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1.
东海陆架盆地南部中生界分布特征与油气勘探前景   总被引:1,自引:0,他引:1  
在充分利用前人对东海陆架盆地中生代油气勘探成果的基础上,对最新处理的地震剖面和重磁反演剖面进行了精细解释和综合研究,结合海陆中生界对比结果认为:东海陆架盆地南部中生界分布广、厚度大,平均厚度可达6 000 m,而且具有“东厚西薄、南厚北薄”的特征。侏罗系主要分布在闽江和基隆凹陷,厚度分布稳定,w(TOC)平均值>1.0%;而白垩系在整个陆架盆地南部均有分布,具有向基隆凹陷加厚的趋势,w(TOC)平均值<1.0%。东海陆架盆地南部的基隆凹陷是下一步油气资源战略选区的首选目标,而台北低凸起很可能具有良好的油气远景。  相似文献   

2.
PETROLEUM GEOLOGICAL CONDITIONS IN QIANGTANG BASIN  相似文献   

3.
南海东北部中生界岩石学特征及沉积环境   总被引:35,自引:0,他引:35       下载免费PDF全文
南海东北部潮汕坳陷发现中—晚侏罗世到白垩纪的海相中生代地层,由泥岩、砂岩、放射虫硅质岩夹鲕粒灰岩及火山岩构成。岩石组合及沉积特征反映出,从中-晚侏罗世到白垩纪沉积水深经历了由浅到深,然后又转为陆地的一个完整旋回,沉积环境则经历了由滨浅海相到深海相,又到滨海过渡相和陆相河湖体系的演变过程,在深海相与滨海陆地过渡相之间存在一个明显的环境突变,为沉积环境缺失所致。与深海相放射虫硅质岩相伴,则夹有玄武岩(细碧岩)层。沉积反应的气候条件从中-晚侏罗世-早白垩世的温暖湿润气候环境过渡到晚白垩世的炎热干旱气候环境。这套海相中生代地层的存在对解释南海北部中生代大地构造演化以及古特提斯洋和太平洋的关系具有重要意义。  相似文献   

4.
通过开展二维地震资料调查和重处理,结合钻井、重磁、海陆对比等新老资料开展联合解释认为:东海陆架盆地南部中生界具有分布广、厚度大、沉积中心位于东部,新生界则呈现东西厚中间薄,新生代构造单元中的台北凸起、观音凸起和雁荡凸起上均有中生界分布;白垩系较侏罗系分布更为广泛,侏罗系西部边界为雁荡凸起东侧,白垩系西部边界以瓯江凹陷西侧为界;中生界三口钻井分析结果发现了确凿的海相标志,证实了中生界东海陆架盆地发生多次海侵,结合围区沉积特征认为侏罗纪存在南北向和东西向的海侵,白垩纪主要体现为东西向的海侵;研究区中生界发育中下侏罗统、下白垩统两套烃源岩,新生界发育古新统、始新统、渐新统和中新统四套烃源岩,具有较好的油气资源前景。  相似文献   

5.
中国东南海域中生代地处欧亚板块东南缘, 夹持于欧亚板块、太平洋板块与印度澳大利亚板块之间。以往对于该区域的油气勘探多集中于新生代。笔者在前人研究的基础之上, 结合新近获得的地震资料, 开展了中国东南海域及周缘油气地质条件研究。结果表明:中国东南海域中生界分布广, 东海南部、台湾岛以及台西南盆地发育中生界深海相硅质岩, 可能与冲绳缝合带和菲律宾巴拉望缝合带形成有关;南海北部及周缘陆区发育上三叠统下侏罗统海相和海陆交互相碎屑岩及上侏罗统白垩系陆相碎屑岩, 可能与印支期缝合带的形成有关。从海域钻井及周缘陆区沉积层序资料推断, 中国东南海域有两套发育良好的烃源岩, 具有较强的生烃潜力:上三叠统下侏罗统海相泥页岩, 有机碳质量分数为0.28%~14.96%, 干酪根类型主要以Ⅱ2型和Ⅲ型为主;下白垩统海相泥页岩, 有机碳质量分数为0.60%~2.00%, 干酪根类型以偏Ⅱ2Ⅲ型为主。该海域发育两套生储盖组合:一套以上三叠统下侏罗统泥页岩为烃源岩, 中、上侏罗统砂岩为储层, 下白垩统泥页岩为盖层;另一套以下白垩统泥页岩为烃源岩, 白垩系砂岩为储层, 上白垩统泥页岩为盖层。它们相互可以形成"古生新储"、"自生自储"油气藏组合。因此, 中国东南海域中生界是值得关注的油气勘探新领域。  相似文献   

