Geologic Exploration

Pressure Characteristics and Its Influence on Hydrocarbon Accumulation of Lower Cretaceous Formation in Longfengshan Area, Changling Faulted Depression

  • Song Hao ,
  • Jiang Youlu ,
  • Hou Shuai ,
  • Chen Xingxia
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  • 1. China University of Petroleum (East China), Qingdao, Shandong 266580, China;
    2. Northeast Oil & Gas Branch of SINOPEC, Changchun, Jilin 130062, China

Received date: 2021-04-19

  Revised date: 2022-01-06

  Online published: 2023-01-10

Abstract

Longfengshan Area in Changling Faulted Depression is abundant in Lower Cretaceous hydrocarbon resources, and the hydrocarbon distribution is obviously controlled by abnormal pressure, so it is important to study the characteristics of formation pressure and its influence on hydrocarbon. The measured formation pressure and logging data were used to analyze the pressure characteristics of Lower Cretaceous Formation in Longfengshan Area and explore the causes of the overpressure in Shahezi Formation. The evolution of formation paleopressure was restored by the inclusion homogenization temperature-salinity method in combination with the basin modeling technology to determine the influence of formation pressure evolution on hydrocarbon accumulation. The results showed that the bottom-up pressure of Lower Cretaceous Formation in the study area was normal pressure, overpressure and normal pressure, and Shahezi Formation was under overpressure due to pressurization during hydrocarbon generation; the northern subsag belt was at the center of overpressure in the study area, and the formation pressure transited to normal pressure in all directions; the evolution of formation pressure experienced five stages: pressurization during early hydrocarbon generation, initial pressure release, pressurization during late hydrocarbon generation, secondary pressure release, and slow pressure accumulation; the overpressure generated in hydrocarbon generation of source rocks of Shahezi Formation was the main driving force of hydrocarbon migration, and the hydrocarbon migrated along the direction of the remaining formation pressure drop and mainly accumulated in the southeast gentle slope belt. The study results have a certain guiding significance for the in-depth exploration and development of Longfengshan area, Changling Faulted Depression.

Cite this article

Song Hao , Jiang Youlu , Hou Shuai , Chen Xingxia . Pressure Characteristics and Its Influence on Hydrocarbon Accumulation of Lower Cretaceous Formation in Longfengshan Area, Changling Faulted Depression[J]. Special Oil & Gas Reservoirs, 2022 , 29(2) : 42 -50 . DOI: 10.3969/j.issn.1006-6535.2022.02.006

