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1.
塔里木孔雀河斜坡构造演化与油气成藏的关系   总被引:2,自引:0,他引:2  
构造演化与油气成藏相结合的研究方法,对于塔里木孔雀河斜坡的油气勘探具有重要的指导意义.经研究认为研究区的构造运动,主要分为震旦纪到早奥陶世的拉张阶段、中晚奥陶世到侏罗纪的挤压隆升剥蚀阶段以及白垩纪到新生代的前陆盆地斜坡稳定沉降阶段.构造是研究区油气成藏的主控因素,构造控制了生储盖发育与油气运移通道等成藏要素组合.最后通过仔细对比分析,认为该区维马克-开屏构造带以及龙口构造带具有良好的勘探潜力.  相似文献   

2.
塔里木盆地轮南低凸起断裂系统与复式油气聚集   总被引:18,自引:7,他引:18  
塔里木盆地轮南低凸起复式油气聚集区的提出对高效指导轮南地区的油气勘探起了促进作用。基于区域石油地质研究成果,充分利用成像测井、高分辨三维地震断裂精细描述和有机地球化学等新技术新方法,本文系统研究了轮南低凸起复式油气聚集成藏的关键地质条件,全面刻画了轮南断裂系统的复杂特征,明确了轮南多含油层系具有相同的寒武系海相烃源,证实了在多期次成藏过程中,断裂系统既是早期成藏的油气充注通道,又是晚期调整气侵的输导体系。对轮南海相碳酸盐岩大型油气田的成藏,断裂系统既是有效的储集空间,又是储集性能改善和连通性增强的重要条件,提出复杂断裂系统多期活动下油气渐进幕式成藏和跨越动态成藏模式。从前提(古隆起)、基础(多套储盖组合)和关键(断裂系统)3方面探讨了复式油气聚集成藏的机理,并指出轮古东走滑断裂带是近期扩大轮南复式油气聚集区规模、实施天然气勘探的现实领域。  相似文献   

3.
L区块位于哥伦比亚亚诺斯盆地的前隆构造带以东的斜坡带上,其地层较平缓,圈闭规模小,油气分布不均,预测难度大。以亚诺斯盆地L区块勘探开发最新资料为基础,结合前人的研究成果,采用油气地质综合分析方法,探讨油气成藏主控因素,旨在指导下一步油气经济高效滚动勘探开发工作。研究结果表明,L区块Carbonera组的油气成藏主要受烃源岩、断层、盖层、储盖组合及圈闭的控制,且在油气成藏过程中,生烃中心控制着油气的富集及生物降解程度,断层控制着油气的分布,盖层的垂向封闭影响着油柱高度,多套储盖组合控制着油气藏的类型,圈闭的形态和大小则控制着油气藏的规模。  相似文献   

4.
寒武纪西高东低的海底地貌显著控制着塔里木板块轮南区的岩相差异。轮南寒武系可划分为6个层序,每个层序的地震反射总体上显示较弱,从西到东可划分出3种地震相并分别对应3个沉积带:平行连续地震相指示碳酸盐岩台地、杂乱丘状地震相指示台缘高能带、斜交连续地震相指示斜坡。不同层序在坡折带附近相互叠置,从下到上显示为台地有西向东迁移的趋势,平面上呈南北向展布。坡折带规模大,与轮南隆起巨型台背斜构造配置好,紧邻寒武系油源区,白云岩储层发育,溶蚀孔洞、裂逢、晶间孔综合构成主要储集空间,台地相低能带致密碳酸盐岩可作为盖层,这些因素优化坡折带为油气勘探的最好靶区。  相似文献   

5.
巴什托普断裂经历了两期变形。早期变形发生在中生代(或中生代末),沿中寒武统膏盐层发生的顺层滑动在上盘形成断层转折褶皱,之后发生冲断并伴有断层传播褶皱发育。由于南天山冲断带向南扩展(始自始新世晚期在中新世达到高潮)时该断裂带不活动,巴楚断隆南界的西段由中生代的巴什托普断裂北移至色力布亚断裂带。晚期变形发生在更新世,向南冲断,属西昆仑前陆褶皱冲断带中低级别的背冲断层。该地的生储盖条件较好,是相对的低应变区,因而是有利的油气勘探区。  相似文献   

