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1.
郭彤楼 《地学前缘》2022,29(6):109-119
四川盆地是我国典型的多旋回盆地,更是最重要的天然气基地,发现了大量的常规、致密砂岩、页岩气田。具有海相、海陆过渡相、陆相垂向叠加与平面分区明显、纵向多期构造运动叠加改造的特点,形成了全盆地、全层系含气。本文以普光气田、涪陵页岩气田和中江致密砂岩气为实例,阐述了叠合-复合控藏的概念,即叠合盆地油气成藏和富集的各种要素均受相互关联的多种因素的控制,不同要素间既有时间上的累加和空间上的叠置,也有横向上地质体因某种原因而结合在一起,比如构造与岩性体、构造与地层等。叠合控制油气的形成与演化,复合控制油气的富集与定位,进一步论述明确多旋回盆地叠合-复合控藏研究内容对油气勘探研究与实践具有重要的指导意义。通过对四川盆地典型大型气田实例剖析,表明四川盆地大型气田均是受多旋回盆地叠合-复合控藏的结果,即叠合控制油气的形成与演化,复合控制油气的富集与定位。本文系统分析总结四川盆地大型气田油气形成、成藏与富集规律,结合四川盆地勘探开发现状,针对四川盆地多旋特征提出油气勘探三个方面的重点研究内容:(1)构造古地理研究,厘清构造格局、储层、烃源和圈闭空间的叠合、复合关系以及对油气形成的控制作用;(2)区域地质构造演化研究,明确不同期次构造叠合关系以及对成油、成气、油气富集的控制作用;(3)构造分级与控藏研究,精细构造分级明确不同级次构造对气水关系、富集、储层改造控制作用。  相似文献   

2.
中国南方经历了多阶段构造演化的历史,具有典型叠合盆地性质,海相地层以次生油气藏为主,成藏流体源成为首要控藏要素。结合中国南方8个典型油气藏的实例,总结了叠合盆地成藏流体源类型,分析了其随时空的演化规律及其对油气分布的控制作用。认为中国南方海相地层的成藏流体源包括烃源岩热解烃、原油裂解气、二次生烃、水溶气、无机气及混合气等多种。在印支期之前以烃源岩热解烃为主,印支-燕山期主要形成原油裂解气和水溶气,燕山-喜马拉雅期主要形成由各种气源构成的混合气。受成藏流体源控制,混源型气藏主要分布干上扬子区(四川盆地);原生型油(气)藏主要形成干江南等古隆起区,但大多已演化为古油藏;二次生烃型气藏主要分布干下、中扬子白垩系-古近系覆盖区,及楚雄盆地、十万大山、南盘江等地;无机型气藏形成干张性构造区。  相似文献   

3.
Having multiple tectonic evolution stages, South China belongs to a superimposed basin in nature. Most marine gas pools became secondary pools. The pool fluid sources serve as the principal pool-controlling factors. On the basis of eight typical petroleum pools, the type, evolution in time-space, and the controlling of petroleum distribution of pool fluid sources are comprehensively analyzed. The main types of pool fluid sources include hydrocarbon, generated primarily and secondly from source rocks, gas cracked from crude oil, gas dissolved in water, inorganic gas, and mixed gases. In terms of evolution, the primary hydrocarbon was predominant prior to Indosinian; during Indosinian to Yen- shanian the secondary gas includes gas cracked from crude oil, gas generated secondarily, gas dissolved in water, and inorganic gas dominated; during Yenshanian to Himalayan the most fluid sources were mixed gases. Controlled by pool fluid sources, the pools with mixed gas sources distributed mainly in Upper Yangtze block, especially Sichuan (四川) basin; the pools with primary hydrocarbon sources distributed in paleo-uplifts such as Jiangnan (江南), but most of these pools became fossil pools; the pools with secondary hydrocarbon source distributed in the areas covered by Cretaceous and Eogene in Middle-Lower Yangtze blocks, and Chuxiong (楚雄), Shiwandashan (十万大山), and Nanpanjiang (南盘江) basins; the pools with inorganic gas source mainly formed and distributed in tensional structure areas.  相似文献   

