploration and development implications. AAPG Bull. 94(2), 163–188 (2010)CrossRef
5.
go back to reference Mahmoud, M.D.; Vaslet, D.; Al-Husseini, M.I.: The lower Silurian Qalibah formation of Saudi Arabia: an important hydrocarbon source rock. Am. Assoc. Pet. Geol. Bull. 76, 1491–1506 (1992) Mahmoud, M.D.; Vaslet, D.; Al-Husseini, M.I.: The lower Silurian Qalibah formation of Saudi Arabia: an important hydrocarbon source rock. Am. Assoc. Pet. Geol. Bull. 76, 1491–1506 (1992)
6.
go back to reference Cole, G.A.: Graptolite-chitinozoan reflectance and its relationship to other geochemical maturity indicators in the Silurian Qusaiba Shale, Saudi Arabia. Energy Fuels 21, 1443–1459 (1994)CrossRef Cole, G.A.: Graptolite-chitinozoan reflectance and its relationship to other geochemical maturity indicators in the Silurian Qusaiba Shale, Saudi Arabia. Energy Fuels 21, 1443–1459 (1994)CrossRef
7.
go back to reference Sahin, A.: Unconventional natural gas potential in Saudi Arabia. In: SPE Middle East Oil and Gas Show and Conference, Manama, Bahrain. Society of Petroleum Engineers, SPE, vol. 164364, pp. 1–9 (2013) Sahin, A.: Unconventional natural gas potential in Saudi Arabia. In: SPE Middle East Oil and Gas Show and Conference, Manama, Bahrain. Society of Petroleum Engineers, SPE, vol. 164364, pp. 1–9 (2013)
8.
go back to reference Inan, S.; Goodarzi, F.; Mumm, A.S.; Arouri, K.; Qathami, S.; Ardakani, O.H.; Inan, T.; Tuwailib, A.A.: The Silurian Hot Shales of Saudi Araba: an integrated assessment of thermal maturity. Int. J. Coal Geol. 159, 107–119 (2016)CrossRef Inan, S.; Goodarzi, F.; Mumm, A.S.; Arouri, K.; Qathami, S.; Ardakani, O.H.; Inan, T.; Tuwailib, A.A.: The Silurian Hot Shales of Saudi Araba: an integrated assessment of thermal maturity. Int. J. Coal Geol. 159, 107–119 (2016)CrossRef
9.
go back to reference MorCheshirea, S.; Craddockb, P.R.; Xu, G.; Sauerer, B.; Andrew, E.; Pomerantz, A.E.; McCormick, D.; Abdallah, W.: Assessing thermal maturity beyond the reaches of vitrinite reflectance and Rock-Eval pyrolysis: a case study from the Silurian Qusaiba formation. Int. J. Coal Geol. 180, 29–45 (2017)CrossRef MorCheshirea, S.; Craddockb, P.R.; Xu, G.; Sauerer, B.; Andrew, E.; Pomerantz, A.E.; McCormick, D.; Abdallah, W.: Assessing thermal maturity beyond the reaches of vitrinite reflectance and Rock-Eval pyrolysis: a case study from the Silurian Qusaiba formation. Int. J. Coal Geol. 180, 29–45 (2017)CrossRef
10.
go back to reference Josh, M.L.; Esteban, C.D.; Piane, J.; Sarout, J.; Dewhurst, D.N.; Clennell, M.B.: Laboratory characterisation of shale properties. J. Pet. Sci. Eng. 88–89, 107–124 (2012)CrossRef Josh, M.L.; Esteban, C.D.; Piane, J.; Sarout, J.; Dewhurst, D.N.; Clennell, M.B.: Laboratory characterisation of shale properties. J. Pet. Sci. Eng. 88–89, 107–124 (2012)CrossRef
11.
go back to reference Olson, J.E.; Laubach, S.E.; Lander, R.H.: Natural fracture characterization in tight gas sandstones: integration mechanics and diagenesis. AAPG Bull. 93, 1535–1549 (2009)CrossRef Olson, J.E.; Laubach, S.E.; Lander, R.H.: Natural fracture characterization in tight gas sandstones: integration mechanics and diagenesis. AAPG Bull. 93, 1535–1549 (2009)CrossRef
13.
