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Fractal Characteristics and Main Controlling Factors of High-Quality Tight Sandstone Reservoirs in the Southeastern Ordos Basin 被引量:1
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作者 Ruilin Hao Wenhui Huang +1 位作者 Jiu Bo Li Yuan 《Journal of Earth Science》 SCIE CAS CSCD 2024年第2期631-641,共11页
Due to the complex conditions and strong heterogeneity of tight sandstone reservoirs,the reservoirs should be classified and the controlling factors of physical properties should be studied.Cast thin section observati... Due to the complex conditions and strong heterogeneity of tight sandstone reservoirs,the reservoirs should be classified and the controlling factors of physical properties should be studied.Cast thin section observations,cathodoluminescence,scanning electron microscopy(SEM),X-ray diffraction(XRD),and high-pressure mercury injection(HPMI)were used to classify and optimize the reservoir.The Brooks-Corey model and stepwise regression were used to study the fractal dimension and main controlling factors of the physical properties of the high-quality reservoir.The results show that the reservoirs in the study area can be divided into four types,and the high-quality reservoir has the best physical properties and pore-throat characteristics.In the high-quality reservoir,the homogeneity of transitional pores was the best,followed by that of micropores,and the worst was mesopores.The porosity was controlled by depth and kaolinite.The model with standardized coefficients is y=12.454−0.778×(Depth)+0.395×(Kaolinite).The permeability was controlled by depth,illite/montmorillonite,and siliceous cement,and the model with standardized coefficients is y=1.689−0.683×(Depth)−0.395×(Illite/Montmorillonite)−0.337×(Siliceous Cement).The pore-throat evolutionary model shows that the early-middle diagenetic period was when the reservoir physical properties were at their best,and the kaolinite intercrystalline pores and residual intergranular pores were the most important. 展开更多
关键词 fractal dimension main controlling factors stepwise regression high-quality tight sandstone reservoir Ordos Basin petroleum geolgoy
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Analyses of the characteristics and main controlling factors of shale pores in the Niutitang Formation in the Guizhou region
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作者 Daquan Zhang Yi Chen +6 位作者 Shengyuan Ji Qingbo He Yisong Wang Ruiqin Lin Fulun Shi Xia Feng Wei Du 《Natural Gas Industry B》 2024年第4期394-404,共11页
The shale of the Lower Cambrian Niutitang Formation in the Guizhou region has undergone complex diagenesis and has developed different types of pore textures,which affect the occurrence status of shale.In the present ... The shale of the Lower Cambrian Niutitang Formation in the Guizhou region has undergone complex diagenesis and has developed different types of pore textures,which affect the occurrence status of shale.In the present study,we applied scanning electron microscopy(SEM)and an isotherm analysis of low-temperature nitrogen gas adsorption to shale core samples drawn from the Niutitang Formation in the Guizhou region to quantify the shale pore development characteristics.In addition,we conducted a shale geochemical analysis in light of the main controlling factors for pore development.The results indicate that the shale pores and fractures of the Niutitang Formation can be divided into three types:organic pores,inorganic pores,and micro fractures.The organic pores are mainly distributed in the organic matter between inorganic mineral particles,with small pore diameters,which are characterized by inkpot,elliptic,and beaded shapes.The inorganic pores are mainly composed of narrow slit intragranular pores and intergranular pores.The micro fractures develop parallel plates with four-side openings and splint plates.The pores of the shale are mainly mesopores(53%),followed by micropores and macropores,with pore diameter distributions ranging mainly from 1 to 50 nm.The specific surface area is mainly provided by nanoscale pores with average diameters of less than 4 nm.Therefore,the smaller pore makes a greater contribution to the specific surface area,while the specific surface area increases with an increase in the total pore volume.The study further indicates that organic carbon content is the most important internal factor for shale pore development,especially in terms of the control of volume and the specific surface area of micropores.Moreover,quartz content has a certain effect on shale pores;the pore volume and specific surface area increase with increasing quartz content,but the control effect is not obvious.The effect of clay minerals on shale pores is negligible.The type of organic matter is also an important factor in controlling the developmental difference of shale pores,and a high degree of thermal evolution is not conducive to organic pore development.It was therefore concluded that intergranular pores and microfractures,mainly mesopores,are the main reservoir space and migration channels of Niutitang shale in the study area.The organic carbon content,mineral components,organic matter type,and degree of thermal evolution jointly control the development of shale pores,among which the organic carbon content is the most important influencing factor. 展开更多
