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Comprehensive evaluation on hydrocarbon-bearing availability of fault traps in a rift basin: A case study of the Qikou sag in the Bohai Bay Basin, China 被引量:1
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作者 FU Xiaofei SONG Xianqiang +3 位作者 WANG Haixue LIU Haitao WANG Shunyu MENG Lingdong 《Petroleum Exploration and Development》 CSCD 2021年第4期787-797,共11页
An evaluation system of hydrocarbon-bearing availability of fault traps was established based on the comprehensive analysis of fault segment growth history,fine reservoir anatomy and geochemistry tracing,with the Qiko... An evaluation system of hydrocarbon-bearing availability of fault traps was established based on the comprehensive analysis of fault segment growth history,fine reservoir anatomy and geochemistry tracing,with the Qikou sag in the Bohai Bay Basin as target area.The displacement/separation transform and displacement gradient method were used to prove the interpretation reliability of fault traps.The method of maximum throw subtraction was used to recover the history of fault growth and determine the availability of the forming period of fault traps.Based on the quantitative relationship between shale gouge ratio and cross-fault pressure difference of known reservoirs in southern Qikou sag,the critical shale gouge ratio of fault lateral sealing was calculated at 20%,and the quantitative evaluation chart based on the relationship of"fault throw–sand-formation ratio and hydrocarbon column height"was constructed.Based on the results of reservoir fine anatomy and quantitative fluorescence tracing test shale smear factor method is suitable for evaluating the vertical sealing of faults in the caprock of the middle submember of first member of Paleogene Shahejie Formation,and the shale smear factor critical value is 3.5.The juxtaposition thickness method is suitable for evaluating vertical sealing of faults in the caprock of the second member of Paleogene Dongying Formation,and the critical juxtaposition thickness of fault is 70–80 m.By combining four factors,the availability of fault trap interpretation,the availability of the forming period of fault trap,the availability of fault lateral sealing and the availability of fault vertical sealing,the comprehensive evaluation chart on hydrocarbon-bearing availability of fault traps in Qikou sag has been established,which provides a reasonable basis for risk assessment of fault traps. 展开更多
关键词 fault trap segment growth sealing mechanics revived fault availability evaluation rift basin Bohai Bay Basin Qikou sag
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Fault zone structures of northern and southern portions of the main central fault generated by the 2008 Wenchuan earthquake using fault zone trapped waves 被引量:16
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作者 Songlin Li Xiaoling Lai +1 位作者 Zhixiang Yao Qing Yang 《Earthquake Science》 CSCD 2009年第4期417-424,共8页
The rupture process of the May 12, 2008 Ms8.0 Wenchuan earthquake was very complex. To study the rupture zones generated by this earthquake, four dense temporary seismic arrays across the two surface breaking traces o... The rupture process of the May 12, 2008 Ms8.0 Wenchuan earthquake was very complex. To study the rupture zones generated by this earthquake, four dense temporary seismic arrays across the two surface breaking traces of the main-shock were deployed in July and recorded a great amount of aftershocks. This paper focuses on the data interpretation of two arrays across the central main fault, the northern array line 1 and southern array line 3. The fault zone trapped waves recorded by the two arrays were used to study the structure of the central main fault and the difference between the northern and southern portions. The results show that the widths of the rupture zone are about 170-200 m and 200-230 m for northern and