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1.
西非海岸属典型的被动大陆边缘,经历了前裂谷、裂谷和被动陆缘等三个演化阶段,北段与中南段盆地裂谷作用的时间和方式不同。在由构造—沉积控制的盆地发展演化过程中发育三套主力烃源岩,即裂谷期盐下湖相页岩、被动陆缘期盐上海相页岩以及浅海相—三角洲相页岩;发育裂谷期湖相碎屑岩、被动陆缘期碳酸盐岩、滨岸砂岩、浊积体和三角洲砂岩等多套储层。阿普特盐岩为主要的区域盖层,形成了裂谷期的断块、断背斜、盐岩构造以及与被动陆缘期同生长断层相关的滚动背斜等众多构造和圈闭。  相似文献   

2.
以板块构造理论和石油地质学理论为基础,分析西非中南段盐盆形成演化、成藏组合特征,提出中南段盐盆油气勘探方向。西非中南段盐盆的形成演化可以分为前裂谷、同裂谷、过渡和后裂谷4个阶段。受盆地形成演化的控制,中南段盐盆总体发育盐下下白垩统、盐上下白垩统、上白垩统和第三系共4套储盖组合。以储盖组合为核心,根据成藏组合划分原则,在中南段盐盆5个盆地共划分出16套成藏组合。综合分析各盆地勘探现状、油气地质条件和勘探潜力后,提出中南段盐盆未来勘探以深水区勘探为主,其中下刚果盆地和杜阿拉盆地应重点关注第三系成藏组合,加蓬盆地应重点关注盐上上白垩统成藏组合和盐下下白垩统成藏组合,宽扎盆地应重点关注盐下下白垩统成藏组合,里奥穆尼盆地应重点关注上白垩统成藏组合。  相似文献   

3.
西非被动边缘含油气盐盆地包括西非安哥拉—喀麦隆段的加蓬盆地、下刚果盆地、宽扎盆地等。认为这些盐盆地从构造、沉积相、油气分布上都具有垂向上的分段性。盆地演化受控于石炭纪末泛大陆裂解及随后南大西洋的张开。盆地演化划分为前裂谷阶段(J3前)、同裂谷阶段(J3—K1)、过渡阶段(K1)和后裂谷阶段(K2—Q)。由于Tristan热点活动以及热带干旱气候的相互作用,过渡阶段发育厚层阿普特阶盐层,将盆地分为盐上、盐下两套油气系统,控制了油气纵向上的分布。盐盆地以上侏罗统—下白垩统特富湖相Ⅰ型烃源岩、森诺曼阶—赛诺统缺氧环境下形成的Ⅱ型海相烃源岩为主要源岩;大型深水浊积扇体为储层,油气通过同生断层及盐窗等疏导通道运聚至构造圈闭、盐层顺层滑脱引起的拱张圈闭以及一些岩性圈闭中,这些有利的成藏条件相匹配形成了巨大规模油田。  相似文献   

4.
在研究西非海岸盆地形成演化的基础上,总结各盆地石油地质特征,划分各盆地成藏组合并评价资源潜力,最终提出了油气勘探方向。西非海岸17个盆地从北往南可分为5段:北段盐盆、中段盆地、尼日尔三角洲、中南段盐盆和南段盆地,其形成演化可分为前裂谷、同裂谷和后裂谷3个阶段,总体发育6套储盖组合。以储盖组合为核心,在西非海岸17个盆地中共划分出27个成藏组合。以成藏组合为资源评价基本单元,采用类比法、发现过程法和主观概率法,计算和预测西非17个盆地待发现常规油气可采资源量为146 175 MMBOE。待发现常规油气资源在平面上主要分布于中南段盐盆和尼日尔三角洲,纵向上主要位于白垩系、古近系和新近系。西非海岸17个盆地按勘探潜力从大到小分为Ⅰ、Ⅱ、Ⅲ类,应重点选择Ⅰ、Ⅱ类盆地开展勘探活动。西非重点勘探目标为深水浊积岩和盐下碳酸盐岩,每个盆地主力成藏组合叠合最多的区域就是该盆地最有利的勘探区带。  相似文献   

