Wu Genyao, Liang Jiangping, Yang Jianguo, Zhu Defeng, Chen Junliang, Shen Jianian. Application of basin-orogeny coupling in study of abnormally high pressured basin fluids[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2012, 34(3): 223-233. doi: 10.11781/sysydz201203223
Citation: Wu Genyao, Liang Jiangping, Yang Jianguo, Zhu Defeng, Chen Junliang, Shen Jianian. Application of basin-orogeny coupling in study of abnormally high pressured basin fluids[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2012, 34(3): 223-233. doi: 10.11781/sysydz201203223

Application of basin-orogeny coupling in study of abnormally high pressured basin fluids

doi: 10.11781/sysydz201203223
  • Received Date: 2011-12-09
  • Rev Recd Date: 2012-03-14
  • Publish Date: 2012-05-28
  • The basin-orogeny coupling theory was applied to study the abnormally high pressure in basin for the first time in this paper. The formation and distribution of abnormally high pressure were controlled by regional stress fields. In compressed basins, the key contributing factors for abnormally high pressure were compressive stress and charging of natural gas (or oil-gas), where the abnormally high pressure distributed zonaly or planarly. In extended and pull-apart basins, the abnormally high pressure was mainly resulted from thermal activities. In extended basins, the abnormally high pressure distributed in the shape of scattered points or restricted planes, and it distributed pointedly or in the shape of scattered points in sheared basins. The reverse, normal and strike-slip faults had different occurrences, which decided the oblique or vertical conductions of abnormally high pre-ssure. There were different ways for pressure reservation or releasing in compression or reversion. From the dynamic evolution of basin to the dynamic evolution of reservoir and fluid, it was an important step for the application of basin-orogeny coupling theory.

     

  • loading
  • [1]
    李国玉,唐养吾. 世界气田图集[M].北京:石油工业出版社,1991.
    [2]
    Bernard W J.Gulf coast geopressed gas reservoirs:drive mechanism and performance prediction:SPE 14362[M].Las Vegas:Annual Technical Conference and Exibition,1985.
    [3]
    Duggan J O.The Anderson "L":An abnormally pressured gas reservoir in south Texas[J]. Journal of Petroleum Technology,1971,132:29-38.
    [4]
    Parnell J.Geofluids:origin,migration and evolution of fluids in sedimentary basin:Special Publication No.78[M].Loadon:Geological Society of London,1994.
    [5]
    Parnell J.Dating and duration of fluid flow and fluid-rock interaction:Special Publication No.144[M].London:Geological Society of London,1998.
    [6]
    Ortoleva P J,Shaieb Z.Pressure compartments and seals:AAPG Memoir 61[M].Washington D C:AAPG,1994.
    [7]
    Osborne M J,Swarbrick R E.Mechanisms for generating overpressure in sedimentary basins:a reevaluation[J].AAPG Bull,1997,81:1023-1041.
    [8]
    Surdam R C.Seals,traps and the petroleum system:AAPG Memoir 67[M].Washington D C:AAPG,1997.
    [9]
    Law B E,Ulmishek G F,Slavin V I.Abnormal Pressure in Hydrocarbon Environments:AAPG Memoir 70[M].Washington D C:AAPG,1998.
    [10]
    Huffman A R,Bowers G L.Pressure regimes in sedimentary basins and their prediction:AAPG Memoir 76[M].Washington D C:AAPG,2002.
    [11]
    马启富,陈思忠,张启明.超压盆地与油气分布[M].北京:地质出版社,2000.
    [12]
    王振峰,罗晓容.莺歌海盆地高温高压地层钻井压力预监测技术研究[M].北京:石油工业出版社,2004.
    [13]
    郝芳.超压盆地生烃作用动力学与油气成藏机理[M].北京:科学出版社,2005.
    [14]
    解习农,李思田,刘晓峰.异常压力盆地流体动力学[M].武汉:中国地质大学出版社,2006.
    [15]
    吴根耀,马力."盆""山"耦合和脱耦:含油气盆地研究的新思路[M]//中国石油学会石油地质专业委员会编.油气盆地研究新进展第一辑.北京:石油工业出版社,2002:20-36.