4.
中国中西部前陆盆地多期成藏、晚期聚气的成藏特征   总被引:15,自引:0,他引:15  
中国中西部前陆盆地具有优越的天然气成藏条件,同时具有晚期成藏的特征。文中在典型气藏解剖的基础上重点讨论了川西、柴北缘和准南缘前陆盆地的成藏过程,从而指出中国中西部前陆盆地具有多期聚集、晚期聚气的成藏特征,明确指出中国中西部前陆盆地具有最主要的两大成藏期,一是燕山晚期,主要是被动陆缘或中部前陆盆地三叠系烃源岩的油气聚集期;二是喜山晚期,受新构造运动影响,主要是西部陆内前陆盆地的中、新生界烃源岩的天然气成藏期和中部周缘前陆盆地的天然气的调整期。新近纪前陆盆地的发育期控制了中国中西部前陆盆地以中生界煤系烃源岩为主的晚期天然气的聚集。  相似文献   

5.
Exploration Potential of Marine Source Rocks Oil-Gas Reservoirs in China   总被引:1,自引:0,他引:1  
So far,more than 150 marine oil-gas fields have been found onshore and offshore about 350. The marine source rocks are mainly Paleozoic and Mesozoic onshore whereas Tertiary offshore.Three genetic categories of oil-gas reservoirs have been defined for the marine reservoirs in China:primary reservoirs,secondary reservoirs and hydrocarbon-regeneration reservoirs.And three exploration prospects have also been suggested:(1)Primary reservoirs prospects,which are chiefly distributed in many Tertiary basins of the South China Sea(SCS),the Tertiary shelf basins of the East China Sea (ECS)and the Paleozoic of Tarim basin,Sichuan basin and Ordos basin.To explore large-middle-scale even giant oil-gas fields should chiefly be considered in this category reservoirs.These basins are the most hopeful areas to explore marine oil-gas fields in China,among which especially many Tertiary basins of the SCS should be strengthened to explore.(2)Secondary reservoirs prospects,which are mainly distributed in the Paleozoic and Mesozoic of the Tarim basin,Sichuan basin,Qiangtang basin and Chuxiong basin in western China,of which exploration potential is less than that of the primary reservoirs.(3)Hydrocarbon-regeneration reservoirs prospects,which are chiefly distributed in the Bohai Bay basin,North Jiangsu-South Yellow Sea basin,southern North China basin,Jianghan basin, South Poyang basin in eastern China and the Tarim basin in western China,of which source rocks are generally the Paleozoic.And the reservoirs formed by late-stage(always Cenozoic)secondary hydrocarbon generation of the Paleozoic source rocks should mainly be considered to explore,among which middle-small and small oil-gas fields are the chief exploration targets.As a result of higher thermal evolution of Paleozoic and Mesozoic source rocks,the marine reservoirs onshore are mainly gas fields,and so far marine oil fields have only been found in the Tarim basin.No other than establishing corresponding marine oil-gas exploration and development strategy and policy, sufficiently enhancing cognition to the particularity and complexity of China's marine petroleum geology,and applying new thoughts,new theories and new technologies,at the same time tackling some key technologies,it is possible to fast and effectually exploit and utilize the potential huge marine oil-gas resources of China.  相似文献   

6.
中国海相油气地质理论新进展   总被引:9,自引:4,他引:5  
近年来中国海相油气勘探呈现出快速发展势头,一批大型海相油气田被发现,海相油气的地位也愈来愈受到重视。特别是在海相石油地质新理论的指导下,海相油气勘探将进入高速发展时期,这也将会极大缓解东部陆相盆地老油区的勘探开发压力。海相石油地质新理论包括三个方面:在成烃方面,研究认为中国海相不缺乏高有机质丰度的泥质烃源岩,纯碳酸盐岩生烃能力有限;深埋高温下原油裂解成气和高演化阶段的海陆过渡相煤系烃源岩是海相天然气的主力气源;在低地温梯度和晚期深埋条件下,原油的稳定性较高,塔里木盆地液相石油可以赋存在9000m以上的储集层中,因此,塔里木盆地深层石油的勘探潜力很大。在储层方面,TSR溶蚀改造储层在深部更强烈、层间岩溶和顺层岩溶不受埋深限制或影响不明显,将解放深部碳酸盐岩的勘探。在油气成藏方面,大面积、准层状、连续型、缝洞型等油气富集模式的提出,拓展油气勘探的范围、降低了勘探成本;一批古老油藏的发现,提高了在构造复杂区寻找原生型海相油藏的信心。研究认为,近期海相勘探,围绕隆起斜坡部位勘探为主,主体勘探深度可以下移至9000m。  相似文献   

