用户名: 密码: 验证码:
南堡凹陷馆陶组火山岩盖层封闭能力定量评价
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Quantitative evaluation of the volcanic caprock sealing capacity for Guantao Formation in Nanpu Sag
  • 作者:郎岳 ; 朱思源
  • 英文作者:LANG Yue;ZHU Siyuan;School of Energy Resources, China University of Geosciences;No.6 Oil Production Plant of Daqing Oilfield Co Ltd.;
  • 关键词:南堡凹陷 ; 馆陶组三段 ; 火山岩盖层 ; 天然气 ; 封气机理 ; 控藏作用 ; 定量评价
  • 英文关键词:Nanpu Sag;;Member Ng3;;volcanic caprock;;natural gas;;gas sealing mechanism;;reservoir controlling action;;quantitative evaluation
  • 中文刊名:DQSK
  • 英文刊名:Petroleum Geology & Oilfield Development in Daqing
  • 机构:中国地质大学(北京)能源学院;大庆油田有限责任公司第六采油厂;
  • 出版日期:2019-03-14 11:04
  • 出版单位:大庆石油地质与开发
  • 年:2019
  • 期:v.38;No.192
  • 基金:国家自然科学基金项目“断层岩水压张裂漏油主控因素及张性破裂压力预测”(41372154)
  • 语种:中文;
  • 页:DQSK201902004
  • 页数:8
  • CN:02
  • ISSN:23-1286/TE
  • 分类号:28-35
摘要
为探讨南堡凹陷馆陶组三段火山岩盖层之下天然气的分布规律,在掌握了馆陶组三段火山岩发育及分布特征的基础上,利用地震数据及油气井实测资料,开展了针对其封气机理、封闭能力和对天然气聚集与分布控制作用的研究,结果表明:南堡凹陷馆陶组三段火山岩整体破碎程度较高,对油气运聚未能起到有效遮挡作用,但火山喷发期次多、强度大,且具轻微含泥蚀变作用,导致垂向上玄武岩与泥岩及玄武质泥岩频繁互层,层段内的泥岩及泥质岩含量较高,泥质岩含量与单井天然气日产量呈良好的线性正相关关系,说明真正对下伏天然气起到封闭作用的是馆陶组三段火山岩盖层内的泥质岩夹层,且封闭能力与泥地比呈正相关关系。通过井震结合的方法,预测得到研究区内馆陶组三段盖层泥地比由凹陷西南端向东北缘逐渐减小,表明其封闭能力也由凹陷西南端向凹陷东北边部逐渐减小。进一步对凹陷内天然气垂向分布特征、盖层厚度及泥岩含量的拟合和分析可确定,泥质体积分数30%是馆陶组三段盖层封闭住下伏天然气的下限值,另外考虑到断裂对盖层的破坏作用,划定断接厚度大于180 m的区域为馆陶组三段有效封盖区,结合泥质含量下限值与断接厚度下限值,可给出馆陶组三段盖层厚度与泥地比互补关系的定量公式。根据上述参数与指标,刻画出南堡凹陷内馆陶组三段火山岩盖层下的天然气成藏分布有利区。
        In order to explore the distribution law of the natural gas under the volcanic caprock of Member Ng3 in Nanpu Sag, based on the grasped development and distribution characteristics of the volcanic rock in the member, and moreover with the help of the seismic and logging data of the hydrocarbon wells, the sealing mechanism, sealing capacity and controlling actions on the natural gas accumulation and distribution were searched, the results show that the volcanic rock in Member Ng3 was highly broken in general, which makes it hard to preventing the hydrocarbon migration and accumulation;however, this member of the rock is characterized by many volcanic eruption period-times, strong intensity and slight mud-alteration action, thus results in the vertical frequent interbeds between the basalt and the mudstone and basaltic mudstone, and furthermore the contents of the mudstone and argillaceous rock in Member Ng3 are pretty higher, the argillaceous rock content has much better linear positive correlation with the daily gas production of the single well, which indicates that the argillaceous interbed in the volcanic caprock is the real one who can seal the natural gas beneath Member Ng3, and the sealing capacity is associated with the mudstone-formation ration. By means of the well-seismic combined method, it is predicted that the mudstone-formation ratio in Member Ng3 of the interesting area will gradually decrease from the southwestern edge to the northeastern margin of the sag, so as the sealing capacity. The further match and analyses on the vertical distribution characteristics of the natural gas, cap thickness and the mudstone mass fraction in the sag determine that 30% content is the lower limit value for the caprock to seal the underlying natural gas in the member. In addition, considering the damage action of the fault to the caprock, the determined region where the faulted connected thickness greater than 180 m is the effective sealed area in Member Ng3, by integrating the lower limit values of both the mud content and connected thickness, the quantitative formula showing the complementary relationship between the thickness and mudstone-formation ratio of Member Ng3 caprock can be obtained. With the help of the parameters and indexes stated above, the favorable plays of the natural gas accumulation and distribution can be characterized under Member Ng3 volcanic caprock in Nanpu Sag.
