岩性油气藏 ›› 2020, Vol. 32 ›› Issue (4): 12–22.doi: 10.12108/yxyqc.20200402

• 油气地质 • 上一篇    下一篇

四川盆地高石梯—磨溪地区下寒武统沧浪铺组沉积特征

彭军1, 褚江天1, 陈友莲2, 文舰1, 李亚丁2, 邓思思2   

  1. 1. 西南石油大学 地球科学与技术学院, 成都 610500;
    2. 中国石油西南油气田分公司勘探开发研究院, 成都 610051
  • 收稿日期:2020-01-15 修回日期:2020-04-20 出版日期:2020-08-01 发布日期:2020-06-16
  • 作者简介:彭军(1968-),男,博士,教授,主要从事沉积学、储层地质学及层序地层学方面的教学与科研工作。地址:(610500)四川省成都市西南石油大学地球科学与技术学院。Email:445371976@qq.com。
  • 基金资助:
    中国石油西南油气田分公司科研项目“四川盆地寒武系沧浪铺组沉积相及储层主控因素研究”(编号:XNS17JS2018-070)资助

Sedimentary characteristics of Lower Cambrian Canglangpu Formation in Gaoshiti-Moxi area,Sichuan Basin

PENG Jun1, CHU Jiangtian1, CHEN Youlian2, WEN Jian1, LI Yading2, DENG Sisi2   

  1. 1. School of Geosciences and Technology, Southwest Petroleum University, Chengdu 610500, China;
    2. Research Institute of Exploration and Development, PetroChina Southwest Oil & Gas Field Company, Chengdu 610051, China
  • Received:2020-01-15 Revised:2020-04-20 Online:2020-08-01 Published:2020-06-16

摘要: 近年来,川中高石梯-磨溪地区特大型海相碳酸盐岩整装气田的发现揭示了下寒武统具有较大的勘探开发潜力,不同于主要目的层龙王庙组的是沧浪铺组的石油地质基础研究,尤其是沉积相研究十分薄弱,因此,有必要对该区沧浪铺组沉积特征展开研究。以层序地层学、沉积学、测井地质学等理论为指导,综合岩心、钻井、测井及薄片等多种资料,对高石梯-磨溪地区沧浪铺组沉积特征进行了研究。结果表明:沧浪铺组岩性自下而上呈碎屑岩-碳酸盐岩-碎屑岩-碳酸盐岩组合的变化规律;该组发育碎屑滨岸-陆棚、碳酸盐缓坡和风暴沉积等3种沉积模式,陆棚、内缓坡等2种沉积相以及混积浅水陆棚、浅水陆棚、混积潮坪、潟湖和浅滩等5种沉积亚相;沧浪铺组沉积期研究区以陆棚相沉积为主,自下而上呈浅水陆棚-混积浅水陆棚-浅滩-混积潮坪-浅水陆棚-混积浅水陆棚-混积潮坪的沉积亚相演替规律。该研究成果为高石梯-磨溪地区下一步下古生界油气地质基础研究及优质储层的分布和预测提供了参考。

关键词: 沉积模式, 沉积相, 沧浪铺组, 高石梯—磨溪地区, 四川盆地

Abstract: In recent years,the discovery of the extra-large integral marine carbonate gas field in Gaoshiti-Moxi area in central Sichuan province has revealed that the Lower Cambrian has great potential for oil and gas exploration and development. Unlike Longwangmiao Formation which is of the main target in this area, the study on petroleum geological basis of Canglangpu Formation is still rather weak,especially on the subject of sedimentary facies. Therefore,it is quite essential to do study on the sedimentary characteristics of Canglangpu Formation in this area. Based on theories of sequence stratigraphy,sedimentology and logging geology,the sedimentary characteristics of Canglangpu Formation in Gaoshiti-Moxi area were studied by combining the data of coring,drilling,logging and core cuttings analysis as well. The results show that the lithology in Canglangpu Formation shows the change law of clastic rock-carbonate rock-clastic rock-carbonate assemblage from bottom to top. There are three sedimentary models developed in Canglangpu Formation,including detrital shore-shelf,carbonate gentle slope and storm deposit,two types of sedimentary facies,including shelf and inner gentle slope,and five types of sedimentary subfacies,including mixed shallow water shelf,shallow water shelf,mixed tidal flat,lagoon and shoal. There is mainly continental shelf facies in Canglangpu Formation,and there presents the sedimentary subfacies succession law of shallow water shelf-mixed shallow water shelf-shallow beach-mixed tidal flat-shallow water shelf-mixed shallow water shelf-mixed tidal flat. The research results may provide a reference for the further study on Lower Paleozoic petroleum geology and distribution and prediction of high-quality reservoirs in GaoshitiMoxi area.

