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1.
塔里木盆地大中型油气田形成及分布规律   总被引:7,自引:2,他引:5  
目的 探讨塔里木盆地油气藏形成及分布规律,为油气田勘探部署提供依据。方法 运用石油地质综合研究方法,探讨了区域构造背景,有效烃源岩分布及其成熟度、储盖组合、后期构造变动等对塔里木盆地大中型油气田形成及分布的控制作用。结果 塔里木盆地油气分布十分复杂,油气藏形成及分布受多重因素控制;早期形成、长期继承发育的大型稳定古隆起及其斜坡以及前陆逆冲带第2,3排构造分别是大中型油气田形成的最有利地区;古隆起控油、斜坡富集以及隆起高部位油气易发生调整、斜坡部位有利于保存,是克拉通区油气藏形成和分布的重要特点;已发现的油气藏具有多期成藏、晚期调整的特点,早期形成的原生油气藏后期特别是晚喜山期普遍受到了调整改造,以克拉通区海相油气藏最为突出;保存条件对塔里木盆地油气藏形成与分布具有重要控制作用,特别是优质区域盖层的存在,是大中型油气田形成和保存的关键。结论 继承性古隆起与隐伏前陆逆冲带是塔里木克拉通区与前陆区寻找大中型油气田的最有利地区。  相似文献   

2.
塔里木盆地石油地质基本特征   总被引:2,自引:0,他引:2  
全面系统地总结并提出塔里木盆地10大石油地质基本特征:(1)塔里木盆地为一古生界克拉通盆地与中新生界前陆盆地组成的大型叠合复合型盆地;(2)塔里木盆地经历了多期构造运动及多个演化发展阶段;(3)塔里木盆地主要有寒武—奥陶系、石炭—二叠系,三叠—侏罗系3套烃源岩;(4)塔里木盆地发育多套深埋优质储层及5套良好储盖组合;(5)塔里木盆地油气水性质复杂、油气藏类型丰富多样;(6)塔里木盆地富油又富气,天然气藏以凝析气藏为主;(7)塔里木盆地既有陆相油气,又有海相油气,已发现的石油以海相成因为主,天然气以陆相成因为主;(8)塔里木盆地已发现的油气藏以中小型为主,具有埋深大、丰度低、产能高的特点;(9)塔里木盆地具有多个成油气系统、多期成藏及油气多次运移再分配的特点;(10)塔里木盆地油气分布十分复杂,油气聚集受多重因素制约  相似文献   

3.
宾都尼盆地是印尼东部重要的中生界含油气盆地之一,经历了克拉通内坳陷、裂谷期、被动陆缘和挤压反转期4期构造演化,形成现今弧后前陆盆地的构造格局。盆地的主要烃源岩和储盖组合多发育于中古生界,晚二叠世与早中侏罗世煤系地层是主力烃源岩,排烃高峰期始晚中新世,以生气为主。侏罗系三角洲-滨岸砂体为优质储层,原生粒间孔发育,平均孔隙度15%,平均渗透率18mD,属于中孔-中高渗透储层;盆地中北部前渊斜坡带发育一系列背斜、断背斜圈闭,且发现了大量气田群;天然气多以“下生上储”,即从前渊坳陷气源灶沿着砂体和断层运移至侏罗系砂岩圈闭聚集成藏。综合分析认为,储层质量和有效圈闭是侏罗系油气成藏的主控因素,东部逆冲褶皱带与海湾南部斜坡带是未来勘探的两个有利区带。  相似文献   

4.
西昆仑早古生代构造演化及其对塔西南盆地的影响   总被引:3,自引:0,他引:3  
在板块构造理论基础上,通过区内蛇绿岩、与俯冲有关的岩浆岩及相关沉积等综合研究,对西昆仑早古生代构造演化进行了重建:震旦纪-寒武纪西昆仑从塔里木大陆分裂出去,并在它们之间形成“昆仑洋”;寒武纪-奥陶纪“昆仑洋”洋壳向南俯冲于西仑之下,形成库地俯冲带、库地弧前盆地、西昆仑早古生代火山弧及麻扎-黑卡弧后盆地;志留纪-早泥盆世,“昆仑洋”消失,西昆仑早古生代火山弧与塔里木大陆碰撞,并形成塔里木前陆冲断带和泥盆纪前陆盆地磨拉石及塔里木大陆内泥盆纪的“红层相”  相似文献   

