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吐哈盆地胜北洼陷中生界岩性油气藏类型、分布及预测
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摘要
胜北洼陷位于吐哈盆地台北凹陷西部,经多年的油气勘探,已发现了葡北、胜北、红连、火北等中新生界构造油气田。但与胜北洼陷石油地质储量相比,这些构造油气田的探明地质储量不足总储量的20%。推测丰富的剩余油气资源蕴藏在岩性等隐蔽性油气藏中。
     本文以胜北洼陷层序和沉积体系分析为基础,首次综合地质、地震、测井资料,系统分析了胜北洼陷岩性油气藏的类型及其分布规律,提出了一套适用于胜北洼陷岩性油气藏勘探的技术方法体系,并进行了综合评价和有利勘探方向分析。
     通过本论文研究,取得了以下主要成果和认识:
     1.胜北洼陷中生界具有形成岩性油气藏的有利沉积条件。中生界在洼陷北部陡坡带发育冲积扇、扇三角洲沉积体系,在南部缓坡带发育河流三角洲沉积体系,这些沉积体系在斜坡部位易形成砂体尖灭,是形成岩性油气藏的基础。
     2.胜北洼陷发育有斜坡带前缘砂上超型岩性油气藏、三角洲前缘砂后期掀斜型岩性油气藏和三角洲前缘砂顶超型岩性油气藏等类型丰富的岩性油气藏。
     3.提出了运用地震信息多参数综合预测的技术方法识别与评价岩性油气藏。
     4.阐明了各类岩性油气藏成藏的主控因素及其分布规律。斜坡带前缘砂上倾尖灭型岩性油气藏主要发育于胜北洼陷南缘火焰山构造带的北斜坡,并沿火焰山构造带呈条带状分布;前缘砂后期掀斜型岩性油气藏主要发育于胜北洼陷西缘葡北构造带的东斜坡,此类岩性油气藏在平面上沿葡北构造带走向方向呈显带状分布的特征;斜坡带前缘砂顶超型岩性油气藏主要发育于洼陷北部胜北构造带的斜坡部位。
     5.指出胜北洼陷岩性油气藏研究和勘探存在五个方面的特殊性。
     6.指出了三个有利勘探方向:火焰山构造北坡、胜北构造南翼、葡北构造东斜坡。
Shengbei sag is located in the west of Taibei depression in Tuha basin. According to many years' exporation, it is Pubei gas-oil field, Shengbei gas-oil field, Honglian gas-oil field, Huobe gas-oil field which all belong to structural reservoirs that have been discovered. But proved reservoir of these gas-oil fields is less than 20% of total source reservoir.Based on the comprehensive study of sequence stratigraphy and sedimentary system, first through the comprehensive analysis of geology, logging and seismic and so on, it is found that residual abundant gas-oil resource is rich in lithological hydrocarbon reservoir. And types and distribution of Shengbei lithological hydrocarbon reservoir have been analysed, and technology and method of lithological hydrocarbon reservoir exploration have been put forward. At last comprehensive evaluation was finished and favorable exploration direction has been pointed out.Major results include as the following:1. Mesozoic group in Shengbei sag has advantage factor of forming lithological hydrocarbon reservoir. Alluvial fan and fan delta developed in escarp region of the north of the sag, and river-delta farmed in ramp belt of the south. These sediment bodies are characterized by sandstone pinch out, which is the base of lithological hydrocarbon reservoir.2. lithological hydrocarbon reservoir types in Shengbei sag have slope belt frontal sandrock onlap type, delta frontal sandstone anaphase tilted type, and delta frontal sandstone offlap type.3. Method of identifying and valuating of lithological hydrocarbon reservoir is pointed out by multi-parameters of seismic.4. Primary controlling factors and distribution features of every lithological hydrocarbon reservoir type is put forward. Slope belt frontal sandrock onlap type lies in the north slope of Huoyanshan structure in Shengbei sag, which presents ribbon fabric. Delta frontal sandstone anaphase tilted type is in the east slope of Pubei structure belonged to the west of Shengbei sag. Delta frontal sandstone offlap type lies in the slope of Shengbei structure standing in the north of the sag.5. Five special aspects about explorating lithological hydrocarbon reservoir in Shengbei sag are pointed out.6. Three favorable exploration directions are predicted, which are the north slope of Huoyanshan structure, and the south slope of Shengbei structure, and the east slope of Pubei structure.
