Karst development and distribution pattern of the Maokou Formation in Yuanba area,northern Sichuan Basin
ZHU Dancheng1,2, YU Yamin1,2, LI Ting1,2, ZHANG Lei3, LI Rangbin3, YANG Minglei1,2, ZOU Huayao1,2
1 State Key Laboratory of Petroleum Resources and Prospecting,China University of Petroleum(Beijing),Beijing 102249,China; 2 College of Geosciences,China University of Petroleum(Beijing),Beijing 102249,China; 3 SINOPEC Exploration Company,Chengdu 610041,China
Abstract The upper part of the Maokou limestones in the Yuanba area of the Sichuan Basin suffered from karstic modification during the regional regression stage at the end of the middle Permian. However,the development characteristics and distribution pattern of the karst zone are ambiguous. This paper combined core observations,well-logging lithology interpretation,horizon calibration of three-dimensional seismic data volume and seismic facies interpretation. Relative acoustic impedance inversion and seismic slice image analysis techniques can increase the interpretation resolution of the seismic data. All these data were used to establish the sequence framework,and the sedimentary facies and karst distribution were illustrated to predict the distribution pattern and mode of karst zones. The results show that(1)three third transgression-regression(T-R)sequences were developed in the Maokou Formation of the Yuanba area. The bioclastic shoals were developed in the regression cycles of the second and the third tertiary sequences. In the second sequence,the inner-platform shoals were located at the topograghic high position. Meanwhile,in the third sequence,the platform edge debris beach was developed along the margin of the platform around well YB7. (2)The development and distribution of karst zones were dominated by bioclastic shoals,which presented vertically as a surface karst zone,vertical seepage zone,high-angle dissolution fracture and cave of the deep slow flow zone,and layer-parallel caves in the phreatic zone at the core scale. (3)The karst zones are located along the coastline side of the bioclastic shoals on the plane,presenting the coastal karst development mode. (4)The layer-parallel caves at the top of the phreatic zone were the major reservoir space of the karst zone in the Maokou Formation. However,the caves were mostly occupied by sediments(mainly tuffs and limestone silts)and cements(mainly calcites)in the meteoric diagenetic realm,remaining relatively limited reserve capacity at present. The karst distribution pattern of the Maokou Formation in the Yuanba area was proposed,and its impacts on hydrocarbon exploration and risks were also discussed.
Fund:Co-funded by the National Natural Science Foundation of China(No. 42172152) and the Joint Funds of the National Nature Science Foundation of China(No. U19B6003)
Corresponding Authors:
ZOU Huayao,born in 1963,is professor and doctoral supervisor of China University of Petroleum(Beijing). He is now engaged in research and teaching about hydrocarbon occurrence and enrichment mechanism. E-mail: huayaozou@cup.edu.cn.
About author: ZHU Dancheng,born in 1994,is Ph.D. candidate of China University of Petroleum(Beijing). His current study field is carbonate reservoir of the Sichuan Basin. E-mail: foreverimage@126.com.
Cite this article:
ZHU Dancheng,YU Yamin,LI Ting et al. Karst development and distribution pattern of the Maokou Formation in Yuanba area,northern Sichuan Basin[J]. JOPC, 2023, 25(3): 701-714.
ZHU Dancheng,YU Yamin,LI Ting et al. Karst development and distribution pattern of the Maokou Formation in Yuanba area,northern Sichuan Basin[J]. JOPC, 2023, 25(3): 701-714.
