天然气地球科学

• 天然气地质学 • 上一篇    下一篇

古隆起埋藏期沟谷残丘地貌下沉积体系及油气藏发育模式——以准噶尔盆地腹部石南地区清水河组一段为例

高崇龙,纪友亮,靳军,王剑,任影,曾力,王道伟,张昊,李谨杰   

  1. 1.中国石油大学(北京) 地球科学学院,北京 102249;
    2.中国石油大学(北京)油气资源与探测国家重点实验室,北京 102249;
    3.中国石油新疆油田公司实验检测研究院,新疆 克拉玛依 834000;
    4.中国石化西南油气分公司川东北采气厂,四川 阆中 637400;
    5.中海油能源发展股份有限公司工程技术分公司,天津 300450;
    6.中国石油大庆钻探工程公司测井公司,黑龙江 大庆 163412
  • 收稿日期:2018-03-12 修回日期:2018-06-27 出版日期:2018-08-10 发布日期:2018-08-10
  • 通讯作者: 纪友亮(1962-),男,山东博兴人,教授,博士,主要从事层序地层学、石油地质学研究. E-mail:jiyouliang@cup.edu.cn
  • 作者简介:高崇龙(1988-),男,黑龙江大庆人,博士研究生,主要从事沉积学、石油地质学研究.E-mail:gaoyidaitianjiao1@163.com.
  • 基金资助:

    国家自然科学基金项目(编号:41672098)资助.

Development model of sedimentary system and reservoir under valley-monadnock paleotopography during buried stage of paleouplift:Case study of 1st member of K1q  in Shinan area,hinterland of Junggar Basin

Gao Chong-long,Ji You-liang,Jin Jun,Wang Jian,Ren Ying,Zeng Li,Wang Dao-wei,Zhang Hao,Li Jin-jie   

  1. 1.College of Geosciences,China University of Petroleum (Beijing),Beijing 102249,China;
    2.State Key Laboratory of Petroleum Resource and Prospecting,China University of Petroleum (Beijing),Beijing 102249,China;
    3.Research Institute of Experiment and Detection of PetroChina Xinjiang Oilfield Company,Karamay 834000,China;
    4.Northeast Gas Plant of Sinopec Southwest Oil and Gas Company,Langzhong 637400,China;
    5.CNOOC Ener Tech-Drilling & Prodction Co.,Tianjin 300450,China;
    6.Well Logging Company,Daqing Oil Drilling Engineering Company,Daqing 163412,China
  • Received:2018-03-12 Revised:2018-06-27 Online:2018-08-10 Published:2018-08-10

摘要: 准噶尔盆地腹部下白垩统清水河组为在大型车莫古隆起埋藏期继承性地貌背景下发育的一套沉积层系,是盆地继侏罗系和三叠系后又一油气勘探热点层位,但前期有关清水河组沉积体系及油气藏类型研究均未充分考虑古隆起埋藏期地貌演化,制约了油气的有效勘探开发。研究利用岩心、测井—录井、三维地震、野外露头和分析化验资料等,在对清水河组层序地层格架厘定基础上恢复沉积期古地貌,明确储层沉积相类型及沉积体系展布,同时结合前期相关研究成果,建立大型古隆起埋藏期地貌—沉积体系演化模式,并分析其对油气藏类型的控制作用。结果表明:清水河组为一套完整的三级层序,清一段(清水河组一段)可划分为低位及湖侵体系域,而清二段(清水河组二段)则为高位体系域。受控于研究区特有的沟谷—残丘地貌特征,低位域主体为局限于沟谷内部的砾质辫状河相沉积,而环残丘边部(沟谷边缘)可发育滑塌泥石流沉积;湖侵早期研究区发育浅水辫状河三角洲前缘沉积,而湖侵晚期全区被滨浅湖相—半深湖相所覆盖。区域上,持续性差异风化剥蚀及河流侵蚀使得古隆起在晚侏罗世可作为盆地内物源而存在并逐渐演化为不同规模的沟谷—残丘,但自白垩纪开始古隆起内物源作用消失且古隆起区逐渐被覆盖,地貌也逐渐准平原化并最终演变为盆地沉积沉降中心。而受控于埋藏期沟谷—残丘地貌,古隆起区油气藏类型可划分为侏罗系古残丘型油气藏、清水河组地层超覆油气藏及构造油气藏。