5.
胡湘瑜 《现代地质》2013,27(1):133-142
以板块学说为理论基础,利用IHS能源信息库及新项目评价资料,从西非被动大陆边缘盆地群原型盆地入手,系统剖析了该区大油气田的形成条件与主控因素,建立了大油气田3类成藏模式。研究认为,西非经历了早白垩世贝利亚斯期至巴雷姆期陆内裂谷、阿普特期陆间裂谷、阿尔必期以来的被动大陆边缘3个原型阶段,分别充填了陆相、过渡期泻湖相及漂移期海相沉积体系。陆内裂谷湖相及漂移海相沉积形成了“下湖上海”两套优质烃源岩;过渡早期海侵砂砾岩,漂移期碳酸盐岩、三角洲、深水浊积砂体形成了多套优质储集层;过渡晚期盐岩及漂移期海相页岩分别为盐上及盐下大油气田形成了高效区域封堵。以此为依据,分别建立了南段“盐岩不发育裂谷型”、中段“盐岩发育双层型”及北段“高建设性三角洲型”3类大油气田成藏模式。该研究不但深化了被动大陆边缘盆地油气富集规律,而且能为我国石油公司在该类盆地新项目评价中提供充分的地质依据。  相似文献   

6.
南海南沙海域沉积盆地构造演化与油气成藏规律   总被引:2,自引:0,他引:2  
据钻井、地震剖面、区域地质及磁异常条带分析解释,南沙海域及其邻区的主要沉积盆地的形成演化受裂谷起始不整合面和破裂不整合面分隔,可分为前裂谷期、裂谷期和后裂谷期3个构造阶段。大中型油气藏相关数据的统计表明,南沙海域及邻区大中型油气藏的成藏要素和油气田发育受构造阶段控制。(1)烃源岩发育具有分期、分区特征,礼乐盆地发育前裂谷期、裂谷1幕烃源岩;万安、曾母、西北巴拉望盆地发育裂谷2幕烃源岩,文莱-沙巴盆地发育后裂谷期烃源岩。(2)储层发育具有分期、分带特征,表现为外带老(裂谷2幕)、内带新(后裂谷期)。(3)圈闭类型包括构造、岩性地层圈闭及构造-岩性地层等因素形成的复合圈闭,大致具有内带以地层圈闭为主,外带以构造圈闭为主的特征。(4)大中型油气田分布具有外带砂岩富油气、内带碳酸盐岩富气特点。(5)南沙海域及邻区发育两个后裂谷期主含油气区,即东部巴兰三角洲砂岩背斜油气区和西部卢卡尼亚碳酸盐台地气区。其中,大中型气田的成藏要素组合为裂谷2幕烃源岩、后裂谷期碳酸盐岩储层和地层圈闭;大中型油气田则为后裂谷期烃源岩、砂岩储层和背斜圈闭。  相似文献   

7.
西非毛塞几比盆地(又称塞内加尔盆地)已经成为世界油气勘探的热点区。通过对毛塞几比盆地近5年的油气勘探新发现的综合地质研究,明确了盆地油气成藏条件新特征。认为盆地发育下白垩统阿普特-阿尔布阶和上白垩统赛诺曼-土伦阶2套优质的海相烃源岩;发育下白垩统阿尔布阶陆架边缘三角洲砂岩储层和上白垩统下赛诺曼阶深水浊积砂岩2套有利储层,是盆地两套新目的层系。通过综合地质研究,总结出下白垩统阿尔布阶陆架边缘三角洲砂岩和上白垩统下赛诺曼阶深水浊积砂岩2类有利成藏组合,陆架边缘砂岩储层分布和深水区构造岩性复合圈闭条件分别是2个勘探新层系油气成藏的主控因素。对油气成藏条件特征的研究认识为明确盆地勘探潜力和方向起到了指导作用。  相似文献   

8.
阿拉斯加北坡盆地海域经历了四个主要构造演化阶段,分别为前中泥盆世埃尔斯米尔造山阶段、晚泥盆世至三叠纪被动边缘阶段、侏罗纪至早白垩世裂谷阶段以及中—晚白垩世至第四纪前陆盆地阶段。研究区发育良好的生储盖组合:三叠系Shublik组为主力烃源岩;下白垩统Kuparuk组浅海相和三角洲相砂岩为主要勘探目的层,上白垩统Torok组三角洲砂岩为次要目的层;下白垩统泥岩为区域盖层,且封盖条件好。研究区在构造演化过程中形成了大量圈闭,以大型低幅背斜构造圈闭、构造-地层复合圈闭为主,并发育多套成藏组合。认为北坡盆地海域具有优越的油气成藏地质条件,待发现资源量巨大,勘探前景广阔。前陆盆地挤压构造带、楚科奇海岸、巴罗拱曲等构造圈闭发育区是有利勘探区带。  相似文献   