引文
[1] 沈守文,彭大钧.试论隐蔽油气藏的分类及勘探思路.石油学报.2000,21(1):16-22
    [2] 潘元林.中国隐蔽油气藏.北京:地质出版社,1998
    [3] 马振芳,陈志远.陕甘宁盆地中部隐蔽性气藏成藏条件及勘探思路.低渗透油田,1996,1(2):6-9
    [4] 中国石油地质志-江汉盆地,北京:石油工业出版社,1990
    [5] 胡见义.非构造油气藏.北京:石油工业出版社,1986
    [6] 朱夏.对隐蔽油气藏圈闭的浅见.中国隐蔽油气藏勘探论文集,黑龙江科学技术出版社,1984
    [7] 蒲仁海,郑显华.论非构造油气藏综合勘探方法.西北大学学报:自然版,1998,28(6):522-526
    [8] 司马立强.测井地震结合储层横向预测技术及在川东地区的应用,天然气工业,1999,5
    [9] 曾联波,田崇鲁.构造应力场在隐蔽油气藏勘探中的应用.现代地质.1998,12(3):401-405
    [10] R.A.纳尔逊.天然裂缝性储层地质分析.石油工业出版社,1991
    [11] 熊继辉,贾承造.层序地层学及其在塔里木盆地石炭系研究中的应用.北京:石油工业出版社,1995
    [12] 肖乾华,李宏伟.层序地层学原理与方法在隐蔽油藏勘探中的应用.断块油气田.1998,5(2):6-9
    [13] Hansen W.H. 层序地层学中的基本概念和变化:一种不同观点,海洋地质译丛.1995,4:37-46
    [14] Aitken John F, Flint Stephen S., High-frequency sequences and the nature of incised-valley fills in fluvial systems of the Breathitt Group (Pennsylvanian), Appalachian foreland basin, Eastern Kentucky. In: Incised-valley systems;origin and sedimentary sequences (ed. by Dalrymple Robert W., Boyd Ron, Zaitlin Brian A). Special Publication of SEPM. Tulsa, United States. 1994, 51: 353-368
    [15] Armentrout, J.M. & B.F.Perkins. Sequence Stratigraphy as an Exploration Tool-Concepts and Practices in the Gulf Coast, 11th Annual Conference, Gulf Coast Section, Society of Economic Paleontologists and Mineralogists. 1991, June 2-5, Texas
    [16] 蒋鸿亮,蔡希源.岩性圈闭识别方法.大庆石油地质与开发.1997,16(1):5-8
    [17] 冯敬英.综合利用岩芯、测井、地震资料预测孔隙度,成都理工学院学报,1997,3
    [18] 陈崇河,马晓芬,吴胜和.用地震资料进行早期储层预测的新思路,石油学报,1998,2
    [19] 赵力民,邹伟宏.利用RW反演方法进行地层岩性油藏研究.石油学报.2000,21(2):62-65
    [20] Oluck S., 石景.通过叠后地震数据的3D地层反演进行高分辨率波阻抗薄层解释.石油学报.2000,21(2):62-65
    [21] Anderson J.K., Limitations of seismic inversion for porosity and pore fluid: Lessons from chalk reservoir characterization exploration: Annual Meeting Abstracts, Society of Exploration Geophysicists, 1996, 309-312
    [22] Eide A.L., Ursin B.and More H., Stochastic simulation of porosity and acoustic impedance conditioned to seismic data and well data: Annual Meeting Abstracts, Society of Exploration Geophysicists, 1997, 1614-1617
    [23] 赵德斌,王云专.利有地震动力学参数预测地层岩性.大庆石油学院学报.1993,9-12
    [24] 牟永光.储层地球物理.北京:石油工业出版社,1996
    [25] Chen Q.Sideny S. 著,张翠兰译.进行储层预测和监测的地震属性技术,山地地震勘探,1997:(1)
    [26] 陈遵德.储层地震属性优化方法.北京:石油工业出版社,1998
    [27] 刘企英.利用地震信息进行油气预测.北京:石油工业出版社,1994
    [28] Best A.I., McCann C., Seismic attenuation and pore-fluid viscosity in clay-rich reservoir sandstones: Geophysics, 1995, 60(5): 1386-1397
    [29] Chen Q.Sidney S., Seismic attribute technology for reservoir forecasting and monitoring: The Leading Edge, 1997, 16(05): 445-456
    [30] 叶德胜.塔里木盆地北部寒武-奥陶系碳酸盐岩储层特征及油气前景,四川大学出版社,2000
