石油与天然气地质 ›› 2022, Vol. 43 ›› Issue (4): 746-762.doi: 10.11743/ogg20220402
朱筱敏1(), 陈贺贺2, 葛家旺3, 谈明轩4, 刘强虎5, 张自力6, 张亚雄7
收稿日期:
2022-04-26
修回日期:
2022-05-01
出版日期:
2022-07-14
发布日期:
2022-07-14
第一作者简介:
朱筱敏(1960—),男,教授、博士生导师,沉积地质学和层序地层学。E?mail: 基金项目:
Xiaomin Zhu1(), Hehe Chen2, Jiawang Ge3, Mingxuan Tan4, Qianghu Liu5, Zili Zhang6, Yaxiong Zhang7
Received:
2022-04-26
Revised:
2022-05-01
Online:
2022-07-14
Published:
2022-07-14
摘要:
陆相断陷盆地蕴藏着极为丰富的油气资源,阐明这类盆地不同构造演化阶段的层序地层构型和砂体发育分布特征是油气资源勘探开发的重要基础。在综述层序地层学发展现状和陆相断陷湖盆地质特征的基础上,依据断陷盆地构造演化的4个阶段,表征层序构型及砂体成因分布特征:① 盆地初始断陷期,边界断裂开始活动,准层序垂向加积叠置,发育近源粗粒的冲积扇、分支河流和扇三角洲等沉积体系;② 盆地强烈断陷期,断层活动强烈,在不同构造带和体系域中,准层序发育多种叠置样式,沉积体系主要为河流、三角洲以及重力流;③ 盆地断-拗转换期,断层活动减弱,准层序进积、加积垂向叠置,发育长轴向河流和三角洲沉积体系;④ 盆地拗陷沉降期,断裂活动趋于停止,盆地沉积充填整体处于过补偿状态,以河流-浅水三角洲沉积体系为特征。结合上述分析,指出了陆相断陷湖盆层序地层学研究热点并展望未来发展趋势。
中图分类号:
1 | Mann P, Horn M, Cross I. Emerging trends from 69 giant oil and gas fields discovered from 2000-2006[J]. AAPG Search and Discovery, 2007: 11-45. |
2 | Gawthorpe R L, Leeder M R. Tectono⁃sedimentary evolution of active extensional basins[J]. Basin Research, 2000, 12: 195-218. |
3 | 威尔格斯. 层序地层学原理——海平面变化分析[M]. 徐怀大,译. 北京: 石油工业出版社, 1993. |
Wilgus. Sea‑level changes: An integrated approach[M]. Xu Huai⁃da,translate. Beijing:Petroleum Industry Press, 1993. | |
4 | 朱筱敏. 层序地层学[M]. 东营:石油大学出版社, 2000. |
Zhu Xiaomin. Sequence stratigraphy[M]. Dongying: China University of Petroleum Press, 2000. | |
5 | 顾家裕. 陆相盆地层序地层学格架概念及模式[J]. 石油勘探与开发, 1995, 22(4): 6-10. |
Gu Jiayu. Framework, concepts and models of sequence stratigraphy in nonmarine petroliferous basin[J]. Petroleum Exploration and Development, 1995, 22(4): 6-10. | |
6 | 朱筱敏, 康安, 王贵文. 陆相坳陷型和断陷型湖盆层序地层样式探讨[J]. 沉积学报, 2003, 21(2): 283-287. |
Zhu Xiaomin, Kang An, Wang Guiwen. Sequence stratigraphic models of depression and faulted‑down lake basins[J]. Acta Sedimentologica Sinica, 2003, 21(2): 283-287. | |
7 | Noll C A, Hall M. Normal fault growth and its function on the control of sedimentation during basin formation: A case study from field exposures of the Upper Cambrian Owen Conglomerate, West Coast Range, western Tasmania, Australia[J]. AAPG Bulletin, 2006, 90(10): 1609-1630. |
8 | Jackson C A, Leeder M R. Drainage systems and the development of normal faults: an example from Pleasant Valley, Nevada[J]. Journal of Structural Geology, 1995, 11: 1041-1059. |
9 | Leeder M R, Jackson C A. The interaction between normal faul‑ ting and drainage in active extensional basins, with examples from the western United States and central Greece[J]. Basin Research, 1993, 5: 79-102. |
10 | Eliet P P, Gawthorpe R L. Drainage development and sediment supply within rifts, examples from the Sperchios Basin, central Greece[J]. Journal of the Geological Society, 1995, 152: 883- |
893 | |
11 | Gupta S, Davoodi H, Alonso‑Terme R. A mechanism to explain rift‑related subsidence and stratigraphic patterns through fault⁃array evolution[J]. Geology, 1998, 26: 1-37. |
12 | Doust H. Rift Basin evolution and petroleum system development[C]// GCSSEPM.34th Annual Gulf Coast Section SEPM Foundation Perkins‑Rosen Research Conference. Texas: GCSSEPM,2015: |
14 | |
13 | Kingston D R, Dishroon C P, Williams P A. Global basin classification system[J]. AAPG Bulletin, 1983, 67(12): 2175-2193. |
