地球科学进展 ›› 2013, Vol. 28 ›› Issue (9): 957 -967. doi: 10.11867/j.issn.1001-8166.2013.09.0957

综述与评述    下一篇

碎屑岩储集层成岩作用研究进展与展望
张金亮 1,张鹏辉 1,2,谢俊 3,董紫睿 4,张明 1,丁芳 1,袁勇 5,李景哲 1   
  1. 1.北京师范大学资源学院,北京 100875; 2.首尔大学地球与环境科学学院,韩国 首尔 151-747;
    3.山东科技大学地质科学与工程学院,山东 青岛 266510;4.斯伦贝谢中国公司,四川 成都 610041;
    5.中国海洋大学海洋地球科学学院,山东 青岛 266100
  • 收稿日期:2013-06-27 修回日期:2013-08-20 出版日期:2013-09-10
  • 基金资助:

    高等学校博士学科点专项科研基金项目“多尺度裂缝储层建模及其与多相流耦合技术研究”(编号:20110003110014);国家自然科学基金面上项目“多孔介质中原油析蜡机理及考虑岩石比表面的蜡沉积动力学模型”(编号:41172109)资助.

Diagenesis of Clastic Reservoirs: Advances and Prospects

Zhang Jinliang 1, Zhang Penghui 1,2, Xie Jun 3, Dong Zirui 4, Zhang Ming 1, Ding Fang 1, Yuan Yong 5, Li Jingzhe 1   

  1. 1.College of Resources Science & Technology, Beijing Normal University, Beijing 100875, China;2. School of Earth and Environment Sciences, Seoul National University, Seoul 151-747, Korea;3. College of Geological Science & Engineering, Shandong University of Science and Technology, Qingdao 266510, China;4. Schlumberger China, Chengdu 610041, China; 5. College of Marine Geosciences, Ocean University of China, Qingdao 266100, China
  • Received:2013-06-27 Revised:2013-08-20 Online:2013-09-10 Published:2013-09-10

作为沉积学和盆地研究领域的重要分支,碎屑岩储集层成岩作用研究在短短40年间伴随着实验测试技术的广泛应用而得到迅猛发展,推动了含油气盆地的勘探开发。紧密围绕这一知识体系,概述了成岩作用的概念、研究历史,并归纳整理了国内外具有代表性的成岩阶段划分观点。引入和总结了近年来成岩作用理论和应用方面的研究进展,主要表现为:①碱性成岩作用理论的成熟与完善;②成岩数值模拟技术应用日益广泛;③层序地层/沉积相框架下的成岩作用快速发展;④构造成岩作用的初步探索;⑤成岩相定量评价的深入分析。这些最新的研究成果丰富和充实了现有的成岩作用研究体系和技术系列。进一步探讨了成岩作用学科体系的研究趋势,就致密砂岩储层成岩作用研究、成岩作用系统分级及其时空属性探讨、成岩作用定量化体系研究和成岩作用与其他学科领域交叉融合等研究前沿和发展方向做出展望,以期能带动成岩作用研究深入向前发展,从而为更好地预测和评价含油气碎屑岩储集层的时空分布服务。

Along with the widely used experimental testing technology within 40 years, a number of significant knowledge and results have been achieved in diagenesis of clastic reservoirs an important branch of sedimentology and basin research, which has promoted the exploration and development of hydrocarbonbearing basins. This article encompasses the knowledge system to start an overview of the concept and research history of diagenesis, and to collate some representative classification viewpoints of clastic diagenetic stage. Several advances in recent theoretical and applied aspects of diagenesis, which have enriched the systems and technology series, have been introduced and summarized, including: ① improvement of alkaline diagenesis theory; ② increasingly widespread application in numerical simulation of clastic diagenesis; ③ rapid development of diagenesis within the framework of sequence stratigraphy or depositional facies; ④ preliminary investigation of structural diagenesis; ⑤ in-depth quantitative evaluation of diagenetic facies. Additionally, the research trends of the discipline system of diagenesis should be closely combined and discussed with diagenesis of tight sandstone reservoirs, diagenesis and its temporal properties of hierarchical systems, quantitative research of diagenesis, and integration of diagenesis and other fields. Frontier research and development directions have been prospected in order to bring forward further development of diagenesis, which is benefit for the forecasting and evaluation of the spatial and temporal distribution of hydrocarbonbearing clastic reservoirs.