7.
中国沉积盆地深层的油气勘探实践不断取得进步,提出了与之密切相关的油气地质基础科学问题,凝练与分析这些问题将为深化我国沉积盆地深层地质研究与油气勘探提供引领。近年来,我国在深层海相碳酸盐岩、砂砾岩、火山岩、变质岩与页岩气等勘探领域中发现了一系列大型油气田,油气勘探发现深度推进到7 000~8 500m,勘探前景良好。但由于沉积盆地深层经历了长期构造演化,温、压场与应力场变化大,地质结构多变,油气成藏过程复杂,深层油气勘探面临着一系列关键地质问题,主要包括:中国大陆的形成演化及其构造-古地理,中国小克拉通地块之上海相盆地的原型及演化,中国沉积盆地的多期改造过程与叠加地质结构,沉积盆地的成因机制与动力学演化,深层烃源岩发育、成烃机制及其演化,深层储集体的形成机制与分布,深层油气成藏机制,多期叠加、改造背景下油气聚集与分布规律,深层页岩气赋存机制与分布规律,过程导向的沉积盆地4D动态模拟。我国沉积盆地深层的油气地质基础研究与实际应用需求相比有较大差距,需要立足于中国大陆实际,在盆地的形成演化过程与油气成藏动力学等方面进行深入探索,期望在活动论构造-古地理、三维构造复原、流体-岩石相互作用与四维动态模拟方面取得实质性进展。  相似文献   

8.
中国海相碳酸盐岩的储层类型、勘探领域及勘探战略   总被引:21,自引:3,他引:18  
中国海相碳酸盐岩有效储层成因类型主要包括古风化壳岩溶储层、礁滩储层及层状白云岩储层三大类。陆上中—古生界盆地三类储层均有分布,海上第三系盆地主要发育礁滩储层。针对我国海相油气地质特别是陆上中—古生界油气成藏的复杂性,提出应该加强对勘探及认识程度相对较低的礁滩储层形成的原生岩性-成岩圈闭油气藏的研究与勘探工作。石灰岩古风化壳岩溶储层具有强烈的非均质性,白云岩储层的含油气性比较依赖于有效储盖组合及构造圈闭。鉴于我国海相油气资源潜力巨大、勘探程度较低,故应该加强海相油气资源特别是陆上主要盆地海相油气资源及南海油气资源的研究与勘探开发,尤其要加强层序地层及岩相古地理编图等基础油气地质研究工作。  相似文献   

9.
The Chinese landmass, as a composite region, consists of multiple small continental blocks, such as Sino-Korea, Yangtze, Tarim, etc., and orogenic belts. Because of its distinctive tectonosedimentary evolution, China’s oil/gas-bearing regions differ remarkably from that elsewhere in the world. For instance, in comparison to the Middle East oil/gas-bearing regions which are characterized by Mesozoic-Cenozoic marine oil/gas-bearing beds, early oil and gas discoveries in China are distributed mainly in Mesozoic-Cenozoic continental sedimentary basins. Generation of oil from terrestrial organic matter, or terrestrial oil generation, and the formation of large oil/gas fields in continental sedimentary basins were previously the major characteristics of petroleum geology of China. However, in the past 20 years, a series of major oil and gas discoveries from marine strata have been made. Marine oil/gas fields in China are mainly distributed in the Tarim, Sichuan, and Ordos basins, which are tectonically stable and covered with Mesozoic-Cenozoic deposits. In these basins, hydrocarbon-bearing strata are of old age and the oil/gas fields are commonly deeply-buried. Cumulatively, 995 oil/gas fields have been found so far, making China the fourth largest oil-producing country and the sixth largest gas-producing country in the world. In terms of petroleum and natural gas geology, theories of hydrocarbon generation from continental strata, such as terrestrial oil generation and coal-generated hydrocarbons, etc., have been established. Significant progress has been made in research on the sequence stratigraphy of continental strata, formation mechanisms of ultra-deep clastic reservoirs, and hydrocarbon accumulation in the continental subtle reservoir. Regarding research on the marine petroleum geology of China, with respect to the major characteristics, such as deeply-buried reservoirs, old strata, and multiple phases of transformation, important advances have been made, in areas such as the multiple-elements of hydrocarbon supply, formation of reservoirs jointly controlled by deposition, tectonic activities, and diagenetic fluid-rock reactions, and oil/gas reservoirs formed through superimposed multi-stage hydrocarbon accumulation. As more and more unconventional hydrocarbon resources are discovered, unconventional oil and gas reservoirs are under study by Chinese petroleum geologists, who endeavor to come up with new discoveries on their formation mechanisms.  相似文献   

