吉林大学学报(地球科学版) ›› 2021, Vol. 51 ›› Issue (1): 65-80.doi: 10.13278/j.cnki.jjuese.20190023
• 地质与资源 • 上一篇
张丹凤1, 方石1,2,3,4, 邱善坤5
Zhang Danfeng1, Fang Shi1,2,3,4, Qiu Shankun5
摘要: 断层封启性在油气运移和成藏中至关重要。断层封启性是指断层上、下两盘之间岩性和物理性质差异引起的排替压力差,这种压力差控制流体在断层上、下盘之间的通过能力。断层封启性从运移方向上分为垂向封启和侧向封启,从隔离带性质上分为断层面封启和岩性封启。封启性的控制因素有并置作用、碎裂作用、胶结作用、涂抹充填作用以及沥青质沉淀等。其研究方法有Allan图法、断层面压力法、泥岩涂抹法、声波时差法、地震速度谱识别法、逻辑信息法、非线性映射分析法、模糊数学法和连通性概率法等。目前的研究方法均为一定角度下手段单一的定量或半定量分析,因此断层封启性研究方法的突破方向将是在不同角度下的综合定量分析。
中图分类号:
[1] 方圆,张万益,曹佳文,等.我国能源资源现状与发展趋势[J].矿产保护与利用,2018(4):34-42,47. Fang Yuan, Zhang Wanyi, Cao Jiawen, et al. Analysis on the Current Situation and Development Trend of Energy Resources in China[J]. Conservation and Utilization of Mineral Resources,2018(4):34-42,47. [2] 贾承造,庞雄奇,姜福杰.中国油气资源研究现状与发展方向[J].石油科学通报,2016,1(1):2-23. Jia Chengzao, Pang Xiongqi, Jiang Fujie. Research Status and Development Directions of Hydrocarbon Resources in China[J]. Petroleum Science Bulletin,2016,1(1):2-23. [3] 齐晓悦."一带一路"下我国能源产业发展现状分析[J].中国商论,2018,86(14):161-163. Qi Xiaoyue. Analysis of the Development Status of China's Energy Industry Under the Belt and Road[J]. China Journal of Commerce,2018,86(14):161-163. [4] Knipe R J. Faulting Processes and Fault Seal[C]//Larsen R M. Structural and Tectonic Modelling and Its Applicationto Petroleum Geology. Stavanger:Norwegian Petroleum Society,1992:325-342. [5] Bouvier J D, Kaars-Sijpesteijn C H, Kluesner D F,et al. Three-Dimensional Seismic Interpretation and Fault Sealing Investigation,Nun River Field,Nigeria[J]. AAPG Bulletin,1989,73(11):1397-1414. [6] Harding T P. Structural Interpretation of Hydrocarbon Traps Sealed by Basement Normal Block Faults at Stable Flant of Foredeep Basins and at Rift Basins[J]. AAPG Bulletin,1989,73(7):812-840. [7] Berg R R, Avery A H. Sealing Properties of Tertiary Growth Faults,Texas Gulf Coast[J].AAPG Bulletin,1995,79(3):375-393. [8] 赵密福.断层封闭性研究现状[J].新疆石油地质,2004,25(3):333-336. Zhao Mifu. A Review on Fault Seal Study[J]. Xinjiang Petroleum Geology,2004,25(3):333-336. [9] Hubber M K,Rubey W W.Role of Pore Fluid Pressures in the Mechanics of Overthrust Faulting[J].Geological Society of America Bulletin,1959,70(3):115-205. [10] Perkins H. Fault Closure Type Fields, Southeast Louisiana[J]. Gulf Coast Association of Geological Societies Transactions,1961,11:177-196. [11] Smith D A.Theoretical Consideration of Sealing and Non-Sealing Faults[J].AAPG Bulletin,1966,50(5):363-374. [12] Smith D A. Sealing and Nonsealing Faults in the Louisiana Gulf Coast Salt Basin[J]. AAPG,1980,64(2):145-172. [13] Engelde J T.Cataclasis and the Generation of Fault Gouge[J].Geological Society of America Bulletin,1974,85(3):1515-1522. [14] Weber K J, Mandl G, Pilaar W F, et al. The Role of Faults in Hydrocarbon Migration and Trapping in Nigerian Growth Fault Structures[C]//Society of Petroleum