    [31] Cant D J. Diagenetic traps in sandstone. AAPG Bulletin, 1986, 70(2): 155-160
    [32] Schmidt V., McDonald D A. The role of secondary porosity in the course of sandstone diagenesis. In: 124 A spects of diagenesis: Special Publication, 1979, 26: 175-208
    [33] Schmidt V. et al. Development of diagenetie seal in carbonate and sandstone. AAPG Bulletin, 1993, 67: 545-546
    [34] Barker C.Calculated Volume and Pressure Changes During the Thermal Cracking of Oil to Gas in Reservoirs. AAPG Bulletin, 1990b, 74(8): 1254-1261
    [35] Bradley J.S.A bnormal Formation Pressure. AAPG Bulletin, 1975, 59: 957-973
    [36] Breg R.R.Capillary Pressures in Stratigraphic Trap. AAPG, 1975, 59(6)
    [37] Barker C.Development of Abnormal and Subnormal Pressures in Reservoirs Containing bacterially Generated Gas. AAPG Bulletin, 1987a, 71(11): 1404-1413
    [38] 王天琦,赵世华,杨占龙等.江汉盆地潜江凹陷蚌湖向斜储层预测与含油气性评价.1999
    [39] 杨占龙,郭精义,王天琦等.江汉新农高分辫率三维地震区隐蔽油气藏预测.2003
    [40] 王天琦,徐旺林,杨占龙等.江汉盆地广华西三维区块储层预测与含油气性评价.2000
    [41] 林雄,田景春.非构造油气藏国内外研究现状及发展方向.岩相古地理.1998,18(4):63-70
    [42] Shanley, K. W. 陆相层序地层学的展望,地质科学译丛.11,1994,4:40-48
    [43] Vail P.R.等著,张宏逵等译,应用层序地层学,山东:石油大学出版社,1990
    [44] Allen G.P., Posamentier H.W.Soquenee stratigraphy and facies model of an incised valley-fill: the Gironde Estuary, France. J. Sediment. Petrology, 1993, 63: 378-391
    [45] 王典敷,汪仕忠.盐湖油田地质.北京:石油工业出版社,1998
    [46] 王成祥,贺振华.隐蔽圈闭的识别及可视化技术.物探化探计算技术.1996,18(2):97-107
    [47] 宋维琪,李培明.胜利油田钱官屯地区隐蔽油气藏的预测.石油地球物理勘探.1999,34(A00):59-64
    [48] Payton C.E., 牛毓荃,徐怀大等译.地震地层学,石油工业出版社,1980(1977)
    [49] 王天琦,施泽进.四川白马庙蓬莱镇气藏储层综合描述.成都理工学院学报.2002,10(5):40-49
    [50] 王天琦等.四川白马庙气田蓬莱镇气藏地震精细目标处理与储层预测.2001
    [51] 王天琦等.南阳油田下二门地区三维构造解释.2000
    [52] Landmark地震解释系统用户手册.Landmark公司.1999
    [53] Stratmagic地震相解释系统用户手册.Paradigam公司.2001
    [54] Ryde RT,杨勤勇.隐蔽地层圈闭的地震检测.石油物探译丛.1991(5):62-69
    [55] 杨飞,李志军.综合利用三维地震资料研究岩性圈闭.天然气工业.1999,19(6):25-29
    [56] 付瑾平.地震资料综合解释技术在油田勘探中的应用.石油地球物理勘探.1998.33(6):803-811
    [57] 向鼎璞,张小平.川中川南过渡带非背斜隐蔽油气藏的地震勘探.石油物探.1989,28(4):60-74
    [58] 周书欣,王建国.湖相碳酸盐岩的石油地质意义.石油实验地质.1993,15(4):361-369
    [59] 陈军强,李鑫.黄土塬弯线高分辨率地震勘探技术应用.长庆石油物探.1998,11(1):1-13
    [60] 谈大龙,张宏.G-LOG技术在泌阳凹陷资料处理中的应用.石油物探.1995,34(4):88-99
    [61] 邱容华.泌阳凹陷隐蔽油藏的地震勘探.石油地球物理勘探.1992,27(6):775-781
    [62] 张玉芬,刘春华.多参数约束反演及其应用.地球科学:中国地质大学学报.1997,22(2):219-222
    [63] 杨谦,李正文.多参数约束反演系统的原理和方法.成都理工学院.1996,23(2):93-100
    [64] 胡宗全,唐钢.波阻抗反演在气藏描述中的应用.成都理工学院学报.1999,26(4):423-426
    [65] 赵力民,郎晓玲.波阻抗反演方法在预测岩性油藏中的应用.石油地球物理勘探.1999,34(A00):39-44
    [66] 方勇,邓宏文,郝雪峰等.东营三角洲高频旋回划分与浊积砂体预测,物探与化探,2004,28(6):504-508
    [67] 邓宏文,王红亮等.河流相层序地层构成模式探讨,沉积学报,2004,22(3):373-379
    [68] 王红亮,邓宏文等.准噶尔盆地南缘层序地层特征与有利含气区带预测,石油实验地质,2000,22(4):125 中国地质大学(北京)博士学位论文 336-340