southern portions respectively. And the corresponding dip angles are 80° and 70°. The seismic velocity inside the fracture zone is about one half of the host rock. By comparison, the northern portion of the rupture zone is slightly narrower and steeper than the southern portion. Besides these differences, one more interesting and important difference is the positions of the rupture zone with respect to surface breaking traces. At the northern portion, the rupture zone is centered at the surface breaking trace, while at the southern portion it is not but is shifted to the northwest. This difference reflects the difference of rupture behaviors between two portions of the central main fault. The width of the rupture zone is smaller than that of MS.1 Kunlun earthquake though these two earthquakes have almost the same magnitudes. Multiple ruptures may be one factor to cause the narrower rupture zone. 展开更多
关键词 Wenchuan earthquake seismic rupture zone fault zone trapped waves
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Rock Damage Structure of the South Longmen-Shan Fault in the 2008 M8 Wenchuan Earthquake Viewed with Fault-Zone Trapped Waves and Scientific Drilling 被引量:9
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作者 LI Yonggang XU Zhiqin LI Haibing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第2期444-467,共24页
This article is to review results from scientific drilling and fault-zone trapped waves (FZTWs) at the south Longman-Shan fault (LSF) zone that ruptured in the 2008 May 12 M8 Wenchuan earthquake in Sichuan,China.I... This article is to review results from scientific drilling and fault-zone trapped waves (FZTWs) at the south Longman-Shan fault (LSF) zone that ruptured in the 2008 May 12 M8 Wenchuan earthquake in Sichuan,China.Immediately after the mainshock,two Wenchuan Fault Scientific Drilling (WFSD) boreholes were drilled at WFSD-1 and WFSD-2 sites approximately 400 m and 1 km west of the surface rupture along the Yinxiu-Beichuan fault (YBF),the middle fault strand of the south LSF zone.Two boreholes met the principal slip of Wenchuan earthquake along the YBF at depths of 589-m and 1230-m,respectively.The slip is accompanied with a 100-200-m-wide zone consisting of fault gouge,breccia,cataclasite and fractures.Close to WFSD-1 site,the nearly-vertical slip of ~4.3-m with a 190-m wide zone of highly fractured rocks restricted to the hanging wall of the YBF was found at the ground surface after the Wenchuan earthquake.A dense linear seismic array was deployed across the surface rupture at this venue to record FZTWs generated by aftershocks.Observations and 3-D finite-difference simulations of FZTWs recorded at this cross-fault array and network stations close to the YBF show a distinct low-velocity zone composed by severely damaged rocks along the south LSF at seismogenic depths.The zone is several hundred meters wide along the principal slip,within which seismic velocities are reduced by ~30-55% from wall-rock velocities and with the maximum velocity reduction in the ~200-m-wide rupture core zone at shallow depth.The FZTW-inferred geometry and physical properties of the south LSF rupture zone at shallow depth are in general consistent with the results from petrological and structural analyses of cores and well log at WFSD boreholes.We interpret this remarkable low-velocity zone as being a break-down zone during dynamic rupture in the 2008 M8 earthquake.We examined the FZTWS generated by similar earthquakes before and after the 2008 mainshock and observed that seismic velocities within fault core zone was reduced by ~10% due to severe damage of fault rocks during the M8 mainshock.Scientific drilling and locations of aftershocks generating prominent FZTWs also indicate rupture bifurcation along the YBF and the Anxian-Guangxian fault (AGF),two strands of the south LSF at shallow depth.A combination of seismic,petrologic and geologic study at the south LSF leads to further understand the relationship between the fault-zone structure and rupture dynamics,and the amplification of ground shaking strength along the low-velocity fault zone due to its waveguide effect. 展开更多