[1] 陈宗清. 2007. 四川盆地中二叠统茅口组天然气勘探. 中国石油勘探, 12(5): 1-11. [Chen Z Q. 2007. Exploration for natural gas in Middle Permian Maokou Formation of Sichuan Basin. China Petroleum Exploration, 12(5): 1-11] [2] 邓成昆,黎霆,杨伟强,张玺华,程忠贞,陈浩如,诸丹诚,胡力文,邹华耀. 2022. 川中地区中上寒武统洗象池组颗粒滩储集层特征及主控因素. 古地理学报, 24(2): 292-307. [Deng C K,Li T,Yang W Q,Zhang X H,Cheng Z Z,Chen H R,Zhu D C,Hu L W,Zou H Y. 2022. Characteristics and main controlling factors of shoal reservoirs in the Middle-Upper Cambrian Xixiangchi Formation,central Sichuan Basin. Journal of Palaeogeography(Chinese Edition), 24(2): 292-307] [3] 何斌,徐义刚,王雅玫,肖龙. 2005. 东吴运动性质的厘定及其时空演变规律. 地球科学, 30(1): 89-96. [He B,Xu Y G,Wang Y M,Xiao L. 2005. Nature of the Dongwu Movement and its temporal and Spatial evolution. Earth Science, 30(1): 89-96] [4] 何登发,李德生,张国伟,赵路子,樊春,鲁人齐,文竹. 2011. 四川多旋回叠合盆地的形成与演化. 地质科学, 46(3): 589-606. [He D F,Li D S,Zhang G W,Zhao L Z,Fan C,Lu R Q,Wen Z. 2011. Formation and evolution of multi-cycle superposed Sichuan Basin,China. Chinese Journal of Geology, 46(3): 589-606] [5] 胡东风. 2019. 四川盆地元坝地区茅口组台缘浅滩天然气勘探的突破与启示. 天然气工业, 39(3): 1-10. [Hu D F. 2019. Breakthrough in natural gas exploration in the platform margin shoal at the Maokou Fm in the Yuanba area,Sichuan Basin,and its implications. Natural Gas Industry, 39(3): 1-10] [6] 江青春,胡素云,姜华,翟秀芬,任梦怡,陈晓月,李秋芬,张运波. 2018. 四川盆地中二叠统茅口组地层缺失量计算及成因探讨. 天然气工业, 38(1): 21-29. [Jiang Q C,Hu S Y,Jiang H,Zhai X F,Ren M Y,Chen X Y,Li Q F,Zhang Y B. 2018. Calculation and inducement of lacuna in the Mid-Permian Maokou Fm of the Sichuan Basin. Natural Gas Industry, 38(1): 21-29] [7] 黎霆,诸丹诚,杨明磊,李平平,邹华耀. 2021. 热液活动对四川盆地中西部地区二叠系茅口组白云岩的影响. 石油与天然气地质, 42(3): 639-651. [Li T,Zhu D C,Yang M L,Li P P,Zou H Y. 2021. Influence of hydrothermal activity on the Maokou Formation dolostone in the central and western Sichuan Basin. Oil & Gas Geology, 42(3): 639-651] [8] 李素华,胡昊,朱兰,余洋,石国山,贾霍甫. 2021. 川北元坝地区茅口组生屑滩岩溶储层识别及预测. 石油物探, 60(4): 584-594. [Li S H,Hu H,Zhu L,Yu Y,Shi G S,Jia H F. 2021. Identification of bioclastic beach reservoir in the Maokou Formation,Yuanba area,north Sichuan Basin. Geophysical Prospecting for Petroleum, 60(4): 584-594] [9] 罗志立. 2012. 峨眉地裂运动观对川东北大气区发现的指引作用. 新疆石油地质, 33(4): 401-407. [Luo Z L. 2012. Guidance function of Emei taphrogenesis viewpoint on discovery of large gas province in northeastern Sichuan. Xinjiang Petroleum Geology, 33(4): 401-407] [10] 秦贞超,缪志伟,魏建新,狄帮让. 2021. 四川盆地元坝地区茅口组台缘浅滩相储层物理模型. 石油与天然气地质, 42(3): 652-660. [Qin Z C,Miu Z W,Wei J X,Di B R. 2021. Seismic physical model of the Maokou Formation reservoirs of platform-margin shoal in Yuanba area,Sichuan Basin. Oil & Gas Geology, 42(3): 652-660] [11] 申博恒,沈树忠,侯章帅,吴琼,张水昌,张斌,张以春,袁东勋. 2021. 中国二叠纪岩石地层划分和对比. 地层学杂志, 45(3): 319-339. [Shen B H,Shen S Z,Hou Z S,Wu Q,Zhang S C,Zhang B,Zhang Y C,Yuan D X. 2021. Lithostratigraphic subdivision and correlation of the Permian in China. Journal of Stratigraphy, 45(3): 319-339] [12] 苏旺,江青春,陈志勇,汪泽成,姜华,卞从胜,冯庆付,吴育林. 2015. 四川盆地中二叠统茅口组层序地层特征及其对源储的控制作用. 天然气工业, 35(7): 34-43. [Su W,Jiang Q C,Chen Z Y,Wang Z C,Jiang H,Bian C S,Feng Q F,Wu Y L. 2015. Sequence stratigraphic features of Middle Permian Maokou Formation in the Sichuan Basin and their controls on source rocks and reservoirs. Natural Gas Industry, 35(7): 34-43] [13] 谭秀成,肖笛,陈景山,李凌,刘宏. 2015. 早成岩期喀斯特化研究新进展及意义. 