Key words: sedimentary model, sedimentary facies, Canglangpu Formation, Gaoshiti-Moxi area, Sichuan Basin

中图分类号: 

  • TE122.2
[1] 戴金星. 威远气田成藏期及气源. 石油实验地质, 2003, 25(5):473-480. DAI J X. Reservoir forming period and gas source of Weiyuan gas field. Petroleum Geology and Experiment, 2003, 25(5):473-480.
[2] 杜金虎, 汪泽成, 邹才能, 等.古老碳酸盐岩大气田地质理论与勘探实践.北京:石油工业出版社, 2015:1-13. DU J H, WANG Z C, ZOU C N, et al. Geological theory and exploration practice of ancient carbonate gas field. Beijing:Petroleum Industry Press, 2015:1-13.
[3] 徐春春, 沈平, 杨跃明, 等.乐山-龙女寺古隆起震旦系-下寒武统龙王庙组天然气成藏条件与富集规律.天然气工业, 2014, 34(3):1-7. XU C C, SHEN P, YANG Y M, et al. Natural gas accumulation conditions and enrichment rules of the Sinian-Lower Cambrian Longwangmiao Formation of Leshan-Longnvsi ancient uplift. Natural Gas Industry, 2014, 34(3):1-7.
[4] 邹才能, 杜金虎, 徐春春, 等.四川盆地震旦系-寒武系特大型气田形成分布、资源潜力及勘探发现. 石油勘探与开发, 2014, 41(3):278-293. ZOU C N, DU J H, XU C C, et al. Formation, distribution, resource potential and exploration and discovery of Sinian-Cambrian giant gas fields in Sichuan Basin. Petroleum Exploration and Development, 2014, 41(3):278-293.
[5] 魏国齐, 王志宏, 李剑, 等.四川盆地震旦系、寒武系烃源岩特征、资源潜力与勘探方向.天然气地球科学, 2017, 28(1):1-13. WEI G Q, WANG Z H, LI J, et al. Source rock characteristics, resource potential and exploration direction of Sinian and Cambrian in Sichuan Basin. Natural Gas Geosciences, 2017, 28(1):1-13.
[6] 腾格尔, 高长林, 胡凯, 等.上扬子东南缘下组合优质烃源岩发育及生烃潜力.石油实验地质, 2006, 28(4):359-365. TENGER, GAO C L, HU K, et al. Development and hydrocarbon generation potential of high-quality source rocks in the lower part of the southeast margin of Upper Yangtze River. Petroleum Geology and Experiment, 2006, 28(4):359-365.
[7] 梁狄刚, 郭彤楼, 陈建平, 等.中国南方海相生烃成藏研究的若干新进展(一):南方四套区域性海相烃源岩的分布.海相油气地质, 2008, 13(2):1-16. LIANG D G, GUO T L, CHEN J P, et al. Some new advances in the study of marine hydrocarbon generation and accumulation in South China(1):the distribution of four sets of regional marine source rocks in South China. Marine Oil and Gas Geology, 2008, 13(2):1-16.
[8] 王鹏威, 刘忠宝, 金之钧, 等. 川西南地区下寒武统筇竹寺组页岩气纵向差异富集主控因素. 地球科学, 2019, 44(11):3628-3638. WANG P W, LIU Z B, JIN Z J, et al. Main controlling factors of vertical differential enrichment of shale gas in the Lower Cambrian Qiongzhusi Formation in southwest Sichuan. Geosciences, 2019, 44(11):3628-3638.