Engineers 10th Annual Offshore Technology Conference Proceedings. Houston,Texas:Offshore Technology Conference,1978:2643-2653. [15] Jev B I. Akaso Field, Nigeria:Use of Integrated 3-D Seismic, Fault Slicing, Clay Smearing, and RFT Pressure Data on Fault Trapping and Dynamic Leakage[J]. AAPG Bulletin, 1993,77(2):1389-1404. [16] Downey M W. Evaluating Seals for Hydrocarbon Accumulations[J]. AAPG,1984,68(11):1752-1763. [17] Watts N L. Theoretical Aspects of Cap-Rock and Fault Seals for Single-and Two-Phase Hydrocarbon Columns[J]. Marine and Petroleum Geology,1987,4(4):274-307. [18] Kaufman R L, Ahmed A S, Hempkins W B. New Technique for the Analysis of Commingled Oils and Its Application to Production Allocation Calculations[C]//Proceedings of the Sixteenth Annual Convention of the Indonesian Petroleum Association. Jakarta:Indonesian Petroleum Association, 1987:247-268. [19] Allan U S. Model for Hydrocarbon Migration and Entrapment Within Faulted Structures[J]. AAPG Bulletin,1989,73(7):803-811. [20] Lindsay N G, Murphy F C, Walsh J J, et al.Outcrop Studies of Shale Smears on Fault Surfaces[J]. Special Publication International Association of Sedimentologist,1993,15:113-123. [21] Fulljames J R.Fault Seal Processes:Systematic Analysis of Fault Seals Over Geological and Production Time Scales[J]. Norwegian Petroleum Society Special,1997,7(7):51-59. [22] Lehner F K,Pilaar W F. The Emplacement of Clay Smears in Synse Dimentary Normal Faults:Infernces from Field Observations Near Frechen,Germany[J]. Norwegian Petroleum Society Publications,1997,7:39-50. [23] Yielding G.Quantitative Fault Seal Prediction[J]. AAPG Bulletin,1997,81(6):897-917. [24] Jones G, Fisher Q J, Knipe R J, et al. Faulting,Fault Sealing and Fluid Flow in Hydrocarbon Reservoirs[M]. London:Published by the Geological Society, 1998:1299. [25] Knipe R J. Juxtaposition and Seal Diagrams to Help Analyze Fault Seals in Hydrocarbon Reservoirs[J]. AAPG Bulletin,1997,81(2):187-195. [26] Childs C, Manzocchi T, John J W. A Geometric Model of Zone and Fault Rock Thickness Variations[J]. Journal of Structural Geology,2009,31(2):117-127. [27] Julian S, Laurent L, Andrew S R, et al.Coupled Stratigraphic and Fault Seal Modelling Used to Describe Trap Integrity in the Frontier Bight Basin, Australia[J]. Marine and Petroleum Geology, 201786:474-485. [28] 陈发景.盆地构造分析在我国油气普查和勘探中的作用[J].石油与天然气地质,1989,10(3):247-255. Chen Fajing. The Role of Basin Structural Analysis in Oil and Gas Prospecting and Exploration in China[J]. Oil & Gas Geology,1989,10(3):247-255. [29] 赵鹏大,卢国雄,周宏坤.逻辑信息法中查明全部最小区分标志组合的新途径[J].桂林冶金地质学院学报,1985,5(4):391-399. Zhao Pengda,Lu Guoxiong,Zhou Hongkun.The New Way to Discover All the Minimum Different-Marker Combinations in the Logical Information Method[J]. Journal of Guilin College of Geology,1985,5(4):391-399. [30] 曹瑞成,陈章明.