|本期目录/Table of Contents|

[1]王志辉,黄伟.鄂尔多斯盆地南部直罗油田长8油层油气沸腾包裹体群研究[J].地球科学与环境学报,2011,33(02):146-151.
 WANG Zhi-hui,HUANG Wei.Study on Oil/gas Boiling Inclusion Group of Chang-8 Oil-bearing Bed in Zhiluo Oilfield, the Southern of Ordos Basin[J].Journal of Earth Sciences and Environment,2011,33(02):146-151.
点击复制

鄂尔多斯盆地南部直罗油田长8油层油气沸腾包裹体群研究(PDF)
分享到:

《地球科学与环境学报》[ISSN:1672-6561/CN:61-1423/P]

卷:
第33卷
期数:
2011年第02期
页码:
146-151
栏目:
基础地质与矿产地质
出版日期:
2011-06-15

文章信息/Info

Title:
Study on Oil/gas Boiling Inclusion Group of Chang-8 Oil-bearing Bed in Zhiluo Oilfield, the Southern of Ordos Basin
文章编号:
1672-6561(2011)02-0146-06
作者:
王志辉12黄伟2
1.西安石油大学 油气资源学院,陕西 西安 710065; 2.陕西延长石油集团有限责任公司延长油田股份有限责任公司 直罗采油厂,陕西 富县 727500
Author(s):
WANG Zhi-hui12HUANG Wei2
1. School of Oil and Gas Resources, Xi'an Shiyou University, Xi'an 710065, Shaanxi, China; 2. Zhiluo Oil Production Plant,Yanchang Oilfield Company Limited, Shaanxi Yanchang PetroleumGroupCompany Limited, Fuxian 727500, Shaanxi, China
关键词:
鄂尔多斯盆地油气沸腾包裹体群剪切裂缝剪切-滑动裂缝油气运移地震泵地质模型
Keywords:
Ordos Basin oil/gas boiling inclusion group shear fracture shear-slip fracture oil/gas migration geological model of seismic pumping
分类号:
TE122.1+2;P618.130.1;P575
DOI:
-
文献标志码:
A
摘要:
运用激光拉曼光谱、包裹体充填度测定等方法对鄂尔多斯盆地直罗油田富南3井、6井长8油层裂缝岩芯充填物中包裹体群进行分析,发现富南3井、6井与英旺油田英16井长8油层中油气沸腾包裹体群完全相同,密集分布的气泡不停晃动,证实油气沸腾包裹体群不是孤立的、偶然的地质现象。富南3井、6井和英16井长8油层裂缝岩芯的原始裂缝性质为滑动-剪切裂缝和剪切裂缝,在区域构造的作用下,反复发生拉张-挤压交替活动;在拉张发生的瞬间,与裂缝沟通的油层里的原油发生减压沸腾,原油中的轻质馏分和其他流体进入裂缝空间;在随后的挤压发生时,裂缝基本封闭,一部分流体返回原来的油层,一部分被挤到别的裂隙空间形成新的油藏;残留在裂缝里的碳酸钙,在较高的地层压力下逐渐结晶,并把残留的轻质馏分包裹,形成油气包裹体;这些油气包裹体形成压力较高,又包裹着成分类似液化气的轻质馏分,在常温常压下就处于沸腾状态;这样的过程反复进行,在裂缝充填物中形成了沿着晶体生长线以及成片、成带分布的油气沸腾包裹体群。上述油气沸腾包裹体群的形成过程就是油气的地震泵运移机制,丰富了油气运移地震泵地质模型。
Abstract:
By the means of laser Raman spectroscopy and filling degree of inclusion, the inclusion groups of fillings of Chang-8 oil-bearing beds from wells Funan3 and Funan6 in Zhiluo Oilfield, the southern of Ordos Basin were studied. The results showed that the oil/gas boiling inclusion groups of Chang-8 oil-bearing beds from wells Funan3 and Funan6 were exactly the same to that from well Ying16 in Yingwang Oilfield, and a lot of bubbles moved constantly; the geological phenomenon for oil/gas boiling inclusion groups were not isolated and occasional. The characteristics of incipient fracture core of Chang-8 oil-bearing beds from wells Funan3, Funan6 and Ying16 were shear-slip and shear fractures, and tensile-bearing stress was alternately active under the action of regional structure; decompression boiling of oil in the oil-bearing bed happened in an instant when tensile stress was active, light cut fraction and other fluids flowed into fracture because of the connection of fracture and oil-bearing bed; fracture closed on the whole while the bearing stress was active, a part of fluid returned to the original oil-bearing bed, and another was overflowed onto other fracture so that new oil reservoir formed; calcium carbonate, which remained in the original fracture, crystallized gradually under the high strata pressure and wrapped the rudimental light cut fraction, so that the oil/gas inclusion groups formed; the formation pressure of the inclusion was high, and the inclusion included light cut fraction, so that the inclusion was in a state of boiling at normal temperatures and pressures; the above process happened again and again, and the oil/gas boiling inclusion groups, which distributed along the line of crystal growth, formed lamellar and ribbon in the fillings of fractures. The formation processes of oil/gas boiling inclusion groups were the migration mechanism of seismic pumping and enriched the geological model of seismic pumping.