10.
中国三大海相盆地原型及对油气形成原始物质条件的控制,古生代多次构造运动和中新生代差异性迭加改造对海相碳酸盐岩层系油气成藏、富集的控制作用,以及复杂构造区及超深层海相油气动态成藏过程与富集规律,是制约海相油气勘探发现的关键科学问题。研究认为,在不同板块构造旋回背景下,中国三大克拉通不同时期盆地原型及其沉积模式存在明显差别,可分为台内坳陷、被动大陆边缘和裂谷(陷)三大组合类型,其中被动大陆边缘可以分为陡坡、缓坡两种类型,形成了海相地层内多种类型的源-储配置关系;显生宙以来几次全球板块构造重组,特别是晚三叠世以来在多板块俯冲会聚构造格局下,三大海相克拉通盆地分别经历了4次迭加改造并形成了相应的陆相盆地原型,形成了多种类型的迭加改造地质结构,包括:山前带冲断-褶皱、差异沉降-隆升、多重滑脱构造、深断裂的走滑活动、构造-岩浆作用形成的相关构造;塔里木台盆区“大埋深、高压力、低地温”条件下的生烃抑制控制了油气分布,液态烃分布深度可以超过10 000 m,加里东中晚期和海西期古构造高部位控制了早期油气的运聚,燕山晚期—喜马拉雅期活动的走滑断裂带控制了晚期高熟油气的富集;四川盆地古隆起、古斜坡控制了原始油气聚集,形成了特殊的古油藏烃源灶,后期深埋裂解产生的油型裂解气成了大中型气田的主要气源,晚白垩世之后大规模褶皱变形和抬升剥蚀造成了盆地内流体压力系统重组再造,按照改造程度将油气聚集保存模式划分为:(1)弱改造型,常规、非常规气可在原位长期保存;(2)中改造型,常规气调整再成藏,页岩气规模富集;(3)强改造型,常规气藏大多遭破坏,部分非常规气藏得以保存。鄂尔多斯盆地奥陶系天然气具有“两源三向”的特征,天然气成藏与不整合面-地层层序界面、岩性-岩相变化密切相关,气藏普遍经历了一次调整过程。  相似文献   

11.
《China Geology》2019,2(1):67-84
The South Yellow Sea Basin is a large sedimentary basin superimposed by the Mesozoic-Paleozoic marine sedimentary basin and the Mesozoic-Cenozoic terrestrial sedimentary basin, where no oil and gas fields have been discovered after exploration for 58 years. After the failure of oil and gas exploration in terrestrial basins, the exploration target of the South Yellow Sea Basin turned to the marine Mesozoic-Paleozoic strata. After more than ten years’ investigation and research, a lot of achievements have been obtained. The latest exploration obtained effective seismic reflection data of deep marine facies by the application of seismic exploration technology characterized by high coverage, abundant low-frequency components and strong energy source for the deep South Yellow Sea Basin. In addition, some wells drilled the Middle-Upper Paleozoic strata, with obvious oil and gas shows discovered in some horizons. The recent petroleum geological research on the South Yellow Sea Basin shows that the structure zoning of the marine residual basin has been redetermined, the basin structure has been defined, and 3 seismic reflection marker layers are traceable and correlatable in the residual thick Middle-Paleozoic strata below the continental Meso-Cenozoic strata in the South Yellow Sea Basin. Based on these, the seismic sequence of the marine sedimentary strata was established. According to the avaliable oil and gas exploration and research, the marine Mesozoic-Paleozoic oil and gas prospects of the South Yellow Sea were predicted as follows. (1) The South Yellow Sea Basin has the same sedimentary formation and evolution history during the sedimentary period of the Middle-Paleozoic marine basin with the Sichuan Basin. (2) There are 3 regional high-quality source rocks. (3) The carbonate and clastic reservoirs are developed in the Mesozoic-Paleozoic strata. (4) The three source-reservoir-cap assemblages are relatively intact. (5) The Laoshan Uplift is a prospect area for the Lower Paleozoic oil and gas, and the Wunansha Uplift is one for the marine Upper Paleozoic oil and gas. (6) The Gaoshi stable zone in the Laoshan Uplift is a favorable zone. (7) The marine Mesozoic-Paleozoic strata in the South Yellow Sea Basin has the geological conditions required to form large oil and gas fields, with remarkable oil and gas resources prospect. An urgent problem to be addressed now within the South Yellow Sea Basin is to drill parametric wells for the Lower Paleozoic strata as the target, to establish the complete stratigraphic sequence since the Paleozoic period, to obtain resource evaluation parameters, and to realize the strategic discovery and achieve breakthrough in oil and gas exploration understanding.©2019 China Geology Editorial Office.  相似文献   