    [16]
    吴根耀,马力.试论"盆""山"的耦合和脱耦及其运动学[J].石油实验地质,2003,25(2):99-109,115.
    [17]
    吴根耀,马力."盆""山"耦合和脱耦在含油气盆地分析中的应用[J].石油实验地质,2003,25(6):648-660.
    [18]
    吴根耀,马力."盆""山"耦合和脱耦:进展,现状和努力方向[J].大地构造与成矿学,2004,28(1):81-97.
    [19]
    吴根耀,马力."盆""山"耦合和脱耦的反转点和切入点研究[J]. 石油实验地质,2005,27(1):8-17,24.
    [20]
    康永尚,张一伟.油气成藏流体动力学[M].北京:地质出版社,1999.
    [21]
    Hunt J M.Generation and migration of petroleum from abnormal pressured fluid compartment[J].AAPG Bull,1990,74(1):1-12.
    [22]
    胡剑风,刘玉魁,杨明慧,等.塔里木盆地库车坳陷盐构造特征及其与油气的关系[J].地质科学,2004,39(4):580-588.
    [23]
    赵靖舟,罗继红,时保宏,等.塔里木盆地油气成藏系统分析[J].石油实验地质,2002,24(4):311-316.
    [24]
    赵靖舟.前陆盆地天然气成藏理论及应用[M].北京:石油工业出版社,2003.
    [25]
    周兴熙.塔里木盆地库车油气系统中、新生界的流体压力结构和油气成藏机制[J].地学前缘,2001,8(4):351-361.
    [26]
    罗晓容,肖立新,李学义,等.准噶尔盆地南缘中段异常压力分布及影响因素[J].地球科学——中国地质大学学报,2004,29(4):404-413.
    [27]
    吴根耀.初论造山带古地理学[J].地层学杂志,2003,27(2):81-98.
    [28]
    Barker C.Aquathermal pressuring-role of temperature in deve-lopment of abnormal-pressure zones[J].AAPG Bull,1972,56:2068-2071.
    [29]
    郭泽清,刘卫红,钟建华,等.柴达木盆地西部新生界异常高压:分布、成因及对油气运移的控制作用[J].地质科学,2005,40(3):376-389.
    [30]
    Reuter J H,Perdue E M.Importance of heavy metal-organic matter interactions in natural water[J].Geochim Cosmochim Acta,1977,41(2):325-333.
    [31]
    金强,翟庆龙.裂谷盆地的火山热液活动和油气生成[J].地质科学,2003,38(3):342-349.
    [32]
    吴根耀.造山带地层学[M].成都:四川科学技术出版社,2000.
    [33]
    李曰俊,吴根耀,雷刚林,等.新疆库车新生代前陆褶皱冲断带的变形特征、时代和机制[J].地质科学,2008,43(3):488-506.
    [34]
    吴根耀,张洪安,钱一雄,等.新疆塔里木库车冲断带东段更新世变形特征及其与西段的对比[J].第四纪研究,2012,32(5):(印刷中).
    [35]
    吴孔友,查明,钟建华.准噶尔盆地超压系统分布及其演化[J].地质科学,2006,41(4):636-647.
    [36]
    李忠权,陈更生,郭冀义,等.准噶尔盆地南缘西部地层异常高压基本特征[J].石油实验地质,2001,23(1):47-51.
    [37]
    张立强,罗晓容.准噶尔盆地高压带碳酸盐胶结层的分布及特征[J].石油实验地质,2011,33(4):388-391.
    [38]
    李鹤永,刘震,党玉琪,等.柴达木盆地西部地区地温-地压系统演化及其与油气成藏的关系[J].地质科学,2006,41(4):564-577.
    [39]
    王震亮,陈荷立.吐哈盆地侏罗系地下古应力分布与油气运移特征探讨[J].西北大学学报(自然科学版),1996,26(5):560-567.
    [40]
    王震亮,陈荷立.台北凹陷侏罗系油气运聚成藏历史分析[J].石油勘探与开发,2002,29(3):1-4.
    [41]
    陈建平,黄第藩,霍永录.酒东盆地异常流体压力带及与油气分布的关系[J].中国科学D辑,1996,26(1):9-15.