go back to reference Curtis, J.B.: Fractured shale-gas systems. AAPG (Am. Assoc. Pet. Geol.) Bull. 86, 1921–1938 (2002) Curtis, J.B.: Fractured shale-gas systems. AAPG (Am. Assoc. Pet. Geol.) Bull. 86, 1921–1938 (2002)
14.
go back to reference Ouenes, A.: Distribution of well performances in shale reservoirs and their predictions using the concept of shale capacity. In: AAPG Search and Discovery, American Association of Petroleum Geologists, Article # 41139 (2013) Ouenes, A.: Distribution of well performances in shale reservoirs and their predictions using the concept of shale capacity. In: AAPG Search and Discovery, American Association of Petroleum Geologists, Article # 41139 (2013)
15.
go back to reference Gale, J.F.W.; Laubach, S.E.; Olson, J.E.; Eichhubl, P.; Fall, A.: Natural fractures in shale: a review and new observations. AAPG Bull. 98(11), 2165–2216 (2014)CrossRef Gale, J.F.W.; Laubach, S.E.; Olson, J.E.; Eichhubl, P.; Fall, A.: Natural fractures in shale: a review and new observations. AAPG Bull. 98(11), 2165–2216 (2014)CrossRef
16.
go back to reference Montgomery, S.L.; Jarvie, D.M.; Bowker, K.A.; Pollastro, R.M.: Mississippian Barnett Shale, Fort Worth Basin, North-Central Texas: gas-shale play with multi-trillion cubic foot potential. AAPG (Am. Assoc. Pet. Geol.) Bull. 89(2), 155–175 (2005) Montgomery, S.L.; Jarvie, D.M.; Bowker, K.A.; Pollastro, R.M.: Mississippian Barnett Shale, Fort Worth Basin, North-Central Texas: gas-shale play with multi-trillion cubic foot potential. AAPG (Am. Assoc. Pet. Geol.) Bull. 89(2), 155–175 (2005)
17.
go back to reference Britt. L.K.; Schoeffler, J.: The geomechanics of a shale play: what makes a shale prospective!. In: SPE Eastern Regional Meeting, Society of Petroleum Engineers, SPE, vol. 125525, pp. 1–9 (2009) Britt. L.K.; Schoeffler, J.: The geomechanics of a shale play: what makes a shale prospective!. In: SPE Eastern Regional Meeting, Society of Petroleum Engineers, SPE, vol. 125525, pp. 1–9 (2009)
18.
go back to reference Abousleiman, Y.; Tran, M.; Hoang, S.: Geomechanics field and laboratory characterization of woodford shale: the next gas play. In: SPE Annual technical Conference and Exhibition, Society of Petroleum Engineers, Anaheim, California, USA, SPE, vol. 110120, pp. 1–14 (2007) Abousleiman, Y.; Tran, M.; Hoang, S.: Geomechanics field and laboratory characterization of woodford shale: the next gas play. In: SPE Annual technical Conference and Exhibition, Society of Petroleum Engineers, Anaheim, California, USA, SPE, vol. 110120, pp. 1–14 (2007)
19.
go back to reference Gale, J.F.W.; Reed, R.M.; Holder, J.: Natural fractures in the Barnett Shale and their importance for hydraulic fracture treatments. AAPG (Am. Assoc. Pet. Geol.) Bull. 91(4), 603–622 (2007) Gale, J.F.W.; Reed, R.M.; Holder, J.: Natural fractures in the Barnett Shale and their importance for hydraulic fracture treatments. AAPG (Am. Assoc. Pet. Geol.) Bull. 91(4), 603–622 (2007)
20.
go back to reference Safari, M.R.; Oar, T.; Queena, C.: Effects of depletion/injection induced stress changes on natural fracture reactivation. In: Presented at the 47th US Rock Mechanics Symposium, San Francisco, California, ARMA-395 (2013) Safari, M.R.; Oar, T.; Queena, C.: Effects of depletion/injection induced stress changes on natural fracture reactivation. In: Presented at the 47th US Rock Mechanics Symposium, San Francisco, California, ARMA-395 (2013)
21.
go back to reference Jarvie, D.M.; Hill, R.J.; Ruble, T.E.; Pollastro, R.M.: Unconventional shale-gas systems: the Mississippian Barnett Shale of north-central Texas as one model for thermogenic shale-gas assessment. AAPG (Am. Assoc. Pet. Geol.) Bull. 91, 475–499 (2007) Jarvie, D.M.; Hill, R.J.; Ruble, T.E.; Pollastro, R.M.: Unconventional shale-gas systems: the Mississippian Barnett Shale of north-central Texas as one model for thermogenic shale-gas assessment. AAPG (Am. Assoc. Pet. Geol.) Bull. 91, 475–499 (2007)
22.