中图分类号: 

[1]Wolf K H, Chilingar G V. Diagenesis III[M]. Amsterdam: Elsevier, 1992.

[2]Milliken K L. Diagenesis[C]∥Middleton G V, ed. Encyclopedia of Sediments and Sedimentary Rocks. London: Kluwer Academic Publishers, 2003: 214-219.

[3]Li Zhong, Chen Jingshan, Guan Ping. Scientific problems and frontiers of sedimentary diagenesis research in oil-gas-bearing basins[J]. Acta Petrologica Sinica, 2006, 22(8): 2 113-2 122.[李忠,陈景山,关平.含油气盆地成岩作用的科学问题及研究前沿[J].岩石学报,2006,22(8):2 113-2 122.]

[4]Liu Baojun, Zhang Jinquan. Sedimentary Diagenesis[M]. Beijing: Science Press, 1992.[刘宝珺,张锦泉.沉积成岩作用[M].北京:科学出版社,1992.]

[5]Zheng Junmao, Pang Ming. Diagenesis of Clastic Reservoirs[M]. Wuhan: China University of Geosciences Press, 1989.[郑浚茂,庞明.碎屑储集岩的成岩作用研究[M].武汉:中国地质大学出版社,1989.]

[6]Schmidt V, McDonald D A. The role of secondary porosity in the course of sandstone diagenesis[C]∥Scholle P A, Schluger P R, eds. Aspects of Diagenesis. Tulsa: SEPM Special Publication, 1979, 26: 175-207.

[7]Larsen G, Chilingar G V. Diagenesis in Sediments and Sedimentary Rocks (Developments in Sedimentology 25)[M]. Amsterdam: Elsevier, 1983.

[8]Pittman E D. Recent advances in sandstone diagenesis[J]. Annual Review of Earth and Planetary Sciences, 1979, 7: 39-62.

[9]Surdam R C, Boese S W, Crossey L J. The chemistry of secondary porosity[C]∥McDonald D A, Surdam R C, eds. Clastic Diagenesis. Tulsa: AAPG Memoir, 1984, 37: 127-151.

[10]Morad S, Ketzer J M, De Ros L F. Spatial and temporal distribution of diagenetic alterations in siliciclastic rocks: Implications of mass transfer in sedimentary basins[J]. Sedimentology, 2000, 47: 95-120.

[11]Powley D E. Pressures and hydrogeology in petroleum basins[J]. Earth-Science Reviews, 1990, 29: 215-226.

[12]Bjrlykke K, Jahren J. Open or closed geochemical systems during diagenesis in sedimentary basins: Constraints on mass transfer during diagenesis and the prediction of porosity in sandstone and carbonate reservoirs[J]. AAPG Bulletin, 2012, 12: 2 193-2 214.

[13]Taylor K G, Gawthorpe R L, Pannon-Howell S. Basin-scale diagenetic alteration of shoreface sandstone in the Upper Cretaceous Spring Canyon and Aberdeen Members, Blackhawk Formation, Book Cliffs, Utah[J]. Sedimentary Geology, 2004, 172: 99-115.

[14]Liu Baojun. Sedimentary Petrology[M]. Beijing: Geological Publishing House, 1980.[刘宝珺. 沉积岩石学[M].北京:地质出版社,1980.]

[15]Zhou Shuxin. Advice for diagenesis and stage division[J]. Petroleum Exploration and Development, 1981, 3: 10-13.[周书欣.对成岩作用及其阶段划分的意见[J].石油勘探与开发,1981,3:10-13.]