9.
加蓬盆地盐岩特征及其对盐下油气勘探的影响   总被引:1,自引:1,他引:0       下载免费PDF全文
加蓬盆地是一个典型的被动大陆边缘含盐盆地,以下白垩统盐岩为界分为盐上、盐下两个勘探领域。近年来随着巴西深水盐下陆续获得多个世界级油气田发现,以加蓬、宽扎为代表的西非盐下也逐渐成为世界油气勘探的热点。如何落实盐下圈闭是制约盐下油气勘探的首要难题。从盐岩岩性组合、岩石物理特征入手,分析了加蓬盐岩特征及其对盐下地震成像及构造落实的影响。同时,针对加蓬深水这一热点区域勘探程度低、烃源岩、储层等基本石油地质条件不清的特点,利用盆地模拟手段,分析了加蓬深水区盐下烃源岩的热成熟度及盐岩对盐下烃源岩热演化的影响;结合新钻井资料,分析了盐岩对盐下储层物性的影响,指出加蓬深水区盐下储层具有较好物性;分析了盐岩平面分布特征,从盖层角度指出了盐下油气勘探最有利的区带。对其他含盐盆地盐下油气勘探具有一定借鉴意义。  相似文献   

10.
中西非裂谷盆地白垩系两类优质烃源岩发育模式   总被引:1,自引:1,他引:0  
中西非裂谷系位于非洲中部,主要为沿中非剪切断裂带分布的被动裂谷盆地,进一步划分为中非裂谷系和西非裂谷系。针对国内外对勘探程度极低的中西非裂谷盆地白垩系优质烃源岩展布、发育机理及油气成藏模式认识薄弱的现状,笔者在开展大量中西非裂谷盆地上、下白垩统两类烃源岩样品的主微量元素等地球化学分析的基础上,从含油气盆地构造、烃源岩发育古环境、古气候、古生产力和有机质保存条件等分析出发,剖析了不同类型含油气盆地优质烃源岩发育主控因素,分别建立了中、西非裂谷系低勘探程度含油气盆地下白垩统、上白垩统优质烃源岩的发育模式:中非裂谷盆地(Bongor、Muglad、Melut盆地)下白垩统裂陷期快速沉降、温暖湿润气候条件下,勃发的水生有机质(藻类)控制的深水湖相优质烃源岩“生产力”单因素发育模式;西非裂谷盆地(Termit盆地)上白垩统拗陷期海侵、炎热潮湿气候条件下,陆源有机质输入为主,优越的保存条件(偏咸水体)优质海相烃源岩 “生产力+保存条件”双因素控制的发育模式。从而进一步锁定富油气凹陷和主力成藏组合,有效指导含油气盆地内选区选带,助推油气规模储量发现。  相似文献   

11.
The northern South China Sea margin has experienced a rifting stage and a post-rifting stage during the Cenozoic.In the rifting stage,the margin received lacustrine and shallow marine facies sediments.In the post-rifting thermal subsidence,the margin accumulated shallow marine facies and hemipelagic deposits,and the decpwater basins formed.Petroleum systems of deepwater setting have been imaged from seismic data and drill wells.Two kinds of source rocks including Paleogene lacustrine black shale and Oligocene-Early Miocene mudstone were developed in the deepwater basin of the South China Sea.The deepwater reservoirs are characterized by the deep sea channel fill,mass flow complexes and drowned reef carbonate platform.Profitable capping rocks on the top are mudstoues with huge thickness in the post-rifting stage.Meanwhile,the faults developed during the rifting stage provide a migration path favournble for the formation of reservoirs.The analysis of seismic and drilling data suggests that the joint structural and stratigraphic traps could form giant hydrocarbon fields and hydrocarbon reservoirs including syn-rifting graben subaqueous delta,decpwater submarine fan sandstone and reef carbonate reservoirs.  相似文献   

