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Research advances on the mechanisms of reservoir formation and hydrocarbon accumulation and the oil and gas development methods of deep and ultra-deep marine carbonates 被引量:2
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作者 MA Yongsheng CAI Xunyu +9 位作者 LI Maowen LI Huili ZHU Dongya QIU Nansheng PANG Xiongqi ZENG Daqian KANG Zhijiang MA Anlai SHI Kaibo ZHANG Juntao 《Petroleum Exploration and Development》 SCIE 2024年第4期795-812,共18页
Based on the new data of drilling, seismic, logging, test and experiments, the key scientific problems in reservoir formation, hydrocarbon accumulation and efficient oil and gas development methods of deep and ultra-d... Based on the new data of drilling, seismic, logging, test and experiments, the key scientific problems in reservoir formation, hydrocarbon accumulation and efficient oil and gas development methods of deep and ultra-deep marine carbonate strata in the central and western superimposed basin in China have been continuously studied.(1) The fault-controlled carbonate reservoir and the ancient dolomite reservoir are two important types of reservoirs in the deep and ultra-deep marine carbonates. According to the formation origin, the large-scale fault-controlled reservoir can be further divided into three types:fracture-cavity reservoir formed by tectonic rupture, fault and fluid-controlled reservoir, and shoal and mound reservoir modified by fault and fluid. The Sinian microbial dolomites are developed in the aragonite-dolomite sea. The predominant mound-shoal facies, early dolomitization and dissolution, acidic fluid environment, anhydrite capping and overpressure are the key factors for the formation and preservation of high-quality dolomite reservoirs.(2) The organic-rich shale of the marine carbonate strata in the superimposed basins of central and western China are mainly developed in the sedimentary environments of deep-water shelf of passive continental margin and carbonate ramp. The tectonic-thermal system is the important factor controlling the hydrocarbon phase in deep and ultra-deep reservoirs, and the reformed dynamic field controls oil and gas accumulation and distribution in deep and ultra-deep marine carbonates.(3) During the development of high-sulfur gas fields such as Puguang, sulfur precipitation blocks the wellbore. The application of sulfur solvent combined with coiled tubing has a significant effect on removing sulfur blockage. The integrated technology of dual-medium modeling and numerical simulation based on sedimentary simulation can accurately characterize the spatial distribution and changes of the water invasion front.Afterward, water control strategies for the entire life cycle of gas wells are proposed, including flow rate management, water drainage and plugging.(4) In the development of ultra-deep fault-controlled fractured-cavity reservoirs, well production declines rapidly due to the permeability reduction, which is a consequence of reservoir stress-sensitivity. The rapid phase change in condensate gas reservoir and pressure decline significantly affect the recovery of condensate oil. Innovative development methods such as gravity drive through water and natural gas injection, and natural gas drive through top injection and bottom production for ultra-deep fault-controlled condensate gas reservoirs are proposed. By adopting the hierarchical geological modeling and the fluid-solid-thermal coupled numerical simulation, the accuracy of producing performance prediction in oil and gas reservoirs has been effectively improved. 展开更多