16 | Prosser S. Rift‑related linked depositional systems and their seismic expression[J]. Geological Society of London, Special Publications, 1993, 71: 35-66. |
15 | Leeder M R. Tectonic sedimentology: sediment systems deciphe‑ ring global to local tectonics[J]. Sedimentology, 2011, 58: 2-56. |
18 | Connell S D, Kim W, Paola C. Fluvial morphology and sediment⁃flux steering of axial‑transverse boundaries in an experimental basin[J]. Journal of Sedimentary Research, 2012, 82: 310-325. |
17 | Zhang Z L, Zhu X M, Zhang R F, et al. To establish a sequence stratigraphy in lacustrine rift basin: A 3D seismic case study from Paleogene Baxian Sag in Bohai Bay Basin, China[J]. Marine and Petroleum Geology, 2020,120, 104505. |
20 | Tan M X, Zhu X M, Liu Q H, et al. Multiple fluvial styles in Late Miocene post‑rift successions of the offshore Bohai Bay Basin (China): Evidence form a seismic geomorphological study[J]. Marine and Petroleum Geology, 2020, 113: 104173. |
19 | Catuneanu O. Principles of sequence stratigraphy[M]. Amsterdam: Elsevier, 2006. |
22 | 胡光明, 倪超, 王军, 等 河流层序地层学研究现状与存在的问题 [J]. 地质科技情报, 2011, 30(6): 59-63. |
Hu Guangming, Ni Chao, Wang Jun, et al. Review and problems of fluvial sequence stratigraphy[J]. Geological Science and Technology Information,2011, 30(6): 59-63. | |
21 | 谈明轩, 朱筱敏, 张自力, 等. 断陷盆地拗陷期河流层序样式及其地貌响应: 以渤海湾盆地沙垒田地区凸起区新近系明化镇组明下段为例[J]. 古地理学报, 2020, 22(3): 428-439. |
Tan Mingxuan, Zhu Xiaomin, Zhang Zili, et al. Fluvial sequence pattern and its response of geomorphy in depression phase of rift basin: A case study of the Lower Member of Neogene Minghuazhen Formation in Shaleitian Uplift area, Bohai Bay Basin[J]. Journal of Palaeogeography, 2020, 22(3): 428-439. | |
24 | 于兴河, 姜辉, 李胜利, 等. 中国东部中、新生代陆相断陷盆地沉积充填模式及其控制因素-以济阳坳陷东营凹陷为例[J]. 岩性油气藏, 2007, 19(1): 39-45. |
Yu Xinghe, Jiang Hui, Li Shengli, et al. Depositional filling mo‑ dels and controlling factors on Mesozoic and Cenozoic fault basins of terrestrial facies in eastern China: A case study of Dongying Sag of Jiyang Depression[J]. Lithologic Reservoirs, 2007, 19(1): 39- | |
45 | |
23 | 邓宏文, 郭建宇, 王瑞菊, 等. 陆相断陷盆地的构造层序地层分析[J]. 地学前缘, 2008, 15(2): 1-7. |
Deng Hongwen, Guo Jianyu, Wang Ruiju, et al. Tectono⁃sequence stratigraphic analysis in continental faulted basins[J]. Earth Science Frontiers, 2008, 15(2): 1-7. | |
27 | 解习农, 任建业. 沉积盆地分析基础[M]. 武汉: 中国地质大学出版社, 2013. |
Xie Xinong, Ren Jianye. Principles of sedimentary basin analysis[M]. Wuhan: China University of Geosciences Press, 2013. | |
25 | Cohen A S. Tectono‑stratigraphic model for sedimentation in Lake Tanganyika, Africa[J]. AAPG Memoir, 1990,50: 137-150. |
26 | Gawthorpe R L, Fraser A J, Collier R E. Sequence stratigraphy in active extensional basins: implications for the interpretation of ancient basin‑fills[J]. Marine and Petroleum Geology, 1994, 11: 642-658. |
30 | Martins‑Neto M A, Catuneanu O. Rift sequence stratigraphy[J]. Marine and Petroleum Geology, 2010, 27: 247-253. |
28 | 林畅松. 沉积盆地的构造地层分析——以中国构造活动盆地研究为例[J]. 现代地质, 2006, 20(2): 185-194. |
Lin Changsong. Tectono‑stratigraphy analysis of sedimentary basins: A case study on the inland tectonically active basins in China[J]. Geoscience, 2006, 20(2): 185-194. | |