5.
Jia Chengzao, the CCP member, was born in Lanzhou, Gansu province, in 1948. He is the member of Academic Committee of State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation of Southwest Petroleum University. Graduated from Regional Geology and Mineral Survey of Geology Institute, Xinjiang Technical College, in 1975. He was studying in Geology Institute of Nanjing University from September in 1980 to February in 1987, and finally won the Master and Doctor degrees of Structural Geology and Geophysics. He was engaged in Geology Research on Tarim Basin from 1989 to 2000, was in EXXON Oil Company of America as a visiting scholar from 1996 to 1997, was geologist of PetroChina Company Limited and president of China National Petroleum Corporation from 2000 to 2004, was elected academician of Chinese Academy of Sciences. He is now the vice president of PetroChina Company Limited.Academician Jia Chengzao worked on oil and gas reservoir exploration and research in Tarim Basin for a long time, consummately carried on multi-disciplinary comprehensive research on oil and gas geology and structural geology of Tarim Basin, achieving series of significant development. He discovered and proved the biggest national high quality gas field Kela Gas Field 2 through his decision and organization, laying a resource foundation for West-East Gas Transmission and establishment of Tarim Gas Region, making important contribution to accelerated development of the national gas industry and the west development. He carried on multi-disciplinary multi-level and multi-direction comprehensive research on Tarim Basin, the biggest national basin: finding out the internal structure of the basin and conforming the basin style. He proposed the conception of Basin Group of Northern Tethys Tectonic Zone margin and their Rich Gas, pointing out that the basin group form Karakum basin in middle asia eastwardly to Tarim basin and Qaidam basin is a unified big gas region, which powerfully guided the exploration of depression gas in Kuche with the discovery of Kela Gas Field 2, and summarized and established the theory of ultra-high pressure gas field in foreland thrust belt for the first time in the world, making significant contribution on enriching the theory of oil and gas. In recent years, he devoted to research on petroleum exploration in China, proposed the Four-theories of onshore oil and gas exploration, including foreland thrust belt, lithologic stratigraphic oil and gas reservoir, the mature areas and the new areas, greatly developing and enriching the petroleum exploration of China, forcefully guided the onshore petroleum exploration of China in recent years, with large quantities of exploration achievement.  相似文献   

6.
在分析南美油气地质特征的基础上,进行南美主要含油气盆地待发现常规油气资源评价,总结待发现油气资源分布规律,探讨其勘探前景。结果表明,受4大板块碰撞影响,南美沉积盆地可分成弧前、弧后、前陆、内克拉通和被动陆缘盆地5种类型。南美油气成藏条件优越,烃源岩以中新生界海相-陆相泥岩为主,生烃潜力大。储层以白垩系和第三系碎屑岩和碳酸盐岩为主,分布广泛。盖层中新生界区域性泥岩和盐岩为主,封堵能力强。采用以成藏组合为基础评价单元的资源评价方法,将南美65个盆地共划分出152个成藏组合,并进行了资源评价。预测南美65个主要含油气盆地的待发现石油可采资源量为263716MMB,待发现凝析油可采资源量为7405MMB,待发现天然气可采资源量为559020BCF。待发现油气资源在平面上呈“两带”展布、“两中心”富集特征;在纵向上主要富集于白垩系和第三系。被动陆缘盆地和前陆盆地是南美未来油气勘探的两个重点领域,其中深海和前陆冲断带是主要勘探方向,巴西、委内瑞拉是重点关注国家。  相似文献   