23.
go back to reference Rickman, R.; Mullen, M.; Petre, E.; Grieser, B.; Kudert, D.: A practical use of shale petrophysics for stimulation design optimization: all shale plays are not clones of the Barnett Shale. In: SPE Annual Technical Conference and Exhibition, Denver, Colorado, USA. Society of Petroleum Engineers, SPE, vol. 115258, pp. 1–11 (2008) Rickman, R.; Mullen, M.; Petre, E.; Grieser, B.; Kudert, D.: A practical use of shale petrophysics for stimulation design optimization: all shale plays are not clones of the Barnett Shale. In: SPE Annual Technical Conference and Exhibition, Denver, Colorado, USA. Society of Petroleum Engineers, SPE, vol. 115258, pp. 1–11 (2008)
24.
go back to reference Jacobi, D.J.; Breig, J.J.; Kopal, M.; Hursan, G.; Mendez, F.E.; Bliven, S.; Longe, J.: Effective geomechanical and geochemical characterisation of shale gas reservoirs from the wellbore environment: Caney and the Woodford Shales. In: SPE Annual Technical Conference and Exhibition, 4–7 October, New Orleans, Louisiana. Society of Petroleum Engineers, SPE, vol. 124231, pp. 1–20 (2008) Jacobi, D.J.; Breig, J.J.; Kopal, M.; Hursan, G.; Mendez, F.E.; Bliven, S.; Longe, J.: Effective geomechanical and geochemical characterisation of shale gas reservoirs from the wellbore environment: Caney and the Woodford Shales. In: SPE Annual Technical Conference and Exhibition, 4–7 October, New Orleans, Louisiana. Society of Petroleum Engineers, SPE, vol. 124231, pp. 1–20 (2008)
25.
go back to reference Denkhaus, H.G.: Brittleness and drillability: comment on “The evaluation of rock brittleness concept on rotary blast hole drills” and “Correlation of specific energy with rock brittleness concepts on rock cutting” by R. Altindag. J. SAIMM 103, 523–524 (2003) Denkhaus, H.G.: Brittleness and drillability: comment on “The evaluation of rock brittleness concept on rotary blast hole drills” and “Correlation of specific energy with rock brittleness concepts on rock cutting” by R. Altindag. J. SAIMM 103, 523–524 (2003)
26.
go back to reference Buller, D.; Hughes, S.; Market, J.: Petrophysical evaluation for enhancing hydraulic stimulation in horizontal shale gas wells. In: SPE Annual Technical Conference and Exhibition, Society of Petroleum Engineers, Florence, Italy, 19–22 September. SPE-132990-MS (2010). https://doi.org/10.2118/132990-MS. Buller, D.; Hughes, S.; Market, J.: Petrophysical evaluation for enhancing hydraulic stimulation in horizontal shale gas wells. In: SPE Annual Technical Conference and Exhibition, Society of Petroleum Engineers, Florence, Italy, 19–22 September. SPE-132990-MS (2010). https://​doi.​org/​10.​2118/​132990-MS.
27.
go back to reference Sangnimnuan, A.; Li, J.; Wu, K.: Development of coupled two phase flow and geomechanics model to predict stress evolution in unconventional reservoirs with complex fracture geometry. J. Pet. Sci. Eng. 196, 108072 (2021)CrossRef Sangnimnuan, A.; Li, J.; Wu, K.: Development of coupled two phase flow and geomechanics model to predict stress evolution in unconventional reservoirs with complex fracture geometry. J. Pet. Sci. Eng. 196, 108072 (2021)CrossRef
28.
go back to reference Tiryaki, B.: Evaluation of the indirect measures of rock brittleness and fracture toughness in rock cutting. J. S. Afr. Inst. Min. Metall. 106(6), 409–423 (2006) Tiryaki, B.: Evaluation of the indirect measures of rock brittleness and fracture toughness in rock cutting. J. S. Afr. Inst. Min. Metall. 106(6), 409–423 (2006)
29.