6.
塔里木盆地轮南低隆凝析气藏特征及成藏机理分析   总被引:3,自引:0,他引:3  
塔里木盆地轮南低隆地区在三叠纪、石炭纪和奥陶纪地层中已发现的16个凝析气藏的凝析油含量变化范围大,其天然气组成具有过熟干气的特征。通过PR状态方程对过成熟干气与地层原油不同比例的混合体系PVT相图模拟计算表明,晚期过成熟干气的大量混入,对油气的成藏相态有显著的影响。根据轮南低隆地区的地质特征,综合分析了凝析气藏形成机理、相态成因和过成熟干气富化为凝析气藏的形成条件。  相似文献   

7.
周凤英  张水昌 《岩石学报》2000,16(4):670-676
轮南2井为轮南潜山构造2号高点上的一口高产油气井,主要产层为三叠系,其次为侏罗系。通过对轮南2井油藏中流体包体分布特征和成分研究,结合轮南地区构造演化史,埋藏 生烃史分析,明确了塔里木盆地轮南2井三叠系油藏主要为一次油气大规模注入形成,油气注入时间主要在14~16Ma左右,油源来自于中旬奥陶纪烃源岩,件罗系油藏则具有两次的油气注入,第一次的油气流入主要发生在14~16Ma左右,油源来自于中晚陶统烃  相似文献   

8.
<正> 轮南低隆区的原油类型既有正常—重质油,又有正常—中高蜡油和正常—轻质油。产油层位有奥陶系、石炭系、三叠系、侏罗系。已有的认识认为:轮南地区三叠系和侏罗系中的原油是典型的海相油,来源于满加尔坳陷寒武系  相似文献   

9.
谢渊  丘东洲  王剑  汪正江  刘建清  余谦  李嵘  杨平  李旭兵 《地质通报》2012,31(11):1769-1780
通过油气地质调查和综合研究认为,雪峰山西侧盆山过渡带震旦系—下古生界可能发育3套主要的生储盖组合及1套次要生储盖组合;可能存在原生型油气藏等4种油气藏。依据生储盖及其组合发育特征、保存条件、油气显示、构造圈闭及油气系统分析,初步优选出利川—恩施、石门—桑植、仁怀—金沙、武隆—道真4个有利含气远景区,以及湄潭—思南、黄平—麻江2个较有利含气远景区。这些认识成果,为深入开展雪峰山西侧地区有利油气勘探目标区块优选和评价奠定了重要的基础。  相似文献   

10.
轮南地区油气相态分布非常复杂,奥陶系油气藏平面上具有西油东气的特点。西部轮古西油田、塔河油田和轮南1井区油族成熟度略低且有生物降解痕迹,主要以重油形式分布;东部地区油族成熟度略高,主要以轻质油、凝析油形式存在;中间地段桑塔木断垒带、中部平台区和轮南断垒带发生混合作用形成了中一高蜡油。各地区油气在垂向上变化很大,东部地区奥陶系和石炭系为凝析油气,三叠系又为正常油分布区;西部地区奥陶系为稠油,三叠系为正常油。轮南地区奥陶系在纵向上可能受控于岩溶和储层的发育程度,横向上受控于断裂作用。轮南地区油气成藏时间较早,不同物性的原油都是古油藏多期供油的结果。  相似文献   

11.
The Triassic in the Longmengshan foreland basin is rich in oil and gas resources. Its reservoirs feature low-porosity, low-permeability, small pore throat, high water saturation, and strong heterogeneity. The existence of abnormally high pressure and various reservoir-cap combinations developed at different times provide favorable conditions for trapping oil and gas. Taking the theory of petroleum systems as a guide, and beginning with research on tectonics, sedimentary history, distribution and evolution of source rocks, reservoir evolution, hydraulic force distribution, and hydrocarbon migration, analysis and study of static factors like source rocks, reservoirs and cap rocks, and dynamic factors such as hydrocarbon generation, migration, and accumulation revealed the characteristics of the Upper Triassic petroleum system in western Sichuan province. The deepbasin gas in the central hydrocarbon kitchen of the Upper Triassic, structural-lithological combination traps on the surrounding slopes, and the structural traps of the Indo-Chinese-Yangshan paleohighs, are potential plays. The relatively well- developed fault zones in the southern segment of the Longmengshan foothill belt are favorable Jurassic gas plays. Pengshan-Xinjin, Qiongxi, and Dayi are recent exploration targets for Jurassic oil/gas reservoirs.  相似文献   