关键词 Guizhou region Niutitang formation Shale pore Development characteristics main controlling factor
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Differential Hydrocarbon Enrichment and its Main Controlling Factors in Depressions of the Bohai Bay Basin Differential Hydrocarbon Enrichment and its Main Controlling Factors in Depressions of the Bohai Bay Basin 被引量:17
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作者 JIANG Youlu LIU Hua +4 位作者 SONG Guoqi WANG Yongshi LIU Jingdong ZHAO Kai LYU Xueying 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第5期1855-1872,共18页
Significant differential hydrocarbon enrichment occurs in depressions in a petroliferous basin.There are multiple depressions in the Bohai Bay Basin, and each depression as a relatively independent unit of hydrocarbon... Significant differential hydrocarbon enrichment occurs in depressions in a petroliferous basin.There are multiple depressions in the Bohai Bay Basin, and each depression as a relatively independent unit of hydrocarbon generation, migration and accumulation, contains significantly different hydrocarbon generation conditions and enrichment degree. On the basis of previous documents and a large number of statistical data, this work comparatively analyzed the differential hydrocarbon enrichment and its major controlling factors in depressions of the Bohai Bay Basin. The results show that depressions in the Bohai Bay Basin have various hydrocarbon enrichment degrees, and can be categorized into four types, namely enormously oil-rich, oil-rich, oily and oil-poor depressions. In general, the enormously oil-rich and oil-rich depressions are distributed in the eastern part of the basin along the Tan-Lu and Lan-Liao faults, whereas depressions in the western part of the basin are poor in hydrocarbons. Moreover, the vertical distribution of hydrocarbons is also highly heterogeneous, with Pre-Paleogene strata rich in hydrocarbons in the northern and western depressions, Paleogene strata rich in hydrocarbons in the entire basin, and Neogene strata rich in hydrocarbons in the off-shore areas of the Bohai Bay Basin. From early depressions in onshore areas to the late depressions in offshore areas of the Bohai Bay Basin, the source rocks and source-reservoir-cap rock assemblages gradually become younger and shallower, and the hydrocarbon resource abundance gradually increases. Hydrocarbon supplying condition is the key factor constraining the hydrocarbon enrichment for different depressions,while the main source-reservoir-cap rock assemblage, sufficient hydrocarbons and the transportation capacity of faults control the vertical distribution of hydrocarbons. The main factors controlling hydrocarbon enrichment are different for different layers. The hydrocarbon supplying condition of source rocks is the key controlling factor, whereas the source-reservoir configuration, the main sourcereservoir-cap rock assemblages, and the fault transportation are the main factors of hydrocarbon enrichment in the Paleogene, Paleogene and Neogene, respectively. 展开更多
关键词 differential hydrocarbon enrichment hydrocarbon distribution hydrocarbon-rich depression fault transportation main controlling factors Bohai Bay Basin
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Main Controls on Hydrocarbon Accumulation in the Paleozoic in Central Saudi Arabia 被引量:2
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作者 Bai Guoping (Key Laboratory for Hydrocarbon Accumulation under Ministry of Education, China University of Petroleum, Beijing 102249, China) 《Petroleum Science》 SCIE CAS CSCD 2007年第2期10-17,共8页
Sandi Arabia is renown for its rich oil and gas Mesozoic. However, the discovery of Paleozoic fields in resources with the bulk of the reserves reservo/red in the the late 1980s has encouraged further exploration in t... Sandi Arabia is renown for its rich oil and gas Mesozoic. However, the discovery of Paleozoic fields in resources with the bulk of the reserves reservo/red in the the late 1980s has encouraged further exploration in the Paleozoic. This paper reviews the salient features of the Paleozoic petroleum geology in central Saudi Arabia and discusses the main factors controlling hydrocarbon accumulation in the Paleozoic. The Lower Silurian Qusaiba hot shale is the principal source rock for the hydrocarbons discovered in the Ordovician to Permian reservoirs. Of them, the Permo- Carboniferous Unayzah and Upper Ordovician Sarah Formations have the best exploration potential. The key factors controlling hydrocarbon accumulation in the Unayzah Formation are migration pathways and reservoir petrophysics. The key factors controlling hydrocarbon accumulation in the Sarah Formation are reservoir petrophysics and the development of structural traps. 展开更多