古地理学报, 17(4): 441-456. [Tan X C,Xiao D,Chen J S,Li L,Liu H. 2015. New advance and enlightenment of eogenetic karstification. Journal of Palaeogeography(Chinese Edition), 17(4): 441-456] [14] 汪泽成,江青春,黄士鹏,周慧,冯庆付,戴晓峰,鲁卫华,任梦怡. 2018. 四川盆地中二叠统茅口组天然气大面积成藏的地质条件. 天然气工业, 38(1): 30-38. [Wang Z C,Jiang Q C,Huang S P,Zhou H,Feng Q F,Dai X F,Lu W H,Ren M Y. 2018. Geological conditions for massive accumulation of natural gas in the Mid-Permian Maokou Fm of the Sichuan Basin. Natural Gas Industry, 38(1): 30-38] [15] 徐哲航,兰才俊,郝芳,陈浩如,杨伟强,马肖琳,邹华耀. 2020. 四川盆地震旦系灯影组不同古地理环境下丘滩储集体的差异性. 古地理学报, 22(2): 235-250. [Xu Z H,Lan C J,Hao F,Chen H R,Yang W Q,Ma X L,Zou H Y. 2020. Difference of mound-bank complex reservoir under different palaeogeographic environment of the Sinian Dengying Formation in Sichuan Basin. Journal of Palaeogeography(Chinese Edition), 22(2): 235-250] [16] 杨明磊,诸丹诚,李涛,李海平,黎霆,邹华耀. 2020. 川南地区中二叠统茅口组颗粒滩对早成岩期岩溶储层的控制. 现代地质, 34(2): 356-369. [Yang M L,Zhu D C,Li T,Li H P,Li T,Zou H Y. 2020. Control of eogenetic karst reservoir by shoals in Middle Permian Maokou Formation,southern Sichuan Basin. Geoscience, 34(2): 356-369] [17] 杨伟强,刘正,陈浩如,兰才俊,徐哲航,卢朝进,邹华耀. 2020. 四川盆地下寒武统龙王庙组颗粒滩沉积组合及其对储集层的控制作用. 古地理学报, 22(2): 251-265. [Yang W Q,Liu Z,Chen H R,Lan C J,Xu Z H,Lu C J,Zou H Y. 2020. Depositional combination of carbonate grain banks of the Longwangmiao Formation in Sichuan Basin and its control on reservoirs. Journal of Palaeogeography(Chinese Edition), 22(2): 251-265] [18] 姚倩颖,刘一锋,江青春,郝毅,李景瑞,吕学菊,苏旺,付小东. 2021. 川北—川东地区中二叠世晚期地层划分新认识及地质意义. 石油实验地质, 43(2): 276-287. [Yao Q Y,Liu Y F,Jiang Q C,Hao Y,Li J R,Lü X J,Su W,Fu X D. 2021. Geological significance of late Mid-Permian stratigraphy in northern and eastern Sichuan Basin,SW China. Petroleum Geology & Experiment, 43(2): 276-287] [19] 曾韬,柳昊,夏文谦,田亚铭,邓剑,施泽进. 2022. 四川盆地元坝地区茅口组方解石充填物特征及指示意义. 成都理工大学学报(自然科学版), 49(4): 474-481. [Zeng T,Liu H,Xia W Q,Tian Y M,Deng J,Shi Z J. 2022. Characteristics and indicative significance of calcite fillings in Maokou Formation,Yuanba area,Sichuan Basin,China. Journal of Chengdu University of Technology(Science & Technology Edition), 49(4): 474-481] [20] 翟光明. 1989. 中国石油地质志(卷十): 四川油气区. 北京: 石油工业出版社. [Zhai G M. 1989. Petroleum Geology of China(Vol. 10): Sichuan Oil and Gas Area. Beijing: Petroleum Industry Press] [21] 张健,周刚,张光荣,李国辉,汪华. 2018. 四川盆地中二叠统天然气地质特征与勘探方向. 天然气工业, 38(1): 10-20. [Zhang J,Zhou G,Zhang G R,Li G H,Wang H. 2018. Geological characteristics and exploration orientation of Mid-Permian natural gas in the Sichuan Basin. Natural Gas Industry, 38(1): 10-20] [22] 张宇,曹清古,罗开平,李龙龙? 刘金连. 2022. 四川盆地二叠系茅口组油气藏勘探发现与启示. 石油与天然气地质, 43(3): 610-620. [Zhang Y,Cao Q G,Luo K P,Li L L,Liu J L. 2022. Reservoir exploration of the Permian Maokou Formation in the Sichuan Basin and enlightenment obtained. Oil & Gas Geology, 43(3): 610-620] [23] 邹胜章,夏日元,刘莉? 唐建生,梁彬. 2016. 塔河油田奥陶系岩溶储层垂向带发育特征及其识别标准. 地质学报, 90(9): 2490-2501. [Zou S Z,Xia R Y,Liu L,Tang J S,Liang B. 2016. Vertical zone characteristics and identification standard of Ordovician karst reservoirs in the Tahe Oilfield. Acta Geologica Sinica, 90(9): 2490-2501] [24] Brown A R. 2011. Interpretation of three-dimensional seismic data. AAPG Memoir, 42: 1-309. [25] Chopra S,Castagna J,Xu Y. 2009. Relative acoustic impedance application for thin-bed reflectivity inversion. SEG Technical Program Expanded Abstracts,3554-3558. [26] Esteban M,Wilson J E. 1993. Introduction to karst