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准噶尔盆地车-莫古隆起的构造演化特征及其成因模拟 被引量:20
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作者 于福生 阿木古冷 +1 位作者 杨光达 马保军 《地球学报》 EI CAS CSCD 北大核心 2008年第1期39-44,共6页
根据钻井层位标定、区域地震剖面解释追踪,侏罗系各组原始沉积厚图的变化特征,详细地圈定了车-莫古隆起不同时期的分布范围。结合构造演化史剖面、侏罗系各组残存地层展布特征、层系超覆、尖灭现象综合分析,将车-莫古隆起的演化划分为... 根据钻井层位标定、区域地震剖面解释追踪,侏罗系各组原始沉积厚图的变化特征,详细地圈定了车-莫古隆起不同时期的分布范围。结合构造演化史剖面、侏罗系各组残存地层展布特征、层系超覆、尖灭现象综合分析,将车-莫古隆起的演化划分为初始发育(J1s)、逐渐隆升(J2x)、强烈隆升(J2t)、剥蚀改造(J3)、隐伏埋藏(K-E)、调整定位(N-Q)6个阶段。卷入古隆起的断裂、褶皱组合关系表明车-莫古隆起的形成机制与其南、北缘两大右旋压扭性走滑断裂带成生演化相关。沙箱模拟实验证明车-莫古隆起是在NW300°斜向挤压应力作用下形成的。 展开更多
关键词 准噶尔盆地 车-莫古隆起 构造演化 成因模拟
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准噶尔盆地车莫古隆起的演化及其对油气藏的控制 被引量:18
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作者 佟殿君 任建业 任亚平 《油气地质与采收率》 CAS CSCD 北大核心 2006年第3期39-42,共4页
古隆起构造单元的演化不仅反映了构造运动在区域上活动的过程,而且对于区域地层的沉积及油气的运移和聚集成藏都有重要的控制作用。发育于准噶尔盆地腹部地区的车莫古隆起,从中、晚二叠世开始隆升,直至新近系最终消亡,可以划分为3个演... 古隆起构造单元的演化不仅反映了构造运动在区域上活动的过程,而且对于区域地层的沉积及油气的运移和聚集成藏都有重要的控制作用。发育于准噶尔盆地腹部地区的车莫古隆起,从中、晚二叠世开始隆升,直至新近系最终消亡,可以划分为3个演化阶段,其中侏罗纪时期是其活动最强烈、最重要的阶段。车莫古隆起在早侏罗世发生低幅隆升,在中、晚侏罗世则强烈隆升,并使中、上侏罗统地层遭受了严重的剥蚀。随着车莫古隆起的逐步演化,盆地的沉积格局也随之发生了变化,车莫古隆起成为隆起南、北沉积体系的汇聚区或分水岭。车莫古隆起在演化过程中对准噶尔盆地腹部油气藏起到了调整改造的作用,由岩性圈闭及不整合面圈闭形成的油气藏是今后该区油气勘探的目标和方向。 展开更多
关键词 车莫古隆起 沉积体系 油气藏 准噶尔盆地
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准噶尔盆地腹部车-莫古隆起中段头屯河组存在证据及其研究意义 被引量:5
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作者 杨智 何生 +1 位作者 武恒志 孟闲龙 《地球学报》 EI CAS CSCD 北大核心 2008年第4期469-477,共9页
准噶尔盆地腹部中晚侏罗世发育的车-莫古隆起形成诸多类型的地层圈闭,是油气运移的长期有利指向区,研究区目的层段(J/K不整合面附近)是否存在头屯河组对本区勘探很有意义。基于单井岩性电性组合特征、古生物、粘土矿物、地层接触关系等... 准噶尔盆地腹部中晚侏罗世发育的车-莫古隆起形成诸多类型的地层圈闭,是油气运移的长期有利指向区,研究区目的层段(J/K不整合面附近)是否存在头屯河组对本区勘探很有意义。基于单井岩性电性组合特征、古生物、粘土矿物、地层接触关系等方面的资料,发现车-莫古隆起中段白垩系底界面下普遍发育的红层段是头屯河组的特征标志层,具有头屯河组特有的Classopollis-Quadraecu lina-Piceaepollenites孢粉组合,粘土矿物组合上具有富含伊利石、不含或含少量高岭石的特征而区别于较富含伊利石、高岭石的下部层段,连井地层对比及地震剖面标定也表明车-莫古隆起中段存在较薄层头屯河组分布的平台区。这一新认识对本区圈闭评价和成藏条件评价等有指导作用。 展开更多
关键词 准噶尔盆地 车-莫古隆起 不整合面 头屯河组
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准噶尔盆地中部1区块侏罗系三工河组隐蔽圈闭发育模式 被引量:5
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作者 伍家和 《石油地质与工程》 CAS 2011年第4期15-18,24,共5页
准噶尔盆地中部1区块三工河组二段是增储上产的主力层位,以隐蔽、调整型油气藏为主,勘探风险较大。应用沉积学与地球物理结合的方法研究认为主要勘探目的层侏罗系三工河组二段(J_1s_2)沉积背景与后期车-莫古隆起的演化是后期油气调整... 准噶尔盆地中部1区块三工河组二段是增储上产的主力层位,以隐蔽、调整型油气藏为主,勘探风险较大。应用沉积学与地球物理结合的方法研究认为主要勘探目的层侏罗系三工河组二段(J_1s_2)沉积背景与后期车-莫古隆起的演化是后期油气调整的主控因素。三工河组二段下亚段(J_1s_2~2)沉积环境主要为辫状河三角洲前缘亚相,上亚段(J_1s_2~1)为曲流河三角洲前缘亚相;沉积时受车-莫古隆起雏形——局部水下低凸影响砂体展布,沉积后又受车-莫古隆起掀斜调整改造作用,早期形成的储存于侏罗系的原生油藏也随车-莫古隆起的调整而改造,下亚段(J1s_2~2)辫状河道砂体叠置、砂体连通性好,油气逸散严重,上亚段(J_1s_2~2)砂泥交互沉积,受后期调整作用小。提出了缓坡远源相控+水下低凸控砂控圈模式,下亚段(J_1s_2~2)主要寻找构造(断块+低幅度背斜)油气藏为主,上亚段(J_1s_2~1)寻找岩性油气藏为主的勘探思路。 展开更多
关键词 调整型油气藏 三工河组二段 水下低凸起 车-莫古隆起 准噶尔盆地腹部
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Oil Source of Reservoirs in the Hinterland of the Junggar Basin 被引量:1
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作者 Li Wei Zhang Zhihuan +1 位作者 Yang Yongcai Meng Xianlong 《Petroleum Science》 SCIE CAS CSCD 2007年第4期34-43,共10页
Through oil-oil and oil-source correlation and combined with the comprehensive study of hydrocarbon generation and accumulation history, the oil sources of typical reservoirs of different geologic periods in the hinte... Through oil-oil and oil-source correlation and combined with the comprehensive study of hydrocarbon generation and accumulation history, the oil sources of typical reservoirs of different geologic periods in the hinterland of the Junggar basin are revealed. It is concluded that the crude oils in the study area can be classified into four types: The oil in the area of well Zhuang-1 and well Sha-1 belongs to type-I, which was generated from Cretaceous to Paleogene (K-E) and its source rocks are distributed in the Fengcheng formation of the Permian in the western depression to the well Pen-1. The oil in the area of well Yong-6 (K1 tg) belongs to type-Ⅱ, which was