关键词 Paleozoic oil and gas accumulations central Saudi Arabia main controls Qusaiba hot shale Unayzah play Sarah play
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Paleozoic Composite Petroleum System of North Africa:Hydrocarbon Distribution and Main Controlling Factors 被引量:1
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作者 Bai Guoping Zheng Lei 《Petroleum Science》 SCIE CAS CSCD 2007年第1期21-29,共9页
North Africa, which is one of the main oil and gas producing regions in the world, is best known for its subsalt Paleozoic-Triassic reservoirs and Paleozoic source rocks. Hydrocarbon abundance varies greatly from one ... North Africa, which is one of the main oil and gas producing regions in the world, is best known for its subsalt Paleozoic-Triassic reservoirs and Paleozoic source rocks. Hydrocarbon abundance varies greatly from one structural domain to another areally and from one stratigraphic interval to another vertically. Analyses of the essential elements and geological processes of the Paleozoic petroleum system indicate that the distribution of the Lower Silurian shale source rocks, the development of a thick Mesozoic overburden, the presence of the Upper Triassic-Lower Jurassic evaporite seal are the most important factors goveming the distribution of the Paleozoic-sourced hydrocarbons in North Africa. The Mesozoic sequence plays a critical role for hydrocarbons to accumulate by enabling the maturation of the Paleozoic source rocks during the Mesozoic-Paleogene times and preserving the accumulated hydrocarbons. Basins and surrounding uplifts, particularly the latter, with a thick Mesozoic sequence and a regional evaporite seal generally have abundant hydrocarbons. Basins where only a thin Mesozoic overburden was developed tend to have a very poor to moderate hydrocarbon prospectivity. 展开更多
关键词 Paleozoic petroleum system oil and gas distribution main controls North Africa
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Main Controlling Factors and Accumulation Model of Chang 9 Reservoir in Northwest Ordos Basin, China
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作者 Zhang Weigang Chen Gang 《China Oil & Gas》 CAS 2019年第6期39-44,共6页
In northwestern Ordos Basin, the Triassic reservoir Chang 9 has favorable reservoir forming conditions, extensive reservoir development, and huge potential for oil exploration and exploitation. Studying the main contr... In northwestern Ordos Basin, the Triassic reservoir Chang 9 has favorable reservoir forming conditions, extensive reservoir development, and huge potential for oil exploration and exploitation. Studying the main controlling factors and accumulation model of Chang 9 reservoir in this area can provide a basis for the production targets, and assist in formulating reasonable development technology policy. In this paper, to explore and summarize the hydrocarbon accumulation model, the Chang 9 reservoir were analyzed from the aspects of oil source, fracture, oil migration, structure, lithology and reservoir physical properties for the main controlling factors in this area. Organic geochemical and geological comprehensive analysis that the oil-source of the Chang 9 reservoir in the northwest of Ordos Basin is derived from Chang 7 hydrocarbon source rocks. The fractures provide a sound channel for the "vertical multi-point filling" of the oil source from Chang 7 to Chang 9. The crude oil migrates vertically from Chang 7 to Chang 9, then expands horizontally to form a reservoir. Structures play an important role in controlling the distribution of reservoirs, the control by sand in small layer and physical property is also obvious. This paper creatively establishes the reservoir accumulation model of Chang 9 in northwest of Ordos Basin, which is characterized by Vertical multi-point filling, horizontal expansion becomes oil pool. It reveals the genetic mechanism of the development of Chang 9 multi-reservoir in the study area, which provides guidance for exploration and evaluation deployment. 展开更多
关键词 Ordos Basin Chang 9 reservoir petroleum accumulation main control factors hydrocarbon pooling patterns
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Distribution rules,main controlling factors and exploration directions of giant gas fields in the Sichuan Basin
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作者 Wei Guoqi Yang Wei +6 位作者 Liu Mancang Xie Wuren Jin Hui Wu Saijun Su Nan Shen Juehong Hao Cuiguo 《Natural Gas Industry B》 2020年第1期1-12,共12页