    [69] 邓宏文,王洪亮等.中国陆源碎屑盆地层序地层与储层展布,石油与天然气地质,1999,20(2):108-114
    [70] 邓宏文,李熙哲等.层序地层地层基准面的识别、对比技术及应用,石油与天然气地质,1996,17(3):177-184
    [71] 邓宏文,王红亮.沉积物体积分配原理-高分辨率层序地层学的理论基础,地学前缘,2000,7(4):305-313
    [72] 蒋振武,张克温.白音查干测井约束反演与储层预测.断块油气田.1996,3(2):19-22
    [73] 裘亦楠等.河道砂储层的小层对比问题.石油勘探与开发,1987(2)
    [74] 吴蕾,裘亦楠.碎屑岩储层概念模型的建立.石油勘探与开发,1991,20(3)
    [75] 陈遵德,朱广生.地震储层预测方法研究进展.地球物理进展,1997,14(4)
    [76] 李思田.含能源盆地沉积体系,北京:中国地质大学出版社,1996
    [77] 陈遵德等.孔隙度预测中的地震特征优化方法及应用.石油学报,1998
    [78] 孙树海,刘雪梅.用地震预测孔隙度的广义协克里格法.地球物理学报,1993,36(6)
    [79] 董恩清,高宏亮,李家金.波阻抗约束反演及储层物性参数计算方法,测井技术,1998,22(5):337-340
    [80] 马劲风等.波阻抗约束反演中的约束方法研究,石油物探,2000,39(2):52-63
    [81] 牛毓荃主编,石油物探新技术系列调研成果.北京:石油工业出版社,1994
    [82] 蒲勇,熊兴德,李正文,油气储层的地震响应及地震响应异常分析研究,矿物岩石,1998
    [83] 俞寿朋,高分辨率地震勘探,北京:石油工业出版社,1993
    [84] 周明鉴等译.沉积环境与相,科学出版社,1985(1983)
    [85] Avseth P.A., Mukerji T., Mavko, G, Veggeland T.Statistical discrimination of litho-facies from pre-stack seismic data constrained by well log rock physics: Application to a North Sea turbidites system: Annual Meeting Abstracts, Society of Exploration Geophysicists;1998, 890-893
    [86] Avseth P., Mavko G., Mukerji T., Tyssekvam J., Integrating seismic litho-facies prediction and depositional geometry analysis for reservoir delineation in a North Sea turbidites field: Annual Meeting Abstracts, Society of Exploration Geophysicists, 1999, 752-755
    [87] Bowen David W., Weimer Paul, Reservoir geology within a sequence stratigraphic framework: incised valley-fill sandstones of the Pennsylvanian Morrow Formation, southern Stateline Trend, Colorado and Kansas. AAPG Bulletin. 1997, 81(7): 1219
    [88] Brown R.L., Seifert, D., Velocity dispersion: A tool for characterizing reservoir rocks: Geophysics, 1997, 62(2): 477-486
    [89] Cooke D.Techniques for improving seismic attribute versus well-log property cross plots with synthetic and real data examples from Prudhoe Bay Field: Annual Meeting Abstracts, Society of Exploration Geophysicists, 1999, 69-72
    [90] Cooke D., Ball, V., Muryanto, T., et al. What is the best seismic attribute for quantitative seismic reservoir characterization: Annual Meeting Abstracts, Society of Exploration Geophysicists, 1999, 1588-1591
    [91] Ferguson R.J., Stewart R.R.Reservoir indication using Vp/Vs values derived from broad-band 3-Cseismic data: Annual Meeting Abstracts, Society of Exploration Geophysicists, 1996, 766-769
    [92] Feng Y., Wang,X., Chen, S. et al. Application of nonlinear discriminate function in oil-gas prediction: Annual Meeting Abstracts, Society of Exploration Geophysicists, 1999, 981-984.