关键词 deep and ultra-deep marine carbonate mechanisms of hydrocarbon accumulation reef-beach facies high-sulfur sour gas reservoirs ultra-deep fault-controlled fractured-cavity reservoir wellbore sulfur deposition fluid-solid-thermal numerical simulation
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Hydrocarbon migration and accumulation along the fault intersection zone-a case study on the reef-flat systems of the No.1 slope break zone in the Tazhong area, Tarim Basin 被引量:14
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作者 Xiang Caifu Pang Xiongqi +4 位作者 Yang Wenjing Wang Jianzhong LiQiming Liu Luofu Li Yanqun 《Petroleum Science》 SCIE CAS CSCD 2010年第2期211-225,共15页
Understanding hydrocarbon migration and accumulation mechanisms is one of the key scientif ic problems that should be solved for effective hydrocarbon exploration in the superimposed basins developed in northwest Chin... Understanding hydrocarbon migration and accumulation mechanisms is one of the key scientif ic problems that should be solved for effective hydrocarbon exploration in the superimposed basins developed in northwest China. The northwest striking No.1 slope break zone, which is a representative of superimposed basins in the Tarim Basin, can be divided into five parts due to the intersection of the northeast strike-slip faults. Controlled by the tectonic framework, the types and properties of reservoirs and the hydrocarbon compositions can also be divided into five parts from east to west. Anomalies of all the parameters were found on the fault intersection zone and weakened up-dip along the structural ridge away from it. Thus, it can be inferred that the intersection zone is the hydrocarbon charging position. This new conclusion differs greatly from the traditional viewpoint, which believes that the hydrocarbon migrates and accumulates along the whole plane of the No.1 slope break zone. The viewpoint is further supported by the evidence from the theory of main pathway systems, obvious improvement of the reservoir quality (2-3 orders of magnitude at the intersection zone) and the formation mechanisms of the fault intersection zone. Differential hydrocarbon migration and entrapment exists in and around the strike- slip faults. This is controlled by the internal structure of faults. It is concluded that the more complicated the fault structure is, the more significant the effects will be. If there is a deformation band, it will hinder the cross fault migration due to the common feature of two to four orders of magnitude reduction in permeability. Otherwise, hydrocarbons tend to accumulate in the up-dip structure under the control of buoyancy. Further research on the internal fault structure should be emphasized. 展开更多
关键词 Geologic chromatographic effect fault intersection zone differential hydrocarbon migration and accumulation superimposed basin Tazhong area Tarim Basin
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Artificial Neural Network Model of Hydrocarbon Migration and Accumulation
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作者 刘海滨 吴冲龙 《Journal of China University of Mining and Technology》 2002年第2期210-214,共5页