Over the past decade,great progresses have been made in natural gas exploration in the Sichuan Basin,where several large gas fields(such as Anyue)have been discovered.With the increase of data and the deepening of exp... Over the past decade,great progresses have been made in natural gas exploration in the Sichuan Basin,where several large gas fields(such as Anyue)have been discovered.With the increase of data and the deepening of exploration,new knowledges have been gained in geological theory,thus it is necessary to further analyze the distribution characteristics and main controlling factors of large gas fields,thus to put forward new exploration directions for large gas fields.Therefore,based on the statistics on the geological parameters of 20 large gas fields discovered in this basin,the distribution rules,formation conditions and main controlling factors of large gas fields were analyzed,and the follow-up exploration directions were proposed.The following results were achieved.(1)Large gas fields are developed in different tectonic regions in the Sichuan Basin,mostly in the low and gentle tectonic belts in the central Sichuan Basin.Large gas fields are developed in seven series of strata in longitudinal stratigraphic sequences,which are dominated by the reef-shoal large gas fields formed in the Upper Permian ChangxingeLower Triassic Feixianguan Fms.(2)There are four sets of source rocks contributing to the formation of large gas fields,mostly from the assemblage of Xujiahe Fm source rocks.(3)Reservoirs in the large gas fields are dominated by porous carbonates and tight sandstones;large gas fields are mostly structuralelithological ones and normal pressure ones.(4)The development of marine large gas fields are mainly controlled by intracratonic rifts and paleo-uplifts.The controlling effect of intracratonic rifts is mainly from three aspects,namely the hydrocarbon generation center of source rocks,high-energy facies belts on the platform edges,and lateral sealing for hydrocarbon accumulation.The controlling effect of the paleo-uplifts mainly acts from another three aspects:intra-platform high-energy facies belts,karstic dolomite reservoirs and long-term hydrocarbon accumulation.The structures of foreland basins controlled the development of the continental large gas fields from four aspects:tectonic setting,source and reservoir assemblage,trap type and fracture distribution.In conclusion,a total of 5 domains with 14 favorable zones are the follow-up exploration directions of large gas fields in the Sichuan Basin. 展开更多
关键词 Sichuan Basin Large gas field Distribution rule Geological feature main controlling factor Intracratonic rift PALEO-UPLIFT Foreland basin structure Exploration direction
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Study onGeothermal Negative Anomaly andlts Main Controlling Factors in Sijiazhuang Minefield
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作者 YANG Changyong TIAN Qingling +3 位作者 HAO Chunsheng JI Changjiang YU Zhenfeng CHANG Huizhen 《山西焦煤科技》 2017年第8期8-16,共9页
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Main factors controlling unconventional gas enrichment and high production in the first member of Permian Maokou Formation,southeastern Sichuan Basin,SW China
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作者 HE Guisong SUN Bin +4 位作者 GAO Yuqiao ZHANG Peixian ZHANG Zhiping CAI Xiao XIA Wei 《Petroleum Exploration and Development》 2025年第2期408-421,共14页
Based on the data of drilling,logging,experiment and gas testing in the Nanchuan area,southeastern Sichuan Basin,the hydrocarbon generation potential,gas genesis,occurrence state,migration,preservation conditions,pore... Based on the data of drilling,logging,experiment and gas testing in the Nanchuan area,southeastern Sichuan Basin,the hydrocarbon generation potential,gas genesis,occurrence state,migration,preservation conditions,pore and fracture features and accumulation evolution of the first member of Permian Maokou Formation(Mao 1 Member)are systematically studied,and the main controlling factors of unconventional gas enrichment and high production in marlstone assemblage of Mao 1 Member are discussed.(1)The enrichment and high yield of unconventional natural gas in the Mao 1 Member are controlled by three factors:carbon-rich fabric controlling hydrocarbon generation potential,good preservation controlling enrichment,and natural fracture controlling production.(2)The carbonate rocks of Mao 1 Member with carbon rich fabric have significant gas potential,exhibiting characteristics of self-generation and self-storage,which lays the material foundation for natural gas accumulation.(3)The occurrence state of natural gas is mainly free gas,which is prone to lateral migration,and good storage conditions are the key to natural gas enrichment.Positive structure is more conducive to natural gas accumulation,and a good compartment is created jointly by the self-sealing property of the Mao 1 Member and its top and bottom sealing property in monoclinal area,which is favorable for gas accumulation by retention.(4)Natural fractures are the main reservoir space and flow channel,and the more developed natural fractures are,the more conducive to the formation of high-quality porous-fractured reservoirs and the accumulation of natural gas,which is the core of controlling production.(5)The accumulation model of unconventional natural gas is proposed as“self-generation and self-storage,preservation controlling richness,and fractures controlling production”.(6)Identifying fracture development areas with good preservation conditions is the key to successful exploration,and implementing horizontal well staged acidizing and fracturing is an important means to increase production and efficiency.The study results are of referential significance for further understanding the natural gas enrichment in the Mao 1 Member and guiding the efficient exploration and development of new types of unconventional natural gas. 展开更多
