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江陵凹陷西南部梅槐桥富生烃洼陷及近源油气成藏 被引量:6
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作者 易积正 何生 +1 位作者 刘琼 耿锋 《地质科技情报》 CAS CSCD 北大核心 2009年第1期57-62,共6页
江陵凹陷西南部已发现的油气藏紧邻梅槐桥富生烃洼陷分布,且油气储量主要集中在该洼陷生烃中心短轴方向两侧的谢凤桥、南岗、复兴场、采穴等断块和断鼻圈闭中。对梅槐桥富生烃洼陷内烃源岩发育特征及其洼陷内生烃差异性的研究表明:洼陷... 江陵凹陷西南部已发现的油气藏紧邻梅槐桥富生烃洼陷分布,且油气储量主要集中在该洼陷生烃中心短轴方向两侧的谢凤桥、南岗、复兴场、采穴等断块和断鼻圈闭中。对梅槐桥富生烃洼陷内烃源岩发育特征及其洼陷内生烃差异性的研究表明:洼陷北部梅槐桥地区是烃源岩沉积时期的沉降中心,烃源岩发育,埋藏较深,生烃能力强,为该洼陷的生烃中心;而南部牛头岗地区烃源岩层厚度小,埋藏浅,生烃能力差。原油成熟度和油源对比研究表明,油气具有近距离运移近源成藏的特点;北部采穴断块、复I断块、谢凤桥断鼻和南岗断鼻油气藏中成熟度相对较高的原油主要来自北部梅槐桥地区;南部八宝断鼻油气藏中成熟度低的原油与牛头岗地区原地烃源岩具有亲缘关系;而偏南部丁家湖断鼻油气藏中的原油则为梅槐桥生烃中心成熟度较高的烃源岩和原地烃源岩的混合贡献的原油。因此,可认为梅槐桥生烃中心短轴方向的两侧为目前江陵凹陷西南部油气勘探最有利的地区。 展开更多
关键词 梅槐桥富生烃洼陷 油源对比 生物标志化合物 油气成藏 江陵凹陷
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微生物异常探索江汉盆地江陵凹陷万城断裂带北部油气富集规律及有利区
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作者 袁志华 赵青 +5 位作者 张玉清 邓富强 秦晓蕾 张忠坡 李英贤 李秀荣 《地质论评》 CAS CSCD 北大核心 2021年第5期1533-1543,共11页
江汉盆地江陵凹陷万城断裂带北部研究区,地表条件复杂,地震和钻井施工困难,油气富集规律还不甚清楚。因此,试图通过微生物找油方法,最小成本最高效率,以探明本研究区的油气富集规律。研究区面积约230.0 km2,采集样品间距南北500 m×... 江汉盆地江陵凹陷万城断裂带北部研究区,地表条件复杂,地震和钻井施工困难,油气富集规律还不甚清楚。因此,试图通过微生物找油方法,最小成本最高效率,以探明本研究区的油气富集规律。研究区面积约230.0 km2,采集样品间距南北500 m×东西250 m,共采集并分析了样品2354个。研究表明,微生物异常主要分布在万城断层的东侧,其中微生物气异常零星分布,异常较弱,无独立气藏。在综合地质等资料的基础上,微生物异常分布特征表明,万城断裂带显示了来自北西和北东向的双向物源,油气来源于梅槐桥洼陷,属近源成藏。万城断裂带东侧和坡折带低位扇砂体是油气有利富集区,前景较好,主要为古近系新沟咀组成藏。万城断裂带西侧有小面积油藏,可能系白垩系成藏。最后,对微生物异常区进行了分级评价,指明了重点攻关区、评价有利和较有利区,对大幅降低勘探风险和提高勘探成功率,具有重大的社会经济效益和深远的现实意义。 展开更多
关键词 江汉盆地 江陵凹陷 万城断裂带 微生物找油方法 梅槐桥洼陷 近源成藏
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江陵凹陷梅槐桥地区第三系新沟咀组下段沉积相及砂体分布研究 被引量:9
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作者 易积正 《矿物岩石》 CAS CSCD 北大核心 2010年第3期77-82,共6页
通过岩心、测井、录井、粒度及薄片等分析资料对梅槐桥地区第三系新下段沉积相进行研究:认为该区新下段沉积期主要发育三角洲前缘亚相,相带的变化受构造和气候双重因素的影响,尤其是气候因素,新下段Ⅲ油组沉积期,气候表现为干旱—半干旱... 通过岩心、测井、录井、粒度及薄片等分析资料对梅槐桥地区第三系新下段沉积相进行研究:认为该区新下段沉积期主要发育三角洲前缘亚相,相带的变化受构造和气候双重因素的影响,尤其是气候因素,新下段Ⅲ油组沉积期,气候表现为干旱—半干旱,泥隔层沉积期,气候变现为半干旱—半湿润,Ⅱ油组沉积期,气候变现为湿润性气候,Ⅰ油组沉积期,气候表现为半湿润—半干旱,沉积总体特征为浅湖—湖进—湖退—浅湖的沉积演变过程。砂体主要发育在Ⅱ油组沉积期,类型多样:水下分流河道砂体、河口坝砂体、天然堤砂体、决口扇砂体,同生作用形成的砂体较发育。气候与构造活动有较好的正相关性,物源供给对小规模的构造活动造成的地貌差得以及时充填,致使当时的古地貌变化不大,且同生构造较明显。因此,砂体分布区带,即可作为该区油气勘探的主要目标。 展开更多
关键词 梅槐桥向斜 新下段 沉积相 气候 构造运动 砂体
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Turbidite Reservoirs in the Dongying Sag,Bohai Bay Basin:Interactions between Carbonate Cementation and Hydrocarbon Charge 被引量:1
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作者 CHEN Xiaolan ZHOU Zhenzhu +3 位作者 JIA Haibo WANG Jian XIA Haiyang CHEN Yong 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2021年第2期617-629,共13页
Turbidite sandstones have become increasingly significant in hydrocarbon exploration.Carbonate cementation occur commonly in turbidite reservoirs developing within the Paleocene lacustrine basins,Northeastern China.Th... Turbidite sandstones have become increasingly significant in hydrocarbon exploration.Carbonate cementation occur commonly in turbidite reservoirs developing within the Paleocene lacustrine basins,Northeastern China.This study utilizes core data,thin section data and production data to investigate the interaction between the carbonate cementation and hydrocarbon charge within turbidite reservoirs in the Niuzhuang Sub-sag of the Dongying Sag,Bohai Bay Basin,East China.The results reveal that the carbonate cementation is mainly developed at the top and bottom of the