    [42]
    刘震,戴立昌,赵阳,等.济阳坳陷地温—地压系统特征及其对油气藏分布的控制作用[J].地质科学,2005,40(1):1-15.
    [43]
    李潍莲,刘震,夏庆龙,等.辽东湾凝析气田超压成因及侧向传递机制初探[J].地质科学,2008,43(2):377-388.
    [44]
    李健.东濮凹陷深层异常温压条件下的油气生成特征[J].石油学报,2003,24(2):30-33.
    [45]
    慕小水,何锋,顾勤,等.东濮凹陷深层异常高压对储集层演化的影响[J].新疆石油地质,2009,30(6):667-669.
    [46]
    邵济安,唐克东.中国东北地体与东北亚大陆边缘演化[M].北京:地震出版社,1995.
    [47]
    吴根耀,梁兴,陈焕疆.试论郯城—庐江断裂带的形成、演化及其性质[J].地质科学,2007,42(1):160-175.
    [48]
    孙岩,徐士进,刘德良.断裂构造地球化学导论[M].北京:科学出版社,1998.
    [49]
    周兴熙.库车油气系统成藏作用和成藏模式[J].石油勘探与开发,2001,28(2):8-10.
    [50]
    孙家振,李兰斌,周新源,等.塔里木盆地库车凹陷克拉苏构造带典型构造样式与变形机理分析[J].石油实验地质,2003,25(3):247-251.
    [51]
    李春光.试论东营盆地高压油气藏的特征及找油意义[J].石油学报,1992,13(1):37-43.
    [52]
    吴根耀,矢野孝雄.东亚大陆边缘的构造格架及其中—新生代演化[J].地质通报,2007,26(7):787-800.
    [53]
    侯艳平,朱德丰,任延广,等.松辽盆地北部姚家组底部不整合面的发育特征及形成机制初探[J].地质科学,2009,44(2):777-786.
    [54]
    吴根耀,梁江平,杨建国,等.白垩纪北东向构造与松辽盆地演化和油气成藏[J].大庆石油地质与开发,2009,28(6):1-11.
    [55]
    王宏语,康西栋,李军,等.松辽盆地徐家围子地区深层异常压力分布及其成因[J].吉林大学学报(地球科学版),2002,32(1):39-42.
    [56]
    梁江平,包丽.三肇凹陷青山口组一段泥岩超压形成与演化过程初探[J].地质科学,2009,44(2):769-776.
    [57]
    陈孔全,吴金才,唐黎明.松辽盆地南部断陷成藏体系[M].武汉:中国地质大学出版社,1999.
    [58]
    He S,Middleton M,Tang Z H.Characteristics and origin of underpressure system in the Shiwu Fault Depression,south-east Songliao basin,China[J].Basin Research,2000,12:147-158.
    [59]
    Xie X N,Jiao J J,Tang Z H,et al.Evolution of abnormally low pressure and its implications for the hydrocarbon system in the Southeast Uplift Zone of Songliao Basin, China[J].AAPG Bull,2003,87(1):99-119.
    [60]
    张进江,钟大赉,桑海请,等.哀牢山—红河构造带古新世以来多期活动的构造和年代学证据[J].地质科学,2006,41(2):291-310.
    [61]
    张启明,刘福宁,杨计海.莺歌海盆地超压体系与油气聚集[J].中国海上油气(地质),1996,10(2):65-75.
    [62]
    Xie X N,Li S T,Dong W L,et al.Overpressure development and hydrofracturing in the Yinggehai basin, South China Sea[J].Journal of Petroleum Geology,1999,22(4):437-454.
    [63]
    向才富,冯志强,吴河勇,等.松辽盆地异常压力系统及其形成原因探讨[J].地质学报,2006,80(11):1752-1759.
    [64]
    申家年,丛永山,毛立全,等.松辽盆地古龙凹陷葡萄花油层超压成因[J].地质科学,2009,44(2):502-512.
    [65]
    吕延防,李建民,付晓飞,等.松辽盆地三肇凹陷油气下排的地质条件及找油方向[J].地质科学,2009,44(2):525-533.
    [66]
    刘伟新,承秋泉,范明.盖层、压力封盖和异常压力系统研究[J].石油实验地质,2011,33(1):74-80,86.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (3921) PDF downloads(1751) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return