关键词 Rupture zone rock damage structure scientific drilling fault-zone trapped waves Wenchuan Earthquake Longmen-Shan fault
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Fault-zone trapped waves at Muyu in Wenchuan earthquake region 被引量:2
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作者 Lai Xiaoling Sun Yi 《Geodesy and Geodynamics》 2011年第2期66-70,共5页
Trapped waves in the Qingchuan fault zone were observed at Muyu near the northeastern end of the fractured zone of the Wenchuan Ms8. 0 earthquake. The results indicate a fault-zone width of about 200 m and a great dif... Trapped waves in the Qingchuan fault zone were observed at Muyu near the northeastern end of the fractured zone of the Wenchuan Ms8. 0 earthquake. The results indicate a fault-zone width of about 200 m and a great difference in physical property of the crust on different sides of the fault. The inferred location of crustal changes is consistent with land-form boundary on the surface 展开更多
关键词 Wenchuan earthquake region fault-zone trapped waves Longmenshan fault belt seismic records Qingchuan fault
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Genetic models of structural traps related to normal faults in the Putaohua Oilfield,Songliao Basin 被引量:3
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作者 Sun Simin Wu Xinsong +1 位作者 Liu Hongtao Wang Changsheng 《Petroleum Science》 SCIE CAS CSCD 2008年第4期302-307,共6页
The Putaohua Oilfield is a fault-prolific area and the faults have close relation with structural traps. The genetic models of the structural traps in the Putaohua Oilfield can be divided into two types: individual f... The Putaohua Oilfield is a fault-prolific area and the faults have close relation with structural traps. The genetic models of the structural traps in the Putaohua Oilfield can be divided into two types: individual fault model and multi-fault interaction model. This is based on the description of displacement distribution of typical individual normal faults, the geometry of the footwall and hanging wall, and the analysis of the interaction between faults and the corresponding change in geometry when the faults grow. The individual fault model is that the displacement reaches a maximum at or near the center of fault and decreases toward the fault tips, so a half-graben is formed on the hanging wall of the fault and a half- anticline is formed on the footwall because of the isostatic process. The multi-fault interaction model is that during the growth of faults, they overlap and interact with each other, and accommodation zones are formed in the overlapping segments. The accommodation zones are favorable targets for hydrocarbon exploration, and the trap characteristics are dependent The multi-fault interaction model can be subdivided on the extent of overlap and occurrence of faults. into three types: synthetic accommodation zone, convergent accommodation zone and divergent accommodation zone. Hydrocarbon migration and accumulation models of each type have been developed. The hydrocarbon migration and accumulation models of the traps with different genetic models have their own characteristics in the different stages of fault growth. 展开更多
关键词 Songliao Basin Putaohua Oilfield accommodation zone normal fault growth structural trap
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Fault zone trapped waves at Longmenshan fault belt
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作者 Sun Yi Lai Xiaoling 《Geodesy and Geodynamics》 2013年第3期48-52,共5页