go back to reference Holt, R.M.; Fjaer, E.; Magner, N.O.: A shaly look at brittleness. In: ARMA 45th US Rock Mechanics/Geomechanics Symposium, San Francisco, Californa, 26–29 June. American Rock Mechanics Association, 11-366 (2011) Holt, R.M.; Fjaer, E.; Magner, N.O.: A shaly look at brittleness. In: ARMA 45th US Rock Mechanics/Geomechanics Symposium, San Francisco, Californa, 26–29 June. American Rock Mechanics Association, 11-366 (2011)
30.
go back to reference Ameen, M.S.; MacPherson, K.; Al-Marhoon, M.I.; Rahim, Z.: Diverse fracture properties and their impact on performance in conventional and tight-gas reservoirs, Saudi Arabia: the Unayzah, South Haradh case study. Am. Assoc. Pet. Geol. (AAPG) 96(03), 459–492 (2012) Ameen, M.S.; MacPherson, K.; Al-Marhoon, M.I.; Rahim, Z.: Diverse fracture properties and their impact on performance in conventional and tight-gas reservoirs, Saudi Arabia: the Unayzah, South Haradh case study. Am. Assoc. Pet. Geol. (AAPG) 96(03), 459–492 (2012)
31.
go back to reference Ibrahim, M.I.M.; Hariri, M.M.; Abdullatif, O.M.; Makkawi, M.H.; Elzain, H.: Fractures system within Qusaiba Shale outcrop and its relationship to the lithogical properties, Qasim area, Central Saudi Arabia. J. Afr. Earth Sci. 133, 104–122 (2017)CrossRef Ibrahim, M.I.M.; Hariri, M.M.; Abdullatif, O.M.; Makkawi, M.H.; Elzain, H.: Fractures system within Qusaiba Shale outcrop and its relationship to the lithogical properties, Qasim area, Central Saudi Arabia. J. Afr. Earth Sci. 133, 104–122 (2017)CrossRef
32.
go back to reference Abouelresh, M.O.; Babalola, L.O.: 2D spatial analysis of the natural fractures in the organic-rich Qusaiba Shale outcrop, NW Saudi Arabia. J. Pet. Sci. Eng. 186, 106780 (2020)CrossRef Abouelresh, M.O.; Babalola, L.O.: 2D spatial analysis of the natural fractures in the organic-rich Qusaiba Shale outcrop, NW Saudi Arabia. J. Pet. Sci. Eng. 186, 106780 (2020)CrossRef
33.
go back to reference Laubach, S.E.; Olson, J.E.; Gross, M.R.: Mechanical and fracture stratigraphy. Am. Assoc. Pet. Geol. (AAPG) Bull. 93(11), 1413–1426 (2009) Laubach, S.E.; Olson, J.E.; Gross, M.R.: Mechanical and fracture stratigraphy. Am. Assoc. Pet. Geol. (AAPG) Bull. 93(11), 1413–1426 (2009)
34.
go back to reference Lander, R.H.; Laubach, S.E.: Insights into rates of fracture growth and sealing from a model for quartz cementation in fractured sandstones. Geol. Soc. Am. Bull. 127, 516–538 (2015)CrossRef Lander, R.H.; Laubach, S.E.: Insights into rates of fracture growth and sealing from a model for quartz cementation in fractured sandstones. Geol. Soc. Am. Bull. 127, 516–538 (2015)CrossRef
35.
go back to reference Ameen, M.S.: Fractures modes if the Silurian Qusaiba Shale Play, Northern Saudi Arabia and their geomechanical implications. Mar. Pet. Geol. 78, 312–355 (2016)CrossRef Ameen, M.S.: Fractures modes if the Silurian Qusaiba Shale Play, Northern Saudi Arabia and their geomechanical implications. Mar. Pet. Geol. 78, 312–355 (2016)CrossRef
36.
go back to reference Anders, M.H.; Laubach, S.E.; Scholz, C.H.: Microfractures: a review. J. Struct. Geol. 69, 377–394 (2014)CrossRef Anders, M.H.; Laubach, S.E.; Scholz, C.H.: Microfractures: a review. J. Struct. Geol. 69, 377–394 (2014)CrossRef
37.