早期探区断层封闭评价方法[J].石油学报,1992,13(1):13-22. Cao Ruicheng, Chen Zhangming. A Method of Estimating of Property Sealing of a Fault in a Non-mature Region[J]. Acta Petrolei Sinica,1992,13(1):13-22. [31] 吴元燕,路波,付建林,等.利用逻辑信息法研究断层封闭性[J].古地理学报,2003,5(1):103-109. Wu Yuanyan, Lu Bo,Fu Jianlin, et al. Evaluation of Fault Sealing with Logic-Information Method[J]. Journal of Palaeogeography,2003,5(1):103-109. [32] 邓俊国,刘泽容,杨少春.断块油藏中的断层封闭性模糊综合评判[J].地质论评,1993,22(增刊1):47-54. Deng Junguo, Liu Zerong, Yang Shaochun. Fuzzy Comprehensive Judgement on the Sealing of a Fault in a Fault Block Reservoir[J]. Geological Review,1993,22(Sup.1):47-54. [33] Zadeh L A. Fuzzy Sets[J]. Information and Control,1965,8:338-353. [34] 周新桂,陈永峤,操成杰,等.笔架岭油田断层封闭性定量研究[J].江汉石油学院学报,2003,25(2):32-34,6. Zhou Xingui, Chen Yongqiao, Cao Chengjie,et al. Quantitative Study of Fault Sealing Performance in Bijialing Oilfield[J]. Journal of Jianghan Petroleum Institute, 2003,25(2):32-34,6. [35] Dong Dawei. Improvements to the Fuzzy Mathematics Comprehensive Quantitative Method for Evaluating Fault Sealing[J]. Petroleum Science,2017,14(2):276-285. [36] 吕延防,陈章明,万龙贵.利用声波时差计算盖岩排替压力[J].石油勘探与开发,1994,21(2):43-47,121. Lü Yanfang, Chen Zhangming, Wan Longgui. An Estimation of the Displacement Pressure of the Cap Rocks by Means of Acousyic Internal Transit Time in a Distract East of Daqing Placanticline,Songliao Basin[J]. Petroleum Exploration and Development,1994,21(2):43-47,121. [37] 付广,任述民,赵荣.利用声波时差资料研究断层垂向封闭性的方法[J].石油地球物理勘探,1997,32(5):724-730. Fu Guang, Ren Shumin, Zhao Rong. A Method for Analysing Vertical Sealing of Fault by Acoustilog Data[J]. Oil Geophysical Prospecting,1997,32(5):724-730. [38] 姜振学,傅广,庞雄奇,等.利用地震层速度计算排替压力的方法探讨[J].石油地球物理勘探,1995,30(2):284-291. Jiang Zhenxue, Fu Guang, Pang Xiongqi, et al. A Method for Deriving Displacement Pressure from Seismic Interval Velocity[J]. Oil Geophysical Prospecting,1995,30(2):284-291. [39] 付广,薛永超, 杨勉.利用地震资料判断断层封闭性的方法探讨[J].石油物探,2000,39(1):70-76. Fu Guang, Xue Yongchao, Yang Mian. Methodology of Judging Fault Sealing Property from Seismic Data[J]. Geophysical Prospecting for Petroleum, 2000,39(1):70-76. [40] 马洪,柳广弟,朱立林,等.地震资料在断层封闭性评价中的应用与探讨[J].勘探地球物理进展,2008,31(1):48-52,5. Ma Hong, Liu Guangdi, Zhu Lilin, et al. Evaluation of Fault Sealing from Seismic Data and Its Application[J]. Progress in Exploration Geophysics,2008,31(1):48-52,5. [41] 吕延防,陈章明,陈发景.非线性映射分析判断断层封闭性[J].石油学报,1995,16(2):36-41. Lü Yanfang, Chen Zhangming, Chen Fajing. Evaluation of Sealing Ability of Faults Using Nonlinear Mapping Analysis[J]. Acta Petrolei Sinica,1995,16(2):36-41. [42] Sammon J W.A Nonlinear Mapping for Data Structure Analysis[J]. IEEE Computer Soc,1969,18(5):401-409. [43] 吕延防,李国会,王跃文,等.断层封闭性的定量研究方法[J].石油学报,1996,17(3):39-43. Lü Yanfang, Li Guohui, Wang Yuewen, et al. Quantitative Analyses in Fault Sealing Properties[J]. Acta Petrolei Sinica,1996,17(3):39-43. [44] 付广.