6.
《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   

7.
东南大陆边缘早侏罗世火成岩特征及其构造意义   总被引:36,自引:4,他引:36  
东南大陆边缘早侏罗世火成岩主要呈双峰式火山岩、基性超基性杂岩体及A型花岗岩等形态产出。本文运用岩石学探针技术,通过早侏罗世火成岩岩石学与地球化学研究,并与晚中生代火成岩作对比,提出早侏罗世火成岩的形成与南岭东段近EW向张性断裂活动有关,标志着印支挤压造山的结束;之后东南大陆进入晚中生代NE向活动大陆边缘俯冲造山阶段,经历了挤压造山—剪切拉张过程,并在晚白垩世末期进入又一轮后造山拉张裂解阶段,即中生代时东南大陆边缘经历了早中生代(三叠纪—早侏罗世)和晚中生代(中侏罗世—晚白垩世)两期造山事件,其中早侏罗世的区域拉张作用是特提斯构造域向滨太平洋构造域转换的前奏,构造域转换可能始于中侏罗世(165Ma)。  相似文献   

8.
西北地区侏罗纪煤系烃源岩和油气地球化学特征   总被引:17,自引:1,他引:16  
阿尔金断裂以北的新疆地区煤系泥岩和煤均很发育,而以南的甘青宁地区湖相和沼泽相泥岩发育。煤系烃源岩中主要的成烃显微组分是壳质体、藻类体、基质镜质体等,有机质类型以Ⅲ型为主;煤系泥岩一般为中到差油源岩,少数为好烃源岩,煤一般为差油源岩,下侏罗统源岩生烃潜力高于中侏罗统源岩;煤系原油一般为成熟的轻质、中蜡、低凝固点、低硫优质原油;油源对比表明煤系泥岩是主要烃源岩,煤和碳质泥岩是次要烃源岩;有利生油区域基本分布在侏罗纪的沉降沉积中心,而且后续埋藏又较深的山前坳陷区域。  相似文献   

9.
为了量化表征北黄海盆地东部坳陷中生界主力烃源岩生、排烃特征,综合利用镜质体反射率(Ro)、残余有机碳含量(TOC)、岩石热解、干酪根镜检及饱和烃色谱等资料,在总结研究区烃源岩地化特征的基础上,通过油源对比明确主力烃源岩层并依托盆地模拟方法量化其生、排烃贡献.结果表明,北黄海盆地东部坳陷中生界的两类原油均来源于区内中侏罗统和上侏罗统两套主力烃源岩层,其中,中侏罗统烃源岩的有机质丰度整体处于"好-最好"级别,上侏罗统烃源岩的有机质丰度则以"中等-好"为主;二者均存在早白垩世末期和早中新世两次生、排烃高峰,但上侏罗统的排烃速率[qe(max)=27.3×106 t/Ma]远高于中侏罗统的排烃速率[qe(max)=4.2×106 t/Ma],对研究区油气成藏的贡献更大.虽然下白垩统暗色泥岩的生烃潜力有限,但其底部砂岩与紧邻上侏罗统主力烃源岩层构成的"下生上储"式的源储配置关系是区内最重要的勘探目的层,其次为中、上侏罗统内部"自生自储"式的有利成藏组合,同时,中侏罗统下部"上生下储"式的成藏组合也应予以重视.   相似文献   

10.
伊犁盆地石炭系—二叠系含油气性特征   总被引:7,自引:0,他引:7       下载免费PDF全文
伊犁盆地是在前震旦系基础上发展形成的双层结构盆地,即内裂谷盆地—山间陆相盆地。经多次造陆运动后,盆地内普遍缺失震旦系、下古生界、泥盆系、下三叠统和白垩系。盆地内的生油层主要为海相石炭系阿克沙克组、也列莫顿组,陆相二叠系院山萨依组、塔姆其萨依组。生油中心主要位于伊什基里克山—脱勒斯拜克山以北的湖盆区内。储层主要以二叠系、三叠系和保罗系的碎屑岩为主。伊犁盆地虽然经历了多期构造运动的影响,地质结构更加复杂,沉积中心的不断西移,但仍然在中新生代地层的地表及井下发现大量油气显示,表明该盆地具备生储油能力。该盆地有利与不利因素并存,对盆地的进一步勘探应加强基础研究工作,以避免盲目投入。  相似文献   