12.
The comprehensive study of the tectonics-sequence stratigraphic-petroleum system shows that five sets of major regional and some local source rocks were developed in the tectonic evolution of South China, including the Lower Cambrian and Lower Silurian in the Caledonian cycle, the Middle Permian and Upper Permian in the Hercynian cycle, and the Lower Triassic in the Indo-Sinian cycle. Due to the inhomogeneous maturity of source rocks in this area, gas exploration would mainly be carried out in the Lower Paleozoic areas, while oil and gas exploration would be in the Upper Paleozoic ones. The reformation from the Indo-Sinian cycle to the Himalayan cycle exerted decisive influence on the hydrocarbon accumulation in the Mesozoic-Cenozoic basin and marine sequences in southern China. The petroleum systems formed in the medium-late period of the superimposed basins are of the greatest potential. The distribution of primary and secondary oil-gas pools was mainly affected by favorable sedimentary facies, ancient uplift and slope. The comprehensive evaluation concluded that the focuses for petroleum exploration in the marine sequences of southern China will be in the superimposed basins along the margin of Yangtze landmass, the Subei-southern South Yellow Sea basin and the marine sequences preserved under the over-thrust nappe along the northern margin of the Jiangnan uplift. __________ Translated from Acta Petrolei Sinica, 2007, 28(3): 1–7 [译自:石油学报]  相似文献   

13.
<正>Foreland basin represents one of the most important hydrocarbon habitats in central and western China.To distinguish these foreland basins regionally,and according to the need of petroleum exploration and favorable exploration areas,the foreland basins in central and western China can be divided into three structural types:superimposed,retrogressive and reformative foreland basin(or thrust belt),each with distinctive petroleum system characteristics in their petroleum system components(such as the source rock,reservoir rock,caprock,time of oil and gas accumulation,the remolding of oil/gas reservoir after accumulation,and the favorable exploration area,etc.).The superimposed type foreland basins,as exemplified by the Kuqa Depression of the Tarim Basin, characterized by two stages of early and late foreland basin development,typically contain at least two hydrocarbon source beds,one deposited in the early foreland development and another in the later fault-trough lake stage.Hydrocarbon accumulations in this type of foreland basin often occur in multiple stages of the basin development,though most of the highly productive pools were formed during the late stage of hydrocarbon migration and entrapment(Himalayan period).This is in sharp contrast to the retrogressive foreland basins(only developing foreland basin during the Permian to Triassic) such as the western Sichuan Basin,where prolific hydrocarbon source rocks are associated with sediments deposited during the early stages of the foreland basin development.As a result, hydrocarbon accumulations in retrogressive foreland basins occur mainly in the early stage of basin evolution.The reformative foreland basins(only developing foreland basin during the Himalayan period) such as the northern Qaidam Basin,in contrast,contain organic-rich,lacustrine so urce rocks deposited only in fault-trough lake basins occurring prior to the reformative foreland development during the late Cenozoic,with hydrocarbon accumulations taking place relatively late(Himalayan period).Therefore,the ultimate hydrocarbon potentials in the three types of foreland basins are largely determined by the extent of spatial and temporal matching among the thrust belts,hydrocarbon source kitchens,and regional and local caprocks.  相似文献   