泥岩涂抹系数及其在断层侧向封闭性研究中的应用[J].石油勘探与开发,1996,23(6):38-41. Fu Guang. Mudstone Daubing Coefficient and Its Application in Studying the Lateral Sealing of Faults[J]. Petroleum Exploration and Development,1996,23(6):38-41. [45] 鲁兵,陈章明,关德范,等.断面活动特征及其对油气的封闭作用[J].石油学报,1996,17(3):33-37. Lu Bing, Chen Zhangming, Guan Defan, et al. The Activating Properties of Fault Planes and Functions of Sealing Oil-Gas Accumlation[J]. Acta Petrolei Sinica,1996,17(3):33-37. [46] 王志欣,信荃麟.关于地下断层封闭性的讨论:以东营凹陷为例[J].高校地质学报,1997,3(3):293-300. Wang Zhixin, Xin Quanlin. Discussion on the Sealing Property of Deeply Buried Faults[J]. Geological Journal of China Universities,1997,3(3):293-300. [47] Jaeger J C,Cook N G. Fundamentals of Rock Mechanics[M]. London:Chapman and Hall,1979:593. [48] 吕延防,沙子萱,付晓飞,等.断层垂向封闭性定量评价方法及其应用[J].石油学报,2007,28(5):34-38. Lü Yanfang, Sha Zixuan, Fu Xiaofei, et al. Quantitative Evaluation Method for Fault Vertical Sealing Ability and Its Application[J].Acta Petrolei Sinica,2007,28(5):34-38. [49] 沈传波,梅廉夫,刘立林,等.基于三维古构造应力场数值模拟的断层封闭性研究[J].石油实验地质,2004, 26(1):103-107. Shen Chuanbo, Mei Lianfu, Liu Lilin, et al. Study of Fault Sealing by the 3-D Paleo-Tectonic Numerical Simulation[J]. Petroleum Geology & Expeximent, 2004, 26(1):103-107. [50] 侯读杰,朱俊章, 唐友军,等.应用地球化学方法评价断层的封闭性[J].地球科学:中国地质大学学报, 2005,30(1):97-101. Hou Dujie, Zhu Junzhang, Tang Youjun, et al. Evaluating Fault Sealing Using Geochemical Techniques[J]. Earth Science:Journal of China University of Geosciences, 2005,30(1):97-101. [51] 王力,陈世加,丁玉盛,等.应用地球化学方法评价断层封闭性:以苏北盆地金湖凹陷坝田地区为例[J].新疆石油地质,2017,38(2):209-214. Wang Li, Chen Shijia, Ding Yusheng, et al. Using Geochemical Methods to Evaluate Fault Sealing:A Case Study from Batian Area in Jinhu Sag,Subei Basin[J]. Xinjiang Petroleum Geology, 2017,38(2):209-214. [52] 付广,梅丽.乌尔逊凹陷大一段垂直断裂缝垂向封闭性分析[J].大庆石油学院学报,2006,30(5):13-16. Fu Guang, Mei Li. Analysis of the Vertical Sealing of the Vertical Fault Fractures in Wuerxun Depression[J]. Journal of Daqing Petroleum Institute,2006,30(5):13-16. [53] 吕延防,黄劲松,付广,等.砂泥岩薄互层段中断层封闭性的定量研究[J]. 石油学报,2009,30(6):824-829. Lü Yanfang, Huang Jinsong, Fu Guang, et al. Quantitative Study on Fault Sealing Ability in Sandstone and Mudstone Thin Interbed[J]. Acta Petrolei Sinica,2009,30(6):824-829. [54] Zhang L K, Luo X R, Liao Q J, et al.Quantitative Evaluation of Synsedimentary Fault Opening and Sealing Properties Using Hydrocarbon Connection Probability Assessment[J]. AAPG Bulletin,2010,94(9):1379-1399. [55] 于水明.断层封闭性研究方法新进展[J].内江科技,2012(2):72,89. Yu Shuiming. New Progress in Fault Sealing Methods[J]. Neijiang Keji,2012(2):72,89. [56] 宋来明,贾达吉,徐强,等.断层封闭性研究进展[J].煤田地质与勘探,2006,34(5):13-16. Song Laiming, Jia Daji, Xu Qiang, et al. Advance in Fault Sealing Study[J]. Coal Geology & Exploration, 2006,34(5):13-16. [57] 吕延防,付广.