Based on the dynamic simulation of the 3 D structure the sedimentary modeling, the unit entity model has been adopted to transfer the heterogeneous complex passage system into limited simple homogeneous entity, and th... Based on the dynamic simulation of the 3 D structure the sedimentary modeling, the unit entity model has been adopted to transfer the heterogeneous complex passage system into limited simple homogeneous entity, and then the traditional dynamic simulation has been used to calculate the phase and the drive forces of the hydrocarbon , and the artificial neural network(ANN) technology has been applied to resolve such problems as the direction, velocity and quantity of the hydrocarbon migration among the unit entities. Through simulating of petroleum migration and accumulation in Zhu Ⅲ depression, the complex mechanism of hydrocarbon migration and accumulation has been opened out. 展开更多
关键词 hydrocarbon migration and accumulation nonlinear course ANN
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Paleoporosity and critical porosity in the accumulation period and their impacts on hydrocarbon accumulation—A case study of the middle Es3 member of the Paleogene formation in the Niuzhuang Sag, Dongying Depression, Southeastern Bohai Bay Basin, East Chi 被引量:9
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作者 Liu Mingjie Liu Zhen +1 位作者 Sun Xiaoming Wang Biao 《Petroleum Science》 SCIE CAS CSCD 2014年第4期495-507,共13页
Similar reservoir sandbodies and fault conduit systems in the sandstone reservoirs in the middle Es3 member of the Niuzhuang Sag have been problematic for a long time. The following problems remain unsolved: 1) The ... Similar reservoir sandbodies and fault conduit systems in the sandstone reservoirs in the middle Es3 member of the Niuzhuang Sag have been problematic for a long time. The following problems remain unsolved: 1) The distribution of sandstone porosity is inconsistent with the hydrocarbon accumulation. The oil sandstones have low porosity instead of high porosity. 2) Sandstones, which have the same properties, have different levels of oiliness, and the sandstones with almost the same properties show different degrees of oil-bearing capacity. This study analyzes the condition of reservoirs in the research area during the accumulation period in terms of paleoporosity estimation and discusses the critical porosity of the sandstone reservoirs during the same period. The following conclusions can be drawn from the results. 1) Although reservoir properties are low at present and some reservoirs have become tight, the paleoporosity ranging from 18% to 25% is greater than the critical porosity of 13.9%. As the: loss of porosity is different in terms of burial history, the present porosity cannot reflect porosity during the accumulation period. Similar/y, high porosity during the accumulation period does not indicate that tbe present porosity is high. 2) The present reservoir location is consistent with the distribution of high paleoporosity during the accumulation period. This result indicates that high porosity belts are prone to hydrocarbon accumulation because of the dominant migration pathways generated as a result of property discrepancies under similar fault conduit conditions. Consequently, the hydrocarbon mainly accumulates in high porosity belts. Paleoporosity during the accumulation period is found to be a vital controlling factor. Therefore, high paleoporosity sandstones in the middle Es3 member of the Niuzhuang Sag have great potential for future exploration. 展开更多
关键词 Paleoporosity critical porosity dominant migration pathways hydrocarbon accumulation middle Es3 member Niuzhuang Sag Bohai Bay Basin