Trapped waves in different sections of Longmenshan fault belt were observed, and the results show the difference between the northern and southern portions of this fault belt. Guanzhuang and Leigu surveying lines are ... Trapped waves in different sections of Longmenshan fault belt were observed, and the results show the difference between the northern and southern portions of this fault belt. Guanzhuang and Leigu surveying lines are located at the northern portion of the fault belt, and the result indicates that the width of the rupture zone underground in this area is about 160 - 180 m. The center position of rupture zone underground corresponds to the surface breaking trace, and is equally distributed at the edges of the two fault walls. However, Hongkou surveying line is located at the southern portion of the fault belt, and the result indicates that the width of the rupture zone underground in this area is about 180 -200 m. The rupture zone underground is mainly distributed below fault scarp. The Wenchuan MsS. 0 earthquake and Lushan Ms7.0 earthquake both occurred at the Longmenshan fault belt. The results will provide information for the structure background of the two violent earthquakes. 展开更多
关键词 Longmenshan fault belt fault zone trapped waves seismic record sectional difference
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Exploration of fault-zone trapped waves at Pingtong Town,in Wenchuan earthquake region
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作者 Xiaoling Lai Songlin Li Yi Sun 《Geodesy and Geodynamics》 2010年第1期29-33,共5页
Pingtong Town is located on the fractured zone of the Wenchuan 8.0 earthquake, and is seriously damaged by the earthquake. Our observation line is centered at an earthquake exploration trench across the fractured zone... Pingtong Town is located on the fractured zone of the Wenchuan 8.0 earthquake, and is seriously damaged by the earthquake. Our observation line is centered at an earthquake exploration trench across the fractured zone in the NW-SE direction, and is about 400 m long. The results reveal trapped waves in the rup- tured fault zone of the earthquake, and indicate a great difference in physical property between the media inside and outside the fault zone. The predominant frequency of the fault-zone trapped waves is about 3 -4 Hz. The wave amplitudes are larger near the exploration trench. The width of the fault zone in the crust at this location is estimated to be 200 m. In some records, the waveforms and the arrival times of S waves are quite different between the two sides of the trench. The place of change coincides with the boundary of uplift at the surface. 展开更多
关键词 Wenchuan earthquake region fault-zone trapped waves Longmenshan fault belt EXPLORATION seismic records
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Study on rupture zone of the M=8.1 Kunlun Mountain earthquake using fault-zone trapped waves
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作者 李松林 张先康 樊计昌 《Acta Seismologica Sinica(English Edition)》 EI CSCD 2005年第1期43-52,共10页
The observation of the fault-zone trapped waves was conducted using a seismic line with dense receivers across surface rupture zone of the M=8.1 Kunlun Mountain earthquake. The fault zone trapped waves were separated ... The observation of the fault-zone trapped waves was conducted using a seismic line with dense receivers across surface rupture zone of the M=8.1 Kunlun Mountain earthquake. The fault zone trapped waves were separated from seismograms by numerical filtering and spectral analyzing. The results show that: a) Both explosion and earthquake sources can excite fault-zone trapped waves, as long as they locate in or near the fault zone; b) Most energy of the fault-zone trapped waves concentrates in the fault zone and the amplitudes strongly decay with the distance from observation point to the fault zone; c) Dominant frequencies of the fault-zone trapped waves are related to the width of the fault zone and the velocity of the media in it. The wider the fault zone or the lower the velocity is, the lower the dominant frequencies are; d) For fault zone trapped waves, there exist dispersions; e) Based on the fault zone trapped waves observed in Kunlun Mountain Pass region, the width of the rupture plane is deduced to be about 300 m and is greater than that on the surface. 展开更多