[16]Sha Qing’an, Chen Jingshan, Pan Zhengpu. A review and new proposal for the classification and terminology of diagenesis[J]. Acta Petrologica Sinica, 1986, 2(2): 42-49.[沙庆安,陈景山,潘正莆.论成岩作用阶段的划分和术语的选用[J].岩石学报,1986,2(2):42-49.]

[17]Ying Fengxiang, He Dongbo, Long Yumei, et al. Division of Clastic Diagenetic Stage (SY/T 5477-2003)[S].2003.[应凤祥,何东博,龙玉梅,等. 碎屑岩成岩阶段划分(SY/T 5477-2003)[S].2003.]

[18]Pettijohn F J. Sedimentary Rocks[M].Li Hanyu, et al, translated. Beijing: Petroleum Industry Press, 1981: 254-260.[Pettijohn F J. 沉积岩[M].李汉瑜,等译.北京:石油工业出版社,1981:254-260.]

[19]Chen Zhong, Luo Zhetan, Shen Mingdao, et al. Study of secondary pore formation on the basis of chemical behavior of minerals in alkaline-flooding agents[J]. Journal of Southwestern Petroleum Institute, 1996, 18(2): 15-19.[陈忠,罗蛰潭,沈明道,等.由储层矿物在碱性驱替剂中的化学行为到砂岩储层次生孔隙的形成[J].西南石油学院学报,1996,18(2):15-19.]

[20]Lu Yongchao, Xiang Caifu, Chen Ping, et al. Application of sequence stratigraphy to the study of diagenesis of siliciclastic rock—Take the Lower Tertiary of Ya13-1 gas field as an example[J]. Experimental Petroleum Geology, 1999, 20(2): 100-118.[陆永潮,向才富,陈平,等.层序地层学在碎屑岩成岩作用研究中的应用——以YA 13-1气田下第三系为例[J].石油实验地质,1999,20(2):100-118.]

[21]Lü Ming. Reservoir characteristics of the gas-bearing area in Ying-Qiong Basin[J]. Natural Gas Industry, 1999, 19(1): 20-24.[吕明.莺—琼盆地含气区储层特征[J].天然气工业,1999,19(1):20-24.]

[22]Tan Xianfeng, Tian Jingchun, Li Zubing, et al. Diagenesis evolution of fragmental reservoir in alkali sediment environment—Taking the Member 4 of Shahejie Formation of steep-slope zone in Dongying sag, Shandong, China for example[J]. Geological Bulletin of China, 2010, 29(4):535-543.[谭先锋,田景春,李祖兵,等.碱性沉积环境下碎屑岩的成岩演化——以山东东营凹陷陡坡带沙河街组四段为例[J].地质通报,2010,29(4):535-543.]

[23]Department of Geology and Mineral Information Institute. Foreign Sedimentary Diagenesis[M]. Beijing: Geological Publishing House, 1988.[地质矿产部情报研究所.国外沉积成岩作用[M].北京:地质出版社,1988.]

[24]Patricia M. Dove the dissolution kineties of quartz in sodium chloride solution at 25° to 300°[J]. American Journal of Science, 1994, 294: 665-712.

[25]Qiu Longwei, Jiang Zaixing, Cao Yingchang, et al. Alkaline diagenesis and its effect on reservoirs in Biyang Sag[J]. Science in China (Series D), 2001, 31(9): 752-759.[邱隆伟,姜在兴,操应长,等.泌阳凹陷碱性成岩作用及其对储层的影响[J].中国科学:D辑,2001,31(9):752-759.]

[26]Qiu Longwei, Jiang Zaixing. Alkaline Diagenesis of Clastic Rocks[M]. Beijing: Geological Publishing House, 2006.[邱隆伟,姜在兴.陆源碎屑岩的碱性成岩作用[M].北京:地质出版社,2006.]

[27]Du Letian. Geochemical principles of alkali metasomatism[J]. Science in China (Series B), 1986, 1: 81-84.[杜乐天.碱交代作用的地球化学原理[J].中国科学:B辑,1986,1:81-84.]