引文
[1]付广,孙同文,吕延防. 南堡凹陷断-砂配置侧向输导油气能力评价方法[J].中国矿业大学学报,2014,43(1):79-87. FU Guang,SUN Tongwen,Lü Yanfan.An evaluation method of oil-gas lateral transporting ability of fault-sandstone configuration in Nanpu Depression[J].Journal of China University of Mining & Technology,2014,43(1):79-87.
    [2]付广,李鑫,刘峻桥. 南堡凹陷中浅层油源断裂与其他成藏要素的空间配置及控藏作用[J].山东科技大学学报(自然科学版),2014,33(1):1-8.FU Guang,LI Xin,LIU Junqiao.The space distribution characteristics of faults connected source-rock and oil-gas accumulation factors and the function of accumulation controlling in the middle and shallow of Naupu Depression[J].Journal of Shandong University of Science and Technology(Natural Science Edition),2014,33(1):1-8.
    [3]刘哲,付广,吕延防,等.南堡凹陷断裂对油气成藏控制作用的定量评价[J].中国石油大学学报(自然科学版),2013,37(1):27-34. LIU Zhe,FU Guang,Lü Yanfang,et al.Quantitative evaluation for control of faults on hydrocarbon accumulation in Nanpu Sag[J].Journal of China University of Petroleum(Edition of Natural Science) ,2013,37(1):27-34.
    [4]庞雄奇,霍志鹏,范泊江,等.渤海湾盆地南堡凹陷源控油气作用及成藏体系评价[J].天然气工业,2014,34(1):28-36.PANG Xiongqi,HUO Zhipeng,FAN Bojiang,et al.Control of source rocks on hydrocarbon accumulation and assessment of gas pools in the Nanpu Sag,Bohai Bay Basin[J].Natural Gas Industry,2014,34(1):28-36.
    [5]董月霞,杨赏,陈蕾,等. 渤海湾盆地辫状河三角洲沉积与深部储集层特征:以南堡凹陷南部古近系沙一段为例[J].石油勘探与开发,2014,41(4):385-392.DONG Yuexia,YANG Shang,CHEN Lei,et al.Braided river delta deposition and deep reservoir characteristics in Bohai Bay Basin:A case study of Paleogene Sha1 Member in the south area of Nanpu Sag[J].Petroleum Exploration and Development,2014,41(4):385-392.
    [6]李素梅,董月霞,王政军,等.南堡凹陷潜山原油特征与成因探讨[J].沉积学报,2014,32(2):376-384.LI Sumei,DONG Yuexia,WANG Zhengjun,et al.Characteristics and formation mechanism of deep oils from Nanpu Depression,Bohai Bay Basin[J].Acta Sedimentologica Sinica,2014,32(2):376-384.
    [7]杨晓利,张自力,孙明,等. 同沉积断层控砂模式:以南堡凹陷南部地区Es1为例[J].石油与天然气地质,2014,35(4):526-533.YANG Xiaoli,ZHANG Zili,SUN Ming,et al.Models of contemporaneous fault controlling sandstone deposition:A case study of Es1 in Southern Nanpu Sag[J].Oil & Gas Geology,2014,35(4):526-533.
    [8]吕延防,许辰璐,付广,等. 南堡凹陷中浅层盖—断组合控油模式及有利含油层位预测[J].石油与天然气地质,2014,35(1):86-97.Lü Yanfang,XU Chenlu,FU Guang,et al.Oil-controlling models of caprock-fault combination and prediction of favorable horizons for hydrocarbon accumulation in middle-shallow sequences of Nanpu Sag[J].Oil & Gas Geology,2014,35(1):86-97.
    [9]刘性全,侯吉瑞,付博. 断—盖时空匹配及其对油气聚集与分布的控制作用:以南堡凹陷中浅层东营组为例[J].东北石油大学学报,2013,37(1):8-15.LIU Xingquan,HOU Jirui,FU Bo.Controlling of time and space match in faults transporting oil-gas and caprocks to oil and gas accumulation and distribution:An example form middle and shallow strata in Nanpu Depression[J].Journal of Northeast Petroleum University,2013,37(1):8-15.
    [10]付广,夏云清. 南堡凹陷东一段油气成藏与分布的主控因素及模式[J].岩性油气藏,2012,24(6):27-31+37.FU Guang,XIA Yunqing.Main controlling factors and models of oil and gas accumulation and distribution of Ed1 in Nanpu Depression[J].Lithologic Reservoirs,2012,24(6):27-31+37.
    [11]付广,杨敬博. 断盖配置对沿断裂运移油气的封闭作用:以南堡凹陷中浅层为例[J].地球科学——中国地质大学学报,2013,38(4):783-791.FU Guang, YANG Jingbo.Sealing of matching between fault and caprock to oil-gas migration along faults:An example from middle and shallow strata in Nanpu Depression[J].Earth Science(Journal of China University of Geosciences) ,2013,38(4):783-791.