systems and paleokarst reservoirs. In: Fritz R D,Wilson J L,Yurewicz D A(eds). Paleokarst Related Hydrocarbon Reservoirs. SEPM Tulsa: 1-9. [27] Fournillon A,Fournier F,Vidal O. 2020. Seismic expression of carbonate build-up karstification: karst modelling strategies and insights from synthetic seismic. Geological Society, London, Special Publications,509: 227-248. [28] Haq B U,Schutter S R. 2008. A chronology of Paleozoic sea-level changes. Science, 322(5898): 64-68. [29] Kallweit R S,Wood L C. 1982. The limits of resolution of zero-phase wavelets. Geophysics, 47: 1035-1046. [30] Meng Q,Xue W Q,Chen F Y,Yan J X,Cai J H,Sun Y D,Wignall P B,Liu K,Liu Z C,Chen D. 2022. Stratigraphy of the Guadalupian(Permian)siliceous deposits from central Guizhou of South China: regional correlations with implications for carbonate productivity during the Middle Permian biocrisis. Earth-Science Reviews, 228: 104011. [31] Moore C H,Wade W J. 2013. Carbonate Reservoirs: Porosity and Diagenesis in a Sequence Stratigraphic Framework. Developments in Sedimentology 67. Amsterdam,Netherlands: Elsevier,374. [32] Mylroie J E,Carew J L. 1990. The flank margin model for dissolution cave development in carbonate platforms. Earth Surface Processes and Landforms, 15: 413-424. [33] Mylroie J E,Carew J L. 1995. Karst development on carbonate islands: unconformities and porosity in carbonate strata. AAPG Memoir 63,Tulsa,Oklahoma,U.S.A.: 55-76. [34] Posamentier H W. 2000. Seismic stratigraphy into the next millennium: a focus on 3D seismic data. American Association of Petroleum Geologists Annual Conference,New Orleans,LA,16-19April,2000. A118. [35] Shen S Z,Zhang H,Zhang Y C,Yuan D X,Chen B,He W H,Mu L,Lin W,Wang W Q,Chen J,Wu Q,Cao C Q,Wang Y,Wang X D. 2019. Permian integrative stratigraphy and timescale of China. Science China: Earth Sciences, 62(1): 154-188. [36] Su W,Hu S Y,Jiang Q C,Zhang J,Huang S P,Jiang H,Shi S Y,Wang K,Chen X Y,Zhang H R,Ren M Y. 2020. Sedimentary responses to the Dongwu movement and the influence of the Emeishan mantle plume in Sichuan Basin,Southwest China: significance for petroleum geology. Carbonates and Evaporites, 35: 108. [37] Wang Y,Jin Y G. 2000. Permian palaeogeographic evolution of the Jiangnan Basin,South China. Palaeogeography,Palaeoclimatology,Palaeoecology, 160: 35-44. [38] Xiao D,Tan X C,Xi A H,Liu H,Shan S J,Xia J W,Cheng Y,Lian C B. 2016. An inland facies-controlled eogenetic karst of the carbonate reservoir in the Middle Permian Maokou Formation,southern Sichuan Basin,SW China. Marine and Petroleum Geology, 72: 218-233. [39] Zeng H L. 2018. What is seismic sedimentology?a tutorial. Interpretation, 6(2): SD1-SD12. [40] Zhu B,Guo Z J,Zhang S N,Ukstins I,Du W,Liu R C. 2019. What triggered the early-stage eruption of the Emeishan large igneous province?GSA Bulletin, 131: 1837-1856. [41] Zhu D C,Zou H Y,Yang M L,Li T,Li T,Li H P,Xu L,Wen L,Zhou G. 2021a. The Middle Permian Maokou reservoir(southern Sichuan Basin,China): controls on karst development and distribution. Journal of Petroleum Science and Engineering, 204: 108686. [42] Zhu J,Zhang Z C,Santosh M,Tan S C,Jin Z L. 2021b. Submarine basaltic eruptions across the Guadalupian-Lopingian transition in the Emeishan large igneous province: implication for end-Guadalupian extinction of marine biota. Gondwana Research. 92: 228-238.