断层封闭性研究[M].北京:石油工业出版社,2002. Lü Yanfang, Fu Guang. Study on Fault Sealing[M].Beijing:Petroleum Industry Press,2002. [58] 付晓飞,李文龙,吕延防,等. 断层侧向封闭性及对断圈油水关系的控制[J].地质评论,2011,57(3):387-397. Fu Xiaofei, Li Wenlong, Lü Yanfang, et al. Quantitative Estimation of Lateral Fault Seal and Application in Hydrocarbon Exploration[J]. Geological Review,2011,57(3):387-397. [59] 吕延防,马福建.断层封闭性影响因素及类型划分[J].吉林大学学报(地球科学版),2003,33(2):163-166. Lü Yanfang, Ma Fujian. Controlling Factors and Classification of Fault Seal[J]. Journal of Jinlin University(Earth Scince Edition), 2003,33(2):163-166. [60] 徐海霞,赵万优,王长生,等.断层封闭性演化史研究方法及应用[J].断块油气田,2008,15(3):40-42. Xu Haixia, Zhao Wanyou, Wang Changsheng, et al. A Method for Study on Evolution History of Fault Sealing Property and Application[J]. Fault-Block Oil & Gas Field,2008,15(3):40-42. [61] 闻竹,付晓飞,吕延防.断层封闭性评价及断圈含油气预测[J].中南大学学报(自然科学版),2016,47(4):1209-1218. Wen Zhu, Fu Xiaofei, Lü Yanfang. Evaluation of Fault Seal and Hydrocarbon Potential Prediction of Fault Traps[J]. Journal of Central South University(Science and Technology), 2016,47(4):1209-1218. [62] Sibson R H.Fault Rocks and Fault Mechanisms[J].Journal of the Geological Society,1977,133:199-213. [63] Aydin A, Johnson A. Development of Faults as Zones of Deformation Bands and as Slip Surfaces in Sandstone[J]. Pure and Applied Geophiscs,1978,116:931-942. [64] Antonellini M, Aydin A. Effect of Faulting on Fluid Flow in Porous Sandstones:Petrophysical Properties[J]. AAPG,1994,78:355-377. [65] Gabrielsen R H, Aarland R K, Alsakere. Identification and Spatial Distribution of Fractures in Porous Siliciclastic Sediments[C]//Coward M P.Structural Geology in Reservoir Characterization.London:Geological Society of London Special Publication,1998:49-64. [66] Ottesen-Ellevset S, Knipe R J, Svavao, et al. Fault Controlled Communication in the Sleipner Field,Norwegian Continental Shelf;Detailed,Quantitative Input for Reservoir Simulation and Well Planning[C]//Jones G, Fisher Q J, Knipe R J. Faulting,Fault Sealing and Fluid Flow in Hydrocarbon Reservoir. London:Geology Society of London Special Publication,1998:283-297. [67] Mozley P S, Goodwin L B. Patterns of Cementation Along a Cenozoic Normal Fault:A Record of Paleoflow Orientations[J]. Geology,1995,23:539-542. [68] Hippler S J. Microstructures and Diagenesis in North Sea Fault Zones:Impalications for Fault-Seal Potential and Fault-Migration Rate[C]//Surdam R C.Seals,Traps,and the Petroleum System.Tulsa:AAPG Memoir,1997:103-113. [69] Leveille G P, Knipe R J, More C, et al. Compartmentalization of Rotliegendes Gas Reservoirs by Sealing Faults,Jupiter Area,Southern North Sea[C]//Ziegler K, Turner P, Daines S R. Petroleum Geology of the Southern North Sea:Future Potential.London:Geological Society Special Publication,1997:87-104. [70] Sverdrup E, Bjorlykke