关键词 fault-zone trapped waves M=8.1 Kunlun Mountain earthquake seismic rupture plane
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SEM Numerical Simulation of Vertical and Inclined Fault Zone Trapped Waves and Comparison of Their Wave Fields
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作者 Xu Hongwei Wang Weijun 《Earthquake Research in China》 CSCD 2015年第2期176-189,共14页
Fault zone trapped waves (FZTWs) mainly travel along the fractured fault zone (FZ) which is of low velocity and high attenuation. FZTWs often carry significant information about a fault's internal structure, so i... Fault zone trapped waves (FZTWs) mainly travel along the fractured fault zone (FZ) which is of low velocity and high attenuation. FZTWs often carry significant information about a fault's internal structure, so it is important to understand their wave field characteristics for FZ structure inversion. Most previous simulations are based on vertical faults, while in this paper we implement the FZTW simulations on vertical or inclined faults and compare their wave fields in both time and frequency domains. The results show that the existence of fault zone and inclined angle of fault can significantly influence the features of waves near faults. In amplitude, a fault zone can generate a larger amplitude of waves. The velocity contrast between two wails of fault may lead to amplification of amplitudes in the low velocity fault wall. In frequency, a fault zone tends to influence the waves in the low frequency range. In a pattern of particle polarization of FZTWs, it tends to be single direction for vertical faults but fork to multiple directions for inclined faults, which might provide a new way to study the fault zone with FZTWs. These conclusions may be valuable for FZ structure inversion, and will enhance the knowledge on near-fault strong ground motions. 展开更多
关键词 fault zone trapped waves SEM simulation inclined fault Wave fieldcharacteristic
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苏北断块型圈闭基于安全性CO_(2)地质封存能力计算方法研究
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作者 孙东升 张顺康 +2 位作者 王智林 葛政俊 林波 《油气藏评价与开发》 北大核心 2025年第4期641-645,655,共6页
针对苏北盆地断块型圈闭CO_(2)地质封存过程中的安全性问题,在综合考虑断层封闭性、盖层封闭性以及井筒安全性的基础上,结合理论计算、室内实验等方法,明确了相应的安全性界限。在断层封闭性方面,建立了断层连通概率模型;在盖层封闭性方... 针对苏北盆地断块型圈闭CO_(2)地质封存过程中的安全性问题,在综合考虑断层封闭性、盖层封闭性以及井筒安全性的基础上,结合理论计算、室内实验等方法,明确了相应的安全性界限。在断层封闭性方面,建立了断层连通概率模型;在盖层封闭性方面,通过实验测试明确临界压力;在井筒安全性方面,建立了老井CO_(2)注入的标准。在明确断层、盖层及井筒安全边界的基础上,借助数值模拟技术,进行CO_(2)地质封存模拟并计算封存能力。在模拟的过程中,当断层、盖层或井筒的压力状况达到安全边界时,模型停止模拟计算。通过计算模拟模型中的CO_(2)封存量,分析封存位置所占孔隙体积等关键参数,建立了一种针对苏北断块型圈闭CO_(2)地质封存能力的计算方法。采用连续注气和排水注气2种方式,对苏北某断块型圈闭CO_(2)地质封存能力进行了计算,结果表明:圈闭主控断层的开启压力分别为42.9、44.8 MPa,盖层的突破压力最高达到40.5 MPa,套管的破裂压力为45 MPa,连续注气和排水注气对应的封存系数分别为0.04、0.03 t/m^(3)。在排水注气过程中,由于采水井采出一部分地层水,使得压力上升速度较连续注气更加缓慢,最终CO_(2)封存量更高。同时,由于排水注气方式下CO_(2)封存位置所占的孔隙体积出现了明显增加,使得CO_(2)封存系数反而比连续注气方式更小。 展开更多
关键词 CO_(2)地质封存 断块型圈闭 安全性 数值模拟 封存能力
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塔里木盆地富满油田古生界走滑断裂发育特征及控圈模式 被引量:5
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作者 陈石 梁鑫鑫 +6 位作者 张银涛 谢舟 黄伟 宋兴国 陈九洲 彭梓俊 杨俊鹏 《石油科学通报》 2025年第1期1-15,共15页
富满油田古生界超深层走滑断控缝洞型油气藏是塔里木盆地油气勘探开发的热点,但目前对区域内走滑断层发育特征、演化期次划分以及相应的控圈规律目前尚缺乏相关研究。本文基于富满油田新采集的三维地震资料,结合相干和最大似然等平面属... 富满油田古生界超深层走滑断控缝洞型油气藏是塔里木盆地油气勘探开发的热点,但目前对区域内走滑断层发育特征、演化期次划分以及相应的控圈规律目前尚缺乏相关研究。本文基于富满油田新采集的三维地震资料,结合相干和最大似然等平面属性,对走滑断裂的空间展布特征进行了精细解译,并综合不整合构造、断层交切关系以及地层沉积特征等,厘定了走滑断层的活动时期,同时综合储集体特征与断裂空间展布的关系,对圈闭的类型和特征进行了划分与总结。研究表明,富满油田三维工区内走滑断裂平面展布具有典型分区发育的特征,可划分为4个变形区,包括断裂斜交区、边界限制区、主干断裂发育区以及断裂弱发育区。富满油田古生界走滑断裂垂向上由下至上可划分出3个构造变形层,深部构造变形层(TЄ_(3)之下)、中部构造变形层(TЄ_(3)-TO_(3)t)以及浅部构造变形层(TO_(3)t-TP)。深部构造变形层中,基底普遍发育裂陷结构且走滑断层活动强度较弱;中部构造变形层中,走滑断裂活动强烈,大部分于奥陶系碳酸盐岩顶面附近发育正花状构造;浅部构造变形层中,与走滑断裂活化相关的雁列式正断层广泛发育,垂向上具有分层分布的特征。走滑断裂的演化过程整体可大致厘定出3个主要活动期次,分别为中晚寒武世、中晚奥陶世以及志留-石炭纪,其中大部分断裂活动终止于中晚奥陶世,仅有部分晚期活化的大型走滑断层持续活动至志留-石炭纪。储层发育规模及位置受断裂的空间展布特征影响,在侧向致密基岩和上奥陶统盖层遮挡下,组合形成断控缝洞型圈闭,依据断裂平面几何学特征可划分出六类圈闭,分别为羽状型、辫状型、线性型、马尾状型、菱形叠接型以及软连接型。 展开更多