go back to reference He, Z.J.; Liu, B.J.; Wang, P.: Genesis of bedding fracture and its influences on reservoirs in Jurassic, Yongjin Area, Junggar Basin. Pet. Geol. Recov. Effic. 18(1), 15–17 (2011) He, Z.J.; Liu, B.J.; Wang, P.: Genesis of bedding fracture and its influences on reservoirs in Jurassic, Yongjin Area, Junggar Basin. Pet. Geol. Recov. Effic. 18(1), 15–17 (2011)
38.
go back to reference Ladevèze, P.; Séjourné, S.; Rivard, C.; Lavoie, D.; Lefebvre, R.; Rouleau, A.: Defining the natural fracture network in a shale gas play and its cover succession: the case of the Utica Shale in eastern Canada. J. Struct. Geol. 108, 157–170 (2018)CrossRef Ladevèze, P.; Séjourné, S.; Rivard, C.; Lavoie, D.; Lefebvre, R.; Rouleau, A.: Defining the natural fracture network in a shale gas play and its cover succession: the case of the Utica Shale in eastern Canada. J. Struct. Geol. 108, 157–170 (2018)CrossRef
39.
go back to reference Odling, N.E.; Gillespie, P.; Bourgine, B.; Castaing, C.; Chiles, J.P.; Christensen, N.P.; Trice, R.: Variations in fracture system geometry and their implications for fluid flow in fractured hydrocarbon reservoirs. Pet. Geosci. 5(4), 373–384 (1999)CrossRef Odling, N.E.; Gillespie, P.; Bourgine, B.; Castaing, C.; Chiles, J.P.; Christensen, N.P.; Trice, R.: Variations in fracture system geometry and their implications for fluid flow in fractured hydrocarbon reservoirs. Pet. Geosci. 5(4), 373–384 (1999)CrossRef
40.
go back to reference Nelson, R.: Geologic Analysis of Naturally Fractured Reservoirs. Gulf Professional Publishing, Boston (2001) Nelson, R.: Geologic Analysis of Naturally Fractured Reservoirs. Gulf Professional Publishing, Boston (2001)
41.
go back to reference Abouelresh, M.O.: An integrated characterization of the porosity in Qusaiba Shale, Saudi Arabia. J. Pet. Sci. Eng. 149, 75–87 (2017)CrossRef Abouelresh, M.O.: An integrated characterization of the porosity in Qusaiba Shale, Saudi Arabia. J. Pet. Sci. Eng. 149, 75–87 (2017)CrossRef
42.
go back to reference Strijker, G.; Bertotti, G.; Luthi, S.M.: Multi-scale fracture network analysis from an outcrop analogue: a case study from the Cambro-Ordovician clastic succession in Petra, Jordan. Mar. Pet. Geol. 38(1), 104–116 (2012)CrossRef Strijker, G.; Bertotti, G.; Luthi, S.M.: Multi-scale fracture network analysis from an outcrop analogue: a case study from the Cambro-Ordovician clastic succession in Petra, Jordan. Mar. Pet. Geol. 38(1), 104–116 (2012)CrossRef
43.
go back to reference Bertotti, G.; Hardebol, N.; Taal-van Koppen, J.K.; Luthi, S.M.: Toward a quantitative definition of mechanical units: new techniques and results from an outcropping deep-water turbidite succession (Tanqua-Karoo Basin, South Africa). AAPG Bull. 91(8), 1085–1098 (2007)CrossRef Bertotti, G.; Hardebol, N.; Taal-van Koppen, J.K.; Luthi, S.M.: Toward a quantitative definition of mechanical units: new techniques and results from an outcropping deep-water turbidite succession (Tanqua-Karoo Basin, South Africa). AAPG Bull. 91(8), 1085–1098 (2007)CrossRef
44.
go back to reference Underwood, C.A.; Cooke, M.L.; Simo, J.A.; Muldoon, M.A.: Stratigraphic controls on vertical fracture patterns in Silurian dolomite, northeastern Wisconsin. AAPG Bull. 87(1), 121–142 (2003) Underwood, C.A.; Cooke, M.L.; Simo, J.A.; Muldoon, M.A.: Stratigraphic controls on vertical fracture patterns in Silurian dolomite, northeastern Wisconsin. AAPG Bull. 87(1), 121–142 (2003)
45.