7.
下扬子地区盆地的"四层楼"结构及其动力学机制   总被引:11,自引:1,他引:10  
下扬子地区震旦纪以来经历了不同的大地构造与地球动力学背景 ,盆地演化相应地经历了震旦纪—中三叠世海盆→晚三叠世—中侏罗世沿江前陆盆地→晚侏罗世—早白垩世火山岩盆地→晚白垩世—早第三纪陆相伸展盆地。下扬子地区震旦纪—中三叠世海盆发育于伸展性被动大陆边缘。沿江前陆盆地形成于扬子与华北板块碰撞活动中的前陆变形带上。火山岩盆地出现于区域性走滑剪切和环太平洋岩浆弧背景下。库拉—太平洋板块高角度、高速正面向东亚大陆下的俯冲 ,造成了岩石圈上拱拉张 ,从而产生了晚白垩世—早第三纪的陆相伸展盆地。随着西太平洋边缘弧后盆地的出现及印度与欧亚板块的碰撞 ,中国东部遭受近东西向挤压 ,从而结束了下扬子地区的盆地演化历史。  相似文献   

8.
季曼-伯朝拉盆地是俄罗斯重要的含油气盆地之一,经历了前裂谷、裂谷、被动陆缘和前陆4期演化阶段,形成现今古被动边缘-前陆叠合的构造格局。盆地不同期次的构造演化及叠合效应控制着盆地的烃源岩、储层发育和分布,进而控制了油气分布规律。盆地的主要烃源岩和储盖组合多发育于中晚古生界,上泥盆统多马尼克组烃源岩是盆地的主力烃源岩;主力储层为中上泥盆统、石炭系-下二叠统的碳酸盐岩和碎屑岩,储层物性整体较好;圈闭类型多为岩性-构造型圈闭;盆地油气主要沿着早期裂谷的反转隆起分布。盆地勘探程度分布不均,其中东部前渊区以及海域勘探程度较低,油气地质综合分析表明,前渊地区是最有潜力的含气区,海域仍具有良好的勘探前景,是未来勘探的两个有利区带。  相似文献   

9.
 Kuqa depression is a foreland basin developedwith Mesozoic-Triassic-Jurassic coal-bearing formation. Theresearch results of the coal-derived hydrocarbon forelandbasins in Kuqa depression indicated that the coal-bearingformation can be the rich sources for generating gas becauseof their thickness and rich source rocks with gas-generatingpredominant kerogen. Although the foreland thrust beltmainly acting in compression is very complicated, integrallarge structural traps can be formed. Moreover, the thrustbelt can act as the passage for communication with deepsource rocks. The high quality gypsolish and gypseous mud-stone cap rock developed in the upper formation is the keyfor the formation of the large gas field. The late formation ofreservoirs in the large gas fields depended on the hydrocar-bon-generating history controlled by the foreland basin andthe developing process of foreland thrust belt.  相似文献   

10.
塔里木盆地石炭 -第四纪概括为一次大构造旋回。盆地构造演化可分为 4个阶段 ,即克拉通边缘坳陷、前陆盆地、断陷 -坳陷、复合前陆盆地阶段。地层组合明显受构造作用控制 ,依据该盆地构造、沉积发育特征可划分出 4个构造 -地层组合  相似文献   

11.
四川盆地天然气主要分布于早期克拉通碳酸盐岩层系和晚期前陆层系碎屑岩领域中,由于碳酸盐岩层系中发育的气藏常常高含硫化氢,如罗家寨、渡口河等飞仙关组鲕滩气藏,储量动用难度大,因此,在四川盆地天然气勘探中,急需寻找低硫储量.前陆碎屑岩领域资源丰富,且低含硫,因此,该层系的有利勘探方向研究对指导盆地天然气勘探意义重大.通过四川盆地三大前陆盆地成藏研究,认为目前该层系首选勘探领域为龙门山前陆盆地,其次为米仓山和大巴山前陆盆地.有利勘探区带包括龙门山冲断带南段、梓潼凹陷、川中南部—蜀南构造带、龙门山冲断带北段、米仓山冲断带和大巴山冲断带.  相似文献   

