Geological characterization and exploration potential of shale gas in the Carboniferous Jiusi Formation, northern Guizhou and Yunnan provinces, SW China

Energy Geoscience - Tập 4 - Trang 100177 - 2023
Weiming Feng1,2, Rong Li1,2, Zhan Zhao1,2, Qian Yu1,2, Wei Liu1,2, Junfeng Cao1,2
1Chengdu Center, China Geological Survey, Chengdu 610081, China
2Key Laboratory for Sedimentary Basins with Oil and Gas Resources, Ministry of Land and Resources, Chengdu, Sichuan, 610081, China

Tài liệu tham khảo

Ambrose, 2012, Shale gas-in-place calculations Part I: new pore-scale considerations, SPE J., 17, 219, 10.2118/131772-PA Feng, 2019, The discovery of tight gas and shale gas in Carboniferous strata in Guiweidi 1 well, Weining county, Guizhou Province, Chin. Geol., 46, 1241 Gentzis, 2013, A review of the thermal maturity and hydrocarbon potential of the Mancos and Lewis shales in parts of New Mexico, USA, Int. J. Coal Geol., 113, 64, 10.1016/j.coal.2012.09.006 Guo, 2018, Geologicalconditions and exploration potential of Permian marine-continent marine-continental transitional shale gas in the Sichuan Basin, Nat. Gas. Ind., 38, 11 Han, 2010, Tectonic evolution and geological significance of Ziyun-Luodian-Nandan aulacogen belt, Master's Diss. Northw. Univ., 8 Hill, 2000, Reservoir properties of the upper cretaceous Lewis shale, a new natural gas play in the san Juan Basin, AAPG (Am. Assoc. Pet. Geol.) Bull., 84, 1240 Hu, 2019, Nanopetrophysical characterization of the Mancos shale Formation in the san Juan Basin of northwestern New Mexico, USA, Soc. Explor. Geophys., 7, 45 Hu, 2018, Development characteristics and shale gas exploration potential of the Lower Carboniferousblack shale in the Guizhong Depression, Nat. Gas. Ind., 38, 28 Jiang, 2021, Characteristic differences and controlling factors of pores in typical South China shale, Oil Gas Geol., 42, 41 Kerschke, 2015, Sedimentological and diagenetic controls of gas in lower and early upper carboniferous sediments, NE Germany, Sediment. Geol., 325, 192, 10.1016/j.sedgeo.2015.06.006 Kuang, 2020, Geological-characteristics and development potential of transitional shalegas in the east margin of the Ordos Basin, NW China, Petrol. Explor. Dev., 47, 435, 10.1016/S1876-3804(20)60066-0 Li, 1997, Correlation of carboniferous depositional sequence on the Yangtze plate with others on a global scale, Act Asedim en Logic A Sin., 15, 23 Li, 2016, Shale gas accumulation condition of lower carboniferous Jiusi Formation in Weining-Shuicheng, Special Oil Gas Reservoirs, 23, 48 Lin, 2022, Industrial gas flow of Carboniferous shales in southern China was obtained in well Qianshuidi 1 in Guizhou Province, Chin. Geol., 49, 995 Liu, 2018, Multiple geochemical proxies controlling the organic matter accumulation of the marine-continental transitional shale: a case study of the Upper Permian Longtan Formation, western Guizhou, China, J. Nat. Gas Sci. Eng., 56, 152, 10.1016/j.jngse.2018.06.007 Lu, 2021, Sedimentary characteristics and distribution of the carboniferous black shale in Guizhou province, Acta Sedimentol. Sin., 39, 672 Luo, 2018, Geological and geochemical characteristics of marine-continental transitional shale from the Upper Permian Longtan Formation, northwestern Guizhou, China, Mar. Petrol. Geol., 89, 58, 10.1016/j.marpetgeo.2017.06.029 Mastalerz, 2013, Porosity of Devonian and Mississippian New Albany Shale across a maturation gradient: insights from organic petrology, gas adsorption, and mercury intrusion, AAPG (Am. Assoc. Pet. Geol.) Bull., 97, 1621 Mei, 2021, Shale gas accumulation conditions of lower carboniferous Jiusi Formation in north Yunnan Guizhou depression, Nat. Gas. Ind., 41, 51 2014 Olea, 2010, A methodology for the assessment of unconventional (continuous) resources with an application to the greater natural buttes gas field, Utah, Nat. Resour. Res., 19, 237, 10.1007/s11053-010-9127-8 Pommer, 2015, Pore types and pore-size distributions across thermal maturity, Eagle Ford Formation, southern Texas, AAPG (Am. Assoc. Pet. Geol.) Bull., 99, 1713 Spears, 2022, The Goddard Shale in the eastern Anadarko Basin: understanding an exceptionally productive mudrock reservoir with fluid-sensitive clay, AAPG (Am. Assoc. Pet. Geol.) Bull., 106, 1453 Soyinka, 2008, Identification and micro-stratigraphy of hyperpycnites and turbidites in cretaceous Lewis shale, Wyoming, Sedimentology, 55, 1117, 10.1111/j.1365-3091.2007.00938.x Tian, 2016, Lithofacies and paleogeographic evolution and characteristics of shale gas accumulation in Early Carboniferous, Guizhou, China, J. Chengdu Univ. Technol. (Sci. Technol. Ed.), 43, 291 Wang, 2006, Filling and evolution of late Paleozoic in Shuicheng-Ziyun aulacogen in western Guizhou, China, Geol. Bull. China, 25, 402 Wei, 2017, Effects of preservation conditions on enrichment and high yield of shale gas in Sichuan Basin and its periphery, Petrol. Geol. Exp., 39, 147 Yuan, 2018, Shale gas enrichment features and impacting factors in carboniferous Dawuba formation, southern Guizhou area, Coal Geol. China, 30, 28 Zhang, 2021, Evaluation of gas content in shale, Oil Gas Geol., 42, 28 Zhao, 2016, Geological difference and its significance of marine shale gases in South China, Petrol. Explor. Dev., 43, 499, 10.1016/S1876-3804(16)30065-9