关键词 Sichuan Basin PERMIAN Maokou Formation unconventional natural gas main controlling factors of enrichment and high production accumulation model carbonate rock southeastern Sichuan Basin
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Machine learning classification algorithm screening for the main controlling factors of heavy oil CO_(2)huff and puff
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作者 Peng-xiang Diwu Beichen Zhao +6 位作者 Hangxiangpan Wang Chao Wen Siwei Nie Wenjing Wei A-qiao Li Jingjie Xu Fengyuan Zhang 《Petroleum Research》 2024年第4期541-552,共12页
CO_(2)huff and puff technology can enhance the recovery of heavy oil in high-water-cut stages.However,the effectiveness of this method varies significantly under different geological and fluid conditions,which leads t... CO_(2)huff and puff technology can enhance the recovery of heavy oil in high-water-cut stages.However,the effectiveness of this method varies significantly under different geological and fluid conditions,which leads to a high-dimensional and small-sample(HDSS)dataset.It is difficult for conventional techniques that identify key factors that influence CO_(2)huff and puff effects,such as fuzzy mathematics,to manage HDSS datasets,which often contain nonlinear and irremovable abnormal data.To accurately pinpoint the primary control factors for heavy oil CO_(2)huff and puff,four machine learning classification algorithms were adopted.These algorithms were selected to align with the characteristics of HDSS datasets,taking into account algorithmic principles and an analysis of key control factors.The results demonstrated that logistic regression encounters difficulties when dealing with nonlinear data,whereas the extreme gradient boosting and gradient boosting decision tree algorithms exhibit greater sensitivity to abnormal data.By contrast,the random forest algorithm proved to be insensitive to outliers and provided a reliable ranking of factors that influence CO_(2)huff and puff effects.The top five control factors identified were the distance between parallel wells,cumulative gas injection volume,liquid production rate of parallel wells,huff and puff timing,and heterogeneous Lorentz coefficient.These research find-ings not only contribute to the precise implementation of heavy oil CO_(2)huff and puff but also offer valuable insights into selecting classification algorithms for typical HDSS data. 展开更多
关键词 Classification algorithm Algorithm screening Heavy oil CO_(2)huff and puff main control factors
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A comparative study of the main factors controlling geohazards induced by 10 strong earthquakes in Western China since the Wenchuan earthquake in 2008 被引量:5
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作者 Chao Peng Zhi-qiang Yin +2 位作者 Xu-jiao Zhang Hai Shao Ming-fei Pang 《China Geology》 CAS CSCD 2023年第1期70-84,共15页
Determining the main controlling factors of earthquake-triggered geohazards is a prerequisite for studying earthquake geohazards and post-disaster emergency response.By studying these factors,the geomorphic and geolog... Determining the main controlling factors of earthquake-triggered geohazards is a prerequisite for studying earthquake geohazards and post-disaster emergency response.By studying these factors,the geomorphic and geological factors controlling the nature,condition,and distribution of earthquake-induced geohazards can be analyzed.Such insights facilitate earthquake disaster prediction and emergency response planning.The authors combined field investigations and spatial data analysis to examine geohazards induced by seismic events,examining ten earthquakes including the Wenchuan,Yushu,Lushan events,to elucidate the main control factors of seismic geohazard.The authors observed that seismic geohazard occurrence is usually affected by many factors,among which active nature of the seismogenic fault,seismic peak ground acceleration(PGA),topographic slope and geomorphic height differences,and distance from the fault zone and river system are the most important.Compared with strike-slip earthquakes,thrust earthquakes induce more high-altitude and high-speed remote landslides,which can cause great harm.Slopes of 0°–40°are prone to secondary seismic geohazards,which are mainly concentrated 0–6 km from the river system.Secondary geohazards are not only related to seismogenic fault but also influenced by the associated faults in the earthquake area.The maximum seismic PGA and secondary seismic geohazard number are positively correlated,and the horizontal and vertical ground motions play leading and promoting roles in secondary geohazard formation,respectively.Through the research,the spatial distribution of seismic geohazards is predicted,providing a basis for the formulation of emergency response plans following disasters. 展开更多