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Migration and accumulation mechanisms and main controlling factors of tight oil enrichment in a continental lake basin 被引量:2
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作者 HU Suyun TAO Shizhen +12 位作者 WANG Min PANG Zhenglian BAI Bin CHEN Yanyan LU Shuangfang CHEN Yue YANG Yiqing JIN Xu JIA Jinhua WANG Jian ZHANG Tianshu LIN Senhu WU Yinye 《Petroleum Exploration and Development》 SCIE 2023年第3期547-557,共11页
Based on the typical dissection of various onshore tight oil fields in China,the tight oil migration and accumulation mechanism and enrichment-controlling factors in continental lake basins are analyzed through nuclea... Based on the typical dissection of various onshore tight oil fields in China,the tight oil migration and accumulation mechanism and enrichment-controlling factors in continental lake basins are analyzed through nuclear magnetic resonance(NMR)displacement physical simulation and Lattice Boltzmann numerical simulation by using the samples of source rock,reservoir rock and crude oil.In continental lake basins,the dynamic forces driving hydrocarbon generation and expulsion of high-quality source rocks are the foundational power that determines the charging efficiency and accumulation effect of tight oil,the oil migration resistance is a key element that influences the charging efficiency and accumulation effect of tight oil,and the coupling of charging force with pore-throat resistance in tight reservoir controls the tight oil accumulation and sweet spot enrichment.The degree of tight oil enrichment in continental lake basins is controlled by four factors:source rock,reservoir pore-throat size,anisotropy of reservoir structure,and fractures.The high-quality source rocks control the near-source distribution of tight oil,reservoir physical properties and pore-throat size are positively correlated with the degree of tight oil enrichment,the anisotropy of reservoir structure reveals that the parallel migration rate is the highest,and intralayer fractures can improve the migration and accumulation efficiency and the oil saturation. 展开更多
关键词 tight oil NMR displacement physical simulation Lattice Boltzmann numerical simulation migration and accumulation mechanism enrichment-controlling factor continental lake basin tight reservoir
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Tight sandstone gas accumulation mechanisms and sweet spot prediction, Triassic Xujiahe Formation, Sichuan Basin, China 被引量:2
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作者 Lin Jiang Wen Zhao +3 位作者 Dong-Mei Bo Feng Hong Yan-Jie Gong Jia-Qing Hao 《Petroleum Science》 SCIE EI CAS CSCD 2023年第6期3301-3310,共10页
The prediction of continental tight sandstone gas sweet spots is an obstacle during tight sandstone gas exploration. In this work, the classic physical fluid charging experimental equipment is improved, the combinatio... The prediction of continental tight sandstone gas sweet spots is an obstacle during tight sandstone gas exploration. In this work, the classic physical fluid charging experimental equipment is improved, the combination of the gas migration and accumulation process with the pore network numerical simulation method is investigated, and application of the permeability/porosity ratio is proposed to predict the gas saturation and sweet spots of continental formations. The results show that (1) as the charging pressure increases, the permeability of the reservoir increases because more narrow pore throats are displaced in the percolation process;and (2) based on pore network