[9] 赵建华, 金之钧, 林畅松, 等.上扬子地区下寒武统筇竹寺组页岩沉积环境.石油与天然气地质, 2019, 40(4):701-715. ZHAO J H, JIN Z J, LIN C S, et al. Shale sedimentary environment of Lower Cambrian Qiongzhusi Formation in Upper Yangtze area. Petroleum and Natural Gas Geology, 2019, 40(4):701-715.
[10] ZHOU H, LI W, ZHANG B M, et al. Formation and evolution of intraplatform basin from the Late Sinian to Early Cambrian in Sichuan Basin, China. Petroleum Research, 2017, 2:41-53.
[11] 刘树根, 王一刚, 孙玮, 等.拉张槽对四川盆地海相油气分布的控制作用.成都理工大学学报(自然科学版), 2016, 43(1):1-23. LIU S G, WANG Y G, SUN W, et al. The control of extensional trough on the distribution of marine oil and gas in Sichuan Basin. Journal of Chengdu University of Science and Technology(Natural Science Edition), 2016, 43(1):1-23.
[12] 何贵松, 何希鹏, 高玉巧, 等.中国南方3套海相页岩气成藏条件分析.岩性油气藏, 2019, 31(1):57-68. HE G S, HE X P, GAO Y Q, et al. Analysis of the formation conditions of three sets of marine shale gas reservoirs in South China. Lithologic Reservoirs, 2019, 31(1):57-68.
[13] 沈瑞, 胡志明, 郭和坤, 等.四川盆地长宁龙马溪组页岩赋存空间及含气规律.岩性油气藏, 2018, 30(5):11-17. SHEN R, HU Z M, GUO H K, et al. Shale occurrence space and gas bearing law of Longmaxi Formation in Changning, Sichuan Basin. Lithologic Reservoirs, 2018, 30(5):11-17.
[14] 钟勇, 李亚林, 张晓斌, 等.川中古隆起构造演化特征及其与早寒武世绵阳-长宁拉张槽的关系.成都理工大学学报(自然科学版), 2014, 41(6):703-712. ZHONG Y, LI Y L, ZHANG X B, et al. Structural evolution characteristics of middle Sichuan uplift and its relationship with Early Cambrian Mianyang Changning extensional trough. Journal of Chengdu University of Technology(Natural Science Edition), 2014, 41(6):703-712.
[15] 李智武, 冉波, 肖斌, 等.四川盆地北缘震旦纪-早寒武世隆-坳格局及其油气勘探意义.地学前缘, 2019, 26(1):59-85. LI Z W, RAN B, XIAO B, et al. Sinian-Early Cambrian uplift depression pattern and its significance for oil and gas exploration in the northern margin of Sichuan Basin. Geoscience Frontiers, 2019, 26(1):59-85.
[16] 王文之, 范毅, 赖强, 等.四川盆地下寒武统沧浪铺组白云岩分布新认识及其油气地质意义.天然气勘探与开发, 2018, 41(1):1-7. WANG W Z, FAN Y, LAI Q, et al. A new understanding of dolomite distribution in the lower Cambrian Canglangpu Formation in Sichuan Basin and its oil and gas geological significance. Natural Gas Exploration and Development, 2018, 41(1):1-7.