12.
鄂尔多斯盆地中生界低渗透岩性油藏形成规律综述   总被引:15,自引:0,他引:15  
刘显阳  惠潇  李士祥 《沉积学报》2012,30(5):964-974
鄂尔多斯盆地中生代为典型的大型内陆坳陷湖盆,含油层系主要为三叠系延长组和侏罗系延安组。长7优质烃源岩为中生界油藏的主要源岩,异常高压为中生界低渗透储层油气大规模运移的主要动力,孔隙性砂体和裂缝系统是中生界石油运移的主要通道,多种输导体系和异常压力的有效组合控制了油藏的展布特征。利用储层成岩流体包裹体、自生伊利石测年和沥青期次等多种方法对成藏期次进行了分析,认为中生界油藏的形成为连续充注一期成藏的特点,成藏期可分为早、中、晚三个阶段,分别对应于早白垩世早期、中期和晚期,主成藏期为早白垩世中期的中期成藏阶段。总结出鄂尔多斯盆地延长组低渗透岩性油藏的形成规律,在长7优质烃源岩欠压实作用和生烃增压共同产生异常高压生的作用下,原油通过互相叠置的相对高渗砂体向上、向下运移,在长4+5、长6、长8形成大规模岩性油藏,并通过微裂缝和前侏罗纪古河输导体系,在长2及侏罗系形成了构造-岩性油藏。  相似文献   

13.
侏罗系是鄂尔多斯盆地石油勘探与开发的重要目的层。华庆地区富县组油藏是近年鄂尔多斯盆地侏罗系勘探取得重大突破的新区块和新层系,已展现出良好的勘探前景和资源潜力。本文利用印模法等方法精细刻画了华庆地区前侏罗纪古地貌特征,深入分析了侏罗系富县组油藏控制因素和富集规律。结果表明,华庆地区侏罗系富县组油藏主要来源于下部三叠系延长组优质烃源岩,油藏类型为构造油藏和岩性-构造油藏,发育在古地貌斜坡带背景之上的河道边滩沉积主砂带内。油藏富集主要受控于前侏罗纪古地貌特征,充足的油源供给、河道边滩相沉积、优越的输导条件、鼻隆构造及良好的泥岩封堵等是华庆地区富县组油藏富集的主要控制因素。  相似文献   