11.
柴达木盆地北缘地区在中侏罗世晚期,即大煤沟组七段(J2d7)时演化至最大湖侵期,发育了一套湖相泥页岩。通过对区内鱼卡煤矿井下样品的实测分析,结合先前报道的研究成果,确认了这套湖相泥页岩为优质烃源岩,藻类体、角质体和孢子体是这套源岩的主要生烃显微组分,有机质类型最好可达II1型。热演化研究表明,该套源岩在不同构造单元处于差异热演化阶段,既可生油亦可生气。虽然J2d7段烃源岩在平面上不同凹陷区具有一定的非均质性,但其生烃潜力,特别是在赛什腾—鱼卡凹陷地区,完全可与我国西北地区其它侏罗系优质烃源岩相媲美。长期以来,下侏罗统烃源岩被认为是柴北缘地区的主要油气源,J2d7段优质烃源岩的确认,对于深化柴北缘地区的油气勘探和地质研究具有重要意义。  相似文献   

12.
东海陆架盆地西部坳陷带中生界分布特征及其有利区探讨   总被引:2,自引:0,他引:2  
杨艳秋  李刚  戴春山 《世界地质》2011,30(3):396-403
对东海陆架盆地西部坳陷带中生界分布特征及其油气勘探方向的研究认为:研究区中生界分布广、厚度大,主要沉积在南部地区,最大厚度超过6 000 m,除凹陷内有分布外,隆起区也有分布。白垩系主要发育在长江凹陷、海礁低凸起、瓯江凹陷、闽江凹陷和台北低凸起地区;侏罗系主要发育在闽江凹陷。闽江凹陷的中生界厚度大,烃源岩条件好,局部构造圈闭发育,既有区域性盖层又有局部盖层,生储盖条件优越。因此,闽江凹陷是东海陆架盆地西部坳陷带油气勘探前景最好的区域。  相似文献   

13.
The Blue Nile Basin, situated in the Northwestern Ethiopian Plateau, contains ∼1400 m thick Mesozoic sedimentary section underlain by Neoproterozoic basement rocks and overlain by Early–Late Oligocene and Quaternary volcanic rocks. This study outlines the stratigraphic and structural evolution of the Blue Nile Basin based on field and remote sensing studies along the Gorge of the Nile. The Blue Nile Basin has evolved in three main phases: (1) pre‐sedimentation phase, include pre‐rift peneplanation of the Neoproterozoic basement rocks, possibly during Palaeozoic time; (2) sedimentation phase from Triassic to Early Cretaceous, including: (a) Triassic–Early Jurassic fluvial sedimentation (Lower Sandstone, ∼300 m thick); (b) Early Jurassic marine transgression (glauconitic sandy mudstone, ∼30 m thick); (c) Early–Middle Jurassic deepening of the basin (Lower Limestone, ∼450 m thick); (d) desiccation of the basin and deposition of Early–Middle Jurassic gypsum; (e) Middle–Late Jurassic marine transgression (Upper Limestone, ∼400 m thick); (f) Late Jurassic–Early Cretaceous basin‐uplift and marine regression (alluvial/fluvial Upper Sandstone, ∼280 m thick); (3) the post‐sedimentation phase, including Early–Late Oligocene eruption of 500–2000 m thick Lower volcanic rocks, related to the Afar Mantle Plume and emplacement of ∼300 m thick Quaternary Upper volcanic rocks. The Mesozoic to Cenozoic units were deposited during extension attributed to Triassic–Cretaceous NE–SW‐directed extension related to the Mesozoic rifting of Gondwana. The Blue Nile Basin was formed as a NW‐trending rift, within which much of the Mesozoic clastic and marine sediments were deposited. This was followed by Late Miocene NW–SE‐directed extension related to the Main Ethiopian Rift that formed NE‐trending faults, affecting Lower volcanic rocks and the upper part of the Mesozoic section. The region was subsequently affected by Quaternary E–W and NNE–SSW‐directed extensions related to oblique opening of the Main Ethiopian Rift and development of E‐trending transverse faults, as well as NE–SW‐directed extension in southern Afar (related to northeastward separation of the Arabian Plate from the African Plate) and E–W‐directed extensions in western Afar (related to the stepping of the Red Sea axis into Afar). These Quaternary stress regimes resulted in the development of N‐, ESE‐ and NW‐trending extensional structures within the Blue Nile Basin. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