[28]Lin Xisheng, Ying Fengxiang, Zheng Naixuan. X-ray Diffraction Analysis Technology and Its Geological Application[M]. Beijing: Petroleum Industry Press, 1992.[林西生,应凤祥,郑乃萱.X射线衍射分析技术及其地质应用[M].北京:石油工业出版社,1992.]

[29]Chen Lihua, Jiang Zaixing. Reservoir Experimental Testing Techniques[M]. Dongying: Petroleum University Press, 1994.[陈丽华,姜在兴.储层实验测试技术[M].东营:石油大学出版社,1994.]

[30]Indu D M, Peter J O. Prediction of Reservoir Quality Through Chemical Modeling[C]∥Tulsa: AAPG Memoir, 1990, 19: 15-51.

[31]Wood J R, Byres A P. Alteration and emerging methodologies in geochemical and empirical modeling[C]∥Wilson M D, ed. Reservoir Quality Assessment and Predictation in Clastic Rocks. Tulsa: SEPM Short Course,1994, 30: 395-400.

[32]Meng Yuanlin, Wang Zhiguo, Yang Junsheng, et al. Comprehensive process-oriented simulation of diagenesis and its application[J]. Petroleum Geology & Experiment, 2003, 25(2): 211-215.[孟元林,王志国,杨俊生,等.成岩作用过程综合模拟及其应用[J].石油实验地质,2003,25(2):211-215.]

[33]He Dongbo, Ying Fengxiang, Zheng Junmao, et al. Numerical simulation of clastic diagenesis and its application[J]. Petroleum Exploration and Development, 2004, 31(6): 66-68.[何东博,应凤祥,郑俊茂,等.碎屑岩成岩作用数值模拟及其应用[J].石油勘探与开发,2004,31(6):66-68.]

[34]Taylor K G, Gawthorpe R L, Van Wagoner J C. Stratigraphic control on laterally persistent cementation, Book Cliffs, Utah[J]. Journal of Sedimentary Research, 1995, 69: 225-228.

[35]Ketzer J M, Holz M, Morad S, et al. Sequence stratigraphic distribution of diagenetic alterations in coal-bearing, paralic sandstones: Evidence from the Rio Bonito formation (early Permian), southern Brazil[J]. Sedimentology, 2003, 50: 855-877.

[36]El-Ghali M A K, Tajori K G, Mansurbeg H. The influence of transgression and regression on the spatial and temporal distribution of diagenetic kaolin in the Upper Ordovician glaciogenic sandstones within a sequence stratigraphic framework, Murzuq Basin, SW Libya[J]. Journal of Geochemical Exploration, 2006, 89: 87-91.

[37]El-Ghali M A K, Mansurbeg H, Morad S, et al. Distribution of diagenetic alterations in fluvial and paralic deposits within sequence stratigraphic framework: Evidence from the Petrohan terrigenous group and the svidol formation, lower Triassic, NW Bulgaria[J]. Sedimentary Geology, 2006, 190: 299-321.

[38]El-Ghali M A K, Mansurbeg H, Morad S, et al. Distribution of diagenetic alterations in glaciogenic sandstones within a depositional facies and sequence stratigraphic framework: Evidence from the upper Ordovician of the Murzuq Basin, SW Libya[J]. Sedimentary Geology, 2006, 190: 323-351.

[39]Mansurbeg H, Morad S, Salem A, et al. Diagenesis and reservoir quality evolution of Paleocene deep-water, marine sandstones, the Shetland-Faroes Basin, British continental shelf[J]. Marine and Petroleum Geology, 2008, 25: 514-543.

[40]Morad S, Al-Ramadan K, Ketzer J M, et al. The impact of diagenesis on the heterogeneity of sandstone reservoirs: A review of the role of depositional facies and sequence stratigraphy[J]. AAPG Bulletin, 2010, 94 (8): 1 267-1 309.