14.
《China Geology》2020,3(4):623-632
North Carnarvon Basin is a gas province with minor oily sweet spots in deepwater area with water depth more than 500 m, which is one of the hot spots of global petroleum exploration for its series of giant hydrocarbon discoveries in recent years. However, the degree of oil and gas exploration in deepwater area is still low, and the conditions for oil and gas accumulation are not clear. Based on the current exploration situation and latest database of fields, applying multidisciplinary analysis of hydrocarbon geology, hydrocarbon accumulation elements and its exploration direction of North Carnarvon Basin in deepwater area are analyzed. The results show that there are three sets of main source rocks in deepwater area of North Carnarvon Basin, which are Triassic marine shale in Locker Formation and delta coal-bearing mudstone with thin carbonaceous mudstone in Mungaroo Formation, Lower –Middle Jurassic paralic carbargilite and coal measure strata in Athol Formation and Murat Formation, Cretaceous delta mudstone in Barrow Group and marine shale in Muderong Formation. Most source rock samples show gas-prone capability. The coarse sandstone of delta facies in Middle–Upper Triassic Mungaroo Formation is the most important reservoir in deepwater area, Lower Cretaceous Barrow Group deep-water gravity flow or underwater fan turbidite sandstone is the secondly main reservoir. Lower Cretaceous marine shale in Muderong Formation is most important regional caprock. Triassic mudstone in Mungaroo Formation is an important interlayer caprock in deepwater area. There are two main reservoir accumulation assemblages in deepwater area, one is Triassic structural-unconformity plane reservoir accumulation assemblage of Locker Formation to Mungaroo Formation, and the other is Lower–Middle Jurassic Athol Formation and Murat Formation–Lower Cretaceous stratigraphic lithology-structural reservoir accumulation assemblage of Barrow Group to Muderong Formation. There are three main control factors of hydrocarbon Accumulation: One is coupling of source and seal control hydrocarbon distribution area, the second is multi-stage large wave dominated deltas dominate accumulation zone, the third is direction of hydrocarbon migration and accumulation in hydrocarbon-rich generation depression was controlled by overpressure. The south of Exmouth platform in deepwater area is adjacent to hydrocarbon rich depression zone, reservoir assemblage is characterized by “near source rocks, excellent reservoir facies, high position and excellent caprocks ”, which is the main battlefield of deepwater oil and gas exploration in North Carnarvon Basin at present. There are a lot of fault block traps in the northern structural belt of Exmouth platform, and the favorable sedimentary facies belt at the far end of delta plain in Mungaroo Formation is widely distributed, which is the next favorable exploration zone. The Lower Cretaceous, which is located at the concave edge uplift adjacent to the investigator depression and the Exmouth platform, also has a certain exploration prospect in northwest of deepwater area.  相似文献   

15.
准噶尔盆地陆梁地区断裂-不整合面输导体系与油气运聚   总被引:5,自引:3,他引:5  
断裂是准噶尔盆地陆梁隆起油气远距离从源(盆1井西凹陷)到藏(陆梁油田)的主要通道,其中基东断裂作为油源断裂起了关键性的作用。不整合面也是该区油气顺利从源到藏的必要条件,不整合面分布的非均质性是造成该区油气分布差异性的一个重要影响因素。断裂与不整合面形成的断裂-不整合面输导体系是一个高效的输导网络,是油气顺利运聚、成藏的重要条件:二叠系顶面的不整合面与深部断裂组成的输导体系是沟通盆1井西凹陷二叠系油源向上部侏罗系运移的主要通道,而白垩系底面的区域不整合面与中浅层正断层组成的输导体系是头屯河组和呼图壁河组油气成藏的主要因素。  相似文献   

16.
Abstract: The Ordos Basin is an important intracontinental sedimentary basin in western China for its abundant Mesozoic crude oil resources. The southern part of the Tianhuan Depression is located in the southwestern marginal area of this Basin, in which the Jurassic and Triassic Chang-3 are the main oil-bearing strata. Currently, no consensus has been reached regarding oil source and oil migration in the area, and an assessment of oil accumulation patterns is thus challenging. In this paper, the oil source, migration direction, charging site and migration pathways are investigated through analysis of pyrrolic nitrogen compounds and hydrocarbon biomarkers. Oil source correlations show that the oils trapped in the Jurassic and Chang-3 reservoirs were derived from the Triassic Chang-7 source rocks. The Jurassic and Chang-3 crude oils both underwent distinct vertical migration from deep to shallow strata, indicating that the oils generated by Chang-7 source rocks may have migrated upward to the shallower Chang-3 and Jurassic strata under abnormally high pressures, to accumulate along the sand bodies of the ancient rivers and the unconformity surface. The charging direction of the Jurassic and Chang-3 crude oils is primarily derived from Mubo, Chenhao, and Shangliyuan, which are located northeast of the southern Tianhuan Depression, with oils moving toward the west, southwest, and south. The results show that an integration of biomarker and nitrogen-bearing compound analyses can provide useful information about oil source, migration, and accumulation.  相似文献   