14.
新生代挤压盆地是我国中-西部的重要油气勘探领域。根据挤压盆地的发育部位、盆地基底、充填层序、构造叠加和盆山耦合形式等条件,本文在我国中-西部识别出准(噶尔)西北缘型、四川盆地西缘型、柴(达木)北缘型和准(噶尔)南缘型等4种新生代挤压盆地,前两者发育海西晚期—印支期前陆盆地,后两者具有喜马拉雅造山期的再生前陆盆地特征。对准西北缘、四川盆地西缘、柴北缘和准南缘新生代挤压盆地的对比研究表明,它们在烃源岩、储盖组合等成藏条件上存在明显的差异,而晚期前陆发育对柴北缘型和准南缘型挤压盆地烃源岩演化具有明显的控制作用。在不同新生代挤压盆地典型油气藏解剖研究的基础上,认为燕山期及之前是准西北缘型和四川盆地西缘型挤压盆地主要的成藏期,喜马拉雅造山期则主要表现为准西北缘型挤压盆地的油气藏保存和四川盆地西缘型挤压盆地油气藏的调整和定型;喜马拉雅晚期是柴北缘型挤压盆地最主要的成藏期,而多期前陆盆地的准南缘型挤压盆地具有多期成藏的特征,但喜马拉雅晚期的油气成藏最为重要。  相似文献   

15.
四川含油气叠合盆地基本特征   总被引:22,自引:1,他引:21       下载免费PDF全文
随着近年来四川盆地油气勘探的不断突破,重新审视其基本地质特征和油气成藏特点变得迫切而必要.四川盆地是典型的叠合盆地,显生宙以来经历了震旦纪一中三叠世伸展体制下的差异升降和被动大陆边缘(海相碳酸盐岩台地)、晚三叠世-始新世挤压体制下的摺皱冲断和复合前陆盆地(陆相碎屑岩盆地)、渐新世以来的褶皱隆升改造(构造盆地)3大演化阶...  相似文献   

16.
川西坳陷中段具备多套烃源层、多个烃源区、多期油气生成、多期油气成藏同时又经历了多个构造期调整和破坏,纵向上发育的多套生储盖组合孕育了多层含气层系。天然气碳同位素分析表明,该区上三叠统须家河组产出的部分天然气乙烷碳同位素具有明显偏负的特征,相关图版的判别显示,这部分天然气具有原油裂解气的性质。同时在研究区上三叠统须家河组储层中发现了大量的储层沥青充填物,通过岩芯观察、显微照片、元素、热解等分析,发现该储层沥青充填物具有多种类型、多种分布形态、边界较为清楚等特征,且这些沥青充填物的反射率较高,尤其是须二段的储层沥青,这一特征与焦沥青的基本特征类似,表现为油藏裂解后残余物的特征,原油裂解气和焦沥青的发现证实了川西坳陷中段须家河组古油藏的存在。在此基础上,通过综合分析生油及裂解条件等,对研究区须家河组古油藏裂解气成藏模式进行了初步探讨,将这一过程分为印支晚期古油藏形成、燕山中期古油藏裂解、燕山晚期-喜山期气藏调整三个连续的阶段,这对深化认识川西坳陷中段天然气的成因和分布具有一定的意义。  相似文献   

17.
基于我国双相沉积盆地与东北地域深部岩性地层潜在油气的必然前景,故必须把握全区沉积建造、结晶基底的起伏,火山岩分布和油、气盆地在浅部与深部不同岩相的空间展布;特别要在新的理念导向下,突破已有框架,重新进行油气远景的剖析和区划,深化认识油气形成和储集空间展布的深层动力过程.为此,揭示不同构造地域"透明"沉积建造、古老结晶基底和壳、幔深层动力学响应,必将成为我国在深部发现大型和超大型潜在油气藏的关键所在.通过国内外油气能源分布状况的研究指出,中国在多元共享世界能源的同时,必须立足于本土并强化安全、可靠与可持续供给的能源战略后备基地的建设.在剖析和研究我国沉积盆地中油气储层、沉积建造和结晶基底的基点上发现,在沉积盆地地域陆相地层下面仍普遍存在着海相地层,即盆地应为双相沉积盆地(陆相 海相);基底不应专指中、新生代沉积地层的底部,而应为古老的变质岩基底,即结晶地壳的顶部.基于这样的理念和对几个双相沉积盆地层序实例的分析提出:我国油气能源勘探在深部尚具有广阔的空间;在我国东北地域应全面进行双相沉积建造、火山岩分布、古老结晶基底的高精度探查;油气和沉积盆地形成的深层过程、动力学响应乃东北大庆、吉林等油气田及深部和周边地域发现新的油气藏、大幅度提升油气藏深部潜在空间的必须.基于双相沉积盆地和古老变质岩基底的研究,对在东北地域查明双相沉积建造、古老结晶基底、火山岩分布和第二深度空间(5 000~10 000 m)油气藏地球物理勘探与整体规划提出了布署和建议.  相似文献   