References

[1] 郝芳.超压盆地生烃作用动力学与油气成藏机理[M].北京:科学出版社,2005:3-8.
HAO Fang.Hydrocarbon generation kinetics and hydrocarbon accumulation mechanism in overpressure basins[M].Beijing:Science Press,2005:3-8.
[2] 蒋有录,王鑫,于倩倩,等.渤海湾盆地含油气凹陷压力场特征及与油气富集关系[J].石油学报, 2016,37(11):1361-1369.
JIANG Youlu,WANG Xin,YU Qianqian,et al.Pressure field characteristics of petroliferous depressions and its relationship with hydrocarbon enrichment in Bohai Bay Basin[J].Acta Petrolei Sinica,2016,37(11):1361-1369.
[3] 刘华,蒋有录,卢浩,等.渤南洼陷流体包裹体特征与成藏期流体压力恢复[J].地球科学,2016,41(8): 1384-1394.
LIU Hua,JIANG Youlu,LU Hao,et al.Restoration of fluid pressure during hydrocarbon accumulation period and fluid inclusion feature in the Bonan Sag[J].Earth Science,2016,41(8):1384-1394.
[4] 范婕,蒋有录,刘景东,等.长岭断陷龙凤山地区断裂与油气运聚的关系[J].地球科学,2017,42(10): 1817-1829.
FAN Jie,JIANG Youlu,LIU Jingdong,et al.Relationship of fault with hydrocarbon migration and accumulation in Longfengshan Area,Changling Faulted Depression[J].Earth Science,2017,42(10):1817-1829.
[5] 赵靖舟,李军,徐泽阳.沉积盆地超压成因研究进展[J].石油学报,2017,38(9):973-998.
ZHAO Jingzhou,LI Jun,XU Zeyang.Advances in the origin of overpressures in sedimentary basins[J].Acta Petrolei Sinica,2017,38(9):973-998.
[6] 何生,宋国奇,王永诗,等.东营凹陷现今大规模超压系统整体分布特征及主控因素[J].地球科学(中国地质大学学报),2012,37(5):1029-1042.
HE Sheng,SONG Guoqi,WANG Yongshi,et al.Distribution and major control factors of the present-day large-scale overpressured system in Dongying Depression[J].Earth Science(Journal of China University of Geosciences),2012,37(5):1029-1042.
[7] 范婕,蒋有录,崔小君,等.恢复不整合剥蚀厚度的旋回分析法[J].中国矿业大学学报,2018,47(2):323-331.
FAN Jie,JIANG Youlu,CUI Xiaojun,et al.Unconformable eroded thickness recovery by cycle analysis method[J].Journal of China University of Mining & Technology,2018,47(2):323-331.
[8] 赵鸿皓,蒋有录,张惠,等.长岭断陷龙凤山次凹下白垩统油气成藏期[J].大庆石油地质与开发,2017, 36(6):58-63.
ZHAO Honghao,JIANG Youlu,ZHANG Hui,et al.Accumulation stages of lower cretaceous hydrocarbon in Longfengshan subsag of Changling Faulted Depression[J].Petroleum Geology & Oilfield Development in Daqing,2017,36(6):58-63.
[9] 安天下.松辽盆地梨树断陷白垩系营城组—沙河子组超压特征及其对成岩作用的影响[J].东北石油大学学报,2020,44(1):65-76.
AN Tianxia.Characteristics of overpressure in Cretaceous Yingcheng-Shahezi Formation and its effect on diagenesis in Lishu Fault Sag,Songliao Basin[J].Journal of Northeast Petroleum University,2020,44(1):65-76.
[10] HOESNI J.Origins of overpressure in the Malay Basin and its influence on petroleum systems[D].Durham,United Kingdom:University of Durham,2004.
[11] TINGAY M R P,MORLEY C K,LAIRD A,et al.Evidence for overpressure generation by kerogen-to-gas maturation in the northern Malay Basin[J].AAPG Bulletin,2013,97(4):639-672.
[12] 刘景东,蒋有录.东濮凹陷中央隆起带北部古近系异常高压与油气成藏的关系[J].天然气工业,2012, 32(12):30-36,126.
LIU Jingdong,JIANG Youlu.Relationship between abnormally high pressure and hydrocarbon accumulation of the Paleogene reservoirs in the northern part of central uplift,Dongpu Sag,Bohai Bay Basin[J].Natural Gas Industry,2012,32(12):30-36,126.
[13] 陈红汉,董伟良,张树林,等.流体包裹体在古压力模拟研究中的应用[J].石油与天然气地质, 2002,23(3): 207-211.
CHEN Honghan,DONG Weiliang,ZHANG Shulin,et al.Application of fluid inclusion in palaeopressure modeling research[J].Oil & Gas Geology,2002,23(3):207-211.
[14] ZHANG Yigang,FRANTZ J D.Determination of the homogenization temperatures and densities of supercritical fluids in the system NaCl-KCl-CaCl2H2O using synthetic fluid inclusions[J].Chemical Geology,1987,64(3-4):335-350.
[15] 毛毳,陈勇,周瑶琪,等.改进后的烃类流体包裹体热力学模拟方法及其在油气成藏研究中的应用[J]. 吉林大学学报(地球科学版),2015,45(5):1352-1364.
MAO Cui,CHEN Yong,ZHOU Yaoqi,et al.Improved simulation method of petroleum inclusions thermodynamics and its application in hydrocarbon accumulations[J].Journal of Jilin University(Earth Science Edition),2015,45(5):1352-1364.
[16] BODANR R J.Revised equation and table for determining the freezing point depression of H2O-NaCl solutions[J].Geochimica et Cosmochimica Acta,1993,57(3):683-684.
[17] 雷振宇,解习农,孟元林,等.松辽盆地齐家古龙-三肇凹陷超压对成岩作用的影响[J].地球科学(中国地质大学学报),2012,37(4):833-842.
LEI Zhenyu,XIE Xinong,MENG Yuanlin,et al.Effecting of overpressures on diagenesis in the Qijiagulong-Sanzhao Depression of Songliao Basin[J].Earth Science(Journal of China University of Geosciences),2012,37(4):833-842.
[18] 刘华,李君,冯月琳,等.渤海湾盆地渤南洼陷沙河街组三段剩余压力梯度与油气分布关系[J].石油与天然气地质,2020,41(5):1083-1091.
LIU Hua,LI Jun,FENG Yuelin,et al.Relationship between excess pressure gradient and hydrocarbon distribution in the 3rd member of Shahejie Formation in Bonan Sag,Bohai Bay Basin[J].Oil & Gas Geology,2020,41(5):1083-1091.
[19] 杜振京.油气运移过程中的“高速刹车”稠化机理探讨——以渤海湾盆地东营凹陷南坡东段为例[J].石油实验地质,2020,42(1):126-131.
DU Zhenjing .Mechanism of “high-speed braking” effect on heavy oil formation during hydrocarbon migration: a case study of the eastern part of southern slope of Dongying Sag, Bohai Bay Basin[J].Petroleum Geology & Experiment,2020,42(1):126-131.
[20] 王红梅,黄杰,郭发军,等.束鹿凹陷馆陶组储层微观孔隙结构及其成岩作用的影响[J].大庆石油地质与开发,2021,40(2):50-59.
WANG Hongmei,HUANG Jie,GUO Fajun,et al.Micro pore structures and the influences of the diagenesis on these structures for Guantao-Formation (Ng) reservoir in Shulu Sag[J]. Petroleum Geology & Oilfield Development in Daqing,2021,40(2):50-59.
[21] 李楚雄, 申宝剑, 潘安阳,等 .波罗的海盆地上奥陶统页岩孔隙演化的热压模拟实验[J].石油实验地质,2020,42(3):434-442.
LI Chuxiong, SHEN Baojian, PAN Anyang,et al .Thermal-pressure simulation experiment of pore evolution of Upper Ordovician shale in Baltic Basin[J].Petroleum Geology & Experiment,2020,42(3):434-442.
[22] 伊振林,张雷.基于微观孔隙结构的特低渗储层分类评价方法——以大庆油田古龙南地区为例[J].断块油气田,2020,27(1):40-44.
YI Zhenlin,ZHANG Lei,Classification of extra-low permeability reservoir based on microscopic pore structure: a case study of south Gulong Area in Daqing Oilfield[J].Fault-Block Oil & Gas Field,2020,27(1):40-44.
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