关键词: 车莫古隆起, 古地貌演化, 沉积体系, 油气分布, 清水河组, 准噶尔盆地

Abstract: Lower Cretaceous Qingshuihe Formation (K1q) within hinterland area of Junggar Basin is a distinctive sedimentary sequence developed during the buried stage of large-scale Chemo paleouplift.In addition to Jurassic and Triassic,K1q  becomes another favorable target for hydrocarbon exploration within the basin.However,the geomorphic evolution during the buried stage of paleouplift is not fully taken into account in previous researches about sedimentary system and reservoir types of K1q,leading to the restriction of effective hydrocarbon exploration and development.Thus,using core,logging,3-D seismic data,field outcrop and assay data,this research rebuilds palaeogeomorphology of the study area based on the sequence stratigraphic classification and illustrates the sedimentary facies and distribution of depositional systems.Meanwhile,in combination with previous research results,the evolutionary model of paleogeomorphy and sedimentary system during the buried stage of paleouplift is established and its control on reservoir types is analyzed.The results show that:K1q is a whole third order sedimentary sequence,and 1st member of K1q  can be classified into LST and TST,while 2nd member of K1q is HST.Controlled by the distinctive valley-monadnockpalaeogeomorphology,LST gravelly braided rivers were confined within the valleys,moreover,slump debris flow deposits could occur around the edges of monadnocks.During the early period of TST,sedimentary system changed into shallow-water braided delta front in study area,however,shallow to semi-deep lacustrine covered the whole area in late period.Regionally,the paleouplift existed as an intrabasinal source area during the Late Jurassic due to the continuous and differential dynamics of weathering and river incision,and gradually turned into different scales of valleys and monadnocks.Whereas the intrabasinal source system of paleouplift disappeared since Early Cretaceous.During the deposition period of K1q,the paleouplift zone gradually buried and the peneplanation processes of palaeogeomorphology along with subsidence eventually turned the hinterland area into depocenter of the basin.Controlled by the valley-monadnockpalaeogeomorphology,reservoir types within the paleouplift area can be classified into monadnock reservoirs of Jurassic and stratigraphic overlap and structural reservoirs of K1q.

Key words: Chemo paleouplift, Palaeogeomorphology evolution, Depositional system, Hydrocarbon distribution, Qingshuihe Formation, Junggar Basin

中图分类号: 