29 | Ravnås R, Steel R J. Architecture of marine rift‑basin successions[J]. AAPG Bulletin, 1998, 82: 110-146. |
33 | 王华, 廖远涛, 陆永潮, 等. 中国东部新生代陆相断陷盆地层序的构成样式[J]. 中南大学学报(自然科学版), 2010, 41(1): 277-285. |
Wang Hua, Liao Yuantao, Lu Yongchao, et al. Sequence architecture styles of Cenozoic continental rift basins in East China[J]. Journal of Central South University (Science and Technology), 2010, 41(1): 277-285. | |
31 | 韩志宇, 王非, 师文贝. 沉积岩定年及应用: 问题与展望[J]. 沉积学报. 2022, 40(2): 360-379. |
Han Zhiyu, Wang Fei, Shi Wenbei. Dating and application for sedimentary rocks: Problems and prospects[J]. Acta Sedimentologica Sinica, 2022, 40(2): 360-379. | |
32 | 宋翠玉,吕大炜.米兰科维奇旋回时间序列分析法研究进展[J].沉积学报,2022,40(2):380-395. |
Song Cuiyu, Dawei LÜ. Advances in time series analysis methods for Milankovitch cycles[J]. Acta Sedimentologica Sinica, 2022,40(2):380-395. | |
36 | Boulila S, Brange C, Cruz A M, et al. Astronomical pacing of Late Cretaceous third‑ and second‑order sea‑level sequences in the Fozdo Amazonas Basin[J]. Marine and Petroleum Geology,2020, 117: 104382. |
34 | Liu Y, Huang C, Ogg J G, et al. Oscillations of global sea‑level elevation during the Paleogene correspond to 1.2‑Myr amplitude modulation of orbital obliquity cycles[J]. Earth and Planetary S‑ cience Letters, 2019, 522: 65-78. |
35 | Du W, Ji L Y, Chen G, et al. Cyclostratigraphy and astronomical tuning during the Oligocene in the Jizhong Depression, Bohai Bay Basin, northeastern China[J]. Palaeogeography, Palaeoclimato‑ logy, Palaeoecology, 2020, 554: 109803. |
39 | 朱剑兵, 纪友亮, 赵培坤, 等. 小波变换在层序地层单元自动划分中的应用[J]. 石油勘探与开发, 2005, 32(1), 84-86. |
Zhu Jianbing, Ji Youliang, Zhao Peikun, et al. Application of wavelet transform in auto‑identify units of stratigraphy sequence[J]. Petroleum Exploration and Development, 2005, 32(1): 84- | |
86 | |
37 | 路顺行, 张红贞, 孟恩, 等. 运用INPEFA技术开展层序地层研究[J]. 石油地球物理勘探,2007, 42(6), 703-708. |
Lu Shunxing, Zhang Hongzhen, Meng En, et al. Application of INPEFA technique to carry out sequence stratigraphy study[J]. Oil Geophysical Prospecting, 2007, 42(6): 703-708. | |
38 | 吴伟, 林畅松, 刘景彦, 等. 利用上超点法重建渤海湾盆地辽中凹陷渐新世湖平面变化[J]. 沉积学报, 2011, 29(6), 1115-1121. |
Wu Wei, Lin Changsong, Liu Jingyan, et al. Reconstruction of Oligocene lake level change through onlap pointes: A case from Liaozhong Depression, Bohai Bay Basin[J]. Acta Sedimentologica Sinica, 2011, 29(6): 1115-1121. | |
43 | 康波, 解习农, 杜学斌, 等. 基于滨线轨迹的古水深定量计算新方法——以古近系沙三中段东营三角洲为例[J]. 沉积学报, 2012, 30(3): 443-450. |
Kang Bo, Xie Xinong, Du Xuebin, et al. A new paleobathymetric approach based on shoreline trajectory[J]. Acta Sedimentologica Sinica, 2012, 30(3): 443-450. | |
40 | Yang D M, Huang Y J, Guo W, et al. Late Santonian‑early Campanian lake‑level fluctuations in the Songliao Basin, NE China and their relationship to coeval eustatic changes[J]. Cretaceous Research, 2018, 92: 138-149. |
41 | Scholz C A, Johnson T C, Cohen A S, et al. East African megadroughts between 135 and 75 thousand years age and bearing on early‑modern human origins[J]. Proceedings of the National Aca‑ demy of Sciences, 2007, 104(42): 16416-16421. |
42 | Lyons R P, Scholz C A, Buoniconti M R, et al. Late Quaternary stratigraphic analysis of the Lake Malawi Rift, East Africa: An integration of drill‑core and seismic‑reflection data[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2011, 303(1-4): 20-37. |