[17] 胡安平, 沈安江, 潘立银, 等.四川盆地寒武系龙王庙组颗粒滩相白云岩储层成因和分布研究//中国地质学会沉积地质专业委员会, 中国矿物岩石地球化学学会沉积学专业委员会. 2015年全国沉积学大会沉积学与非常规资源论文摘要集. 武汉:长江大学地球科学学院, 2015. HU A P, SHEN A J, PAN L Y, et al. A study on the origin and distribution of dolostone reservoir of granulated beach facies in Longwangmiao Formation of Cambrian in Sichuan Basin//Professional Committee of Sedimentary Geology of Chinese Geological Society, Professional Committee of Sedimentology of Chinese Mineral Rock Geochemical Society. Summary of Papers on Sedimentology and Unconventional Resources of 2015 National Sedimentological Congress. Wuhan:School of Geoscience, Changjiang University, 2015.
[18] 冯增昭, 彭勇民, 金振奎, 等.中国南方寒武纪岩相古地理.古地理学报, 2001, 3(1):1-14. FENG Z Z, PENG Y M, JIN Z K, et al. Lithofacies paleogeography of Cambrian in South China. Journal of Paleogeography, 2001, 3(1):1-14.
[19] 唐娜.四川盆地下寒武统岩相古地理研究.武汉:长江大学, 2017. TANG N. Study on lithofacies and palaeogeography of Lower Cambrian in Sichuan Basin. Wuhan:Changjiang University, 2017.
[20] 张满郎, 谢增业, 李熙喆, 等.四川盆地寒武纪岩相古地理特征.沉积学报, 2010, 28(1):128-139. ZHANG M L, XIE Z Y, LI X Z, et al. Paleogeographic characteristics of Cambrian lithofacies in Sichuan Basin. Acta Sedimentologica Sinica, 2010, 28(1):128-139.
[21] 李皎, 何登发.四川盆地及邻区寒武纪古地理与构造-沉积环境演化.古地理学报, 2014, 16(4):441-460. LI J, HE D F. Evolution of Cambrian paleogeography and structure sedimentary environment in Sichuan Basin and its adjacent areas. Journal of Paleogeography, 2014, 16(4):441-460.
[22] 杜金虎, 张宝民, 汪泽成, 等.四川盆地下寒武统龙王庙组碳酸盐缓坡双颗粒滩沉积模式及储层成因.天然气工业, 2016, 36(6):1-10. DU J H, ZHANG B M, WANG Z C, et al. Sedimentary model and reservoir genesis of carbonate gentle slope double grain beach in Longwangmiao Formation of Lower Cambrian in Sichuan Basin. Natural Gas Industry, 2016, 36(6):1-10.
[23] 魏国齐, 杨威, 杜金虎, 等.四川盆地高石梯-磨溪古隆起构造特征及对特大型气田形成的控制作用.石油勘探与开发, 2015, 42(3):257-265. WEI G Q, YANG W, DU J H, et al. Structural characteristics of Gaoshiti-Moxi paleouplift in Sichuan Basin and its control on the formation of giant gas fields. Petroleum Exploration and Development, 2015, 42(3):257-265.
[24] REN J S. The continental tectonics of China. Journal of Southeast Asian Earth Science, 1996, 13(3/4/5):197-204.
[25] 姜楠. 川西南地区下寒武统龙王庙组沉积相及与储层的关系.成都:西南石油大学, 2016. JIANG N. Sedimentary facies of Lower Cambrian Longwangmiao Formation and its relationship with reservoir in southwest Sichuan. Chengdu:Southwest Petroleum University, 2016.
[26] 王蓓, 刘向君, 司马立强, 等.磨溪龙王庙组碳酸盐岩储层多尺度离散裂缝建模技术及其应用.岩性油气藏, 2019, 31(2):124-133. WANG B, LIU X J, SIMA L Q, et al. Multi scale discrete fracture modeling technology and its application in carbonate reservoir of Longwangmiao Formation, Moxi. Lithologic Reservoirs, 2019, 31(2):124-133.
