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渤中凹陷CFD18-2油田高岭石胶结作用及其对储层物性的影响 被引量:4
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作者 陈思芮 曲希玉 +2 位作者 王冠民 王清斌 曹英权 《吉林大学学报(地球科学版)》 EI CAS CSCD 北大核心 2019年第5期1235-1246,共12页
为探究成岩作用过程中所形成的次生黏土矿物对储层物性的影响,借助偏光显微镜及扫描电镜的镜下分析,并结合储层物性等数据,对渤中凹陷附近沙垒田凸起东南部CFD18-2油田东三段高岭石的特征、类型、成因及其对储层物性的影响进行了研究。... 为探究成岩作用过程中所形成的次生黏土矿物对储层物性的影响,借助偏光显微镜及扫描电镜的镜下分析,并结合储层物性等数据,对渤中凹陷附近沙垒田凸起东南部CFD18-2油田东三段高岭石的特征、类型、成因及其对储层物性的影响进行了研究。研究结果表明:1)研究区高岭石为有机酸溶蚀长石形成的自生高岭石,呈现典型的"手风琴状"及"蠕虫状",常充填于粒间孔、长石次生溶孔及碳酸盐胶结物溶孔中并形成良好的晶间孔隙。2)研究区主要发育两期高岭石,第一期主要充填于早期碳酸盐胶结物溶孔中,呈微小"蠕虫状";第二期充填于铁方解石与铁白云石胶结物溶孔中,部分高岭石具碱性溶蚀特征,且第二期高岭石与晚期伊利石共生。3)研究区东三段储层具备一定的渗流能力,使长石溶蚀形成的"副产物"被流体带走;但在破坏性成岩作用下,储层渗流能力会逐渐变差,最终使得"副产物"堆积于孔隙,降低储层物性。4)高岭石及同期硅质胶结物对储层物性的影响是一把"双刃剑",当高岭石及硅质的体积分数低于6.81%时,长石溶蚀有利于改善储层物性;当高岭石及硅质的体积分数高于6.81%时,则不利于储层物性的改善。 展开更多
关键词 高岭石 储层物性 溶蚀作用 形成期次 cfd18-2油田
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Reservoir forming conditions and key exploration technologies of Lingshui 17-2 giant gas field in deepwater area of Qiongdongnan Basin 被引量:5
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作者 Yuhong Xie Gongcheng Zhang +3 位作者 Zhipeng Sun Qingbo Zeng Zhao Zhao Shuai Guo 《Petroleum Research》 2019年第1期1-18,共18页
On September 15,2014,China National Offshore Oil Co.,Ltd announced that a high production of oil and gas flow of 1.6106 m3/d was obtained in Well LS17-2-1 in deepwater area in northern South China Sea,which is the fi... On September 15,2014,China National Offshore Oil Co.,Ltd announced that a high production of oil and gas flow of 1.6106 m3/d was obtained in Well LS17-2-1 in deepwater area in northern South China Sea,which is the first great oil and gas discovery for self-run deepwater exploration in China sea areas,and a strategic breakthrough was made in natural gas exploration in deepwater area of Lingshui sag in Qiongdongnan Basin.Under the combined action of climax of international deepwater exploration,high oil prices,national demands of China,practical needs of exploration,breakthroughs in seismic exploration and testing technologies,innovations in geological cognition and breakthroughs in deepwater operation equipment,Lingshui 17-2 gas field is discovered.Among these factors,the innovation in reservoir forming geological cognition directly promotes the discovery.The quality of seismic data in the early time is poor,so key reservoir forming conditions such as effective source rocks,high quality reservoirs and oil-gas migration pathways are unable to be ascertained;with support of new seismic acquisition and processing technology,some researches show that Lingshui sag is a successive large and deep sag with an area of 5000 km2 and the maximum thickness of Cenozoic stratum of 13 km.In the Early Oligocene,the Lingshui sag was a semi-closed delta-estuarine environment,where the coalmeasure and marine mudstones in Lower Oligocene Yacheng Formation were developed.The Lingshui sag is a sag with high temperature,and the bottom temperature of source rocks in Yacheng Formation can exceed 250C,but the simulation experiment of hydrocarbon generation at high temperature indicates that the main part of this set of source rock is still in the gas-generation window,with resources of nearly 1 trillion cubic meters,so the Lingshui sag is a hydrocarbon-rich generation sag.In the Neogene,the axial canyon channel from the Thu Bon River in Vietnam passed through the Lingshui sag,and five stages of secondary channels were developed in the axial canyon channel,where four types of reservoirs with excellent physical properties including the axial sand,lateral accretion sand,natural levee sand as well as erosion residual sand were developed,and lithologic traps or structural-lithologic traps were formed.The diapiric zone in the southern Lingshui sag connects deep source rocks in Yacheng Formation and shallow sandstones in the channels,and the migration pattern of natural gas is a T-type migration pattern,in other words,the natural gas generated from Yacheng Formation migrates vertically to the interior of the channel sandbody,and then migrates laterally in the channel reservoirs and forms the reservoirs.Innovations of geophysical exploration technologies for complicated geological conditions of deepwater areas are made,such as the detuning comprehensive quantitative amplitude hydrocarbon detection technology,which greatly improves the success rate of deepwater exploration;key technologies of deepwater safety exploratory well testing represented by the platform-dragged riser displacement technology are developed,which greatly reduces the drilling test cost.The above key exploration technologies provide a strong guarantee for the efficient exploration and development of Lingshui gas field. 展开更多
关键词 Deepwater oil and gas Source rocks Lower limit of gas generation The central canyon Diapiric zone Migration pathway Lingshui sag Lingshui 17-2 giant gas field Qiongdongnan basin
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中短半径井眼固井防砂一体化管柱研究与试验 被引量:4
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作者 郝宙正 左凯 +3 位作者 刘禹铭 李宁 魏爱拴 王明杰 《石油钻探技术》 CAS CSCD 北大核心 2019年第2期99-104,共6页
为了解决渤海油田中短半径裸眼井固井防砂一体化作业无适用管柱的问题,针对渤海油田的开发情况与技术现状,设计了一套适用于中短半径井眼的固井防砂一体化管柱,对其安全性、通过性的分析结果发现:该管柱在下入过程中不会出现螺旋弯曲,... 为了解决渤海油田中短半径裸眼井固井防砂一体化作业无适用管柱的问题,针对渤海油田的开发情况与技术现状,设计了一套适用于中短半径井眼的固井防砂一体化管柱,对其安全性、通过性的分析结果发现:该管柱在下入过程中不会出现螺旋弯曲,安全性达到了要求;可以顺利通过最大狗腿度为19.28°/30 m、曲率半径为89.20 m的井眼.试验井试验和现场试验均表明:中短半径井眼固井防砂一体化管柱的安全性和通过性达到了设计要求,能实现实现一趟钻完成上部井段固井作业和下部储层段选择性固井和砾石充填防砂作业的功能,能够满足渤海油田中短半径裸眼井实施固井防砂一体化作业的需求. 展开更多
关键词 中短半径 固井 防砂 现场试验 渤海油田 cfd12-2B18H1井
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