go back to reference Powers, R.W.: Saudi Arabia (excluding Arabian Shield). Lexique Stratigraphique International. v.3, Asie. fascicle lObl. Centre National de la Recherche Scientifique, Paris, p. 177 (1968) Powers, R.W.: Saudi Arabia (excluding Arabian Shield). Lexique Stratigraphique International. v.3, Asie. fascicle lObl. Centre National de la Recherche Scientifique, Paris, p. 177 (1968)
46.
go back to reference Manivit, J.; Vaslet, D.; Berthiaux, A.; Le Start, P.; Fourniguet, J.: Geologic Map of the Buraydah Quadrangle, Sheet 26G. Kingdom of Saudi Arabia: DGMR, Geoscience Map GM-114A (1986) Manivit, J.; Vaslet, D.; Berthiaux, A.; Le Start, P.; Fourniguet, J.: Geologic Map of the Buraydah Quadrangle, Sheet 26G. Kingdom of Saudi Arabia: DGMR, Geoscience Map GM-114A (1986)
47.
go back to reference Vaslet, D.: The Paleozoic (Pre-Late Permian) of Central Arabia and Correlations with Neighboring Regions: Saudi Arabian Directorate General of Mineral Resources Technical Record BRGM-TR-07-2, p. 167 (1987) Vaslet, D.: The Paleozoic (Pre-Late Permian) of Central Arabia and Correlations with Neighboring Regions: Saudi Arabian Directorate General of Mineral Resources Technical Record BRGM-TR-07-2, p. 167 (1987)
48.
go back to reference Abouelresh, M.O.; Babalola, L.O.; Bokhari, A.K.; Boyde, D.; Koithan, K.; Omer, M.: Sedimentology, geochemistry and reservoir potential of the organic-rich Qusaiba shale, Tabuk basin, NW Saudi Arabia. J. Mar. Pet. Geol. 111, 240–260 (2020)CrossRef Abouelresh, M.O.; Babalola, L.O.; Bokhari, A.K.; Boyde, D.; Koithan, K.; Omer, M.: Sedimentology, geochemistry and reservoir potential of the organic-rich Qusaiba shale, Tabuk basin, NW Saudi Arabia. J. Mar. Pet. Geol. 111, 240–260 (2020)CrossRef
49.
go back to reference Hayton, S.; Heine, C.; Sherba, E.; Gratto, B.E.; Zhang, S.; Wang, S.: A new exploration play for Saudi Arabia, the rhuddanian (lower Qusaiba) sandstone. In: SPE Deep Gas Conference and Exhibition. Society of Petroleum (2010) Hayton, S.; Heine, C.; Sherba, E.; Gratto, B.E.; Zhang, S.; Wang, S.: A new exploration play for Saudi Arabia, the rhuddanian (lower Qusaiba) sandstone. In: SPE Deep Gas Conference and Exhibition. Society of Petroleum (2010)
50.
go back to reference Le Heron, D.P.; Craig, J.: First order reconstruction of a Late Ordovician Saharan ice sheet. J. Geol. Soc. Lond. 165, 19–29 (2008)CrossRef Le Heron, D.P.; Craig, J.: First order reconstruction of a Late Ordovician Saharan ice sheet. J. Geol. Soc. Lond. 165, 19–29 (2008)CrossRef
51.
go back to reference Konert, G.; Afifi, A.M.; Al-Hajri, S.; Droste, H.J.: Paleozoic stratigraphy and hydrocarbon habitat of the Arabian plate. GeoArabia 6(3), 407–442 (2001) Konert, G.; Afifi, A.M.; Al-Hajri, S.; Droste, H.J.: Paleozoic stratigraphy and hydrocarbon habitat of the Arabian plate. GeoArabia 6(3), 407–442 (2001)
52.
go back to reference Sharland, P.R.; Archer, R.; Caey, D.M.; Davies, R.B.; Hall, S.H.; Heward, A.P.; Horbury, A.D.; Simmons, M.D.: Arabian Plate Sequence Stratigraphy, vol. 2, p. 371. Geo Arabia Special Publication (2001) Sharland, P.R.; Archer, R.; Caey, D.M.; Davies, R.B.; Hall, S.H.; Heward, A.P.; Horbury, A.D.; Simmons, M.D.: Arabian Plate Sequence Stratigraphy, vol. 2, p. 371. Geo Arabia Special Publication (2001)
53.