[41]Kordi M, Turner B, Salem A M K. Linking diagenesis to sequence stratigraphy in fluvial and shallow marine sandstones: Evidence from the Cambrian-Ordovician lower sandstone unit in southwestern Sinai, Egypt[J]. Marine and Petroleum Geology, 2011, 28: 1 554-1 571.

[42]Amorosi A. Glauconite and sequence stratigraphy: Conceptual framework of distribution in siliciclastic sequences[J]. Journal of Sedimentary Research, 1995, 65: 419-425.

[43]Taylor K G, Gawthorpe R L, Curtis C D, et al. Carbonate cementation in a sequence stratigraphic framework: Upper Cretaceous sandstones, Book Cliffs, UtaheColorado[J]. Journal of Sedimentary Research, 2000, 70: 360-372.

[44]Ketzer J M, Morad S, Evans R, et al. Distribution of diagenetic alteration in fluvial, deltaic, and shallow marine sandstones within a sequence stratigraphic framework: Evidence from the mullaghmore formation (Carboniferous), NW Ireland[J]. Journal of Sedimentary Research, 2002, 72: 760-774.

[45]Ketzer J M, Morad S, Amorosi A. Predictive clay cementation in a sequence stratigraphy framework[C]∥Worden R H, Morad S, eds. Clay Cementation in Sandstones. Oxford: International Association of Sedimentologists Special Publication Blackwell Publishing, 2003, 34: 42-59.

[46]Reed J S, Eriksson K A, Kowalewski M. Climatic, depositional and burial controls on diagenesis of Appalachian Carboniferous sandstones: Qualitative and quantitative methods[J]. Sedimentary Geology, 2005, 176: 225-246.

[47]Laubach S E, Eichhubl P, Hilgers C, et al. Structural diagenesis[J]. Journal of Structural Geology, 2010, 32: 1 866-1 872.

[48]Zou Caineng, Tao Shizhen, Zhou Hui, et al. Genesis, classification and evaluation method of diagenetic facies[J]. Petroleum Exploration and Development, 2008, 35(5): 526-540.[邹才能,陶士振,周慧,等.成岩相的形成、分类与定量评价方法[J].石油勘探与开发,2008,35(5):526-540.]

[49]Zhao Chenglin, Liu Menghui, Ji Youliang. Depositional Systems and Diagenesis of Lower Tertiary Clastic Rocks in Dongpu Sag[M]. Beijing: Petroleum Industry Press, 1992.[赵澄林,刘孟慧,纪友亮.东濮凹陷下第三系碎屑岩沉积体系与成岩作用[M].北京:石油工业出版社,1992.]

[50]Zhang Penghui, Zhang Jinliang, Dong Zirui, et al. Diagenesis and favorable diagenetic facies of Upper Cretaceous Sandstones in the middle of Changling Depression in Songliao Basin[J]. Journal of Mineralogy and Petrology, 2012, 32(4): 94-101.[张鹏辉,张金亮,董紫睿,等.松辽盆地长岭凹陷中部上白垩统砂岩成岩作用及成岩相带[J].矿物岩石,2012,32(4):94-101.]

[51]Lai Jin, Wang Guiwen, Wang Shu’nan, et al. Research status and advances in the diagenetic facies of clastic reservoirs[J]. Advances in Earth Science, 2013, 28(1): 39-50.[赖锦,王贵文,王书南,等.碎屑岩储层成岩相研究现状及进展[J].地球科学进展,2013,28(1):39-50.]

[52]Aleta A. Mineralogical descriptions of the bentonite in Balamban, Cebu Province, Philippines[J]. Clay Science, 2000, 11(3) : 299-316.

[53]Lee M K, Bethke C K. Groundwater flow, late cementation, and petroleum accumulation in the Permian Lyons sandstone, Denver Basin[J]. AAPG Bulletin, 1994, 78(2): 217-237.