18.
何登发 《地学前缘》2022,29(6):24-59
深入认识盆地的地质结构与构造演化,探讨盆地的油气分布规律,将为揭示中国大陆属性、资源能源分布、环境变化及油气勘探新领域奠立重要基础。本文立足于油气勘探的新资料,应用活动论构造历史观与比较大地构造学方法,分析了中国叠合沉积盆地的构造演化、构造分区、地质结构与油气成藏模式,探索油气分布规律。研究表明,中国叠合沉积盆地经历了中新元古代、寒武纪—泥盆纪(或中泥盆世)、(晚泥盆世—)石炭纪—三叠纪与侏罗纪—第四纪4个构造旋回的演化;据东西向两条构造锋线和南北(或北北东)向的两条改造锋线及西太平洋弧后盆地带,可将中国划分为北疆、内蒙古、松辽、塔里木—阿拉善、鄂尔多斯、渤海湾、青藏、四川、华南与海域等10个沉积盆地区;发育有前陆/克拉通、前陆/坳陷、坳陷/断陷、断陷/坳陷、反转断陷、被动陆缘、走滑叠合和改造残留等8种叠合盆地结构类型;发育安岳裂陷槽型、塔北型、苏里格复合三角洲型、玛湖凹陷型、陆梁隆起型、库车冲断带型、大庆长垣型、古潜山型、中央峡谷水道型、柴东生物气型、四川源内型与沁水向斜煤层气型等12种典型油气成模式;盆地内凹陷/断陷的油气分布具有空间有序性,叠合界面油气富集具优势性,油气叠合分布有强的非均一性,中西部前陆/克拉通叠合型盆地的油、气分区分布,海域被动陆缘/断陷叠合型盆地的油、气分带分布。中国多旋回叠合盆地具有独特的“三环带状”油气分布格局。  相似文献   

19.
海相沉积岩是中国石油工业未来的希望   总被引:7,自引:0,他引:7  
回顾了中国陆相找油第一次创业的经验,认为中国的海相找油走过了一段“以南代北”和“以偏概全”的弯路。提出了该如何全面看待中国南方海相地层所遇到的破坏严重,地面暴露,保存条件差及油气层年代古老等问题。汇总了我国主要海相勘探区(塔里木盆地、鄂尔多斯盆地、四川盆地、渤海湾盆地)的油气勘探进展概况。建议中国的海相油气勘探因经验不足,可以借鉴俄罗斯海相古生界找油的经验。指出中国的海相沉积油气勘探可以包括十个领域:(1)稳定地台区的大型古隆起;(2)断陷盆地的海相沉积;(3)山间盆地海相沉积;(4)南方地区碳酸盐岩分布区;(5)南方复合盆地;(6)大陆架海域海相沉积;(7)西藏羌塘盆地侏罗系;(8)四川盆地的三叠系;(9)大型不整合;(10)逆掩断层带的海相沉积。  相似文献   

20.
The South China Sea is rich in oil and gas resources. With the increasing exploration of oil and gas resources in the northern South China Sea and the increasing demand for energy in the world, The central‐southern South China Sea have become important constituencies for oil and gas resources. The central‐southern basins of South China Sea can be divided into three types of basin groups, namely, the southern basin group (Zengmu Basin, Brunei‐Sabah Basin), the western basin group (Wan'an Basin, Zhong jiannan Basin) and the Central Basin Group (Liyue Basin, Beikang Basin, Nanweixi Basin and Palawan Basin). At present, the degree of exploration is relatively low, and the source rock has not yet formed a understanding of the system. The main source rock development time, source rock characteristics, hydrocarbon generation potential and control factors of each basin group are still unclear, which seriously restricts the exploration of oil and gas. Based on the sedimentary facies distribution and sedimentary filling evolution, combined with the geoche mical characteristics of the source rocks, the source age, organic matter type, hydrocarbon generation potential and main controlling factors of the basins in the central‐southern basins are discussed. By the detailed research on delta scale, provenance system, paleoclimate conditions, ancient vegetation development and hydroca rbon generation parent material, the main controlling factors of hydrocarbon generation potential of source rocks in each basin group are revealed.  相似文献   

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