numerical simulation and theoretical analysis, the natural gas migration and accumulation mechanisms are revealed. The gas saturation of tight sandstone rock is controlled by the gas charging pressure and dynamic percolation characteristics. (3) The ratio of permeability/porosity and fluid charging pressure is proposed to predict the gas saturation of the formation. The ratio is verified in a pilot and proven to be applicable and practical. This work highlights the tight sandstone gas migration and accumulation mechanisms and narrows the gap among microscale physical experiments, numerical simulation research, and field applications. 展开更多
关键词 Tight sandstone gas hydrocarbon migration and accumulation Physical experiment Numerical simulation
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Fault reactivation in No.4 structural zone and its control on oil and gas accumulation in Nanpu sag,Bohai Bay Basin,China 被引量:2
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作者 LIU Lu SUN Yonghe +2 位作者 CHEN Chang LOU Rui WANG Qi 《Petroleum Exploration and Development》 CSCD 2022年第4期824-836,共13页
Based on seismic and drilling data,the reactivation mechanism of the pre-existing basement F4 strike-slip faultin Nanpu sag and its controlling effect on hydrocarbon accumulation difference are systematically studied.... Based on seismic and drilling data,the reactivation mechanism of the pre-existing basement F4 strike-slip faultin Nanpu sag and its controlling effect on hydrocarbon accumulation difference are systematically studied.By defining fault activation stages,back-stripping fault throw and physical modeling,it is found that the Nanpu No.4 structural zone formed by the Cenozoic reactivity of the F4 fault grew from south to north,with strike-slip deformation dominated in the south and extensional deformation dominated in the north.Faults in the No.4 structural zone and those in the adjacent No.2 and No.3 structural zones were different fault systems,which grew separately,contacted and connected,and finally interwove under the action of unified stress field.By constructing the identification chart of deformation mechanisms of reactivation of pre-existing faults,it is concluded that during the sedimentary period of the Paleogene Shahejie Formation,F4 fault was reactivated by strike-slip faulting,and during the sedimentary period of Paleogene Dongying Formation and Neogene Guantao-Minghuazhen formations,it was reactivated by oblique extension.The controlling effects of Cenozoic reactivation of F4 fault on hydrocarbon accumulation include:(1)As the oil-source fault,it controlled the vertical cross-layer migration of oil and gas.(2)It gave rise to strike-slip transfer zone to control the distribution of sand bodies.(3)It grew upward and interacted with faults in the neighboring area,controlling the formation of two types of traps,and was favorable for oil and gas accumulation. 展开更多
关键词 Bohai Bay Basin Nanpu sag CENOZOIC strike-slip fault pre-existing fault fault reactivation identification template physical simulation experiment hydrocarbon accumulation
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地质建模和数值模拟在煤层气微幅构造控藏控产中的实践
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作者 李勇 李军辉 +2 位作者 李永臣 刘光峰 张远 《天然气工业》 北大核心 2025年第3期54-67,共14页