K. Fault Properties and the Development of Cemented Fault Zones in Sedimentary Basins:Field Examples and Predictive Methods[C]//Moller-pedersen P, Koestler A G. Hydrocarbon Seals:Importance for Exploration and Prodution.Amsterdam:Norwegian Petroleum Society,1998:91-106. [71] Fisher Q J, Knipe R J. Fault Sealing Processes in Siliciclastic Sediments[C]//Jones G, Fisher Q J, Knipe R J. Faulting, Fault Sealing and Fluid Flow in Hydrocarbon Reservoir. London:Geology Society of London Special Publication,1998:117-134. [72] Hadizadeh J, Foit F F. Feasibility of Estimating Cementation Rate in a Brittle Fault Zone Using Some Precepts of Sedimentary Diagenesis[J]. Journal of Structural Geology,2000,22:401-409. [73] 付晓飞,付广,赵平伟.断层封闭机理及主要影响因素研究[J].天然气地球科学,1999,10(3/4):54-62. Fu Xiaofei, Fu Guang, Zhao Pingwei. Study on Fault Sealing Mechanism and Its Main Influencing Factors[J]. Natural Gas Geoscience, 1999,10(3/4):54-62. [74] Gibson R G. Fault-Zone Seals in Siliciclastic Strata of Columbus Basin, Offshore Trinidad[J]. AAPG Bulltin,1994,78(9):1372-1385. [75] Doughty P T. Clay Smear Seals and Fault Sealing Potential of an Exhumed Growth Fault,Rio Grande Rift, New Mexico[J]. AAPG Bulletin,2003, 3:427-444. [76] 李储华,刘启东,李勇,等.高邮凹陷"双因素互补法"断层封闭性研究及应用[J].复杂油气藏,2012,5(2):1-4. Li Chuhua, Liu Qidong, Li Yong, et al. Research and Application of Fault Sealing Properties by the Double-Factor Complementary Method in Gaoyou Sag[J]. Complex Hydrocarbon Reservoirs, 2012,5(2):1-4. [77] 张吉,张烈辉,杨辉廷,等.断层封闭机理及其封闭性识别方法[J].河南石油,2003,17(3):7-9,18-75. Zhang Ji, Zhang Liehui, Yang Huiting, et al. Identification Methods of Sealing Mechanism and Sealing Ability of Faults[J]. Henan Petroleum,2003,17(3):7-9,18-75. [78] Knott S D. Fault Seal Analysis in the North[J]. AAPG,1993,77(5):778-792. [79] 邓婷婷,查明,高长海.廊固凹陷旧州断层封闭性研究[J].石油地质与工程,2013,27(4):9-12,145. Deng Tingting, Zha Ming, Gao Changhai.Study on Sealing Property of Jiuzhou Fault in Langgu Depression[J]. Petroleum Geology and Engineering, 2013,27(4):9-12,145. [80] 刘文碧,周文,李德发.川西拗陷上三叠统断层封闭性研究[J].西南石油学院学报,1996,18(3):12-19. Liu Wenbi, Zhou Wen, Li Defa. Study of Fault Confining of the Early Triassic Period in West Sichuan Depression Areas[J]. Journal of Southwestern Petroleum Institute,1996,18(3):12-19. [81] 孟祥宏,王多云,李树同,等.断层封闭性研究[J].复杂油气藏,2011,4(1):1-4,13. Meng Xianghong, Wang Duoyun, Li Shutong, et al. An Overview of Research on Fault Seal Property[J]. Complex Hydrocarbon Reservoirs,2011,4(1):1-4,13. [82] Schmatza J, Vrolijk P J, Urai J L. Clay Smear in Normal Fault Zones:The Effect of Multilayers and Clay Cementationin Water-Saturated Model Experiments[J]. Journal of Structural Geology,2010,32(11):1834-1849. [83] Childs C, Walsh J J, Watterson J. Complexity in Fault Zone Structure and Implications for Fault Seal Prediction[C]//Moller-pedersen P,Koestler A G. Hydrocarbon Seals:Importance for Exploration and Prodution.Amsterdam:Norwegian Petroleum Society,1998:61-72. [84] 金崇泰,付晓飞,柳少波.