关键词 塔里木盆地 富满油田 走滑断裂 分区发育 分层变形 分期活动 断控缝洞型圈闭
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东海盆地西湖凹陷平湖斜坡油气差异富集特征及主控因素 被引量:2
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作者 郭刚 苏圣民 +3 位作者 徐建永 廖计华 李林致 李峰 《石油实验地质》 北大核心 2025年第3期530-540,共11页
东海盆地西湖凹陷平湖斜坡油气勘探潜力大且富集非均质性强,研究其油气差异富集特征及主控因素,可以为西湖凹陷或相似地区油气勘探提供理论依据。为此,基于典型油气藏精细解剖,综合测录井、地震、物性测试等资料,研究平湖斜坡油气富集... 东海盆地西湖凹陷平湖斜坡油气勘探潜力大且富集非均质性强,研究其油气差异富集特征及主控因素,可以为西湖凹陷或相似地区油气勘探提供理论依据。为此,基于典型油气藏精细解剖,综合测录井、地震、物性测试等资料,研究平湖斜坡油气富集程度、富集层系等差异,确定油气富集差异影响因素。结果表明,平湖斜坡由南带至北带油气富集程度逐渐降低,构造—岩性、断背斜油气藏富集程度高于断鼻及断块油气藏;油气富集层系可分为平湖组—花港组多层富集型、平中—平上段富集型和平中—平下段富集型。供烃距离、储层条件、圈闭条件和断层封闭性控制研究区油气富集程度差异,其中供烃距离主要控制不同构造带及不同类型油气藏富集程度差异,而同类型油气藏之间富集程度差异还与储层条件、圈闭条件和断层封闭性等因素有关。供烃距离越小、有效储层厚度和圈闭面积越大、断层封闭性越好,油气富集程度越高。断层输导能力和断—盖配置控制油气纵向富集层系,断层垂向输导能力强且平湖组盖层断接厚度高于下限值时,油气富集于区域盖层下部的平中上段;断层垂向输导能力强且平湖组盖层被断层完全错断时,油气于平湖组和花港组均有富集;断层垂向输导能力弱时,油气主要富集于平中下段。基于上述供烃距离、储层条件、断层输导能力、断—盖配置等成藏条件研究,可以为西湖凹陷或相似地区油气富集程度差异和油气富集层位的确定提供依据。 展开更多
关键词 油气差异富集 供烃距离 储层条件 圈闭条件 断层输导与封闭 断—盖配置 西湖凹陷 东海盆地
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准噶尔盆地莫南斜坡侏罗系西山窑组油气成藏条件及富集主控因素
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作者 尹照普 朱峰 +5 位作者 周志尧 王丽丽 刘晓晔 娜孜伊曼 汪钰婷 黄大瑞 《岩性油气藏》 北大核心 2025年第3期33-46,共14页
以钻井、测井及二维、三维地震资料等为基础,通过岩心分析、连井对比、地震反演,开展了准噶尔盆地莫南斜坡永进油田侏罗系西山窑组油气藏的解剖工作,从层序地层、沉积体系、圈闭条件和输导体系等多角度分析了莫南斜坡的油气成藏条件及... 以钻井、测井及二维、三维地震资料等为基础,通过岩心分析、连井对比、地震反演,开展了准噶尔盆地莫南斜坡永进油田侏罗系西山窑组油气藏的解剖工作,从层序地层、沉积体系、圈闭条件和输导体系等多角度分析了莫南斜坡的油气成藏条件及富集主控因素,并预测了有利区带。研究结果表明:①准噶尔盆地莫南斜坡侏罗系西山窑组整体为一个三级层序,经历了先进积-后退积的过程,顶界穿时发育的红色泥岩在全区广泛分布,为区域盖层。②研究区西山窑组西三段优质砂体呈规模性发育,浪控三角洲内前缘滩砂及外前缘临滨砂坝为有效储集体,内部泥岩段做顶底板,湖湾相泥岩侧向封堵,岩性圈闭发育的条件优越。③研究区印支—燕山期走滑断裂沟通深部源岩,可作为油源断裂,喜山期低角度大型逆冲推覆断裂横向聚集发育,并向上倾部位输导油气,为烃类运移的优势通道。④莫南斜坡北翼西山窑组西三段浪控三角洲外前缘临滨砂坝圈闭带与喜山期大东沟断裂带相交处是下步勘探有利区。 展开更多
关键词 浪控三角洲 滩砂 临滨砂坝 油源断裂 岩性圈闭 西山窑组 侏罗系 莫南斜坡 准噶尔盆地
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松辽盆地龙虎泡油田白垩系构造-岩性圈闭类型及成藏主控因素
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作者 张云峰 史晓东 +3 位作者 刘宗堡 杨雪微 王鸿军 郝彬 《岩性油气藏》 北大核心 2025年第5期111-121,共11页
利用岩心、录井、测井和生产动态等资料,基于构造特征和砂体几何学特征,对松辽盆地龙虎泡油田白垩系构造-岩性圈闭类型进行了识别和划分;从源岩条件、油源断层输导及构造和砂体配置关系对成藏主控因素进行了研究,总结了不同类型圈闭的... 利用岩心、录井、测井和生产动态等资料,基于构造特征和砂体几何学特征,对松辽盆地龙虎泡油田白垩系构造-岩性圈闭类型进行了识别和划分;从源岩条件、油源断层输导及构造和砂体配置关系对成藏主控因素进行了研究,总结了不同类型圈闭的油气成藏模式。研究结果表明:①龙虎泡油田白垩系构造-岩性圈闭主要发育于葡萄花油层,发育水下分流河道、河口坝、前缘席状砂3种微相,具有北部物源控制的三角洲前缘亚相薄窄砂体特征。②研究区构造-岩性圈闭可分为西部斜坡带断层-岩性圈闭、东部鼻状构造带鼻状构造-岩性圈闭和中部洼陷区断鼻-岩性圈闭三大类,可进一步细分为断层-条带砂体型、断层-片状砂体型、断层-透镜砂体型,鼻状构造-条带砂体型、鼻状构造-片状砂体型、鼻状构造-透镜砂体型,断鼻-条带砂体型和断鼻-片状砂体型等8个亚类。③研究区构造-岩性圈闭的成藏受“源-断-储-势”联合控制,青山口组一段源岩提供了充足的油气资源,油源断裂提供了油气垂向运移通道,构造与砂体配置关系控制了圈闭内的油气富集。④研究区发育“油源断层垂向输导+有利沉积微相富集”的断层-岩性圈闭成藏模式、“砂体侧向输导+正向构造富集”的鼻状构造-岩性圈闭成藏模式以及“断-砂复合输导+连片砂体/厚层砂体富集”的断鼻-岩性圈闭成藏模式。 展开更多
关键词 构造-岩性圈闭 鼻状构造 油源断裂 三角洲前缘亚相 白垩系 龙虎泡油田 松辽盆地
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增压型走滑转换带对大型圈闭的控制作用——以蓬莱19-3油田为例
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作者 杨波 吴庆勋 +2 位作者 黄振 陈少伟 陈欣怡 《海洋地质前沿》 北大核心 2025年第2期30-42,共13页
蓬莱19-3特大型整装油田是渤海油田郯庐断裂带油气成藏的典型代表之一。目前油田发现三级石油地质储量达10亿t,但对其大型圈闭的形成机制尚无针对性报道。为了弄清蓬莱19-3油田圈闭的成因机制,本研究基于三维地震、钻井、构造正演模拟... 蓬莱19-3特大型整装油田是渤海油田郯庐断裂带油气成藏的典型代表之一。目前油田发现三级石油地质储量达10亿t,但对其大型圈闭的形成机制尚无针对性报道。为了弄清蓬莱19-3油田圈闭的成因机制,本研究基于三维地震、钻井、构造正演模拟、沙箱物理模拟等地质资料分析,认为增压型走滑转换带控制了蓬莱19-3油田大型圈闭的形成,继而进一步探讨了增压型走滑转换带对蓬莱19-3油田大型圈闭的控制机制。蓬莱19-3构造是由多级、多类型转换带共同控制的大型背形构造,具有“间歇式增压隆升”和“排烃期定型”两大特点;其形成的大型圈闭与盖层、烃源岩晚期排烃形成了良好的时空配置关系。转换带研究对今后在走滑断裂带内寻找大中型油气田具有一定的借鉴意义。 展开更多
关键词 蓬莱19-3油田 走滑断裂 增压型走滑转换带 控圈作用
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SNMP Trap机制在网络故障管理中的应用 被引量:7
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作者 洪英 孙亚民 《现代计算机》 2003年第12期27-30,共4页
本文介绍了SNMPTrap的基本概念,并给出了在Windows环境下,利用SNMPTrap机制,采用VisualC++6.0和SNMP++实现故障管理的方法。
关键词 计算机网络 网络故障管理 SNMP协议 TCP/IP协议 trap机制