12.
地层压力 ,尤其是异常地层压力对油气藏的形成和保存有着重要的作用。对中国典型含油气盆地进行了科学的分类 ,分析了克拉通、裂谷、前陆三大类盆地的油气成藏特征 ,在收集了大量探井实测地层压力数据的基础上 ,统计研究了这三类盆地的地层压力分布模型。将该模型与俄罗斯含油气盆地地层压力与油气藏分布的关系对比发现 ,异常地层压力是一个普遍存在的地质现象 ,不同类型的含油气盆地从古生代到新生代地层压力有增大的趋势。中国典型含油气盆地地层压力分布表明 ,前陆盆地以异常高压油藏为主 ,克拉通盆地油藏压力轻微超压 ,裂谷盆地异常低压油藏有一定分布  相似文献   

13.
中国南方大地构造演化及其对油气的控制   总被引:28,自引:0,他引:28  
按照板块构造理论及活动论、阶段论的思想,大致以中晚三叠世为界,将中国南方自震旦纪以来大地构造演化历史划分成海相盆地演化阶段(Z-T2)及陆相盆地演化阶级(T3-Q)两大阶段;又可进一步细分为扬子克拉通及其周缘裂谷盆地(Z-1q)、裂谷-克拉通-被动大陆边缘盆地(1c-O1)、被动陆缘-克拉通-前陆盆地(O2-S)、加里东运动(S末)、裂谷-克拉通盆地(D-T1)、克拉通残留海盆-弧后(浊积)盆地(T2)、印支运动(T2-T3)、华北-华南板块焊合、古特提斯封闭与前陆盆地的形成(T3-J2)、压扭背景下的改造作用及拉分盆地的形成(J3-K1)、伸展-裂陷盆地的形成(K2-E)、喜马拉雅运动(E末-N初)及披盖性构造层的形成(N-Q)12个阶段。特别是对南方自中晚三叠世以来的大地构造演化及其对现存油气的控制作用进行了系统研究,提出了晚侏罗世-早白垩世燕山运动对南方中生界、古生界原生油气藏的保存与破坏起到了决定性作用及燕山、喜马拉雅运动控制了现今南方原生、次生及再生烃(二次生烃)油气藏分布的新观点。  相似文献   

14.
龙门山南段前陆冲断带内的古油气藏   总被引:1,自引:0,他引:1  
通过对龙门山南段地表沥青发育特征及分布规律的研究,对比不同层位中流体充注特征,结合该地区构造演化史,证实了龙门山南段冲断带内曾经存在过古油(气)藏,重塑了古油(气)藏形成和破坏的过程。研究表明,沥青主要分布于观雾山组和灯影组次生溶孔、溶洞和裂缝中;以灯影组中沥青最为发育,侧向延伸稳定,垂向充填较厚,说明研究区曾存在过古油(气)藏。晚三叠世以前,来源于松潘-甘孜海盆的油藏流体,由西向东运移充注于现今前陆冲断带内的震旦系灯影组、泥盆系和二叠系储集空间中形成古油藏;晚三叠世盆山转换时期,古油藏随着前陆盆地的快速沉降而被深埋,油裂解成气而形成古气藏;随着冲断带向前陆盆地扩展,赋存于前陆盆地内的古气藏被破坏。  相似文献   

15.
对古生代扬子、华北及塔里木三大克拉通的区域构造背景及演化史、基底和盖层性质及演化史以及克拉通盆地形成、发育、充填及演化史等方面的统一性进行了研究,提出了“中国古生代扬子、华北及塔里木克拉通是一个统一体”的新观点假说。如果这一假说成立,将会对研究我国含油气盆地的构造学、沉积学、油气分布规律和油藏成藏机制等产生一定的影响,因而有可能会提高我国扬子、华北及塔里木地区的油气勘探的成功率。  相似文献   