generated from Cretaceous to Paleogene and its source rocks are distributed in the Wuerhe formation of the Permian in the Changji depression. The oil in the area of well Yong-6 (J2x) belongs to type-III, which was generated at the end of the Paleogene and its source rocks are distributed in the coal measures of the Jurassic in the Changji depression. The oil of well Zheng-1 and well Yong-1 belongs to type-IV, which was generated in the Paleogene, and its source rocks are distributed in the Wuerhe formation of the Lower Permian and coal measures of the Jurassic. It is indicated that the hydrocarbon accumulation history in the study area was controlled by the tectonic evolution history of the Che-Mo palaeohigh and the hydrocarbon generation history of well Pen-1 in the western depression and Changji depression. 展开更多
关键词 Oil source correlation hydrocarbon accumulation history che-mo palaeohigh Junggar basin
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Characteristics and accumulation mode of large-scale Sinian-Cambrian gas reservoirs in the Gaoshiti-Moxi region, Sichuan Basin
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作者 Guoqi Wei Jinhu Du +5 位作者 Chunchun Xu Caineng Zou Wei Yang Ping Shen Zengye Xie Jian Zhang 《Petroleum Research》 2016年第2期164-177,共14页
The Sinian-Cambrian formations of the Sichuan Basin have favorable hydrocarbon accumulation conditions,but the exploration for large-scale gas fields is quite challenging due to old strata and multiple tectonic moveme... The Sinian-Cambrian formations of the Sichuan Basin have favorable hydrocarbon accumulation conditions,but the exploration for large-scale gas fields is quite challenging due to old strata and multiple tectonic movements.Since the Weiyuan Sinian large gas field was found in 1964,the largest monoblock gas field(Anyue Gasfield)was discovered in the Cambrian Longwangmiao Formation of the Moxi region in 2013 with proven gas reserves of 440.1×109 m3.Total proven,probable and possible reserves exceed one trillion cubic meters in the Sinian Dengying Formation and the Cambrian Longwangmiao Formation of the Gaoshiti-Moxi region.The natural gas components,light hydrocarbons,reservoir bitumen abundance and other evidences prove that the dry natural gas was mainly derived from oil-cracking,with methane(a content of 82.65%-97.35%),ethane(a content of 0.01%-0.29%),nitrogen(a content of 0.44%-6.13%),helium(a content of 0.01%-0.06%),and hydrogen sulphide(0.62-61.11 g/m^(3)).Gas reservoir pressure increases gradually from the Sinian normal pressure(a pressure coefficient of 1.07-1.13)to high pressure(a pressure coefficient of 1.53-1.70)in the Cambrian Longwangmiao Formation.The temperature of the gas reservoir is 137.5-163 ℃.Gas reservoir traps are divided into three categories:tectonic type,tectonic-formation type and tectonic-lithologic type.The large-scale enrichment of the Sinian-Cambrian natural gas results from effective configuration of the large stable inherited palaeo-uplift during the Tongwan tectonic movement,wide distribution of ancient source rocks,high-quality reservoirs with vast pore-cavity,crude oil cracking of large palaeo-reservoirs and favorable preservation conditions.According to the palaeo-structure pattern prior to crude oil cracking of the palaeo-reservoirs,and bitumen abundance as well as the distribution characteristics of current gas reservoirs,the accumulation patterns of the cracking gas reservoir can be classified into three types:accumulation type,semi-accumulation and semi-dispersion type,and dispersion type.This understanding will play an important role in guiding the exploration of the Sinian-Cambrian natural gas exploration in the Sichuan Basin. 展开更多
关键词 palaeo-uplift large gas field crude oil cracking gas accumulation mode Gaoshiti-Moxi Sichuan Basin
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