煤层气藏精细描述、地质建模及数值模拟对煤层气开发方案的制定至关重要。为了进一步优化资源储量利用和提高采收效率,加快煤层气田产能建设,以鄂尔多斯盆地东缘煤层气开发超过10年的31.08 km^(2)开发单元为研究对象,结合静态地质资料... 煤层气藏精细描述、地质建模及数值模拟对煤层气开发方案的制定至关重要。为了进一步优化资源储量利用和提高采收效率,加快煤层气田产能建设,以鄂尔多斯盆地东缘煤层气开发超过10年的31.08 km^(2)开发单元为研究对象,结合静态地质资料和动态生产数据,对煤层气进行了三维地质建模和数值模拟,系统揭示了煤储层分布特征,明确了煤层气储量动用情况,提出微幅构造对煤层气剩余资源的开发策略。研究结果表明:(1)将3、4+5、6、7、8和9号共6套煤层划分为12个小层,实现了0.5 m厚度煤层垂向网格控制,有效区分了厚煤层垂向含气量等属性变化;(2)结合地质模型和气井开发效果,提出了正向高部位、正向低部位、平缓斜坡区和负向低部位共4种微幅构造控制的煤层气富集模式,对应不同的产气、产水和井底流压变化曲线;(3)在数值模型基础上进行产气历史拟合,研究区煤层气总体采出程度为14.7%,抽样上述4种微幅构造下的井组(平均6~7口井),其平均采出程度依次为32.5%、6.8%、7.4%和4.9%,显示不同构造区域产气效果差异显著。结论认为:(1)在高剩余煤层气含量区进行井网加密和低效井治理,针对3、6和7号未动用煤层合层开发,是实现该区煤层气持续稳产高产的关键;(2)在未来煤层气勘探开发中,应关注微幅构造约束的不同气井开发表现差异,优选甜点区段,提高煤层气开发经济效益。 展开更多
关键词 鄂尔多斯盆地 煤层气开发 精细描述 地质建模 数值模拟 微幅构造 成藏模式
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异地盐席发育区输导体系油气运聚物理模拟--以墨西哥湾博格斯盆地Perdido构造带为例
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作者 樊妍 向才富 +7 位作者 杨松岭 逄林安 陈经覃 李爱山 陈亮 蒋善斌 司永康 杨明慧 《石油实验地质》 北大核心 2025年第2期347-361,共15页
博格斯盆地是墨西哥湾西部典型的含盐被动陆缘盆地,油气资源丰富,其Perdido构造带异地盐席发育区形成了由异地盐席底部构造、断层和古新统—始新统Wilcox组构成的油气输导体系。由于Perdido构造带水体较深且盐构造活动复杂,其异地盐席... 博格斯盆地是墨西哥湾西部典型的含盐被动陆缘盆地,油气资源丰富,其Perdido构造带异地盐席发育区形成了由异地盐席底部构造、断层和古新统—始新统Wilcox组构成的油气输导体系。由于Perdido构造带水体较深且盐构造活动复杂,其异地盐席发育区的油气输导特征和输导效率不明。因此,定量评价Perdido构造带异地盐席发育区油气输导体系的输导效率、厘清不同类型输导体系输导效率的差异性及其影响因素对减少勘探风险尤为重要。基于地震、钻井和测井等资料,对Perdido构造带异地盐席发育区发育的下倾型、波浪型和上倾型三种形态的油气输导体系开展了油气运聚物理模拟实验。研究表明,与盐席底部砂泥岩相比,三种形态油气输导体系中Wilcox组均呈现更高的输导效率,是油气运移的优势通道。不同形态油气输导体系的输导效率在油气运移的不同时期存在差异,具体表现为始新世末期下倾型输导体系的输导效率最高;渐新世末期上倾型输导体系的输导效率最高。始新世末期和渐新世末期,研究区断层活动性强,促进油气输导。Perdido构造带异地盐席发育区的油气输导效率受输导体系的物性、油气运移距离和源储压差等因素的影响,其中,源储压差为主要控制因素,油气运移距离为次要控制因素,输导体系物性的影响相对较弱。 展开更多
关键词 输导效率 油气运聚物理模拟 盐构造 Perdido构造带 博格斯盆地
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断洞体:非碳酸盐岩区油气大规模运聚的可能空间
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作者 罗群 王千军 +5 位作者 桂诗琦 贺小标 胡婉婧 张曰静 汪亮 曹旭明 《石油实验地质》 北大核心 2025年第2期248-260,共13页
碳酸盐岩沿断裂发育溶洞形成断溶体是很好理解的,毕竟碳酸盐岩容易被沿断裂活动的流体溶蚀,但在非碳酸盐岩区,流体对非碳酸盐岩的溶蚀作用有限,是否也能形成沿断裂发育的洞穴并能运聚和富集油气?为了证明在非碳酸盐岩区沿断裂也存在大... 碳酸盐岩沿断裂发育溶洞形成断溶体是很好理解的,毕竟碳酸盐岩容易被沿断裂活动的流体溶蚀,但在非碳酸盐岩区,流体对非碳酸盐岩的溶蚀作用有限,是否也能形成沿断裂发育的洞穴并能运聚和富集油气?为了证明在非碳酸盐岩区沿断裂也存在大型的洞穴,能形成油气运聚的重要空间,以准噶尔盆地西部车排子隆起为例,通过野外考察、岩心观察、钻井分析、地震解释和物理模拟实验等途径和手段,开展了断裂内部结构、洞穴分布发育特征及油气差异运聚的研究,提出了在非碳酸盐岩区沿断裂的核部能够发育大型洞穴地质体即断洞体的观点。断裂活动中因断裂两盘活动而产生相对位移形成的空洞空间,即断洞体,它可以是断层两盘沿起伏的断层面(带)错动而产生,也可以是两盘沿断裂的倾向拉分而产生。断洞体的形成与溶蚀无关,与断裂面(带)起伏、走向断距或倾向断距、断裂产状及断裂两盘的运动方向有关。断洞体规模可能很大,主要分布于走滑断裂产状发生变化的部位或不同断裂的交叉部位,也可以发育在伸展或张扭应力集中且倾向断距明显的部位,断洞体能够聚集油气形成断洞体油气藏。断洞体的提出有利于解放思想,即在广大的碎屑岩、火山岩、变质岩等溶蚀作用不发育的非碳酸盐岩区,同样可以找到像塔河、顺北(富满)碳酸盐岩地区油气丰富的大型断层体油气藏。 展开更多
关键词 断裂内部结构 油气运聚 断洞体 车排子隆起 准噶尔盆地 非碳酸盐岩区
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东濮凹陷北部古近系沙三段超压岩性油气藏成藏机理 被引量:4
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作者 张磊 李莎 +5 位作者 罗波波 吕伯强 谢敏 陈新平 陈冬霞 邓彩云 《岩性油气藏》 CAS CSCD 北大核心 2024年第4期57-70,共14页
东濮凹陷深部储层致密,超压广泛发育,油气生运聚过程复杂。利用测井、录井、钻井及地球化学分析等资料,对东濮凹陷北部古近系沙三段超压的形成机制、超压对源岩与储层的影响以及油气运移动力进行了系统研究,并阐明深层超压岩性油气藏的... 东濮凹陷深部储层致密,超压广泛发育,油气生运聚过程复杂。利用测井、录井、钻井及地球化学分析等资料,对东濮凹陷北部古近系沙三段超压的形成机制、超压对源岩与储层的影响以及油气运移动力进行了系统研究,并阐明深层超压岩性油气藏的成藏机理。研究结果表明:(1)东濮凹陷北部古近系沙三段超压岩性油气藏类型主要包括砂岩上倾尖灭油气藏、砂岩透镜体油气藏、裂缝油气藏3种纯岩性油气藏和岩性-构造油气藏、构造-岩性油气藏2种复合油气藏。岩性油气藏主要分布于东濮凹陷北部地区,尤其在前梨园洼陷、海通集洼陷、柳屯洼陷及濮城—卫城洼陷周边,具有“环洼有序分布”的特征。(2)研究区厚层膏盐岩发育及生烃过程产生的深层超压对烃源岩的生烃具有抑制作用,有效扩大了生油窗,增强了深部源岩的生烃能力,促进了其对环洼岩性油气藏的大规模近源供烃;膏盐岩发育、早期快速埋藏、超压的抗压实作用和晚期发育的溶蚀作用控制了优质储层的分布;深部广泛发育的超压和浮力协同作用为深层油气运移提供了有效动力。(3)研究区东部洼陷带为“单洼单源、早混相晚气相、自生自储、超压驱动运聚”成藏模式;东部陡坡带为“单洼多源、早混相晚气相、超压-浮力驱动侧向运聚”成藏模式;西部斜坡带为“单洼多源、油相、超压-浮力驱动侧向运聚”成藏模式;西部洼陷带为“单洼单源、油相、超压-浮力驱动侧向运聚”成藏模式。 展开更多
关键词 岩性油气藏 近源供烃 膏盐岩 超压驱动 浮力驱动 侧向运聚 沙三段 古近系 东濮凹陷
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ABSTRACTS OF THE PRESENT ISSUE (JXSYU ISSN 1673-064X)
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《西安石油大学学报(自然科学版)》 CAS 北大核心 2015年第3期I0001-I0007,共7页
关键词 《西安石油大学学报》 英文摘要 期刊 编辑工作