  • TE121.3

[1]He Dengfa,Li Desheng,Tong Xiaoguang,et al.Accumulation and distribution of oil and gas controlled by paleo-uplift in poly-history superimposed basin[J].Acta Petrolei Sinica,2008,29(4):475-485.
何登发,李德生,童晓光,等.多期叠加盆地古隆起控油规律[J].石油学报,2008,29(4):475-485.
[2]Levorsen A I.Geology of Petroleum[M].2nded Tulsa:The AAPG Foundation,2001:1-700.
[3]Gao D,Lin C S,Yang H J,et al.Microfacies and depositional environments of the Late Ordovician Lianglitage Formation at the Tazhong Uplift in the Tarim Basin of Northwest China[J].Journal of Asian Earth Sciences,2014,83(1):1-12.
[4]Liu J Y,Steel R J,Lin C S,et al.Geomorphology control on the development of reservoir depositional systems,Devonian Donghetang Formation in the Tabei Uplift of the Tarim Basin,China[J].Marine and Petroleum Geology,2012,38(1):177-194.
[5]He B Z,Jiao C L,Xu,Z Q,et al.The paleotectonic and paleogeography reconstructions of the Tarim Basin and its adjacent areas (NW China) during the Late Early and Middle Paleozoic[J].Gondwana Research,2016,30:191-206.
[6]Ji Youliang,Zhou Yong,Kuang Jun,et al.The formation and evolution of Chepaizi-Mosuowan paleo-uplift and its control on the distributions of sedimentary facies in the Junggar Basin[J].Science China Earth Sciences,2010,40(10):1342-1355.
纪友亮,周勇,况军,等.准噶尔盆地车-莫古隆起形成演化及对沉积相的控制作用[J].中国科学:地球科学,2010,40(10):1342-1355.
[7]Gao Z Q,Fan T L.Unconformities and their influence on Paleozoic petroleum reservoir development in the Tarim Basin[J].Journal of Petroleum Science and Engineering,2015,133:335-351.
[8]Wu Kangjun,Liu Luofu,Xiao Fei,et al.Characteristics of the hydrocarbon pathway system and transport model of the Chepaizi and its surrounding areas in the Junggar Basin of China[J].Journal of China University of Mining & Technology,2015,44(1):87-94.
吴康军,刘洛夫,肖飞,等.准噶尔盆地车排子周缘油气输导体系特征及输导模式[J].中国矿业大学学报,2015,44(1):87-94.
[9]Jia Qingsu,Yin Wei,Chen Fajing,et al.The role of Che-Mo palaeohigh in controlling hydrocarbon accumulation in central Junggar Basin[J].Oil & Gas Geology,2007,28(2):257-265.
贾庆素,尹伟,陈发景,等.准噶尔盆地中部车—莫古隆起控藏作用分析[J].石油与天然气地质,2007,28(2):257-265.
[10]Wang Zecheng,Zhao Wenzhi.A role of marine paleo-uplift in reservoir-forming of oil and gas[J].China Petroleum Exploration,2006,11(4):26-32.
汪泽成,赵文智.海相古隆起在油气成藏中的作用[J].中国石油勘探,2006,11(4):26-32.
[11]He Dengfa,Chen Xinfa,Kuang Jun,et al.Development and genetic mechanism of Chepaizi-Mosuowan Uplift in Junggar Basin[J].Earth Science Frontiers,2008,15(4):42-52.
何登发,陈新发,况军,等.准噶尔盆地车排子-莫索湾古隆起的形成演化与成因机制[J].地学前缘,2008,15(4):42-52.
[12]Zhang Fushun,Zhu Yunhui,Wang Furong.Forming mechanism of secondary pores in deep buried reservoirs of Junggar Basin[J].Acta Sedimentologica Sinica,2008,26(3):469-478.
张福顺,朱允辉,王芙蓉.准噶尔盆地腹部深埋储层次生孔隙成因机理研究[J].沉积学报,2008,26(3):469-478.