14.
合肥盆地中生代地层时代与源区的碎屑锆石证据   总被引:3,自引:0,他引:3  
王薇  朱光  张帅  刘程  顾承串 《地质论评》2017,63(4):955-977
合肥盆地位于大别造山带北侧、郯庐断裂带西侧,其发育过程与这两大构造带演化密切相关。本次工作对合肥盆地南部与东部出露的中生代砂岩与火山岩进行了锆石年代学研究,从而限定了各组地层的沉积时代,确定了火山岩喷发时间,指示了沉积物的源区。这些年代学数据表明,合肥盆地南部的中生代碎屑岩自下而上分别为下侏罗统防虎山组、中侏罗统圆筒山组或三尖铺组、下白垩统凤凰台组与周公山组(或黑石渡组)与上白垩统戚家桥组,其间缺失上侏罗统。盆地东部白垩系自下而上为下白垩统朱巷组与响导铺组和上白垩统张桥组。该盆地出露的毛坦厂组或白大畈组火山岩喷发时代皆为早白垩世(130~120 Ma)。盆地南部的下——中侏罗统及白垩系源区皆为大别造山带,分别对应该造山带的后造山隆升与造山后伸展隆升。而盆地东部白垩系的源区始终为东侧的张八岭隆起带,后者属于郯庐断裂带伸展活动中的上升盘。  相似文献   

15.
雅布赖盆地构造演化与油气聚集   总被引:1,自引:0,他引:1       下载免费PDF全文
雅布赖含油气盆地位于中国西部河西走廊地区北部,处于华北克拉通阿尔善地块中南部过渡带,属北祁连构造带,中生代为走滑拉分盆地,新生代为挤压冲断坳陷盆地。燕山早期,形成东西向雅布赖拉张断陷,主控断裂为北大山正断层,沉积中心位于盆地南部;燕山中期,碰撞造山作用致使盆地北部急剧抬升,北部中-下侏罗统地层遭受强烈剥蚀;燕山晚期,阿拉善地块及其北部地区处于伸展构造环境,雅布赖山前产生东西向正断层,急剧活动,快速沉降,形成了北东向展布的新的拉张断陷盆地。喜马拉雅期,在挤压走滑作用下,雅布赖盆地南部形成北西向南倾逆冲的推覆构造,致使北大山正断层发生错断瓦解,最终形成"东隆西坳,南断北超"的挤压坳陷构造格局。雅布赖盆地主体沉积凹陷具有较强分割性,沉降凹陷分布于南部,最大沉积岩厚度为5 400 m;凹陷内侏罗系最为发育,中侏罗统新河组、青土井组暗色泥岩、煤岩为烃源岩,砂岩为储集层,新河组泥岩互层作盖层,构成盆地内最主要的含油气组合。由于雅布赖盆地特定的早期深埋,晚期抬升破坏构造格局,造就侏罗系砂岩储层早期强烈压实致密,侏罗系煤系烃源岩成熟较晚,构造发育期与烃源岩排烃期不匹配,生成油气主要表现为近源成藏与层内滞留,形成源内自生自储,致密油应是主要勘探对象。  相似文献   

16.
通过对南祁连盆地木里坳陷石炭系、二叠系、三叠系、侏罗系等4套层系5条剖面的野外测量及室内地质分析,明确了该区天然气水合物潜在气源岩的岩性特征、沉积相类型及沉积演化过程。石炭系—二叠系整体以出露中厚层砂岩夹薄层泥岩为主要特征,沉积浅海陆棚相、滨岸相和三角洲相,由于断层发育致使局部地层厚度减薄且泥质岩大部分缺失,可能难以成为天然气水合物潜在气源岩;上三叠统整体以发育中薄层泥岩与中薄至中厚层砂岩互层为主要特征,沉积相类型为潮坪相、湖泊相和河流相,泥岩累积厚度较大,是天然气水合物主要潜在气源岩;中侏罗统整体上以发育厚层泥岩、砂岩为主要特征,沉积相类型为辫状河相、三角洲相和湖泊相,是天然气水合物次要的潜在气源岩。研究结果为南祁连盆地木里坳陷天然气水合物气源岩研究提供了重要地质依据。  相似文献   