47 | 解习农, 任建业, 焦养泉, 等. 断陷盆地构造作用与层序样式[J]. 地质论评, 1996, 42(3): 239-244. |
Xie Xinong, Renjianye, Jiao Yangquan, et al. Tectonism and sequences patterns of down‑faulted basin[J]. Geological Review, 1996, 42(3): 239-244. | |
44 | Streeker U, Steidtmann J R, Smithson S B A. Conceptual tectono-stratigraphic model for seismic faeies migrations on a fluvio⁃lacustrine in extensional basin[J]. AAPG Bulletin, 1999,83(1): 43-61 |
49 | 林畅松, 潘元林, 肖建新, 等. “构造坡折带”-断陷盆地层序分析和油气预测的重要概念[J]. 地球科学, 2000, 25(3): 260-265. |
Lin Changsong, Pan Yuanlin, Xiao Jianxin, et al. Structural slope‑break zone: key concept for stratigraphic sequence analysis and petroleum forecasting in fault subsidence basin[J]. Earth S‑ cience, 2000, 25(3): 260-265. | |
46 | Pascucci V, Costantini A, Martini P, et al. Tectono‑sedimentary analysis of a complex, extensional, Neogene basin formed on thrust‑faulted, Northern Apennines hinterland: Radicofani Basin, Italy[J]. Sedimentary Geology, 2006,183: 71-97. |
51 | 朱红涛, 刘可禹, 朱筱敏, 等. 陆相盆地层序构型多元化体系[J]. 地球科学, 2018,43(3): 770-785. |
Zhu Hongtao, Liu Keyu, Zhu Xiaomin, et al. Varieties of sequence stratigraphic configurations in continental basins[J]. Ear⁃th Science, 2018, 43(3): 770-785. | |
48 | 张世奇, 纪友亮. 陆相断陷湖盆层序地层学模式探讨[J]. 石油勘探与开发, 1996, 23(5):20-23. |
Zhang Shiqi, Ji Youliang. Approach to the sequence stratigraohic models of the fault-depression lake basin[J]. Petroleum Exploration and Development, 1996, 23(5):20-23. | |
53 | Wood L J. Chronostratigrahy and tectonostratigraphy of the Colulnbus Basin, eastern offshore Trinidad[J]. AAPG Bulletin, 2000, 84(14): 1905-1929. |
50 | 杨明慧, 刘池阳. 陆相伸展盆地的层序类型、结构和序列与充填模式——以冀中坳陷下第三系为例[J]. 沉积学报, 2002, 20(2): 222-228. |
Yang Minghui, Liu Chiyang. Types, textures and series of the continental sequences and model of sedimentary basin‑fill in rift basin:A case study from Jizhong Basin, China[J]. Acta Sedimentologica Sinica, 2002, 20(2): 222-228. | |
55 | Masini E, Manatschal G, Mohn G, et al. The tectono‑sedimentary evolution of a supra‑detachment rift basin at a deep‑water magma⁃poor rifted margin: the example of the Samedan Basin preserved in the Err nappe in SE Switzerland[J]. Basin Research, 2011, 23: 652-677. |
52 | Liu Q H, Zhu X M, Yang Y, et al. Sequence stratigraphy and seismic geomorphology application of facies architecture and sediment-dispersal patterns analysis in the third member of Eocene Shahejie Formation, slope system of Zhanhua Sag, Bohai Bay Basin, China[J]. Marine and Petroleum Geology, 2016, 78: 766-784. |
57 | Liu Q H, Zhu X M, Zhu H T, et al. Three‑dimensional forward stratigraphic modelling of the gravel‑to mud‑rich fan‑delta in the slope system of Zhanhua Sag, Bohai Bay Basin,China[J]. Marine and Petroleum Geology, 2017,79: 18-30. |
54 | Liu Q H, Zhu X M, Zeng H L, et al. Source‑to‑sink analysis in an Eocene rifted lacustrine basin margin of western Shaleitian Uplift area, offshore Bohai Bay Basin, eastern China[J]. Marine and Petroleum Geology, 2019,107: 41-58. |
59 | 葛家旺, 朱筱敏, 黎明, 等. 陆丰凹陷东部缓坡带层序地层样式及控制因素[J]. 中国矿业大学学报, 2017, 46(3): 525-539. |