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库车前陆冲断带构造分层变形特征 被引量:2
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作者 徐振平 杨宪彰 +4 位作者 能源 段云江 张文 胡建宁 张梦洋 《新疆石油地质》 CAS CSCD 北大核心 2024年第5期505-515,共11页
库车前陆冲断带地震资料信噪比低,具有多解性。利用高分辨率三维地震、钻井、油气分析化验等资料,对库车前陆冲断带地层组合进行系统描述,精细解释构造模型,深入剖析油气成藏体系,认为库车前陆冲断带发育古近系和新近系膏盐岩层及三叠... 库车前陆冲断带地震资料信噪比低,具有多解性。利用高分辨率三维地震、钻井、油气分析化验等资料,对库车前陆冲断带地层组合进行系统描述,精细解释构造模型,深入剖析油气成藏体系,认为库车前陆冲断带发育古近系和新近系膏盐岩层及三叠系和侏罗系煤层2套滑脱层,具有分层滑脱、垂向叠置、多期变形的特征,浅层构造发育盖层滑脱褶皱,深层发育基底卷入式叠瓦状逆冲构造,膏盐岩层和煤层发生滑脱塑性变形,发育加里东运动期、海西运动晚期—印支运动期和燕山运动期—喜马拉雅运动期3期断裂,海西运动晚期—印支运动期构造控制中生界沉积,由北向南具有超覆减薄的特征。库车前陆冲断带分层构造变形控制油气分层运聚,煤层以上的油气主要来自侏罗系烃源岩,煤层之下的油气主要来自三叠系,三叠系烃源岩生烃量占60%,大量油气仍保存在煤层之下。 展开更多
关键词 库车前陆冲断带 煤层 膏盐岩层 滑脱层 构造分层变形 油气分层运聚 深层油气
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塔里木盆地北部富满地区超深层走滑断裂带碳酸盐岩油气差异成藏成因探讨 被引量:1
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作者 乔俊程 常少英 +9 位作者 曾溅辉 曹鹏 董科良 王孟修 杨冀宁 刘亚洲 隆辉 安廷 杨睿 文林 《石油与天然气地质》 EI CAS CSCD 北大核心 2024年第5期1226-1246,共21页
塔里木盆地北部超深层走滑断裂体系海相碳酸盐岩油气勘探开发近年来取得了重大突破,但富满油田油气分布与富集特征差异显著,走滑断裂控制下的超深层油气差异成藏机理尚不清楚。研究了富满地区走滑断裂几何结构及其演化过程,探讨其在油... 塔里木盆地北部超深层走滑断裂体系海相碳酸盐岩油气勘探开发近年来取得了重大突破,但富满油田油气分布与富集特征差异显著,走滑断裂控制下的超深层油气差异成藏机理尚不清楚。研究了富满地区走滑断裂几何结构及其演化过程,探讨其在油气运聚成藏中的作用,分析油气成藏富集机理,提出了油气富集主控因素。研究结果表明:(1)研究区走滑断裂经历了早期伸展或弱挤压,中期压扭、伸展或平移走滑,晚期定型、继承发育或张扭反转的动力学演化过程。FI5断裂带和FI17断裂带挤压、剪切和拉张应力交替发育,不同部位演化差异明显,FI7断裂带和FI16断裂带以剪切应力和拉张应力为主,演化过程相对简单。(2)演化过程不同的断裂形成了不同的几何结构,造成通源性、输导性与储集性强弱差异配置不同,从而形成了3种不同的油气充注方式。FI5断裂带和FI16断裂带油气以垂向充注为主,FI7断裂带油气以侧向运移调整为主,FI17断裂带为垂向充注-侧向运移复合型。(3)断裂演化过程差异控制了油气充注过程。东部断裂晚期活动性强,喜马拉雅期高成熟裂解气大量充注成藏,形成了“西油东气”的格局。断裂带内不同部位演化过程差异加剧了断裂内油气性质变化的复杂性。(4)垂向充注型油气藏中通源性、输导性和储集性的耦合配置关系控制了油气富集程度,充注期次差异控制了油气性质变化,油气侧向运移为主的油气藏中储集性及侧向连通程度控制了油气富集程度及油气性质的变化。 展开更多
关键词 运聚能力 成藏富集机理 走滑断裂 超深层 碳酸盐岩油气藏 富满地区 塔里木盆地
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中国含油气盆地不同构造样式及其油气地质意义 被引量:1
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作者 郭齐军 邓铭哲 +3 位作者 张晨雨 单帅强 倪春华 王斌 《石油与天然气地质》 EI CAS CSCD 北大核心 2024年第3期609-621,共13页
多类型构造样式的控油气作用是油气勘探面临的重要科学问题。基于前人研究认识成果、勘探经验的总结,对中国含油气盆地内不同构造样式的演化及成因模式进行了系统梳理,解析了不同构造样式对油气成藏的控制作用。研究认为:①中国含油气... 多类型构造样式的控油气作用是油气勘探面临的重要科学问题。基于前人研究认识成果、勘探经验的总结,对中国含油气盆地内不同构造样式的演化及成因模式进行了系统梳理,解析了不同构造样式对油气成藏的控制作用。研究认为:①中国含油气盆地主要发育伸展构造、收缩构造、走滑构造和叠加构造4种构造样式。伸展构造主要控制盆地建造过程,收缩构造、走滑构造主要控制盆地改造过程。②不同构造类型的控油气作用差异明显,伸展构造主要控制盆地烃源岩、有利储集体和盖层等油气聚集成藏要素的发育,收缩构造、走滑构造和叠加构造主要控制油气运移与圈闭条件的演化。③在构造与其他要素复合作用下,断裂自身也可以作为一类储集体,成为油气聚集的空间,这一类断裂油气藏是当前油气勘探的新领域。 展开更多
关键词 控油气作用 伸展构造 收缩构造 走滑构造 叠加构造 构造样式 石油勘探 含油气盆地
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深层—超深层海相碳酸盐岩成储成藏机理与油气藏开发方法研究进展 被引量:7
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作者 马永生 蔡勋育 +9 位作者 黎茂稳 李慧莉 朱东亚 邱楠生 庞雄奇 曾大乾 康志江 马安来 石开波 张军涛 《石油勘探与开发》 EI CAS CSCD 北大核心 2024年第4期692-707,共16页
基于钻井、地震、测井、测试以及实验分析等新资料,针对中西部叠合盆地深层—超深层海相碳酸盐岩层系成储、成藏和油气藏高效开发面临的关键科学问题开展持续攻关。研究表明:(1)断裂主导形成的储集体和古老层系白云岩储层是深层—超深... 基于钻井、地震、测井、测试以及实验分析等新资料,针对中西部叠合盆地深层—超深层海相碳酸盐岩层系成储、成藏和油气藏高效开发面临的关键科学问题开展持续攻关。研究表明:(1)断裂主导形成的储集体和古老层系白云岩储层是深层—超深层海相碳酸盐岩两类重要的储层;以断裂为主导形成的规模储集体,根据成因可进一步分为3种类型:断裂活动过程中构造破裂形成的缝洞储集体、致密碳酸盐岩受断裂和流体双重改造形成的储集体与早期丘滩等高能相带受断裂和流体改造形成的储层;优势丘滩相、早期白云石化和溶蚀、酸性流体环境、膏盐岩封盖和超压是优质白云岩储层形成和保持的关键。(2)中国中西部叠合盆地海相碳酸盐岩层系富有机质页岩主要发育于被动陆缘深水陆棚、碳酸盐缓坡等环境中,构造-热体制是控制深层—超深层油气藏赋存相态的重要因素,改造型动力场控制中西部叠合盆地深层—超深层海相碳酸盐岩油气成藏与分布。(3)普光等高含硫酸性气田开发过程中硫析出堵塞井筒,采用井筒溶硫剂配合连续油管解硫堵效果明显;基于沉积模拟的双重介质建模数模一体化技术可以精细刻画水侵前缘空间展布及变化,并据此提出气井全生命周期调、排、堵控水对策。(4)超深断控缝洞油气藏开发过程中,储层应力敏感,渗透率随压力下降而显著降低,产量递减较快;凝析气藏相态变化快,压降显著影响凝析油采出程度;据此提出“注水+注天然气”重力驱油藏开发方法和“高注低采”天然气驱凝析气藏开发方法;采用分层次约束、逐级地质建模和流-固-热耦合的复合介质数值模拟有效提高了油气藏开发生产动态模拟的预测精度。 展开更多
关键词 深层—超深层海相碳酸盐岩 油气成藏机理 礁滩相高含硫酸性气藏 超深断控缝洞油气藏 井筒硫沉积 流-固-热耦合数值模拟