关键词 Wenchuan earthquake GEOHAZARDS main control factors Comparative study Geological disater survey engineering Western China
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Enrichment model and major controlling factors of below-source tight oil in Lower Cretaceous Fuyu reservoirs in northern Songliao Basin,NE China 被引量:1
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作者 WANG Xiaojun BAI Xuefeng +9 位作者 LI Junhui JIN Zhijun WANG Guiwen CHEN Fangju ZHENG Qiang HOU Yanping YANG Qingjie LI Jie LI Junwen CAI Yu 《Petroleum Exploration and Development》 SCIE 2024年第2期279-291,共13页
Based on the geochemical,seismic,logging and drilling data,the Fuyu reservoirs of the Lower Cretaceous Quantou Formation in northern Songliao Basin are systematically studied in terms of the geological characteristics... Based on the geochemical,seismic,logging and drilling data,the Fuyu reservoirs of the Lower Cretaceous Quantou Formation in northern Songliao Basin are systematically studied in terms of the geological characteristics,the tight oil enrichment model and its major controlling factors.First,the Quantou Formation is overlaid by high-quality source rocks of the Upper Cretaceous Qingshankou Formation,with the development of nose structure around sag and the broad and continuous distribution of sand bodies.The reservoirs are tight on the whole.Second,the configuration of multiple elements,such as high-quality source rocks,reservoir rocks,fault,overpressure and structure,controls the tight oil enrichment in the Fuyu reservoirs.The source-reservoir combination controls the tight oil distribution pattern.The pressure difference between source and reservoir drives the charging of tight oil.The fault-sandbody transport system determines the migration and accumulation of oil and gas.The positive structure is the favorable place for tight oil enrichment,and the fault-horst zone is the key part of syncline area for tight oil exploration.Third,based on the source-reservoir relationship,transport mode,accumulation dynamics and other elements,three tight oil enrichment models are recognized in the Fuyu reservoirs:(1)vertical or lateral migration of hydrocarbon from source rocks to adjacent reservoir rocks,that is,driven by overpressure,hydrocarbon generated is migrated vertically or laterally to and accumulates in the adjacent reservoir rocks;(2)transport of hydrocarbon through faults between separated source and reservoirs,that is,driven by overpressure,hydrocarbon migrates downward through faults to the sandbodies that are separated from the source rocks;and(3)migration of hydrocarbon through faults and sandbodies between separated source and reservoirs,that is,driven by overpressure,hydrocarbon migrates downwards through faults to the reservoir rocks that are separated from the source rocks,and then migrates laterally through sandbodies.Fourth,the differences in oil source conditions,charging drive,fault distribution,sandbody and reservoir physical properties cause the differential enrichment of tight oil in the Fuyu reservoirs.Comprehensive analysis suggests that the Fuyu reservoir in the Qijia-Gulong Sag has good conditions for tight oil enrichment and has been less explored,and it is an important new zone for tight oil exploration in the future. 展开更多
关键词 northern Songliao Basin Cretaceous Quantou Formation Qingshankou Formation upper generation and lower storage Fuyu reservoir tight oil main control factor enrichment model
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Fracture-controlled fracturing mechanism and penetration discrimination criteria for thin sand-mud interbedded reservoirs in Sulige gas field,Ordos Basin,China
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作者 XIE Jinyang HOU Bing +2 位作者 HE Mingfang LIU Xinjia WEI Jingyi 《Petroleum Exploration and Development》 SCIE 2024年第5期1327-1339,共13页
Considering the problems in the discrimination of fracture penetration and the evaluation of fracturing performance in the stimulation of thin sand-mud interbedded reservoirs in the eighth member of Shihezi Formation ... Considering the problems in the discrimination of fracture penetration and the evaluation of fracturing performance in the stimulation of thin sand-mud interbedded reservoirs in the eighth member of Shihezi Formation of Permian(He-8 Member)in the Sulige gas field,a geomechanical model of thin sand-mud interbedded reservoirs considering interlayer heterogeneity was established.The experiment of hydraulic fracture penetration was performed to reveal the mechanism of initiation–extension–interaction–penetration of hydraulic fractures in the thin sand-mud interbedded reservoirs.The unconventional fracture model was used to clarify the vertical initiation and extension characteristics of fractures in thin interbedded reservoirs through numerical simulation.The fracture penetration discrimination criterion and the fracturing performance evaluation method were developed.The results show that the interlayer stress difference is the main geological factor that directly affects the fracture morphology during hydraulic fracturing.When the interlayer stress difference