[13]Wang Haizhen,Chi Yingliu,Zhao Zongju,et al.Karst reservoirs developed in the Middle Permian Qixia Formation of Sichuan Basin and selection of exploration regions[J].Acta Petrolei Sinica,2013,34(5):833-841.
王海真,池英柳,赵宗举,等.四川盆地栖霞组岩溶储层及勘探选区[J].石油学报,2013,34(5):833-841.
[14]Bowen D W,Weimer P.Reservoir geology of Nicholas and Liverpool Cemetery fields (Lower Pennsylvanian),Stanton County,Kansas,and their significance to the regional interpretation of the Morrow Formation incised-valley-fill systems in eastern Colorado and west Kansas[J].AAPG Bulletin,2004,88 (1):47-70.
[15]Gao Chonglong,Ji Youliang,Ren Ying,et al.Sedimentary evolution and favorable sandbody distribution of the Cretaceous Qingshuihe Formation in Mosuowan area,Junggar Basin[J].Journal of Palaeogeography,2015,17(6):813-828.
高崇龙,纪友亮,任影,等.准噶尔盆地莫索湾地区白垩系清水河组沉积演化与有利砂体展布[J].古地理学报,2015,17(6):813-828.
[16]Yang Fan,Hou Lianhua,Wei Yanzhao,et al.New perspective on Shinan 21 and Shinan 31 reservoirs in the central Junggar Basin[J].Journal of China University of Mining & Technology,2015,44(4):697-703.
杨帆,侯连华,卫延召,等.准噶尔盆地腹部石南21油藏、石南31油藏新认识[J].中国矿业大学学报,2015,44(4):697-703.
[17]Hou Lianhua,Wang Jinghong,Kuang Lichun,et al.Provenance sediments and its exploration significance:A case from member 1 of Qingshuihe Formation of Lower Cretaceous in Junggar Basin[J].Earth Science Frontiers,2009,16(6):337-347.
侯连华,王京红,匡立春,等.准噶尔盆地车莫古隆起内物源沉积体系探讨及勘探意义——以白垩系清水河组一段为例[J].地学前缘,2009,16(6):337-347.
[18]Gu Yunfei,Ma Mingfu,Su Shilong,et al.Lithofacies paleogeography of the Cretaceous in the Junggar Basin[J].Petroleum Geology & Experiment,2003,25(4):337-342.
谷云飞,马明福,苏世龙,等.准噶尔盆地白垩系岩相古地理[J].石油实验地质,2003,25(4):337-342.
[19]Chen Lin,Sun Yi,Xu Tao,et al.Sedimentary characteristics of Cretaceous Qingshuihe Formation in block 4 of central Junggar Basin[J].Journal of Oil and Gas Technology,2014,36(2):50-55.
陈林,孙怡,许涛,等.准噶尔盆地中部4区块白垩系清水河组沉积特征研究[J].石油天然气学报,2014,36(2):50-55.
[20]Tang Yong,Kong Yuhua,Sheng Jianhong,et al.Controlling factors of reservoir formation in ramp type lithostratigraphic reservoir in hinterland of Junggar Basin[J].Acta Sedmentologica Sinica,2009,27(3):567-571.
唐勇,孔玉华,盛建红,等.准噶尔盆地腹部缓坡型岩性地层油气藏成藏控制因素分析[J].沉积学报,2009,27(3):567-571.
[21]Zhou Lu,Zheng Jinyun,Lei Dewen,et al.Recovery of eroded thickness of the Jurassic of Chemo palaeouplift in Junggar Basin[J].Journal of Palaeogeography,2007,9(3):243-252.
周路,郑金云,雷德文,等.准噶尔盆地车莫古隆起侏罗系剥蚀厚度恢复[J].古地理学报,2007,9(3):243-252.
[22]He Dengfa,Zhai Guangming,Kuang Jun,et al.Distribution and tectonic features of paleo-uplifts in the Junggar Basin[J].Chinese Journal of Geology,2005,40(2):248-261.
何登发,翟光明,况军,等.准噶尔盆地古隆起的分布与基本特征[J].地质科学,2005,40(2):248-261.
[23]Gao Chonglong,Ji Youliang,Ren Ying,et al.Sedimentary sequence evolution analysis of Qingshuihe Formation in Shinan area of Junggar Basin[J].Journal of China University of Mining & Technology,2016,45(5):958-971.
