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Process and mechanism for oil and gas accumulation, adjustment and reconstruction in Puguang Gas Field, Northeast Sichuan Basin, China 被引量:6
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作者 DU ChunGuo HAO Fang +3 位作者 ZOU HuaYao ZHU YangMing CAI XunYu WANG CunWu 《Science China Earth Sciences》 SCIE EI CAS 2009年第9期1400-1411,共12页
With the discoveries of a series of large gas fields in the northeast of Sichuan Basin, such as Puguang and Longgang gas fields, the formation mechanism of the gas reservoir containing high H2S in the ancient marine c... With the discoveries of a series of large gas fields in the northeast of Sichuan Basin, such as Puguang and Longgang gas fields, the formation mechanism of the gas reservoir containing high H2S in the ancient marine carbonate formation in superposition-basin becomes a hot topic in the field of petroleum geology. Based on the structure inversion, numerical simulation, and geochemical research, we show at least two intervals of fluid transfer in Puguang paleo-oil reservoir, one in the forepart of late Indo-Chinese epoch to early Yanshan epoch and the other in the metaphase of early Yanshan epoch. Oil and gas accumulation occurred at Puguang structure through Puguang-Dongyuezhai faults and dolomite beds in reef and shoal facies in Changxing Formation (P2ch) - Feixianguan Formation (T1f) in the northwest and southwest directions along three main migration pathways, to form Puguang paleo-oil reservoir. Since crude oil is pyrolysised in the early stage of middle Yanshan epoch, Puguang gas reservoir has experienced fluid adjusting process controlled by tectonic movement and geochemical reconstruction process controlled by thermochemical sulfate reduction (TSR). Middle Yan-shan epoch is the main period during which the Puguang gas reservoir experienced the geochemical reaction of TSR. On one hand, TSR can recreate the fluid in gas reservoir, which makes the gas drying index larger and carbon isotope heavier. On the other hand, the reciprocity between fluid regarding TSR (hydrocarbon, H2S, and water) and reservoir rock induces erosion of the reservoir rocks and anhydrite alteration, which improves reservoir petrophysical properties. Superimposed by later tectonic movement, the fluid in Puguang reservoir has twice experienced adjustment, one in the late Yanshan epoch to the early Himalayan epoch and the other time in late Himalayan epoch, after which Puguang gas reservoir is finally developed. 展开更多
关键词 main DOMINANCE migration pathways oil and gas adjustment and RECONSTRUCTION process THERMOCHEMICAL sulfate reduction (TSR) NORTHEAST SICHUAN Basin
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复合含油气系统中油气运移流向研究的意义 被引量:57
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作者 赵文智 何登发 +2 位作者 瞿辉 雷振宇 池英柳 《石油学报》 EI CAS CSCD 北大核心 2001年第4期7-12,共6页
含油气系统划分的核心是循着油气从源岩到圈闭的过程 ,追踪确定三维地质单元的相对独立的流体运动的最大外边界。其中油气运移研究居于重要地位。中国复合含油气系统表现为多源多灶多期生烃和成藏的复杂性。油气从生烃灶生成以后 ,往往... 含油气系统划分的核心是循着油气从源岩到圈闭的过程 ,追踪确定三维地质单元的相对独立的流体运动的最大外边界。其中油气运移研究居于重要地位。中国复合含油气系统表现为多源多灶多期生烃和成藏的复杂性。油气从生烃灶生成以后 ,往往发生了多次运移。有些是从生烃灶向圈闭的多次运聚过程 ;有些则是已聚集烃类的散失破坏 ;还有些则是油气从古油气藏向新油气藏的调整。对不同阶段油气运移流向的确定 ,既可划清含油气系统的交叉、共生与分立的空间关系和范围 ,又可了解油气保存与破坏规模及油气现今分布的有利地区。本文主要讨论复合含油气系统的划分要注重油气运移流向研究 ,在定源前提下 ,以顺藤摸瓜的方式 ,确定油气运聚单元。在此基础上 。 展开更多
关键词 油气运移 流向 过程恢复 运聚单元 复合含油气系统
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廊固凹陷奥陶系潜山不整合输导特征与油气优势运聚方向 被引量:3
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作者 杨德相 李振明 +6 位作者 田建章 王元杰 李凯茜 张传宝 明锦 贾颖超 边滢滢 《地质学报》 EI CAS CSCD 北大核心 2021年第8期2575-2589,共15页
不整合是廊固凹陷奥陶系潜山油气运移的重要输导通道和聚集部位,研究不整合分布及其输导特征对明确该区油气优势运移方向以及寻找有利勘探目标具有重要意义。以廊固凹陷奥陶系潜山顶面不整合的类型及分布规律、纵向结构特征为基础,对潜... 不整合是廊固凹陷奥陶系潜山油气运移的重要输导通道和聚集部位,研究不整合分布及其输导特征对明确该区油气优势运移方向以及寻找有利勘探目标具有重要意义。以廊固凹陷奥陶系潜山顶面不整合的类型及分布规律、纵向结构特征为基础,对潜山顶面不整合的输导性和有效性进行了分析;利用钻井、测井、岩芯等资料对半风化岩石层进行了精细解剖,明确了主力输导通道分布和渗滤空间类型;在明确不同类型不整合展布规律后结合数值模拟确定了油气优势运移方向和潜在有利勘探区。研究结果表明,河西务潜山带奥陶系顶面不整合具有4种接触关系、2种运移通道,组合形成4种油气运聚类型,其中石炭系—二叠系覆盖的褶皱区最有利于油气聚集成藏。不整合半风化岩石层的渗滤通道类型南北具有差异性,南部岩溶发育,以溶蚀缝洞为主,北部以晚期构造缝为主。纵向上,垂直渗流带和水平潜流带是不整合岩溶带中的优势运移通道。平面上,不整合输导脊是油气的优势运移路径,位于其上的构造高点是油气聚集的有利区,杨税务南潜山和中岔口潜山是下一步油气勘探的潜在目标。 展开更多
关键词 不整合特征 输导通道 油气优势运移方向 河西务潜山带 廊固凹陷
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