coefficient is less than 0.4 in the Sulige gas field,the fractures can penetrate the barrier and extend in the target sandstone layer.When the interlayer stress difference coefficient is not less than 0.4 and less than 0.45,the factures can penetrate the barrier but cannot extend in the target sandstone layers.When the interlayer stress difference coefficient is greater than 0.45,the fractures only extend in the perforated reservoir,but not penetrate the layers.Increasing the viscosity and pump rates of the fracturing fluid can compensate for the energy loss and break through the barrier limit.The injection of high viscosity(50–100 mPa·s)fracturing fluid at high pump rates(12–18 m^(3)/min)is conducive to fracture penetration in the thin sand-mud interbedded reservoirs in the Sulige gas field. 展开更多
关键词 HELIUM helium-rich gas reservoir enrichment theory distribution pattern main controlling factor exploration ideas
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Controlling factors of remaining oil distribution after water flooding and enhanced oil recovery methods for fracturecavity carbonate reservoirs in Tahe Oilfield 被引量:5
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作者 ZHENG Songqing YANG Min +5 位作者 KANG Zhijiang LIU Zhongchun LONG Xibin LIU Kunyan LI Xiaobo ZHANG Shiliang 《Petroleum Exploration and Development》 2019年第4期786-795,共10页
Based on comprehensive analysis of core, well logging, seismic and production data, the multi-scale reservoir space, reservoir types, spatial shape and distribution of fractures and caves, and the configuration relati... Based on comprehensive analysis of core, well logging, seismic and production data, the multi-scale reservoir space, reservoir types, spatial shape and distribution of fractures and caves, and the configuration relationship with production wells in fracture-cavity carbonate reservoirs were studied systematically, the influence of them on the distribution of residual oil was analyzed, and the main controlling factors mode of residual oil distribution after water flooding was established. Enhanced oil recovery methods were studied considering the development practice of Tahe oilfield. Research shows that the main controlling factors of residual oil distribution after water flooding in fracture-cavity carbonate reservoirs can be classified into four categories: local high point, insufficient well control, flow channel shielding and weak hydrodynamic. It is a systematic project to improve oil recovery in fracture-cavity carbonate reservoirs. In the stage of natural depletion, production should be well regulated to prevent bottom water channeling. In the early stage of waterflooding, injection-production relationship should be constructed according to reservoir type, connectivity and spatial location to enhance control and producing degree of waterflooding and minimize remaining oil. In the middle and late stage, according to the main controlling factors and distribution characteristics of remaining oil after water flooding, remaining oil should be tapped precisely by making use of gravity differentiation and capillary force imbibition, enhancing well control, disturbing the flow field and so on. Meanwhile, backup technologies of reservoir stimulation, new injection media, intelligent optimization etc. should be developed, smooth shift from water injection to gas injection should be ensured to maximize oil recovery. 展开更多
关键词 CARBONATE rock FRACTURE-CAVITY RESERVOIR multiple scale REmainING OIL distribution main controlling factor enhanced OIL recovery
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Influential factors and control of water inrush in a coal seam as the main aquifer 被引量:7
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作者 Gao Rui Yan Hao +2 位作者 Ju Feng Mei Xianchen Wang Xiulin 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2018年第2期187-193,共7页
In this paper, a combination of field measurement, theoretical analysis and numerical simulation were used to study the main control factors of coal mine water inrush in a main aquifer coal seam and its control scheme... In this paper, a combination of field measurement, theoretical analysis and numerical simulation were used to study the main control factors of coal mine water inrush in a main aquifer coal seam and its control scheme. On the basis of revealing and analyzing the coal seam as the main aquifer in western coal mine of Xiao Jihan coal mine, the simulation software of PHASE-2D was applied to analyze the water inflow under different influencing factors. The results showed that water inflow increases logarithmically with the coal seam thickness, increases as a power function with the permeability coefficient of the coal seam, and increases linearly with the coal seam burial depth and the head pressure; The evaluation model for the factors of coal seam water inrush was gained by using nonlinear regression analysis with SPSS. The mine water inrush risk evaluation partition within the scope of the mining field was obtained,through the engineering application in Xiao Jihan coal mine. To ensure the safe and efficient production of the mine, we studied the coal mine water disaster prevention and control measures of a main aquifer coal seam in aspects of roadway driving and coal seam mining. 展开更多