高崇龙,纪友亮,任影,等.准噶尔盆地石南地区清水河组沉积层序演化分析[J].中国矿业大学学报,2016,45(5):958-971.
[24]Xie Yinfu,Li Hongqi,Sun Zhongchun.Discovery of a weathering crust between Jurassic and Cretaceous and its stratigraphic significance in the Shinan area of the Junggar Basin[J].Geological Review,2006,52(1):137-144.
谢寅符,李洪奇,孙中春.准噶尔盆地石南地区侏罗系—白垩系间风化壳的发现及其地层学意义[J].地质论评,2006,52(1):137-144.
[25]Zou Caineng,Hou Lianhua,Yang Fan,et al.Structure of weathered clastic crust and its petroleum potential[J].Science China:Earth Science,2014,44(12):2652-2664.
邹才能,侯连华,杨帆,等.碎屑岩风化壳结构及油气地质意义[J].中国科学:地球科学,2014,44(12):2652-2664.
[26]Wakefield O J W,Mountney N P.Stratigraphic architecture of back-filled incised-valley systems:Pennsylvanian-Permian lower Culter beds,Utah,USA[J].Sedimentary Geology,2013,298:1-16.
[27]Leeder M R,Stewart M D.Fluvial incision and sequence stratigraphy:alluvial responses to relative sea-level fall and their detection in the geological record[J].Geological Society of London Special Publication,1996,103(1):25-39.
[28]Wang Liwu.Forming conditions and depositional characteristics of shallow-water deltas in depression basins:A case study of K2y in the south of Songliao Basin[J].Acta Sedimentologica Sinica,2012,30(6):1053-1059.
王立武.坳陷湖盆浅水三角洲的沉积特征——以松辽盆地南部姚一段为例[J].沉积学报,2012,30(6):1053-1059.
[29]Zhu Xiaomin,Liu Yuan,Fang Qing,et al.Formation and sedimentary model of shallow delta in large-scale lake:Example from Cretaceous Quantou Formation in Sanzhao Sag,Songliao Basin[J].Earth Science Frontiers,2012,19(1):89-99.
朱筱敏,刘媛,方庆,等.大型坳陷湖盆浅水三角洲形成条件和沉积模式——以松辽盆地三肇凹陷扶余油层为例[J].地学前缘,2012,19(1):89-99.
[30]Wang Minfang,Jiao Yangquan,Ren Jianye,et al.Characteristics of Jurassic subsidence and its relation with tectonic evolution in Junggar Basin[J].Acta Petrolei Sinica,2007,28(1):27-32.
王敏芳,焦养泉,任建业,等.准噶尔盆地侏罗纪沉降特征及其与构造演化的关系[J].石油学报,2007,28(1):27-32.
[31]Jiao Yangquan,Wu Liqun,Lu Yongchao,et al.Evolution of the Chepaizi-Mosuowan palaeo-uplift,Junggar Basin,China:Evidence from diagenesis of Late Jurassic red beds[J].Earth Science:Journal of China University of Geosciences,2008,33(2):219-225.
焦养泉,吴立群,陆永潮,等.准噶尔盆地腹部侏罗系顶部红层成岩作用过程中蕴藏的车莫古隆起演化信息[J].地球科学:中国地质大学学报,2008,33(2):219-225.
[32]Shanley K W,McCabe P J.Relative Role of Eustasy,Climate and Tectonism on Continental Rocks[M].Tulsa:SEPM Special Publication,1998:17-29.
[33]Deibert J E,Camilleri P A.Sedimentologic and tectonic origin of an incised-valley-fill sequence along an extensional marginal-lacustrine system in the Basin and Range province,United States:Implications for predictive models of the location of incised valleys[J].AAPG Bulletin,2006,90 (2):209-235.