[54]Ying Fengxiang, Luo Ping, He Dongbo. Clastic Reservoir Diagenesis and Diagenetic Numerical Simulation of Petroliferous Basins in China[M]. Beijing: Petroleum Industry Press, 2004.[应凤祥,罗平,何东博.中国含油气盆地碎屑岩储集层成岩作用与成岩数值模拟[M]. 北京:石油工业出版社,2004.]

[55]Jennings R H, Mazzullo J M. Shallow burial diagenesis of chalks and related sediments at site 550 on the Goban Spur[C]∥Graciansky P C, Poag C W, eds. Initial Reports of the Deep Sea Drilling Project 80. Washington: US Government Printing Office, 1985: 853-861.

[56]Zhang Jinliang, Shen Feng. Clastic diagenesis and reservoir properties of the Third Member of Shahejie Formation, Qiaokou area, Dongqu Depression[J]. Journal of Mineralogy and Petrology, 1990, 10(1): 35-42.[张金亮,沈凤.东濮凹陷桥口地区沙三段碎屑岩成岩作用与储层性质[J].矿物岩石,1990,10(1):35-42.]

[57]Grigsby J D, Langsford R P. Effcets of diagenesis on enhanced- resolution bulk density logs in Tertiary Gulf Coast sandstones: An example form the Lower Vicksburg Formation, McAllen Ranch field, South Texas[J]. AAPG Bulletin, 1996, 80(11): 1 801-1 819.

[58]Yang Xiaoping, Chen Lihua. Diagenesis and diagenetic facies studies for Yanchang Formation of the Triassic in Ordos Basin[J]. Petroleum Exploration and Development, 2001, 38(4): 38-40.[杨小萍,陈丽华.陕北斜坡延长统低渗储集层成岩相研究[J].石油勘探与开发,2001,38(4):38-40.]

[59]Mou D C, Brenner R L. Control of reservoir properties of tensleep sandstone by depositional and diagenetic facies: Lost Soldier Field, Wyoming[J]. Journal of Sedimentary Petrology, 1982, 52(2): 367-381.

[60]Lou Zhanghua, Zeng Yunfu. The origin of pore-water and the study of sandstone diagenetic facies of Fu-Yang Formation (K1q3+4, Northern-Eastern Songliao Basin, NE China (Cretaceoius))[J]. Acta Sedimentologica Sinica, 1995, 13(Suppl.): 63-70.[楼章华,曾允孚.扶杨油层孔隙水成因与砂岩成岩相研究[J].沉积学报,1995,13(增刊):63-70.]

[61]Zhong Guangfa, Wu Ningfen. Diagenetic lithofacies analysis: A whole new approach to studying diagenetic heterogeneity[J]. Petroleum Exploration and Development, 1997, 24(5): 62-66.[钟广法,邬宁芬.成岩岩相分析:一种全新的成岩非均质性研究方法[J].石油勘探与开发,1997,24(5):62-66.]

[62]Mathisen M E. Controls of quartzarenite diagenesis, Simpson Group, Oklahoma: Implications for reservoir quality prediction[C]∥Johnson K S, ed. Simpson and Viola Groups in the Southern Midcontinent. Oklahoma: Geological Survey Circular, 1997.

[63]Zhang Xiangxiang, Zou Caineng, Zhu Rukai, et al. Reservoir diagenetic facies of the Upper Triassic Xujiahe Formation in the central Sichuan Basin[J]. Acta Petrolei Sinica, 2011, 32(2): 257-264.[张响响,邹才能,朱如凯,等.川中地区上三叠统须家河组储层成岩相[J].石油学报,2011,32(2):257-264.]

[64]Liu Baojun. Some problems on the study of sedimentary diagenesis[J]. Acta Sedimentologica Sinica, 2009, 27(5): 787-791.[刘宝珺.沉积成岩作用研究的若干问题[J].沉积学报,2009,27(5):787-791.]

[65]Li Zhong, Liu Jiaqing. Key problems and research trend of diagenetic geodynamic mechanism and spatio-temporal distribution in sedimentary basins[J]. Acta Sedimentologica Sinica, 2009, 27(5): 837-844.[李忠,刘嘉庆.沉积盆地成岩作用的动力机制与时空分布研究若干问题及趋向[J].沉积学报,2009,27(5):837-844.]