关键词 COAL SEAM main AQUIFER Water inrush Influential FACTORS control
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准噶尔盆地东部隆起煤层气成藏条件与选区评价 被引量:4
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作者 余琪祥 田蜜 +5 位作者 罗宇 杨帆 陈彦鄂 王烽 高玉巧 郭涛 《石油实验地质》 北大核心 2025年第1期117-129,共13页
准噶尔盆地东部隆起具有较好的煤层气勘探前景,开展煤层气选区与评价,将为该区煤层气勘探提供科学依据和勘探方向。利用探井钻测录试资料、岩心分析测试数据和地震资料,开展井—震标定和地震剖面解释,编制了侏罗系八道湾组和西山窑组煤... 准噶尔盆地东部隆起具有较好的煤层气勘探前景,开展煤层气选区与评价,将为该区煤层气勘探提供科学依据和勘探方向。利用探井钻测录试资料、岩心分析测试数据和地震资料,开展井—震标定和地震剖面解释,编制了侏罗系八道湾组和西山窑组煤层连井剖面和煤层厚度分布图;分析了研究区内煤层气气源、煤岩基本特征、储层物性、含气性和保存条件等成藏主控因素。研究表明:(1)西山窑组煤层在沙奇凸起以北五彩湾凹陷—梧桐窝子凹陷连片分布,在沙奇凸起以南则主要分布于吉木萨尔凹陷—吉南凹陷;八道湾组煤层分割性较强,主要分布于凹陷内部分地区。(2)区内存在自源型煤层生物成因气、低成熟热成因气和深部外源型高成熟气条件。(3)煤岩有机组分以惰质组为主,镜质组次之,壳质组少量;煤岩镜质组反射率低(0.39%~0.47%),为低煤级煤;煤岩瓦斯气体成分主要为N_(2)、CO_(2)和CH_(4),其中N_(2)占绝对优势;煤岩总含气量中可燃气体(CH_(4))含量低。(4)煤层气富集成藏模式分为山前断陷富集成藏模式、深部凹陷富集成藏模式和开放斜坡逸散模式。(5)建立了煤层气评价参数和划分标准,五彩湾凹陷、梧桐窝子凹陷、吉木萨尔凹陷和吉南凹陷为煤层气勘探有利区;沙帐断褶带和石钱滩凹陷为较有利区;石树沟凹陷和古城凹陷为不利区。 展开更多
关键词 选区评价 成藏主控因素 富集成藏模式 煤层气 东部隆起 准噶尔盆地
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四川盆地东南部南川地区煤层气地质特征及富集主控因素 被引量:3
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作者 何希鹏 汪凯明 +5 位作者 罗薇 高玉巧 刘娜娜 郭涛 周亚彤 武迪迪 《石油实验地质》 北大核心 2025年第1期64-76,共13页
四川盆地东南部南川地区上二叠统龙潭组深层煤层气勘探取得重要战略突破,展现出该区煤层气良好的勘探潜力。为揭示其富集主控地质因素,利用钻井、岩心、测井及实验分析等资料,从龙潭组煤层分布、煤岩煤质、物性、含气性以及可压裂性特... 四川盆地东南部南川地区上二叠统龙潭组深层煤层气勘探取得重要战略突破,展现出该区煤层气良好的勘探潜力。为揭示其富集主控地质因素,利用钻井、岩心、测井及实验分析等资料,从龙潭组煤层分布、煤岩煤质、物性、含气性以及可压裂性特征等方面入手,开展了煤层气地质特征与富集主控地质因素研究。研究表明:(1)龙潭组主力煤层具有分布稳定(厚度2.8~5.7 m)、煤体结构好(主要为原生结构煤)、镜质组含量高(平均含量79.7%)、热演化程度较高(R_(o)平均为1.9%)和灰分产率较低(平均14.3%)的特点,具备形成煤层气藏的基本条件;(2)煤储层为孔隙—裂隙型储层,微孔占比78%,其比表面积占比达99.6%,有利于煤层气的吸附及压裂后渗流;(3)煤层总含气量为14.0~46.7 m^(3)/t,游离气占比为39%~44%,具有“高含气、富含游离气、过饱和”及含气量随埋深增加而增大的特征;(4)研究区地应力适中(35~60 MPa),两向水平应力差异系数小(<0.1),顶底板条件好,可形成良好的应力隔挡,有利于压裂改造;(5)南川地区煤层气富集主控地质因素为沉积环境控制含煤建造、演化程度控制生烃强度、保存条件控制富集程度。 展开更多
关键词 沉积环境 构造作用 保存条件 富集主控因素 深层煤层气 龙潭组 上二叠统 四川盆地
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中扬子西部下古生界页岩沉积古环境 被引量:1
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作者 沈均均 杨丽亚 +5 位作者 王玉满 李辉 王鹏万 周林 刘计勇 孟江辉 《沉积学报》 北大核心 2025年第1期314-334,共21页
【目的】下古生界筇竹寺组和龙马溪组是中上扬子地区页岩气勘探开发的重点层系,而对两套页岩有机质富集的控制因素一直缺乏系统对比研究。【方法】以中扬子西部两套海相页岩为例,对其在被动大陆边缘和克拉通坳陷内沉积学及地球化学特征... 【目的】下古生界筇竹寺组和龙马溪组是中上扬子地区页岩气勘探开发的重点层系,而对两套页岩有机质富集的控制因素一直缺乏系统对比研究。【方法】以中扬子西部两套海相页岩为例,对其在被动大陆边缘和克拉通坳陷内沉积学及地球化学特征进行对比分析,探讨有机质差异富集主控因素及形成模式。【结果】两套页岩高总有机碳(Total Organic Carbon,TOC)段均位于底部,形成于陆源输入量低、古生产力水平高和保存条件好的环境,且筇竹寺组底部古生产力水平和底水还原程度更高,导致其TOC含量更高。此后,筇竹寺期盆地拉张裂陷作用持续减弱,龙马溪期前陆挠曲—迁移作用逐渐增强,两套页岩均表现出陆源输入量增大和保存条件变差的特点,但古生产力水平变化却截然不同:筇竹寺期,洋流活动随着海平面下降而减弱,古生产力水平随之降低,而龙马溪期,挠曲—迁移作用导致扬子海盆北部障壁开口逐渐打开,洋流涌入规模逐渐扩大,受海平面下降影响较弱,古生产力水平随之升高。因此,纵向上,筇竹寺组TOC含量降低主要受古生产力水平降低、保存条件变差和陆源输入量增大共同控制,而龙马溪组则主要受后两个因素控制。横向上,两套页岩由被动大陆边缘过渡至克拉通坳陷内,海平面高度和洋流活跃程度均呈降低趋势,保存条件和古生产力水平同时变差,TOC含量随之降低。受此控制,筇竹寺组页岩气勘探开发重点应向西南落实,而龙马溪组则应转向西北方向,二者难以同时兼顾。【结论】该研究对于深入理解下古生界海相页岩沉积古环境演化特征、有机质富集机理及指导页岩气勘探实践均具有积极意义。 展开更多
关键词 笻竹寺组 龙马溪组 黑色页岩 有机质 沉积古环境 富集主控因素
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深层超深层碳酸盐岩特大型气田形成主控因素——以四川盆地安岳和蓬莱气田为例 被引量:1
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作者 魏国齐 张本健 +6 位作者 谢增业 杨威 李剑 崔会英 国建英 王晓波 谢武仁 《中国石油勘探》 北大核心 2025年第2期1-15,共15页
四川盆地深层—超深层领域震旦系—寒武系已发现安岳、蓬莱两个超万亿立方米规模的特大型气田,为寻找接替领域,亟须明确其富集主控因素。在前人研究的基础上,综合应用地质、地球化学资料,对安岳、蓬莱气田天然气成因及成藏主控因素进行... 四川盆地深层—超深层领域震旦系—寒武系已发现安岳、蓬莱两个超万亿立方米规模的特大型气田,为寻找接替领域,亟须明确其富集主控因素。在前人研究的基础上,综合应用地质、地球化学资料,对安岳、蓬莱气田天然气成因及成藏主控因素进行系统研究。研究认为,深层—超深层特大型气田形成主要受控于四大因素:(1)晚震旦世—早寒武世发育德阳—安岳和万源—达州两个克拉通内裂陷,控制下寒武统优质主力烃源岩发育,裂陷内烃源岩厚度是邻区的3~4倍,生气强度是邻区的2~3倍;(2)晚震旦世—早寒武世发育安岳—奉节陆架镶边台地,控制震旦系灯影组二段、震旦系灯影组四段、寒武系沧浪铺组下段和龙王庙组台缘丘滩体或颗粒滩4套优质储层形成,台缘带储层厚度大,储集性能好;(3)桐湾期形成的高石梯—磨溪巨型古隆起长期继承性发育,控制古隆起核部大型构造—岩性和斜坡区岩性圈闭群形成,古隆起核部和斜坡区灯影组圈闭群面积分别达7500km^(2)和5720km^(2);(4)大型古油藏原位裂解成藏,聚集效率高,不同宿主矿物中发现大量液态烃包裹体,丰度达10%~80%,天然气富集区储层沥青含量高,主要介于1%~8%。根据台地边缘丘滩体、台内滩、规模烃源岩、目的层构造与勘探程度,以及研究区具备立体成藏复式富集的地质条件等因素,评价提出3类形成大型—特大型气田的有利区,Ⅰ类区是已发现安岳、蓬莱气田的安岳—蓬莱台缘丘滩/台内滩发育区;Ⅱ类区是已有突破或具备规模勘探潜力的洪雅—乐山、仪陇—广元、荣昌—古蔺、巴中—达州、石柱—利川等台缘丘滩/台内滩发育区;Ⅲ类区是重庆—梁平、威远—泸州等台内滩发育区。研究成果对深层—超深层油气勘探有重要借鉴意义。 展开更多
关键词 深层—超深层 克拉通内裂陷 陆架镶边台地 主控因素 震旦系—寒武系 安岳气田 蓬莱气田 四川盆地
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苏北盆地高邮凹陷深层戴南组一段三亚段油气富集特征 被引量:1
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作者 李书瑜 范立新 +4 位作者 夏连军 张娟 何俊卿 张昊 李越哲 《油气藏评价与开发》 北大核心 2025年第3期455-462,487,共9页
苏北盆地高邮凹陷深层戴南组一段(以下简称戴一段)三亚段下方为阜四段优质烃源岩,是极具潜力的资源接替层系,但其埋藏深、失利井多、构造储备圈闭少,长期以来形成了“难成藏、没潜力、没效益”的传统认识。为了明确戴一段三亚段的成藏... 苏北盆地高邮凹陷深层戴南组一段(以下简称戴一段)三亚段下方为阜四段优质烃源岩,是极具潜力的资源接替层系,但其埋藏深、失利井多、构造储备圈闭少,长期以来形成了“难成藏、没潜力、没效益”的传统认识。为了明确戴一段三亚段的成藏关键和勘探潜力,综合钻井、测井、录井、实验、地震等资料,开展了层序地层、沉积体系、储盖组合、圈闭类型、成藏主控因素等多方面的基础研究。研究表明:戴一段三亚段是高邮凹陷断坳—断陷转换初期沉积的首套地层,特殊的地层发育位置使其具有“近源区盖、北洲南扇、孔缝双储、二元控藏”的油气富集特征。具体表现为6个方面:①戴一段三亚段顶部发育稳定的湖侵域泥岩,是独立的成藏单元;②戴一段三亚段下方为阜宁组四段烃源岩,位于阜宁组四段成熟烃源岩范围内,是戴南组供烃最充足的亚段;③北部缓坡带发育大型三角洲,南部陡坡带发育各类扇体,砂体发育程度呈东高西低的特征;④除构造圈闭外,还发育4种隐蔽圈闭类型,隐蔽圈闭个数多、规模大;⑤发育孔隙和裂缝两类储集空间;⑥侧向封堵和有效储层是成藏主控因素。研究新认识带来了该层系勘探思路的两大转变,指明了勘探方向,部署一批探井获得成功,推动高邮凹陷戴一段三亚段成为苏北盆地重要的资源接替阵地。 展开更多
关键词 苏北盆地 高邮凹陷 戴南组深层 戴一段三亚段 主控因素 油气富集特征 隐蔽油气藏
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