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Reservoir controlling differences between consequent faults and antithetic faults in slope area outside of source: A case study of the south-central Wenan slope of Jizhong Depression, Bohai Bay Basin, East China 被引量:4
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作者 LIU Junqiao WANG Haixue +7 位作者 LYU Yanfang SUN Tongwen ZHANG Mengdi HE Wei SUN Yonghe ZHANG Tong WANG Chao CAO Lanzhu 《Petroleum Exploration and Development》 2018年第1期88-98,共11页
The control effects of different occurrence faults on oil and gas accumulation and distribution in the outer slope area of oil and gas reservoirs were studied taking the south-central Wen’an slope of the Jizhong depr... The control effects of different occurrence faults on oil and gas accumulation and distribution in the outer slope area of oil and gas reservoirs were studied taking the south-central Wen’an slope of the Jizhong depression in the Bohai Bay Basin as an example.Based on 3D seismic data and the distribution of oil and water,the controlling differences between consequent fault and antithetic fault were analyzed and compared from the formation and evolution rule of faults and the formation mechanism of fault traps,including development positions of the consequent fault traps and antithetic fault traps,oil and gas distribution horizon adjusted by fault and formation period of fault traps.The differences between consequent faults and antithetic faults in controlling reservoirs have three main aspects:(1)Consequent fault traps and antithetic fault traps are in different positions,the consequent fault traps are at the segmented growing point in the hanging wall of"hard-linkage"faults,while the antithetic fault traps are developed in the position with the largest throw in the footwall because of tilting action;(2)The two kinds of faults result in different oil and gas distribution vertically,oil and gas adjusted by consequent faults is distributed in a single layer or multi-layers,while oil and gas adjusted by antithetic faults occur in single layers;(3)The two kinds of fault traps are formed in different periods,the consequent fault traps are formed at the time when the related faults enter the stage of"hard-linkage",while the antithetic fault traps are formed at the beginning of the fault active period. 展开更多
关键词 Bohai Bay Basin Jizhong DEPRESSION SLOPE area OUTSIDE of SOURCE consequent fault antithetic fault fault trap transverse anticline fault controlling hydrocarbon accumulation
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Hydrocarbon Trap and Folding Style of the Pishvar Anticline, Sub-Coastal Fars, Zagros 被引量:2
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作者 Nafiseh Hajnorouzi Mohsen Pourkemani Zahra Maleki 《Open Journal of Geology》 2016年第6期376-386,共11页
The Pishvar anticline with Northwest-Southeast trend is located in the Sub-Coastal Fars area. This anticline with 80 Km length and 5 - 7 Km width is located in western part of the Lar area. The Pishvar anticline has t... The Pishvar anticline with Northwest-Southeast trend is located in the Sub-Coastal Fars area. This anticline with 80 Km length and 5 - 7 Km width is located in western part of the Lar area. The Pishvar anticline has two closures that are separated together by smooth down-warp. The oldest units that have outcropped on the surfaces are Asmari and Jahrom Formations. The most faults that observed on the Pishvar anticline are Normal fault. In the study area, the Razak and Hendurabi faults are main faults. These faults are strike slip with sinistral displacement. This anticline has greater dip in Northern flank compared to Southern flank. In this research, the main aim is folding style analysis, based on Description of fold geometry for indicate hydrocarbon trap structure in the Pishvar anticline. Description of fold geometry is important because they allow comparisons within and between folds and pattern-recognition in addition to occurrence and distribution of fold systems. We used