Ge Jiawang, Zhu Xiaomin, Li Ming, et al. Sequence architecture and controlling factors of the Wenchang Formation in the gentle slope of eastern Lufeng Depression, Pearl River Mouth basin[J]. Journal of China University of Mining & Technology, 2017, 46(3): 525-539. | |
56 | 葛家旺, 朱筱敏, 张向涛, 等. 珠江口盆地陆丰凹陷文昌组构造-沉积演化模式[J]. 中国矿业大学学报, 2018, 47(2): 405- |
419 | Ge Jiawang, Zhu Xiaomin, Zhang Xiangtao, et al. Tectono⁃sedimentation model of the Ecocene Wenchang Formation in the Lufeng depression, Pearl River Mouth basin[J]. Journal of China University of Mining & Technology, 2018, 47(2): 405-419. |
62 | 刘强虎, 朱筱敏, 李顺利, 等. 沙垒田凸起前古近系基岩分布及源-汇过程[J]. 地球科学, 2016, 41(11): 1935-1949. |
Liu Qianghu, Zhu Xiaomin, Li Shunli, et al. Pre‑Palaeogene bedrock distribution and source‑to‑sink system analysis in the Shaleitian Uplift[J]. Earth Science, 2016,41(11): 1935-1949. | |
58 | 刘强虎, 朱筱敏, 李顺利, 等. 沙垒田凸起西部断裂陡坡型源-汇系统[J]. 地球科学, 2017, 42(11): 1883-1896. |
Liu Qianghu, Zhu Xiaomin, Li Shunli, et al. Source‑to‑sink system of the steep slope fault in the Western Shaleitian Uplift[J]. Earth Science, 2017,42(11): 1883-1896. | |
64 | 薛良清. 层序地层学研究现状、方法与前景[J]. 石油勘探与开发, 1995, 22(5): 8-14. |
Xue Liangqing. Current status, methodology and future directions of sequence stratigraphy study[J]. Petroleum Exploration and Development, 1995, 22(5): 8-14. | |
60 | Catuneanu O, Abreu V, Bhattacharya J P, et al. Towards the standardization of sequence stratigraphy[J]. Earth‑Science Reviews, 2009, 92(1-2): 1-33. |
61 | Posamentier H W, Allen G P, James D P, et al. Forced regressions in a sequence stratigraphic framework: concepts, examples, and exploration significance[J]. AAPG Bulletin, 1992, 76(11): 1687-1709. |
67 | Van Wagoner J C, Mitchum R M, Campion K M, et al. Siliciclastic sequence stratigraphy in well logs, cores and outcrops: Concepts for high‑resolution correlation of time and facies[M]//AAPG. AAPG Methods Exploration.Texas: AAPG,1990. |
63 | Hunt D, Tucker M E. Stranded parasequences and the forced regressive wedge systems tract: deposition during base‑level' fall[J]. Sedimentary Geology, 1992, 81(1-2): 1-9 |
69 | Catuneanu O. Scale in sequence stratigraphy[J]. Marine and Petroleum Geology, 2019, 106: 128~159 |
65 | Catuneanu O. Model‑independent sequence stratigraphy[J]. Earth‑Science Reviews, 2019, 188: 312~388 |
66 | Helland‑Hansen W, Hampson G J. Trajectory analysis: concepts and applications[J]. Basin Research, 2009, 21(5): 454-483. |
72 | Xian B Z, Liu J P, Wang J H, et al. Using of stratal slicing in delineating delta‑turbidite systems in Eocene Dongying depression, Bohai Bay Basin: Insights for the evolution of multi‑source delta⁃turbidite systems in a fourth order sequence[J]. Journal of Petroleum Science and Engineering, 2018,168: 495-506. |
68 | Xu S, Cong F Y, Hao F, et al. Shelf‑edge trajectory and sediment dispersal in a lacustrine setting: A case study from Qinnan Depression, Bohai Bay Basin, China[J]. Marine and Petroleum Geo‑ logy, 2018, 91: 562-575. |
74 | 秦春雨, 王华, 姜平, 等. 断陷盆地轴向沉积体系空间展布及演化特征[J]. 中国矿业大学学报, 2020, 49(3): 542-551. |
Qin Chunyu, Wang Hua, Jiang Ping, et al. Spatial distribution and evolution of axial deltaic system in continental rift basin: A case study of Weixinan Sag, Beibuwan Basin[J]. Journal of China University of Mining & Technology, 2020, 49(3): 542-551. |
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