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吉南凹陷二叠系井井子沟组二段致密砂岩储层特征及影响因素
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作者 陈煦 邱波 +4 位作者 石湘 白洁 李文霞 陈毓清 何伯斌 《地质科学》 CAS CSCD 北大核心 2024年第5期1245-1255,共11页
吉南凹陷是准噶尔盆地东部新发现的含油凹陷,其中二叠系井井子沟组二段是该凹陷最主要的含油层系。基于多口井的岩心常规分析、常规薄片、铸体薄片、扫描电镜及黏土矿物X射线衍射分析等资料,系统开展了吉南凹陷井井子沟组二段砂岩储层... 吉南凹陷是准噶尔盆地东部新发现的含油凹陷,其中二叠系井井子沟组二段是该凹陷最主要的含油层系。基于多口井的岩心常规分析、常规薄片、铸体薄片、扫描电镜及黏土矿物X射线衍射分析等资料,系统开展了吉南凹陷井井子沟组二段砂岩储层岩矿特征、储层物性及孔隙特征、影响储层物性的主要因素研究。研究表明,井井子沟组二段砂岩储层为低矿物成熟度、中等结构成熟度,属于低—特低孔、特低—超低渗、纳米级吼道、处于中成岩A期的致密储层特征。通过定性、半定量分析,认为压实作用、胶结作用,特别是早期碳酸盐胶结作用是导致致密储层形成的主要因素,中成岩期的溶蚀作用有效地改善了储层物性。计算结果表明,井井子沟组二段砂岩储层原始孔隙度平均约27.1%,压实作用及胶结作用减孔量平均为11.3%、9.8%,溶蚀作用增孔量平均约为3.4%。 展开更多
关键词 准噶尔盆地东部吉南凹陷 二叠系井井子沟组二段 储层特征 储层物性特征 储层物性影响因素
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虎林盆地HDF4井E2-3h^1层位储层岩矿学分析
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作者 卜春阳 《西部探矿工程》 CAS 2021年第3期68-70,73,共4页
根据大量样品分析测试的结果,从普通薄片、铸体薄片、粘土矿物及重矿物分析的数据中,对虎林盆地HDF4井E2-3h^1层位储层岩矿学进行简要分析。分析结果显示HDF4井E2-3h^1层位储层岩性以碎屑岩为主,局部混杂菱铁矿,自上而下总体显示粒度逐... 根据大量样品分析测试的结果,从普通薄片、铸体薄片、粘土矿物及重矿物分析的数据中,对虎林盆地HDF4井E2-3h^1层位储层岩矿学进行简要分析。分析结果显示HDF4井E2-3h^1层位储层岩性以碎屑岩为主,局部混杂菱铁矿,自上而下总体显示粒度逐渐变粗再变细的过程;岩石孔隙发育较好,主要为原生粒间孔、次生的长石粒内溶孔和岩屑粒内溶孔,但是菱铁矿及方解石胶结作用破坏了储层储集空间的发育;粘土含量较高,但对储层孔隙发育影响较小;根据重矿物ZTR指数显示重矿物成熟度在650~700m处最低,表明砂岩离母岩源区距离由远及近,再由近变远的变化过程。 展开更多
关键词 虎林盆地 储层学分析 碎屑 储集空间
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应用环境扫描电子显微镜研究砂岩储层的酸蚀 被引量:7
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作者 李素珍 蒋阗 +2 位作者 汪绪刚 程兴生 蒋卫东 《电子显微学报》 CAS CSCD 1998年第5期621-622,共2页
砂岩基质酸化技术是石油工业中油气井、注水井增产增注的有效手段之一,砂岩基质酸化酸岩反应和二次伤害机理研究是优选酸液体系与优化酸化设计的基础,环境扫描电子显微镜是进行此项研究的重要工具,它具有对含有油水岩心经酸浸泡或岩... 砂岩基质酸化技术是石油工业中油气井、注水井增产增注的有效手段之一,砂岩基质酸化酸岩反应和二次伤害机理研究是优选酸液体系与优化酸化设计的基础,环境扫描电子显微镜是进行此项研究的重要工具,它具有对含有油水岩心经酸浸泡或岩心酸化流动试验前后进行实体定位对比... 展开更多
关键词 矿岩储层 酸蚀 环境扫描电镜 油田
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Evolution of diagenetic fluid of ultra-deep Cretaceous Bashijiqike Formation in Kuqa depression 被引量:5
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作者 LI Ling TANG Hong-ming +7 位作者 WANG Xi LIAO Ji-jia QI Bai-long ZHAO Feng ZHANG Lie-hui FENG Wei TANG Hao-xuan SHI Lan 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2472-2495,共24页
Diagenetic fluid types of the Cretaceous Bashijiqike formation are restored based on the analysis of petrographic,electron microprobe composition,inclusions homogenization temperature,salinity and vapor composition an... Diagenetic fluid types of the Cretaceous Bashijiqike formation are restored based on the analysis of petrographic,electron microprobe composition,inclusions homogenization temperature,salinity and vapor composition and laser carbon and oxygen isotope of diagenetic mineral,and regional geological background.Diagenetic fluid evolution sequence is analyzed on this basis.The crystalline dolomite cement has a low concerntration of Sr,high concerntration of Mn and higher carbon isotope,showing that the crystalline dolomite is affected by meteoric fresh water,associated with the tectonic uplift of late Cretaceous.Similarδ13CPDB,negative transfer ofδ18OPDB and the differentiation of the concerntration of Fe and Mn indicate that the diagenetic fluid of the vein dolomite cement is homologous with the diagenetic fluid of the crystalline dolomite cement,temperature and depth are the dominant factors of differential precipitation between these two carbonate cements.Anhydrite cements have high concerntration of Na,extremely low concerntration of Fe and Mn contents.Based on these data,anhydrite cements can be thought to be related to the alkaline fluid overlying gypsum-salt layer produced by dehydration.The barite vein has abnormally high concerntration of Sr,ultra-high homogenization temperature and high-density gas hydrocarbon inclusions,which is speculated to be the forward fluid by intrusion of late natural gas.Coexistence of methane inclusions with CO2 gas proves existence of acid water during the accumulation of natural gas in the late stages.Therefore,the alkaline environment and associated diagenesis between the meteoric fresh water in epidiagentic stage and carbonic acid in the late diagenesis have dominated the process of diagenesis and reservoir,the secondary porosity and fracture zone formed by gas accumulation is a favorable play for the exploration of ultra-deep reservoirs. 展开更多
关键词 ultra-deep reservoirs diagenetic minerals diagenetic fluids alkaline fluid meteoric fresh water
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Numerical simulation of coal-bed methane transfer with finite element method 被引量:1
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作者 代立强 刘宝玉 《Journal of Coal Science & Engineering(China)》 2003年第2期99-103,共5页
The mathematical model and the numerical simulation for the transfer of coal bed methane were established based on the combination of the porous flow theory and elastic plastic mechanics theory and the numerical solut... The mathematical model and the numerical simulation for the transfer of coal bed methane were established based on the combination of the porous flow theory and elastic plastic mechanics theory and the numerical solution was given, together with the consideration of the fluid solid interaction between the coal bed gas and coal framework. Then the dispersion for the equation of gas porous flow and coal seam distortion was carried out and the functional analysis equation was obtained. Finally, the coupling solution was educed and calculated by finite element method(FEM) on a model example. 展开更多
关键词 fluid solid interaction linear elasticity finite element method porous flow
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