    [12]孙同文,付广,吕延防,等. 南堡1号构造中浅层油气富集主控因素分析[J].天然气地球科学,2014,25(7):1042-1051.SUN Tongwen,FU Guang,Lü Yanfang,et al.Main controlling factors on the hydrocarbon accumulation in the middle-shallow layer of 1st Structure,Nanpu Sag[J].Natural Gas Geoscience,2014,25(7):1042-1051.
    [13]胡欣蕾,付广. 油源断裂对下生上储式油气成藏与分布的控制作用:以南堡凹陷中浅层为例[J].断块油气田,2014,21(3):273-277.HU Xinlei,FU Guang.Control of fault connecting source rock and reservoir on lower generation and upper storage pattern oil-gas accumulation and distribution: Taking middle-shallow area of Nanpu Depression as an example[J].Fault-Block Oil & Gas Field,2014,21(3):273-277.
    [14]付红军,樊自立,施而修,等. 正断裂向上和向下运聚油气作用的差异性[J].天然气地球科学,2014,25(8):1210-1217. FU Hongjun,FAN Zili,SHI Erxiu,et al.Research on the difference between oil and gas upwards and downwards migration and accumulation through normal fault[J].Natural Gas Geoscience,2014,25(8):1210-1217.
    [15]范宜仁,黄隆基,代诗华. 交会图技术在火山岩岩性与裂缝识别中的应用[J].测井技术,1999,23(1):53-58.FAN Yiren,HUANG Longji,DAI Shihua.Application of crossplot technique in volcanic rock lithology and fracture identification[J].Well Logging Technology,1999,23(1):53-58.
    [16]郑健东. 徐深气田营城组中基性火山岩储层测井评价技术研究[D].大庆:东北石油大学,2010.ZHENG Jiandong.Study on logging evaluation technology of basic volcanic reservoir in Yingcheng Formation of Xushen Gas Field[D].Daqing:Northeast Petroleum University,2010.
    [17]邓攀,陈孟晋,高哲荣,等. 火山岩储层构造裂缝的测井识别及解释[J].石油学报,2002,23(6):32-36.DENG Pan,CHEN Mengjin,GAO Zherong,et al.Logging identification and interpretation of structural fractures in volcanic reservoir[J].Acta Petrolei Sinica,2002,23(6):32-36.
    [18]黄玉龙,孙德友,王璞珺,等. 松辽盆地营城组玄武岩流动单元测井响应特征[J].地球物理学报,2011,54(2):524-533.HUANG Yulong,SUN Deyou,WANG Pujun,et al.Characteristics of well-logging response to lava flow units of the Lower Cretaceous basalts in Songliao Basin[J].Chinese Journal of Geophysics,2011,54(2):524-533.
    [19]朱学娟. 南堡5号深层火山岩油气藏测井识别与评价技术研究[D].东营:中国石油大学,2011.ZHU Xuejuan.Logging identification and evaluation of deep volcanic reservoir in Nanbao No.5[D].Dongying:China University of Petroleum,2011.
    [20]周海民,马乾. 南堡凹陷北堡地区火成岩储层特征[J].石油与天然气地质,2003,24(1):36-38.ZHOU Haimin,MA Qian.Characteristics of igneous rock reservoir in Beipu area of Nanpu Sag[J].Oil & Gas Geology,2003,24(1):36-38.
    [21]林正良,王华,姜华,等. 南堡凹陷馆陶组火山事件及其油气地质意义[J].海洋地质与第四纪地质,2011,31(3):79-84.LIN Zhengliang,WANG Hua,JIANG Hua,et al.Volcanic events at the stage of Guantao Formation in Nanpu Sag and its petroleum geological significance[J].Marine Geology & Quaternary Geology,2011,31(3):79-84.
    [22]郭玉超. 南堡凹陷2号东段东营组油气藏主控因素及模式[D].大庆:东北石油大学,2014.GUO Yuchao.Main Controlling factors and models of oil and gas reservoirs in Dongying Formation in the eastern section of No.2 Nanpu Sag[D].Daqing:Northeast Petroleum University,2014.
    [23]中国石油勘探与生产分公司. 火山岩油气藏测井评价技术及应用[M].北京:石油工业出版社,2009:33-40.China Petroleum Exploration and Production Branch.Logging evaluation technology for volcanic reservoir and its application[M].Beijing:Petroleum Industry Press,2009:33-40.
    [24]王政军,马乾,赵忠新,等. 南堡凹陷深层火山岩天然气成因与成藏模式[J].石油学报,2012,33(5):772-780.WANG Zhengjun,MA Qian,ZHAO Zhongxin,et al.Natural gas origin and gas accumulation model for deep volcanic rocks in Nanpu Sag,Bohai Bay Basin[J].Acta Petrolei Sinica,2012,33(5):772-780.
    [25]付广,王浩然,胡欣蕾. 断裂带盖层油气封盖断接厚度下限的预测方法及应用[J].中国石油大学学报(自然科学版),2015,39(3):30-37.FU Guang,WANG Haoran,HU Xinlei.Prediction method and application of caprock faulted-contact thickness lower limit for oil-gas sealing in fault zone[J].Journal of China University of Petroleum(Edition of Natural Science),2015,39(3):30-37.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700