go back to reference Jones, P.J.; Stump, T.E.: Depositional and tectonic setting of the Lower Silurian hydrocarbon source rock facies, Central Saudi Arabia. AAPG (Am. Assoc. Pet. Geol.) Bull. 83(2), 314–332 (1999) Jones, P.J.; Stump, T.E.: Depositional and tectonic setting of the Lower Silurian hydrocarbon source rock facies, Central Saudi Arabia. AAPG (Am. Assoc. Pet. Geol.) Bull. 83(2), 314–332 (1999)
54.
go back to reference Luning, S.; Craig, J.; Loydell, D.K.; Storch, P.; Fitches, B.: Lower Silurian ‘Hot Shales’ in North Africa and Arabia: regional distribution and depositional model. Earth Sci. Rev. 49, 121–200 (2000)CrossRef Luning, S.; Craig, J.; Loydell, D.K.; Storch, P.; Fitches, B.: Lower Silurian ‘Hot Shales’ in North Africa and Arabia: regional distribution and depositional model. Earth Sci. Rev. 49, 121–200 (2000)CrossRef
55.
go back to reference Hulsey, K.M.: Lithofacies characterization and sequence stratigraphy framework for some gas-bearing shales within the Horn River Basin, Northeastern, British Columbia. Master Research Thesis, University of Oklahoma, USA (2011) Hulsey, K.M.: Lithofacies characterization and sequence stratigraphy framework for some gas-bearing shales within the Horn River Basin, Northeastern, British Columbia. Master Research Thesis, University of Oklahoma, USA (2011)
56.
go back to reference Perez, R.; Marfurt, K.: Calibration of brittleness to elastic rock properties via mineralogy logs in unconventonal reservoirs. In: AAPG International Conference and Exhibition, Catagena, Columbia, American Association of Petroleum Geologists, Article # 41237 (2013) Perez, R.; Marfurt, K.: Calibration of brittleness to elastic rock properties via mineralogy logs in unconventonal reservoirs. In: AAPG International Conference and Exhibition, Catagena, Columbia, American Association of Petroleum Geologists, Article # 41237 (2013)
57.
go back to reference Wang, X.; Ding, W.; Cui, L.; Wang, R.; He, J.; Li, A.; Gu, Y.; Liu, J.; Zikang Xiao, Z.; Fu, F.: The developmental characteristics of natural fractures and their significance for reservoirs in the Cambrian Niutitang marine shale of the Sangzhi block, southern China. J. Pet. Sci. Eng. 165(2018), 831–841 (2018)CrossRef Wang, X.; Ding, W.; Cui, L.; Wang, R.; He, J.; Li, A.; Gu, Y.; Liu, J.; Zikang Xiao, Z.; Fu, F.: The developmental characteristics of natural fractures and their significance for reservoirs in the Cambrian Niutitang marine shale of the Sangzhi block, southern China. J. Pet. Sci. Eng. 165(2018), 831–841 (2018)CrossRef
58.
go back to reference Milad, B.; Slatt, R.: Impact of lithofacies variations and structural changes on natural fracture distributions. Interpretation 6(4), 1–15 (2018)CrossRef Milad, B.; Slatt, R.: Impact of lithofacies variations and structural changes on natural fracture distributions. Interpretation 6(4), 1–15 (2018)CrossRef
Metadata
Title
Control of Lithofacies and Geomechanical Characteristics on Natural Fracture Systems in Qusaiba Shale, Rub’ Al-Khali Basin, Saudi Arabia
Authors
Ayyaz Mustafa
Mohamed Omar Abouelresh
Abdulazeez Abdulraheem
Publication date
15-01-2021
Publisher
Springer Berlin Heidelberg
Published in
Arabian Journal for Science and Engineering / Issue 6/2021
Print ISSN: 2193-567X
Electronic ISSN: 2191-4281
DOI
https://doi.org/10.1007/s13369-020-05289-6

Other articles of this Issue 6/2021

Arabian Journal for Science and Engineering 6/2021 Go to the issue

Premium Partners