Tectonics FP and Global Mapper Software for prepared some data in our study. In addition, we used the common classification of folds for our research. Based on results, the folding pattern of this anticline has indicated the fold style has different type in different parts of the Pishvar anticline. According to fold style variation and deformation analysis from B-B’ to C-C’ parts of the study anticline, it seems that the location of the Razak sinistral strike slip fault has existed in this parts. Fold style change can show this case. In addition, fold style variation and deformation analysis from E-E’ to F-F’ parts of this anticline has been affected of the secondary fault that is related to the Razak sinistral strike slip fault. We introduced this fault for first time. Finally, Based on results in this research, in western part there is little probability for access to hydrocarbon trap in upper horizons, unless the exploratory drilling continues to the deeper horizons. 展开更多
关键词 Pishvar Anticline Fold Style Razak faults Hydrocarbon trap
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Tancheng-Lujiang Fault System: Its Characters and Control on Oil-Gas Distribution in Eastern China 被引量:1
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作者 Chen Quanmao Liang Xiaodong +2 位作者 Zhang Guangya Chen Jinghua(Department of Petroleum Geology, China University of Geosciences, Wuhan 430074)Wu Zejian Liao Xingmin(Liaohe Bureau of Petroleum Exploration, Panjin 124010) 《Journal of Earth Science》 SCIE CAS CSCD 1996年第2期197-203,共7页
Tancbeng-Lujiang fault system is one of the largest strike-slip fault systems in eastern Asia.It extends southward to Beibuwan Bay to the west of Hainan Island and northward through Lujiang of Anhui Province, Tancheng... Tancbeng-Lujiang fault system is one of the largest strike-slip fault systems in eastern Asia.It extends southward to Beibuwan Bay to the west of Hainan Island and northward through Lujiang of Anhui Province, Tancheng of Shandong Province and Luobei of Heilongjiang Province in China to the territory of Russia. Its formation is related to the subduction of Kula-Pacific plate to the Asian continent. It is oriented approximately parallel to the eastern edge of Asia. It is dominated by the sinistral translation from Jurassic to Eocene and then by dextrose strike-slip. It has the following characters: (1)clear linear character; (2)sharp dip angle, usually changing between normal and reverse faults; (3)showing braided structure on the plan and flower structure in section;(4)alternated by uplifts and sags along the fault belt; (5)many stages of the eruptions of alkaline to calc-alkaline basalt magma along the fault belt; and (6) frequent activities of earthquakes along the fault belt. Its control over the oil-gas distribution is shown by the following racts: (1) the formation of many oil-bearing fault depressions; (2) the increase of the basin area it has passed through, thus increasing the basin's subsiding quantity and the oil reservoirs; and (3)the formation of many kinds of oil-gas trap structures. 展开更多
关键词 strike-slip fault sinistral translation dextrose strike-slip fault depression subsiding quantity trap structure
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非传统油气资源:现实且潜力巨大的油气勘探开发新领域 被引量:4
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作者 罗群 王千军 +4 位作者 贺小标 商丰凯 张宏利 文璠 邱兆轩 《天然气勘探与开发》 2024年第3期1-11,共11页
依据是否编入目前的石油地质学,将圈闭(油气藏)类型分为传统圈闭(油气藏)和非传统圈闭(油气藏)。与传统圈闭(油气藏)相比,非传统圈闭(油气藏)具有形态特殊、内部结构复杂、储层非均质性强且生储盖组合多变、成藏机理奇特、分布位置更加... 依据是否编入目前的石油地质学,将圈闭(油气藏)类型分为传统圈闭(油气藏)和非传统圈闭(油气藏)。与传统圈闭(油气藏)相比,非传统圈闭(油气藏)具有形态特殊、内部结构复杂、储层非均质性强且生储盖组合多变、成藏机理奇特、分布位置更加隐蔽等特征,甚至有的非传统油气藏位于传统石油地质理论认为的禁区。目前发现和开发的非传统油气藏有露头油气藏、断溶体油气藏、断缝体油气藏和断壳体油气藏等,非传统油气藏正逐渐成为油气勘探开发的热点和亮点。我国地质条件和成藏环境极为复杂,仍然有相当数量的圈闭(油气藏)没有收入经典的石油地质学,非传统油气资源潜力巨大,它们多分布在(超)深层、(超)深水、高原、极地、特殊气候地区,甚至盆地外,是现实的油气勘探开发新目标和新领域。 展开更多
关键词 非传统油气资源 非传统圈闭 断层体 油气勘探 新领域
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