[34]Li Y Y,Bhattacharya J P.Facies-architecture study of a stepped,forced regressvie compound incised valley in the Ferron Notom delta,southern central Utah,U.S.A.[J].Journal of Sedimentary Research,2013,83:206-225.
[35]Schwarz E,Veiga G D,Spalletti L A,et al.The transgressive infill of an inherited-valley system:The Springhill Formation (Lower Cretaceous) in southern Austral Basin,Argentina[J].Marine and Petroleum Geology,2011,28:1218-1241.
[36]Ma Weijiao,Wei Yanzhao,Tao Shizhen.New perspective on hydrocarbon migration and accumulation of Cretaceous oil reservoir of Luliang Oilfield,Junggar Basin[J].Journal of China University of Mining & Technology,2018,47(3):579-586.
麻伟娇,卫延召,陶士振.准噶尔盆地陆梁油田白垩系油气运聚特征的新认识[J].中国矿业大学学报,2018,47(3):579-586.
[37]Liu Wenfeng,Sun Deqiang,Yang Chaodong,et al.Stratigraphic reservoir formation patterns and the favorable zones of stratigraphic/lithological reservoirs in central Junggar Basin[J].Natural Gas Geoscience,2015,26(12):2267-2273.
刘文峰,孙德强,杨朝栋,等.准噶尔盆地腹部石南地区头屯河组岩性地层油气藏成藏特征及成藏模式[J].天然气地球科学,2015,26(12):2267-2273.
[38]Zhang Zhihuan,Qin Liming,Li Wei,et al.The distribution of oil sources and the transformation of hydrocarbon kitchens in oil-bearing structural belts on northern and southern sides of the Chemo palaeo-uplift within central Junggar Basin[J].Geology in China,2009,36(4):826-836.
张枝焕,秦黎明,李伟,等.准噶尔盆地腹部车莫古隆起南北两侧含油构造油源及烃源灶转移[J].中国地质,2009,36(4):826-836.
[39]Chen Jianping,Wang Xulong,Deng Chunping,et al.Geochemical features of source rocks and crude oil in the Junggar Basin,northwest China[J].Acta Geologica Sinica,2016,90(1):37-67.
陈建平,王绪龙,邓春萍,等.准噶尔盆地烃源岩与原油地球化学特征[J].地质学报,2016,90(1):37-67.
[40]Wei Yanzhao,Gong Deyu,Wang Feng,et al.Bacteria effects on geochemical characteristics of natural gas:A case study in the Shinan oil-gasfield,central Junggar Basin[J].Natural Gas Geoscience,2016,27(12):2176-2183.
卫延召,龚德瑜,王峰,等.细菌作用对天然气地球化学组成的影响——以准噶尔盆地腹部石南油气田为例[J].天然气地球科学,2016,27(12):2176-2183.
[41]Ding Wenlong,Jin Zhijun,Zhang Yijie,et al.Experimental simulation of faults controlling oil migration and accumulation in the central part of Junggar Basin and its significance for petroleum geology[J].Earth Science:Journal of China University of Geosciences,2011,36(1):73-82.
丁文龙,金之钧,张义杰,等.准噶尔盆地腹部断裂控油的物理模拟实验及其成藏意义[J].地球科学:中国地质大学学报,2011,36(1):73-82.
[42]Zhang Shanwen,Lin Huixi,Shen Yang.Analysis on meshwork-carpet pool-forming mechanism of Chepaizi Uplift and enlightenment on petroleum exploration of Junggar Basin[J].Geological Review,2013,59(3):489-499.
张善文,林会喜,沈扬.准噶尔盆地车排子凸起新近系“网毯式”成藏机制剖析及其对盆地油气勘探的启示[J].地质论评,2013,59(3):489-499.
[43]Liu Yaying,Xu Huaimin,Yao Weijiang,et al.Meshwork-carpet type hydrocarbon reservoir transportation system in Junggar Basin[J].Journal of China University of Petroleum:Edition of Natural Science,2011,35(5):32-36.
刘桠颖,徐怀民,姚卫江,等.准噶尔盆地网毯式油气成藏输导体系[J].中国石油大学学报:自然科学版,2011,35(5):32-36.