12.
新疆塔里木盆地白垩—第三纪沉积相及储集体分析   总被引:2,自引:1,他引:2  
根据沉积特征、岩石矿物特征、生物特征及地球化学特征的综合分析,将塔里木盆地白垩-第三系划分为3个沉积相组、12个沉积相、20个沉积亚相和若干个沉积微相,并首次在塔北发现海相沉积,塔里木盆地白垩-第三纪储集体包括碎屑岩和碳酸盐岩两种,东北坳陷区储层主要为碎屑岩,特别是下白垩统卡普沙良群亚格列木组是沙雅隆起上的重要储层,上白垩统巴什基奇克组是库车前陆盆地的重要储层,西南坳陷区储层包括碎屑岩储层和碳酸盐岩储层两种岩性,如下白垩统上部乌鲁克恰特组滨岸海滩硝砾岩及上白垩统依格孜牙组生物丘灰岩等也构成较好的储集层。  相似文献   

13.
A series of expeditions undertaken over the last three years by a team of geologists from Kingston Polytechnic and the British Museum (Natural History) has increased our understanding of the Cretaceous and Tertiary palaeogeography of Central West Africa. The latest expedition discovered a dinosaur graveyard of Lower Cretaceous (Wealden) age. Studies of these and other fossils within the sedimentary rocks of the Iullemmeden Basin in Niger and Mali have shed new light on the Trans-Saharan Seaway migration route during the Cretaceous and Tertiary periods.  相似文献   

14.
1D (Petromod) hydrocarbon charge modeling and source rock characterization of the Lower Cretaceous and Upper Jurassic underlying the prolific Cretaceous and Tertiary reservoirs in the Basra oilfields in southern Iraq. The study is based on well data of the Majnoon, West Qurna, Nahr Umr, Zubair, and Rumaila oil fields. Burial histories indicate complete maturation of Upper Jurassic source rocks during the Late Cretaceous to Paleogene followed by very recent (Neogene) maturation of the Low/Mid Cretaceous succession from early to mid-oil window conditions, consistent with the regional Iraq study of Pitman et al. (Geo Arab 9(4):41–72, 2004). These two main phases of hydrocarbon generation are synchronous with the main tectonic events and trap formation associated with Late Cretaceous closure of the neo-Tethys; the onset of continent–continent collision associated with the Zagros orogeny and Neogene opening of the Gulf of Suez/Red Sea. Palynofacies of the Lower Cretaceous Sulaiy and Lower Yamama Formations and of the Upper Jurassic Najmah/Naokelekan confirm their source rock potential, supported by pyrolysis data. To what extent the Upper Jurassic source rocks contributed to charge of the overlying Cretaceous reservoirs remains uncertain because of the Upper Jurassic Gotnia evaporite seal in between. The younger Cretaceous rocks do not contain source rocks nor were they buried deep enough for significant hydrocarbon generation.  相似文献   

15.
对巴西东部被动大陆边缘深水盆地群的构造演化和石油地质特征进行了系统性的对比分析,研究表明,盆地群经历了4个演化阶段:前裂谷阶段、同裂谷阶段、局限海过渡阶段和被动大陆边缘漂移阶段。受区域构造应力场、膏盐层、火山岩等方面的影响,各盆地表现出不同的盆地结构和构造样式,而膏盐层的发育对于油气成藏起着关键作用。这些盆地中,主要发育了三套烃源岩、三套储层和三套区域盖层,并形成了三种油气成藏类型:盐下裂谷地堑内的构造油气藏,膏盐层上下的碳酸盐岩油气藏,以及盐上的浊积岩构造—地层复合油气藏。根据成藏规律分析,并考虑各盆地的勘探现状,按勘探潜力由好到差的顺序将盆地划分为三类,指出Ⅰ、Ⅱ类潜力区应是主要勘探方向,具有广阔的油气资源前景。  相似文献   

16.
中阿拉伯盆地是中东油气区油气资源最为富集的盆地。本文以该盆地油气田的最新资料为基础,结合盆地构造-沉积演化过程,应用石油地质综合研究方法,探讨该盆地油气的时空分布特征及主控因素。中阿拉伯盆地内发育3个主要含油气系统:下志留统含油气系统、侏罗系复合含油气系统和白垩系复合含油气系统。中阿拉伯盆地油气的层系分布表现为"下气上油",上二叠统—下三叠统储集层富集了盆地内78.9%的天然气可采储量和83.7%的凝析油可采储量,而上侏罗统—下白垩统则富集了盆地内81.9%的石油可采储量。区域上,中阿拉伯盆地的石油储量主要聚集于西海湾坳陷、迪布蒂巴赫(Dibdibah)坳陷、盖瓦尔(Ghawar)凸起和安纳拉(An N`ala)凸起,天然气和凝析油则在卡塔尔凸起更为富集。中阿拉伯盆地的油气分布主要受3个因素控制:优质区域盖层控制了油气的层系分布,主力烃源岩展布和优势运移路径控制了油气的区域分布,基底断裂和盐运动构成的圈闭控制了油气藏的形成与富集。  相似文献   