16.
 Analyzing the characteristics of the Tethyantectonic field, the authors think that the Tethyan tectonicfield underwent three evolutional stages: closing of Pa-leo-Tethys and rifting of Neo-Tethys from early Permian tolate Triassic, subduction of Neo-Tethys and collision betweenthe Indian plate and the Eurasia plate from Jurassic to earlyof low Tertiary, and collision between the Arab plate and theEurasia plate and the A-type subduction of Indian plate fromlate of low Tertiary to the present. Combining the evolutionof the Tethyan orogenic belt with the characteristics of theNorthern Margin basin, it is suggested that the sedimentaryand tectonic characteristics and types of the Northern Mar-gin basin are controlled by the formation and evolution ofthe Tethyan orogenic belt and the ingression of Tethys. Theevolution of Northern Margin basin can be divided into threedevelopment stages: back-arc foreland basin from late Per-mian to Triassic, the back-arc fault subsidence and depres-sion from Jurassic to the early of low Tertiary, and the reac-tive foreland basin from the late of low Tertiary to the pre-sent. The Northern Margin basin in the Tethyan tectonicfield is an important region for natural gas accumulation,and the Tarim Basin is a part of this region.  相似文献   

17.
喀什凹陷的成因及找油方向   总被引:6,自引:0,他引:6  
通过对喀什凹陷的基底结构和变形特征分析认为,喀什凹陷在侏罗纪—中新世期间的沉降主要与塔拉斯—费尔干纳断裂的拉分作用有关;上新世以后的变形受天山和昆仑山山前逆冲作用控制;凹陷北部斜坡带的变形机制主要是山前重力滑动和山麓逆冲作用。根据与喀什凹陷有类似成因联系的中亚含油气盆地的油气勘探经验预测,喀什凹陷的油气主要赋存于山前构造带向斜盆地内部的低凸起中,下第三系膏盐层为主要勘探标志层。  相似文献   

18.
四川汶川大地震与C型俯冲的关系和防震减灾的建议   总被引:5,自引:0,他引:5  
四川汶川大地震发生在龙门山冲断带,属构造地震.龙门山冲断带与川西前陆盆地是中国西部典型大陆构造,属C型俯冲(陆内俯冲)模式.C型俯冲不仅控制油气资源分布,还孕育着发震机制.作者从龙门山冲断带地史演化、变形特征、深部地球物理信忠,建立起龙门山C型俯冲构造运动模式.汶川大地震发震与此模式的地质构造背景关系密切,是现今发生的陆内俯冲引起的地震.当时可能发生了两次强烈地震,这才可能是北川县城遭到毁灭性破坏的原因.汶川大地震可能发生在上地壳底至中地壳深12~24 km的高导层上,属中国陆内俯冲型地震,很可能是太平洋板块推挤中国大陆的远端效应触发作用所引起,与印度板块推挤作用关系不大.  相似文献   

19.
Abnormal overpressure occurs in the forelandbasins of Kuqa, South Junggar and West Sichuan in China.The pressure coefficients are high. Overpressure exists inwide areas and various strata. The layers of overpressurehave a very close relationship with lithology, and the area ofoverpressure is controlled by the piedmont depression. Themechanisms of overpressure formation in the Kuqa andSouth Junggar Depression include disequilibrium compac-tion and tectonic compression; the importance of these twofactors varies in different basins and in different stages of thesame basin. Different models of gas accumulation are estab-lished to explain the relationship between overpressure dis-tribution and gas pool formation, and the influence of over-pressure on the gas pools. These models include: (i) theviolent tectonic movement leads to the pool formation inoverpressure belt (Kela-2 gas field in Kuqa); (ii) the pres-sure releases at shallow part and the gas pool forms in latetime (Hutubi gas field in southern Junggar Basin); (iii)through the pressure transfer the gas migrates and accumu-lates (Xinchang gas field in Western Sichuan Basin).  相似文献   

20.
鄂尔多斯盆地西缘为一走向南北的逆冲带,该带在地质构造上处于我国东部华北地台和西部地糟的交接地带,由于其特殊的大地构造位置,因此,形成了六盘山盆地和银川盆地两种不同性质的盆地.本文从这两个盆地的构造特征、形成及演化等几个方面分析、研究,认为六盘山盆地是一个中、新生代的挤压型盆地,银川盆地是一个先拉张后拉分的盆地.  相似文献   

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