[1] 龚德瑜, 张越迁, 郭文建, 宋志华, 卢山, 吴卫安. 次生生物甲烷与生物降解作用的判识——以准噶尔盆地腹部陆梁油气田为例[J]. 天然气地球科学, 2019, 30(7): 1006-1017.
[2] 卫延召, 宋志华, 奇瑞, 王伟, 龚德瑜, 王峰. 准噶尔盆地陆梁隆起东部滴北凸起天然气成因来源再认识[J]. 天然气地球科学, 2019, 30(6): 840-849.
[3] 胡自龙, 卞保力, 刘海磊, 赵龙, 卢山, 王绍清. 准噶尔盆地大井地区天然气成因、来源与成藏过程[J]. 天然气地球科学, 2019, 30(6): 850-859.
[4] 王伟锋, 张仲达. 准噶尔盆地五彩湾地区石炭系烃源岩演化及油气成藏过程[J]. 天然气地球科学, 2019, 30(4): 447-455.
[5] 胡瀚文, 张元元, 卓勤功, 贾承造, 郭召杰. 准噶尔盆地南缘下组合油气成藏过程——以齐古油田为例[J]. 天然气地球科学, 2019, 30(4): 456-467.
[6] 付爽, 庞雷, 许学龙, 曹元婷, 刘振宇, 张顺存, . 准噶尔盆地玛湖凹陷下乌尔禾组储层特征及其控制因素[J]. 天然气地球科学, 2019, 30(4): 468-477.
[7] 潘建国, 黄林军, 王国栋, 郭娟娟, 马永平, 罗昭洋. 源外远源油气藏的内涵和特征——以准噶尔盆地盆1井西富烃凹陷为例[J]. 天然气地球科学, 2019, 30(3): 312-321.
[8] 刘永福, 夏辉, 孙琦, 林畅松, 赵海涛, 李浩, 黄腊梅, 张知源. 塔里木盆地塔北隆起西部巴什基奇克组层序地层及沉积演化[J]. 天然气地球科学, 2019, 30(1): 62-73.
[9] 裴立新,刚文哲,朱传真,刘亚洲,何文军,向宝力,董岩. 准噶尔盆地烷烃气碳同位素组成及来源[J]. 天然气地球科学, 2018, 29(7): 1020-1030.
[10] 王国龙,杜社宽. 准噶尔盆地北三台凸起二叠系梧桐沟组一段碎屑岩储层特征及控制因素[J]. 天然气地球科学, 2018, 29(5): 675-681.
[11] 杨占龙,黄云峰,沙雪梅,吴青鹏,黄小鹏,郝彬. 吐哈盆地鄯善弧形带东翼中—下侏罗统沉积体系发育模式[J]. 天然气地球科学, 2018, 29(3): 349-357.
[12] 何文军,杨海波,费李莹,王学勇,杨彤远,杨翼波,鲍海娟. 准噶尔盆地新光地区佳木河组致密砂岩气有利区资源潜力综合分析[J]. 天然气地球科学, 2018, 29(3): 370-381.
[13] 王小垚,曾联波,周三栋,史今雄,田鹤. 低阶煤储层微观孔隙结构的分形模型评价[J]. 天然气地球科学, 2018, 29(2): 277-288.
[14] 石新朴, 覃建强, 丁艳雪, 杨丹, 史全党, 胡清雄, 李波, 齐洪岩, 张吉辉, 孙德强, 赵振, 饶远, 习成威. 准噶尔盆地滴南凸起火山岩气藏成藏主控因素与成藏模式[J]. 天然气地球科学, 2018, 29(12): 1706-1714.
[15] 杨海波, 王屿涛, 郭建辰, 何文军, 蓝文芳. 准噶尔盆地天然气地质条件、资源潜力及勘探方向[J]. 天然气地球科学, 2018, 29(10): 1518-1530.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 赵应成,周晓峰,王崇孝,王满福,郭娟娟 . 酒西盆地青西油田白垩系泥云岩裂缝油藏特征和裂缝形成的控制因素[J]. 天然气地球科学, 2005, 16(1): 12 -15 .
[2] 任以发. 微量烃分析在井中化探录井中的应用[J]. 天然气地球科学, 2005, 16(1): 88 -92 .
[3] 郑建京;吉利明;孟仟祥;. 准噶尔盆地天然气地球化学特征及聚气条件的讨论[J]. 天然气地球科学, 2000, 11(4-5): 17 -21 .
[4] Seewald J S;Benitez-Netson B C;Whelan J K(美国);刘全有(译). 天然气形成与组成的实验和理论因素[J]. 天然气地球科学, 2000, 11(4-5): 30 -44 .
[5] 张延敏, . 1996~1999年世界天然气产量[J]. 天然气地球科学, 2000, 11(3): 44 -45 .
[6] 付广;王剑秦. 地壳抬升对油气藏保存条件的影响[J]. 天然气地球科学, 2000, 11(2): 18 -23 .
[7] 李美俊;卢鸿;王铁冠;吴炜强;刘菊;高黎惠;. 北部湾盆地福山凹陷岩浆活动与CO2 成藏的关系[J]. 天然气地球科学, 2006, 17(1): 55 -59 .
[8] 倪金龙;夏斌;. 济阳坳陷坡折带组合类型及石油地质意义[J]. 天然气地球科学, 2006, 17(1): 64 -68 .
[9] 王茹;. 胜坨油田两期成藏地球化学特征及成藏过程分析[J]. 天然气地球科学, 2006, 17(1): 133 -136 .
[10] 程同锦,朱怀平,陈浙春. 孔雀1井剖面地球化学特征与烃类的垂向运移[J]. 天然气地球科学, 2006, 17(2): 148 -152 .