17.
East Siberia comprises three petroleum provinces—Lena-Tunguska, Lena-Vilyuy, and Yenisey-Anabar—that occupy the area of the Siberian craton. Petroleum has been generated and has accumulated in Precambrian rifts beneath the sedimentary basins and, more importantly, within the section of the basin itself. The platformal deposits of the basins extend beneath overthrusts on the east and south and are covered by sedimentary rocks of the West Siberian overthrusts on the east and south and are covered by sedimentary rocks of the West Siberian province on the west. Permafrost and gas hydrate deposits are present throughout most of East Siberia.

In the Lena-Tunguska province, rifts that developed during Riphean time are filled by thick sedimentary rocks, in which petroleum deposits have formed. In Early Cambrian time a barrier reef extended across the East Siberian craton from southeast to northwest. A lagoon to the west of this reef was the site of thick rhythmic salt deposits, which are the main seal for petroleum in the province. The sedimentary section of the platform cover ranges in age from Late Proterozoic to Permian. More than 25 oil and gas fields have been discovered in the province, all in Riphean through Lower Cambrian rocks.

The Lena-Vilyuy province includes the Vilyuy basin and the Cis-Verkhoyansk foredeep. During Middle Devonian time, a rift formed along the axis of what was to become the Vilyuy basin. This rift is filled by Upper Devonian and Lower Carboniferous basalt, elastics, carbonates, and evaporites. During this rift stage the region that was to become the Cis-Verkhoyansk foredeep was an open geosynclinal sea. The sedimentary cover consists of Permian, coal-bearing sedimentary rocks as well as elastics from the Lower Triassic, Lower Jurassic, Lower Cretaceous, and Upper Cretaceous, the latter only in the Vilyuy basin. In the Lena-Vilyuy petroleum province as many as nine gas and gas-condensate fields have been discovered.

The Yenisey-Anabar province is largely an extension of the West Siberian petroleum province. Permian sedimentary rocks are present only in the east, where they consist of elastics and some salt. The Triassic, Jurassic, and Cretaceous each are represented by thick clastic deposits. Total thickness of the sedimentary cover is up to 15 km on the west and 8 km on the east. Twelve gas and gas-condensate fields have been discovered in the western part of the province.  相似文献   

18.
扎格罗斯盆地是全球富含油气的前陆盆地,沿走向不同构造段的油气储量规模差别巨大,各段构造特征及其对油气富集和主控因素的认识是海外超前选区选带的重要基础。本文综合分析沿盆地走向(NW-SE向)的土耳其迪亚巴克尔段、伊拉克基尔库克段以及伊朗洛雷斯坦段、胡齐斯坦段和法尔斯段等5段的构造特征、油气成藏特征及其主控因素。结果表明:扎格罗斯盆地沿走向各段油气2P可采储量差异明显,胡齐斯坦段和基尔库克段储量规模最大,且以新近系储层为主;扎格罗斯造山作用形成一系列背斜构造、不同时期形成的蒸发盐岩盖层影响盆地各段油气聚集差异;中新世以来,随着阿拉伯板块与欧亚板块的持续碰撞,扎格罗斯盆地发生了大规模的挤压褶皱作用,下白垩统油气沿裂缝向上运移至渐新统-中新统优质储层中;基尔库克段和胡齐斯坦段新生界沉积物厚度较大,渐新统-中新统蒸发岩为优质的区域性盖层,对新生界油气的保存起重要作用;法尔斯段构造变形较为强烈,三叠系之上的上侏罗统、中新统蒸发岩受不同程度的破坏,油气主要分布于下三叠统-上二叠统碳酸盐岩。通过本研究将对中东扎格罗斯盆地的新项目评价具有一定的指导意义。  相似文献   

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