turbidite sandbodies,and even forms carbonate cement shells.Three stages of hydrocarbon accumulation are identified based on fluid inclusion analysis:stage I(27.5–24.6 Ma),stage II(14.0–5.0 Ma),and stage III(5.0–0 Ma).The interaction between the carbonate cementation and hydrocarbon charge has significant controls on the formation of a turbidite reservoir.The temporal relations and intensity relations between the two factors should be considered significantly.Moreover,hydrocarbon charge during the early stage can inhibit the carbonate cementation,favoring the hydrocarbon accumulation in turbidite reservoirs.Many deep-lacustrine turbidite sandbodies surrounded by source rocks with abnormal high pressure,are also favorable for hydrocarbon accumulation.These results suggest that some deeply buried turbidite sandbodies with similar geological settings have high potential for hydrocarbon exploration. 展开更多
关键词 TURBIDITE carbonate cementation hydrocarbon charge fluid inclusions Niuzhuang sub-sag
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Architecture of Sandstone Bodies of Paleogene Shahejie Formation in Northern Qikou Sag, Northeast China 被引量:3
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作者 Hua Wang Si Chen +2 位作者 Chuanyan Huang Xianbin Shi Yuantao Liao 《Journal of Earth Science》 SCIE CAS CSCD 2017年第6期1078-1085,共8页
The conception of special geologic bodies has been applied in this study to define and illustrate economic oil and gas reservoirs in sandbodies, which is helpful for hydrocarbon forecast and exploration. Using the com... The conception of special geologic bodies has been applied in this study to define and illustrate economic oil and gas reservoirs in sandbodies, which is helpful for hydrocarbon forecast and exploration. Using the comprehensive analysis of drilling, logging, seismic, seismic attribute extraction, and logging constrained inversion in 3D data volume, the special geologic bodies of the Shahejie Formation(Ps^1s) in northern Qikou sag, which have good hydrocarbon potential, are identified and described under the constraint of sequence stratigraphic framework. The dimensions, geometry, and spatial distribution features of the special geologic bodies, as well as their inner architectures and sequence-structure patterns, are also ascertained. The geologic bodies evolved from relative centralization in the middle part of the lacustrine basin in the early stage of Ps1~s Formation, to several dispersive isolated parts in the later stage. This shows a small cycle interval(~2.5 Ma) at the end of the whole transgressive depositional process of Ps1(~7.5 Ma) during the expansion of the lake and relative lake level rise, with the control of sediments supply and fault-related subsidence, which effect the evolution of the sedimentary system. According to the relevance and regularity of the geologic bodies' development, different types of potential profitable reservoir traps, including the lithologic lenticular traps, lithologic updip pinchout traps, and structural-lithologic composite traps, can be preserved in the study area. In addition, the internal architecture models provide scientific basis for further hydrocarbon exploration in the frontier basin without enough data. 展开更多
关键词 Qikou sag Qibei sub-sag Shahejie Formation special geologic bodies
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