17.
海相低勘探程度地区油气资源评价的难点是资料少、地质认识程度低、主要参数获取难度大,影响评价结果可信性。以柴达木盆地德令哈坳陷石炭系为例,系统评价德令哈坳陷石炭系生储盖条件,油气资源评价选用盆地模拟法与类比法相结合方法,关键参数的确定采用了地球物理、地球化学与石油地质学等多种方法,利用油气运移聚集模拟和不同运聚单元资源量计算结果划分有利勘探区带,充分发挥不同方法的特点。评价结果表明:柴达木盆地德令哈坳陷上石炭统发育有泥岩、碳质泥岩、煤和泥灰岩等4类烃源岩,下石炭统发育泥岩和泥灰岩等2类烃源岩;上石炭统烃源岩有机质丰度较高,克鲁克组多数泥岩、碳质泥岩、煤和泥灰岩TOC含量分别为大于1.0%、6.0%~10.0%、大于60%、大于0.3%,有机质类型主要为Ⅱ和Ⅲ型,少量的Ⅰ型,成熟度均已达到成熟,具有较好的生烃潜力;石炭系发育碎屑岩储层和碳酸盐岩储层,并发育有多套盖层,生储盖组合类型有自生自储自盖式、下生上储上盖式和上生下储上盖式,石油地质条件总体较好;石炭系主要生烃时期为石炭纪晚期—三叠纪中期,生烃高峰时期为二叠纪中期—三叠纪中期;德令哈坳陷石炭系的油气资源量达到3.83×108 t(油当量),石油资源量为1.63×108 t,天然气资源量为2 760.21×108 m3,油气主要分布于欧南凹陷和欧龙布鲁克凸起两个构造单元。  相似文献   

18.
通过对尚家—太平川地区构造演化、烃源岩特征、沉积特征、储盖组合、油水关系及油藏类型和油气成藏特征的分析,研究了本区的石油地质条件,认为烃源岩具有较好的生、排烃能力,分流河道砂体为油气聚集提供较好的沉积环境,良好的储盖组合有利于油气的聚集与保存。研究区没有统一油水界面,尚家地区以岩性—构造油藏为主,太平川地区以构造—岩性油藏为主。区内扶余—杨大城子油层油气成藏受有效性圈闭、优势运移通道、过剩压力、储集条件和构造诱导作用控制。据上述认识确定了研究区下一步的勘探方向,并已在指导勘探实践中取得了较好的效果。  相似文献   

19.
合肥盆地石炭系—二叠系具有油气勘探潜力,但研究薄弱。根据盆地中部安参1井石炭系—二叠系储层中流体包裹体的岩相学分析及显微测温,主要讨论了油气运移特征。结果表明,储层石英微裂隙及次生加大边中与油气包裹体伴生的盐水包裹体均一温度主要在145.2~150.2℃,155.6~160℃及169.9~177.9℃等三个温度区间。结合储层埋藏史-热史,发现储层主要经历了3期流体充注,时间在162.1~157.2 Ma之间(晚侏罗世)。通过包裹体冰点的测定,得到每一期流体的盐度特征,结合构造演化、烃源岩发育背景,推测油气主要是在石炭系—二叠系地层内部运移,同时也可能有新元古界、下古生界等深部的热液通过深大断裂运移到石炭系—二叠系,参与了油气的运聚,这在研究区今后的油气成藏研究中需要注意。  相似文献   

20.
于波 《地质与勘探》2012,48(4):858-864
[摘 要] 在综合沉积相、油源对比、地层压力结构、包裹体均一温度等方面的基础上,对鄂尔多斯盆 地吴起-定边地区延长组下部油气成藏模式与主控因素进行了研究,认为研究区发育长7 和长9 两套烃 源岩,油源对比显示吴定地区长8、长9 油气主要来源于长7 烃源岩,长9 烃源岩次之;延长组长7 生烃 增压是石油向下运移的主要动力,平面上长7 及长8 过剩压力差低值背景下的高值区是油气聚集的主 要场所;延长组下部以三角洲前缘水下分流河道和河口坝为主,能够形成孔渗条件较好的储集空间;且 长8、长9 油藏具有“幕式充注、连续成藏冶的特征,两者同属于源下成藏组合;综合分析认为上三叠统油 藏分布主要受“近源、低压、优相冶三大因素的控制。  相似文献   

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