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渤东凹陷新生代伸展-走滑叠合断裂时空差异演化模式及控藏效应 被引量:2
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作者 董柔 李坤 +3 位作者 殷际航 薛煜恒 江涛 徐国盛 《岩性油气藏》 CAS CSCD 北大核心 2024年第3期106-116,共11页
以三维地震精细解释为基础,通过构造剖面恢复,系统分析了渤东凹陷新生代伸展-走滑叠合断裂的时空差异演化特征及控藏作用。研究结果表明:(1)渤东凹陷新生代广泛发育以NNE向为主干、NE向为派生、NW向为叠加的伸展-走滑叠合断裂体系,可划... 以三维地震精细解释为基础,通过构造剖面恢复,系统分析了渤东凹陷新生代伸展-走滑叠合断裂的时空差异演化特征及控藏作用。研究结果表明:(1)渤东凹陷新生代广泛发育以NNE向为主干、NE向为派生、NW向为叠加的伸展-走滑叠合断裂体系,可划分为强伸展-弱走滑断裂和强走滑-弱伸展断裂2类;整体具有深浅分层、南北分段的特征,纵向上,古近系主要发育强伸展-弱走滑断裂,断裂大而稀,新近系—第四系主要发育强走滑-弱伸展断裂,断裂小而密;平面上,同一断裂在不同段的构造组合样式存在差异。(2)研究区新生代伸展-走滑叠合断裂的演化主要表现为北部断裂活动强度“早强晚弱”,中部断裂继承性持续发育,南部断裂活动强度“早弱晚强”;演化模式分为初始断陷(孔店组—沙四段沉积期)、强烈断陷(沙三段—东营组沉积期)和走滑坳陷(馆陶组—平原组沉积期)3个阶段,初始断陷阶段,NNE—NE向强伸展与弱走滑叠合,NE向强伸展-弱走滑断裂为主控,NW向先存断裂活化,分割凹陷;强烈断陷阶段,NNE—NE向强伸展与弱走滑叠合,NNE向强伸展-弱走滑断裂变为主控,NW向断裂活动减弱或停止;走滑坳陷阶段,NNE向强走滑与弱伸展叠合,断裂不控制沉积,但对地层展布具有调整作用。(3)研究区伸展-走滑叠合断裂的发育演化与油气成藏密切相关,整体具有“早期伸展控源、晚期走滑控运、多期叠加控圈”的特征,东部斜坡带是油气运聚的有利区。 展开更多
关键词 伸展-走滑叠合断裂 断裂演化 油气运聚 断裂控藏 沙河街组 东营组 新生代 渤东凹陷
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深层古近系“汇聚脊”对浅层新近系油气聚集的控制作用——以渤海湾盆地环渤中地区为例 被引量:2
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作者 刘斯亮 薛永安 +4 位作者 吕丁友 李慧勇 王德英 王海学 于海波 《大庆石油地质与开发》 CAS 北大核心 2024年第5期42-53,共12页
根据渤海海域多年的勘探实践经验,“汇聚脊”可以划分为凸起型、凹中隆起型、陡坡带砂体型3种类型。目前对于“汇聚脊”的控藏机理和控油气运聚过程尚不清晰。为解决渤海海域浅层不同构造带油气成藏差异显著的问题,利用油气运移物理模... 根据渤海海域多年的勘探实践经验,“汇聚脊”可以划分为凸起型、凹中隆起型、陡坡带砂体型3种类型。目前对于“汇聚脊”的控藏机理和控油气运聚过程尚不清晰。为解决渤海海域浅层不同构造带油气成藏差异显著的问题,利用油气运移物理模拟实验对“汇聚脊”的控藏机理和控油气运聚过程进行分析。结果表明:凸起型“汇聚脊”规模大、幅度高,汇烃能力最强,在断层沟通下,其上的浅层新近系油气藏规模最大;凹中隆起型“汇聚脊”的面积和幅度中等,浅层油气成藏规模以中型为主;陡坡带砂体型“汇聚脊”依靠砂体的汇聚作用,也具有较强的汇烃能力,浅层新近系也可以形成大中型油气藏;深层发育“汇聚脊”是浅层油气富集的必要条件。“汇聚脊”控藏理论的提出可以有效指导渤海油田的浅层油气勘探实践,同时对相似背景下陆地油田的油气勘探也同样具有借鉴意义。 展开更多
关键词 油气聚集 汇聚脊 成藏物理模拟 古近系 新近系 渤海海域 渤海湾盆地
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渤海湾盆地石臼坨凸起秦皇岛27-3大型油田发现与地质新认识 被引量:9
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作者 周家雄 徐春强 +4 位作者 杨海风 张宏国 张震 柳永军 张德龙 《中国海上油气》 CAS CSCD 北大核心 2024年第1期14-25,共12页
渤海湾盆地石臼坨凸起历经50余年勘探,在凸起高部位背斜区发现了3个浅层亿吨级大油田,而低部位斜坡区浅层由于构造圈闭不发育,勘探程度较低,近10年无规模性发现。随着渤海海域勘探程度提高,现已全面进入岩性勘探阶段,针对石臼坨凸起东... 渤海湾盆地石臼坨凸起历经50余年勘探,在凸起高部位背斜区发现了3个浅层亿吨级大油田,而低部位斜坡区浅层由于构造圈闭不发育,勘探程度较低,近10年无规模性发现。随着渤海海域勘探程度提高,现已全面进入岩性勘探阶段,针对石臼坨凸起东段顺向断裂斜坡区浅层油气运移、岩性圈闭刻画和油气成藏规律等展开了深入系统研究。研究认为:(1)研究区南北两侧被富生烃凹陷夹持,凸起边界大断层晚期强烈活动和陡坡带近源扇体普遍发育使凸起区成为规模性油气运聚的最终指向区;(2)凸起边界大断层在馆陶组开启系数最小,馆陶组含砾砂岩输导层是石臼坨凸起之上主要的油气横向运移通道;(3)馆陶组输导脊坡度和切脊断层组合控制顺向斜坡区油气的垂向输导,当坡度小于1°且断层长度大于2.50 km、成藏期断距大于40 m时斜坡区可产生规模性的油气垂向运移,突破顺向断裂斜坡区“过路不留”的传统认识;(4)在凸起斜坡区,与构造脊方向斜交的砂体有利于油气保存,同时,提出井约束谱蓝化整形高分辨率处理技术,实现了对斜坡区岩性圈闭有效刻画,优选出保存条件较好的斜向砂体开展钻探部署。基于上述新认识、新技术,2023年在石臼坨凸起东段顺向斜坡区成功评价了秦皇岛27-3亿吨级油田,实现了勘探老区浅层挖潜的重大突破,为渤海湾盆地高成熟探区持续油气发现提供了借鉴。 展开更多
关键词 秦皇岛27-3 顺向斜坡区 油气运聚 岩性圈闭刻画 石臼坨凸起 渤海海域 浅层 油田发现
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辽河坳陷陈家断裂带北部构造演化解析及油气成藏
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作者 西智博 廖建平 +2 位作者 高荣锦 周晓龙 雷文文 《岩性油气藏》 CAS CSCD 北大核心 2024年第3期127-136,共10页
辽河坳陷陈家断裂带油气资源丰富,是辽河西部凹陷北段重要的含油气区带之一。基于构造演化解析,结合砂箱物理模拟实验,分析了辽河坳陷陈家断裂带的变形机制和演化过程,并指出其对油气成藏的控制作用。研究结果表明:(1)辽河坳陷陈家断裂... 辽河坳陷陈家断裂带油气资源丰富,是辽河西部凹陷北段重要的含油气区带之一。基于构造演化解析,结合砂箱物理模拟实验,分析了辽河坳陷陈家断裂带的变形机制和演化过程,并指出其对油气成藏的控制作用。研究结果表明:(1)辽河坳陷陈家断裂带具有分段发育特征,且活动时期具有“先北后南”的演化特征,受断层分段性影响,陈家断裂带主要发育压扭背冲构造样式和走滑压扭构造样式。(2)物理模拟实验结果显示,台安—大洼断裂上盘在压扭作用影响下首先形成压扭性质的雁行小断裂,随着位移增大,小断裂逐渐连接,最终形成了贯穿型走滑断裂带,即陈家断裂带。(3)台安洼陷为新生代多期次构造变形叠加形成的洼陷,深层发育主力烃源岩层系,具备发育大规模油气藏的物质基础,洼陷边缘的钻井岩心分析结果显示,烃源岩TOC值为4.79%,Ro为0.3%~0.4%,属于好—较好烃源岩,推测洼陷中心厚度更大,质量更优。陈家断裂带中北部下盘发育断鼻构造,具备陈家洼陷和台安洼陷双源供烃的特点,是油气聚集的有利场所。 展开更多
关键词 构造演化 构造物理模拟 油气成藏 走滑压扭 压扭背冲 双源供烃 断鼻构造 古近系 陈家断裂带 辽河坳陷
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