断层侧向封堵性评价方法综述[J].断块油气田,2012,19(3):297-301. Jin Chongtai, Fu Xiaofei, Liu Shaobo. Review on Evaluation Methods of Lateral Sealing of Fault[J]. Fault-Block Oil &Gas Field, 2012,19(3):297-301. [85] Shah P M. Use of Wavefront Curvature to Relate Seismic Date with Subsurface Parameters[J]. Geophysics, 1973,38(5):812-825. [86] 王东晔.断层封闭性研究展望[J].工业技术,2013,1:99. Wang Dongye. Prospects of Research on Fault Closure Property[J]. Industrial Technology, 2013,1:99. [87] 张立宽,罗晓容,廖前进,等.断层连通概率法定量评价断层的启闭性[J].石油与天然气质,2007,28(2):181-190. Zhang Likuan, Luo Xiaorong, Liao Qianjin, et al. Quantitative Evaluation of Fault Sealing Property with Fault Connectivity Probabilistic Method[J]. Oil & Gas Geology, 2007,28(2):181-190. [88] Pei Y W, Paton D A,Knipe R J, et al. A Review of Fault Sealing Behaviour and Its Evaluation in Siliciclastic Rocks[J]. Earth Science Reviews,2015,150:121-138. [89] 付晓飞,方德庆,吕延防,等.从断裂带内部结构出发评价断层垂向封闭性的方法[J].地球科学:中国地质大学学报,2005,30(3):328-336. Fu Xiaofei, Fang Deqing, Lü Yanfang, et al. Method of Evaluating Vertical Sealing of Faults in Terms of the Internal Structure of Fault Zones[J]. Earth Science:Journal of China University of Geosciences,2005,30(3):328-336. [90] Fachri M, Tveranger J, Braathen A, et al. Sensitivity of Fluid Flow to Deformation-Band Damage Zone Heterogeneities:A Study Using Fault Facies and Truncated Gaussian Simulation[J]. Journal of Structural Geology, 2013,52:60-79. [91] Fisher Q J, Jolley S J. Treatment of Faults in Production Simulation Models[J]. Geological Society, London, Special Publications, 2007,292:219-233. [92] Manzocchi T, Walsh J J, Nell P, et al. Fault Transmissibility Multipliers for Flow Simulation Models[J]. Petroleum Geoscience, 1999,5(1):53-63. [93] Manzocchi T, Heath A E, Walsh J J, et al. The Representation of Two Phase Fault-Rock Properties in Flow Simulation Models[J]. Petroleum Geoscience, 2002,8(2):119-132. [94] Ottesen E S, Knipe R J, Svava O T, et al. Fault Controlled Communication in the Sleipner Vest Field, Norwegian Continental Shelf; Detailed,Quantitative Input for Reservoir Simulation and Well Planning[J]. Geological Society, London, Special Publications, 1998,147(1):283-297. [95] Zijlstra E B, Reemst P H M, Fisher Q J. Incorporation of Fault Properties into Production Simulation Models of Permian Reservoirs from the Southern North Sea[J]. Geological Society, London, Speccial Publications, 2007,292:295-308. [96] 付广,李凤君,白明轩.断层侧向封闭性与垂向封闭性关系分析[J].大庆石油地质与开发,1998,17(2):6-9,52. Fu Guang, Li Fengjun, Bai Mingxuan. An Analysis on Relationship Between Lateral & Vertical Sealing of Faults[J]. Petroleum Geology & Oilfield Development in Daqing, 1998,17(2):6-9,52. |
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