[66]Wolf K H, Chilingar G V. Diagenesis IV[M]. Amsterdam: Elsevier, 1994.

[67]Burley S D, Worden R H. Sandstone Diagenesis: Recent and Ancient[M].Oxford: Blackwell Publishing, 2003.

[68]Davis G R, Smith Jr L B. Structurally controlled hydrothermal dolomite reservoir facies: An overview[J]. AAPG Bulletin, 2006, 90(11): 1 641-1 490.

[69]Zhang Jinliang, Shen Feng. Diagenesis and reservoir properties of Damoguaihe Formation, Upper Jurassic, Wurxun Depression, Hailar Basin[J]. Petroleum Exploration and Development, 1990, 5: 75-86.[张金亮,沈凤.乌尔逊凹陷大磨拐河组成岩作用及储层特征[J]. 石油勘探与开发,1990,5:75-86.]

[70]Zhang Jinliang, Si Xueqiang, Liang Jie, et al. Diagenesis of lacustrine deltaic sandstones and its impact on reservoir quality[J]. Acta Sedimentologica Sinica, 2004, 22(2): 225-233.[张金亮,司学强,梁杰,等.陕甘宁盆地庆阳地区长8油层砂岩成岩作用及其对储层性质的影响[J].沉积学报,2004,22(2):225-233.]

[71]Zhang Jinliang, Liu Baojun, Mao Fengming, et al. Clastic diagenesis and reservoir characteristics of Funing Formation in north slope of Gaoyou Depression in Subei Basin[J]. Acta Petrolei Sinica, 2003, 24(2): 43-49.[张金亮,刘宝珺,毛凤鸣,等.苏北盆地高邮凹陷北斜坡阜宁组成岩作用及储层特征[J].石油学报,2003,24(2):43-49.]

[72]Zhang J, Qin L, Zhang Z. Depositional facies, diagenesis and their impact on the reservoir quality of Silurian sandstones from Tazhong area in central Tarim Basin, western China[J]. Journal of Asian Earth Sciences, 2008, 33: 42-60.

[73]Zhang P H, Zhang J L, Ren W W, et al. Identification of waterflooded zones and the impact of waterflooding on reservoir properties of the Funing Formation in the Subei Basin, China[J]. Journal of Zhejiang University (Science A), 2013, 14(2):147-154.

[74]Hu Zuowei, Li Yun, Huang Sijing, et al. Reviews of the destruction and preservation of primary porosity in the sandstone reservoirs[J]. Advances in Earth Science, 2012, 27(1): 14-25.[胡作维,李云,黄思静,等.砂岩储层中原生孔隙的破坏与保存机制研究进展[J].地球科学进展,2012,27(1):14-25.]

[75]Stroker T M, Harris N B, Elliott W C, et al. Diagenesis of a tight gas and reservoir: Upper Cretaceous Mesaverde Group, Piceance Basin, Colorado[J]. Marine and Petroleum Geology, 2013, 40:48-68.

[76]Li Zhong, Han Denglin, Shou Jianfeng. Diagenesis systems and their spatio-temporal attributes in sedimentary basins[J]. Acta Petrologica Sinica, 2006, 22(8): 2 151-2 164.[李忠,韩登林,寿建峰.沉积盆地成岩作用系统及其时空属性[J].岩石学报,2006,22(8):2 151-2 164.]

[77]Dai Jinyou, Zhang Yiwei, Xiong Qihua, et al. Effects of diagenesis on reservoir property and auality, a case study of the Cainan Oilfield in east of Zhun Ga’er Basin[J]. Petroleum Exploration and Development, 2003, 30(4): 54-55.[代金友,张一伟,熊琦华,等.成岩作用对储集层物性贡献比率研究[J].石油勘探与开发,2003,30(4):54-55.]

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