[27] 王雅萍, 杨雪飞, 王兴志, 等.川中磨溪地区龙王庙组晶粒白云岩储集性能及成因机制.地质科技情报, 2019, 38(1):197-205. WANG Y P, YANG X F, WANG X Z, et al. Reservoir performance and genetic mechanism of crystalline dolomite in Longwangmiao Formation, Moxi area, central Sichuan. Geological Science and Technology Information, 2019, 38(1):197-205.
[28] 李伟, 余华琪, 邓鸿斌.四川盆地中南部寒武系地层划分对比与沉积演化特征.石油勘探与开发, 2012, 39(6):681-690. LI W, YU H Q, DENG H B. Stratigraphic division, correlation and sedimentary evolution characteristics of Cambrian in central and southern Sichuan Basin. Petroleum Exploration and Development, 2012, 39(6):681-690.
[29] MOUNT J F. Mixing of siliciclastic and carbonate sediments in shallow shelf environments. Geology, 1984, 12(7):432-435.
[30] CIARELLA D, LONGHITANO S G. Distinguishing depositional environments in shallow-water mixed, bio-siliciclastic deposits on the basis of the degree of heterolithic segregation(Gelasian, Southern Italy). Journal of Sedimentary Research, 2012, 82(12):969-990.
[31] 梁薇, 牟传龙, 周恳恳, 等.湖南寒武系第三统混积岩沉积特征与成因探讨.地质论评, 2016, 62(4):881-896. LIANG W, MOU C L, ZHOU K K, et al. Discussion on sedimentary characteristics and genesis of the Tertiary-Cambrian migmatite in Hunan province. Geological Review, 2016, 62(4):881-896.
[32] 郭书元, 张广权, 陈舒薇.陆表海碎屑岩-碳酸盐岩混积层系沉积相研究:以鄂尔多斯东北部大牛地气田为例.古地理学报, 2009, 11(6):611-627. GUO S Y, ZHANG G Q, CHEN S W. Study on sedimentary facies of epicontinental marine clastic carbonate rock mixed system:Taking Daniudi gas field in northeast Ordos as an example. Journal of Paleogeography, 2009, 11(6):611-627.
[33] LABAJ M A, PRATT B R. Depositional dynamics in a mixed carbonate-siliciclastic system:Middle-Upper Cambrian Abrigo Formation, southeastern Arizona, USA. Journal of Sedimentary Research, 2016, 86(1):11-37.
[34] ZELLER M, VERWER K, EBERLI G P, et al. Depositional controls on mixed carbonate-siliciclastic cycles and sequences on gently inclined shelf profiles. Sedimentology, 2015, 62(7):2009-2037.
[35] BASHRI M, ABDULLATIF O, SALIH M. Sedimentology and facies analysis of Miocene mixed siliciclastic-carbonate deposits of the Dam Formation in A1 Lidam area, eastern Saudi Arabia. Arabian Journal of Geosciences, 2017, 10(21):472.
[36] SCHWARZ E, VEIGA G D, ALVAREZ TRENTINI G, et al. Expanding the spectrum of shallow-marine, mixed carbonatesiliciclastic systems processes, facies distribution and depositional controls of a siliciclastic-dominated example. Sedimentology, 2018, 65(5):1558-1589.