    [93] A.R.Vrown. Seismic Attributes and Their Classification. The Leading EAEG, 1996(10)
    [94] David H.Johnson. Seismie Attribute calibration Using neural Networks. SEG 63 Conference Proceedings, 1993
    [95] Biddle K T, wielchowsky C C. Hydrocarbon trap. In: Magoon L B, Dow W G. The petroleum system-126 from source to trap. AAPG Memoir 60, 1994, 219-235
    [96] Chenoweth PA. Unconformity traps. In: King R E.Stratigraphic oil and gas field-classification, Explorationmethods, and case histories, AAPG Memoir 16, 1972, 42-46
    [97] Halbouty M T. East Texas field-U.S.A., east Texas basin. In: Foster N H, Beaumont E A. compilers, Stratigraphic traps, Ⅱ: AAPG Treatise of Petroleum geology, Atlas of oil and gas field, 1991, 189-206
    [98] Rittenhouse G.Stratigraphic versus structural accumulation. AAPG Bulletin, 1972, 20: 521-530
    [99] Rittenhouse G.Stratigraphic trap classifieation. In: King R R. Stratigraphie oil and gas field-classification, exploration methods, and case histories. AAPG memoir 16, 1972, 14-28
    [100] Hunt J M. Generation and Migration of Petroleum Entrapment. Elsevier Applied Science Publishers Ltd, 1990
    [101] Bullying T P, Breyer J A.Exploring for Subtle trap with high-resolution paleo-geographic maps: interval (Eocene) South Texas. AAPG, 1989, 73(1)
    [102] Dolson J, Eller D, vetts M J, et al. Regional paleo-topograpgic Trend sand Production, Muddy sandstone(Lower Cretaceous), Central land Northern Rocky. AAPG, 1991, 75(3)
    [103] Heward A P. Alluvial fan sequence and niega-remodels: with examples from west phalian D-Steppanian B coal fields. Northern Spain. In: Miall A D. Fluvial sedimentology PG 669-702 gan Soc.Petrol geol, Mem. 5, 1978.
    [104] Chel T, Haibouty. The deliberate search for subtle trap. AAPG memoir 32, AAPG Tulsa Oklahoma, 1982
    [105] 杨占龙,郭精义,陈启林,黄云锋.地震信息多参数综合分析与岩性油气藏勘探-以 JH 盆地XN地区为例.天然气地球科学.2004,15(6):628-632
    [106] 杨占龙,陈启林,郭精义.吐哈盆地胜北洼陷岩性油气藏成藏条件特殊性分析.天然气地球科学.2005,16(2)
    [107] 杨占龙,郭精义,陈启林等.银根盆地查干凹陷火山沉积岩岩相特征及其识别标志.沉积学报,2005,23(1):67-72
    [108] 杨占龙,郭精义等.台北凹陷隐蔽油气藏勘探技术研究,中国石油勘探开发研究院西北分院,2003
    [109] 杨占龙,郭精义等.胜北洼陷岩性油气藏勘探与目标评价,中国石油勘探开发研究院西北分院,2004,127
    [110] 郭精义,杨占龙等.吐哈盆地台北凹陷侏罗系层序地层划分,天然气工业,2005年增刊B.
    [111] 郭精义,杨占龙等.潜江凹陷新农地区沉积微相特征与岩性油气藏,天然气地球科学,2006年第2期.
    [112] 樊太亮.岩性油气藏勘探理论与应用实践,中石油股份公司勘探与生产分公司主编.

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