17.
松辽盆地南部-辽西地区横跨兴蒙-吉黑造山带、华北地台及其北缘的增生带几个大地构造单元。受不同类型基底和区域断裂控制,在辽西盆岭区、松辽盆地区和辽北盆地区发育不同类型的晚三叠世-早侏罗世、中-晚侏罗世、白垩纪盆地,各期盆地间继承性较差,方向性极强。三叠系烃源岩发育程度较差,下侏罗统、下白垩统2套煤系地层是主要烃源岩发育段。侏罗系北票组是朝阳-北票等盆地的重要烃源岩,白垩系烃源岩发育较好,除九佛堂组、沙海组、阜新组3套烃源岩外,义县组发育潜在烃源岩。盆地含油气性评价表明辽北盆地区发育4种不同级别的含油气盆地,其中以陆家堡断陷、钱家店断陷、昌图断陷和茫汉断陷勘探前景最好;辽西地区阜新-义县盆地、朝阳-北票盆地等具有一定的勘探价值。  相似文献   

18.
第三次资源评价(三次资评)结果表明准噶尔盆地侏罗系石油资源量占盆地总资源量的30%以上,天然气资源量占盆地总资源量的28%,其中30. 7%的原油资源和45. 7%的天然气资源分布在准噶尔盆地的南缘,可见应深人分析南缘侏罗系主力烃源岩的特征及其生烃潜力。通过对三次资评之后勘探所积累的地质地球化学数据的系统分析,认为准噶尔盆地南缘有机质类型总体以且II2型和III型为主,纵向上发育了一套优质烃源岩(八道湾组)和两套中等丰度的烃源岩 (三工河组和西山窑组),烃源岩的规模远远大于三次资源评价的结果。这3套烃源岩均达到了成熟一过成熟的演化阶段,在白垩纪末期进入生油高峰期,在新近纪末期进入生气高峰期,生油气关键时刻与圈闭的形成和定型匹配良好,有利于形成大型和超大型油气藏。研究成果对指导准噶尔盆地南缘油气勘探具有重要的理论和实际意义。  相似文献   

19.
Drilling in the eastern continental margin of the Levant Basin (southeastern Mediterranean), offshore southwestern Israel encountered light oil shows, numerous vertically stacked gas pockets and, more recently, commercial gas discoveries. Chemical and stable isotopic compositions obtained for 24 gas samples from Middle Jurassic to Pliocene reservoir rocks suggest that they represent a few genetic systems which are distributed vertically in the section in accordance with the stratigraphy. These groups include bacterial gas in the Pliocene, a mixture of bacterial and thermogenic gas in the Lower Cretaceous, and thermogenic gas in the Jurassic section. The bacterial gases in the Pliocene and the Lower Cretaceous appear not to be cogenetic, and likewise the thermogenic gas in the Lower Cretaceous and the Jurassic sections. Excluding one case, where the thermogenic gas appears to represent phase separation from a probably cogenetic light oil, the relationship of either the bacterial or other thermogenic gas samples to particular potential source rocks in the section or to light oil shows encountered in the Middle Jurassic section is at this stage inconclusive.  相似文献   

20.
The Kela-2 gas field, found in the Kuqa Depression of the Tarim Basin, northwestern China, is a large-sized dry gas field (C1 /C1-5 =0.992 0.999) and characterized by ultra-high pressure (pressure factor up to 2.0 2.2). The pyrolysis experiment was carried out under isothermal gold-tube closed system, with samples collected from the Jurassic coal, Jurassic mudstone and Triassic mudstone in the Kuqa Depression. The result of gas yield showed that the Middle and Lower Jurassic source rocks have higher gas generation potential than the Triassic source rocks. The kinetic modeling of gas generation and methane carbon isotope fractionation suggested that the Kela-2 gases belong to the products of high-over mature stages and were mainly derived from the Middle and Lower Jurassic coal-bearing strata. The Triassic source rocks made a minor contribution to the Kela-2 gases. The Kela-2 gases chiefly generated from coal-bearing source rocks with R o values from 1.3% to 2.5%, and thus primarily accumulated after 5 Ma.  相似文献   

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