[37] 宋金民, 刘树根, 赵异华, 等.川中地区中下寒武统风暴岩特征及沉积地质意义.石油学报, 2016, 37(1):30-42. SONG J M, LIU S G, ZHAO Y H, et al. Characteristics and sedimentary geological significance of storm rock in middle and Lower Cambrian in Central Sichuan. Acta Petrolei Sinica, 2016, 37(1):30-42.
[1] 杨荣军, 彭平, 张静, 叶茂, 文华国. 四川盆地奉节地区上古生界古隆起特征及地质意义[J]. 岩性油气藏, 2021, 33(4): 1-9.
[2] 张本健, 田云英, 曾琪, 尹宏, 丁熊. 四川盆地西北部三叠系须三段砂砾岩沉积特征[J]. 岩性油气藏, 2021, 33(4): 20-28.
[3] 柴毓, 王贵文, 柴新. 四川盆地金秋区块三叠系须二段储层非均质性及成因[J]. 岩性油气藏, 2021, 33(4): 29-40.
[4] 向雪冰, 司马立强, 王亮, 李军, 郭宇豪, 张浩. 页岩气储层孔隙流体划分及有效孔径计算——以四川盆地龙潭组为例[J]. 岩性油气藏, 2021, 33(4): 137-146.
[5] 郑荣臣, 李宏涛, 史云清, 肖开华. 川东北元坝地区三叠系须三段沉积特征及成岩作用[J]. 岩性油气藏, 2021, 33(3): 13-26.
[6] 张闻亭, 龙礼文, 肖文华, 魏浩元, 李铁锋, 董震宇. 酒泉盆地青西凹陷窟窿山构造带下沟组沉积特征及储层预测[J]. 岩性油气藏, 2021, 33(1): 186-197.
[7] 戴晓峰, 谢占安, 杜本强, 张明, 唐廷科, 李军, 牟川. 高石梯—磨溪地区灯影组多次波控制因素及预测方法[J]. 岩性油气藏, 2020, 32(4): 89-97.
[8] 张满郎, 孔凡志, 谷江锐, 郭振华, 付晶, 郑国强, 钱品淑. 九龙山气田珍珠冲组砂砾岩储层评价及有利区优选[J]. 岩性油气藏, 2020, 32(3): 1-13.
[9] 张亚, 陈双玲, 张晓丽, 张玺华, 谢忱, 陈聪, 杨雨然, 高兆龙. 四川盆地茅口组岩溶古地貌刻画及油气勘探意义[J]. 岩性油气藏, 2020, 32(3): 44-55.
[10] 庞小军, 王清斌, 解婷, 赵梦, 冯冲. 黄河口凹陷北缘古近系物源及其对优质储层的控制[J]. 岩性油气藏, 2020, 32(2): 1-13.
[11] 杨帆, 刘立峰, 冉启全, 孔金平, 黄苏琦, 黄昌武. 四川盆地磨溪地区灯四段风化壳岩溶储层特征[J]. 岩性油气藏, 2020, 32(2): 43-53.
[12] 黄健玲, 傅强, 邱旭明, 赵世杰, 李林祥. 咸化断陷湖盆混积岩特征及沉积模式——以金湖凹陷阜二段为例[J]. 岩性油气藏, 2020, 32(2): 54-66.
[13] 吴丰, 习研平, 张亚, 陈双玲, 姚聪, 杨雨然. 川东—川南地区茅口组岩溶储层分类识别及有效性评价[J]. 岩性油气藏, 2020, 32(2): 90-99.
[14] 王登, 余江浩, 赵雪松, 陈威, 黄佳琪, 徐聪. 四川盆地石柱地区自流井组页岩气成藏条件与勘探前景[J]. 岩性油气藏, 2020, 32(1): 27-35.
[15] 张家强, 李士祥, 周新平, 梁益财, 郭睿良, 闫灿灿, 陈俊霖, 李树同. 志丹地区长82砂层组缓坡浅水三角洲前缘砂体发育模式及成因[J]. 岩性油气藏, 2020, 32(1): 36-50.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 魏钦廉, 郑荣才, 肖玲, 王成玉, 牛小兵. 鄂尔多斯盆地吴旗地区长6 储层特征及影响因素分析[J]. 岩性油气藏, 2007, 19(4): 45 -50 .
[2] 王东琪, 殷代印. 水驱油藏相对渗透率曲线经验公式研究[J]. 岩性油气藏, 2017, 29(3): 159 -164 .
[3] 李云,时志强. 四川盆地中部须家河组致密砂岩储层流体包裹体研究[J]. 岩性油气藏, 2008, 20(1): 27 -32 .
[4] 蒋韧,樊太亮,徐守礼. 地震地貌学概念与分析技术[J]. 岩性油气藏, 2008, 20(1): 33 -38 .
[5] 邹明亮,黄思静,胡作维,冯文立,刘昊年. 西湖凹陷平湖组砂岩中碳酸盐胶结物形成机制及其对储层质量的影响[J]. 岩性油气藏, 2008, 20(1): 47 -52 .
[6] 王冰洁,何生,倪军娥,方度. 板桥凹陷钱圈地区主干断裂活动性分析[J]. 岩性油气藏, 2008, 20(1): 75 -82 .
[7] 陈振标,张超谟,张占松,令狐松,孙宝佃. 利用NMRT2谱分布研究储层岩石孔隙分形结构[J]. 岩性油气藏, 2008, 20(1): 105 -110 .
[8] 张厚福,徐兆辉. 从油气藏研究的历史论地层-岩性油气藏勘探[J]. 岩性油气藏, 2008, 20(1): 114 -123 .
[9] 张 霞. 勘探创造力的培养[J]. 岩性油气藏, 2007, 19(1): 16 -20 .
[10] 杨午阳, 杨文采, 刘全新, 王西文. 三维F-X域粘弹性波动方程保幅偏移方法[J]. 岩性油气藏, 2007, 19(1): 86 -91 .