参考文献/References:

[1] Xie G C,Zheng Z W,Li R X,et al.The Oil/gas Boiling Inclusion and Its Geological Significance[C]∥Committee of the 33rd International Geological Congress. Proceedings of the 33rd International Geological Congress. Oslo: International Geological Congress,2008:328.
[2] Shepherd T J, Rankin A H,Alderton D H M.流体包裹体研究实践指南[M].张恩世,张文怀,高怀忠,译.武汉:中国地质大学出版社,1990.
[3] 卢焕章,范宏瑞,倪 培,等.流体包裹体[M].北京:科学出版社,2004.
[4] Sibson R H, Moore J M M, Rankin A H.Seismic Pumping:a Hydrothermal Fluid Transport Mechanism[J].Journal of the Geological Society,1975,131(6):653-659.
[5] 邸领军,张东阳,王宏科.鄂尔多斯盆地喜山期构造运动与油气成藏[J].石油学报,2003,24(2):34-37.
[6] 王朋岩,赵 荣.松辽盆地西斜坡构造运动强度与油气运移[J].天然气工业,2006,26(7):8-10.
[7] 孙永河,付晓飞,吕延防,等.地震泵抽吸作用与油气运聚成藏物理模拟[J].吉林大学学报:地球科学版,2007,37(1):98-104.
[8] 邱楠生,康永尚,樊洪海,等.柴达木盆地西部地区第三系温度压力和油气分布相互关系探讨[J].地球物理学报,1999,42(6):826-833.
[9] 阎福礼,贾 东,卢华复,等.东营凹陷油气运移的地震泵作用[J].石油与天然气地质,1999,20(4):295-298.
[10] 邱楠生,张善文,金之钧.东营凹陷油气流体运移模式探讨——来自沸腾包裹体的证据[J].石油实验地质,2001,23(4):403-407.
[11] 下寺湾采油厂.下寺湾油田裂缝高产井分布规律研究及其靶区优选[R].延安:陕西延长石油(集团)有限责任公司延长油田股份有限责任公司,2008.
[12] 高振东.下寺湾式岩性封闭裂缝油藏的建立[J].地球科学与环境学报,2008,30(3):265-270.
[13] 长庆油田石油地质志编写组.中国石油地质志卷十二:长庆油田[M].北京:石油工业出版社,1992.
[14] 陕西省地质矿产局.全国地层多重划分对比研究61:陕西省岩石地层[M].武汉:中国地质大学出版社,1998.
[15] 王新辉.液化气船货物压力的控制[J].天津航海,2000(2):3-4.
[16] 王 战,吴文奎,谢广成,等.中国地壳的镶嵌构造与波浪运动[M].北京:地质出版社,1996.

相似文献/References:

[1]刘震,姚星,胡晓丹,等.鄂尔多斯盆地中生界断层的发现及其对成藏的意义[J].地球科学与环境学报,2013,35(02):56.
 LIU Zhen,YAO Xing,HU Xiao-dan,et al.Discovery of the Mesozoic Fault and Its Implication on the Hydrocarbon Accumulation in Ordos Basin[J].Journal of Earth Sciences and Environment,2013,35(02):56.
[2]唐俊,庞国印,唐丽,等.鄂尔多斯盆地姬塬地区长8段孔隙度演化定量模拟[J].地球科学与环境学报,2013,35(01):56.
 TANG Jun,PANG Guo-yin,TANG Li,et al.Quantitative Simulation on Porosity Evolution of Chang-8 Section in Jiyuan Area of Ordos Basin[J].Journal of Earth Sciences and Environment,2013,35(02):56.
[3]杨华,张文正,刘显阳,等.优质烃源岩在鄂尔多斯低渗透富油盆地形成中的关键作用[J].地球科学与环境学报,2013,35(04):1.
 YANG Hua,ZHANG Wen-zheng,LIU Xian-yang,et al.Key Role of High-quality Source Rocks on the Formation of Low-permeability Oil-rich Reservoirs in Ordos Basin[J].Journal of Earth Sciences and Environment,2013,35(02):1.
[4]吴凯,李善鹏,罗丽荣,等.特低渗—致密砂岩储层成藏模拟试验与成藏机理[J].地球科学与环境学报,2013,35(04):10.
 WU Kai,LI Shan-peng,LUO Li-rong,et al.Simulation Experiment of Petroleum Migration and Accumulation Mechanism for Extra-low Permeability and Tight Sandstone Reservoirs[J].Journal of Earth Sciences and Environment,2013,35(02):10.
[5]张宗林,田景春,罗香建,等.鄂尔多斯盆地北部二叠系下石盒子组洪水泥石流与牵引流沉积特征[J].地球科学与环境学报,2014,36(03):21.
 ZHANG Zong-lin,TIAN Jing-chun,LUO Xiang-jian,et al.Sedimentary Characteristics of Flood Debris Flow and Traction Current in the Lower Shihezi Formation of Permian in the Northern of Ordos Basin[J].Journal of Earth Sciences and Environment,2014,36(02):21.
[6]姜星,于建青,史飞,等.鄂尔多斯盆地子北地区长6段油藏成藏条件及主控因素[J].地球科学与环境学报,2014,36(04):64.
 JIANG Xing,YU Jian-qing,SHI Fei,et al.Hydrocarbon Accumulation Condition and Main Controlling Factors of Chang-6 Reservoir in Zibei Area of Ordos Basin[J].Journal of Earth Sciences and Environment,2014,36(02):64.
[7]武春英,韩会平,康锐,等.鄂尔多斯盆地苏里格南部地区盒8段沉积相特征及其意义[J].地球科学与环境学报,2014,36(04):77.
 WU Chun-ying,HAN Hui-ping,KANG Rui,et al.Characteristics and Significance of Sedimentary Facies in He-8Member in the Southern Sulige Area of Ordos Basin[J].Journal of Earth Sciences and Environment,2014,36(02):77.
[8]吉利明,梁晓飞,贺聪,等.鄂尔多斯盆地西峰地区延长组烃源岩两环烷烃分布特征及其生源[J].地球科学与环境学报,2015,37(01):76.
 JI Li-ming,LIANG Xiao-fei,HE Cong,et al.Distribution of Bicyclic Alkanes of Source Rocks of Yanchang Formation in Xifeng Area of Ordos Basin and Their Biological Sources[J].Journal of Earth Sciences and Environment,2015,37(02):76.
[9]罗静兰,罗晓容,白玉彬,等.差异性成岩演化过程对储层致密化时序与孔隙演化的影响——以鄂尔多斯盆地西南部长7致密浊积砂岩储层为例[J].地球科学与环境学报,2016,38(01):79.
 LUO Jing-lan,LUO Xiao-rong,BAI Yu-bin,et al.Impact of Differential Diagenetic Evolution on the Chronological Tightening and Pore Evolution of Tight Sandstone Reservoirs—A Case Study from the Chang-7 Tight Turbidite Sandstone Reservoir in the Southwestern Ordos Basin[J].Journal of Earth Sciences and Environment,2016,38(02):79.
[10]杨伟伟,石玉江,李剑峰,等.鄂尔多斯盆地华池地区X96井长7烃源岩地球化学特征及其对致密油成藏的意义[J].地球科学与环境学报,2016,38(01):115.
 YANG Wei-wei,SHI Yu-jiang,LI Jian-feng,et al.Geochemical Characteristics of Chang-7 Source Rocks from Well X96 in Huachi Area of Ordos Basin and Their Significance on Tight Oil Accumulation[J].Journal of Earth Sciences and Environment,2016,38(02):115.

备注/Memo

备注/Memo:
收稿日期:2010-12-17
基金项目: 陕西延长石油(集团)有限责任公司延长油田股份有限责任公司项目
作者简介: 王志辉(1973-),男,陕西富县人,工程师,工学硕士研究生,从事油田勘探开发生产管理研究。E-mail:wzh3568168@163.com

更新日期/Last Update: 2011-06-20