用户名: 密码: 验证码:
陆相湖盆大型重力流发育的成因机制及其优质储层特征研究:以歧口凹陷沙河街组一段为例
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Large Gravity Flow Deposits in the Member 1 of Paleogene Shahejie Formation,Qikou Sag,Bohai Bay Basin
  • 作者:王华 ; 周立宏 ; 韩国猛 ; 陈思 ; 黄传炎 ; 周可佳 ; 巩天浩 ; 张悦辉 ; 潘凯
  • 英文作者:Wang Hua;Zhou Lihong;Han Guomeng;Chen Si;Huang Chuanyan;Zhou Kejia;Gong Tianhao;Zhang Yuehui;Pan Kai;Key Laboratory of Tectonics and Petroleum Resources of Ministry of Education,China University of Geosciences;Faculty of Earth Resources,China University of Geosciences;China National Petroleum Corporation Ltd.Dagang Oilfield Branch;
  • 关键词:歧口凹陷 ; 重力流沉积体 ; 多期叠置 ; 薄互层 ; 优质储层 ; 石油地质
  • 英文关键词:Qikou Sag;;gravity flow deposits;;multiple overlap layers;;thin alternating beds;;high quality reservoir;;petroleum geology
  • 中文刊名:DQKX
  • 英文刊名:Earth Science
  • 机构:中国地质大学构造与油气资源教育部重点实验室;中国地质大学资源学院;中国石油天然气股份有限公司大港油田分公司;
  • 出版日期:2018-09-19 13:40
  • 出版单位:地球科学
  • 年:2018
  • 期:v.43
  • 基金:国家自然科学基金项目(No.41702114);; 国家科技重大专项(No.2017ZX05009002-003);; 歧口中部滩海区中浅层系油气成藏与聚集规律研究(No.DGYT-2018-JS-366)
  • 语种:中文;
  • 页:DQKX201810009
  • 页数:22
  • CN:10
  • ISSN:42-1874/P
  • 分类号:93-114
摘要
陆相重力流沉积是现今油气勘探领域的研究热点.发育在歧口凹陷滨海斜坡古近系沙河街组一段的大型重力流沉积体(沉积范围达到1 700 km2)具有多物源供给、长距离搬运、多级断坡传输、沿路沉积的发育过程与沉积机理特征.以渤海湾盆地富烃凹陷-歧口凹陷的大型重力流为研究对象,在构造-高精度层序地层格架下,以"源-渠-汇"的整体过程为思路,(1)研究多物源的形成、持续供给及匹配关系;(2)分析古地貌(断控陡坡带+多级断阶坡折带)的演化,及其对沉积物搬运、堆积、发育过程的控制作用;(3)针对该重力流具有大规模、多期次的沉积特征,解剖其平面展布及空间分布、沉积模式、时空演化规律;(4)综合探讨陆相重力流沉积体的成因机制、控制因素.综上可知:(1)歧口凹陷大型陆相重力流沉积体发育受多个物源体系的影响与控制,湖盆中心的重力流沉积体与供给物源之间有明确的匹配关系.在古近系沙一段沉积时期,滨海斜坡沉积区主要受北部燕山物源区的大神堂物源、茶淀物源以及西部沧县隆起物源区的葛沽物源和小站物源4个物源共同供给,持续的物源供给使得在歧口凹陷的陆相湖盆中,发育了大规模的重力流沉积体.(2)沙一段同沉积期,歧口凹陷滨海斜坡周缘整个古地貌格局主要表现为断控陡坡带与多级断阶坡折带复合体,断控陡坡带主要发育于滨海斜坡北部,多级断阶带主要呈近东西向发育于斜坡西部.这些断坡带既是物源水下搬运通道又是沉积物堆积的可容纳空间分布区,再加上这些断坡带差异性的持续沉降,对砂分散体系和相带展布具有关键的控制作用.(3)歧口凹陷沙一段重力流沉积过程机制主要表现为重力滑塌沉积、砂质碎屑流、泥质碎屑流、浊流等多种成因,具有横向连片,纵向叠置的沉积样式.
        Continental gravity flow deposition is a research hotspot in the field of oil and gas exploration.The large scale gravity flow deposits( up to 1 700 km2) that developed in the Member 1 of Shahejie Formation( Paleogene) in the Binhai slope area in the Qikou Sagshows the sedimentary characters of multiple sediment sources,long distance and multi-fault transport,and preservation along the transfer path during the sedimentary processes. This study focus on the gravity flow deposits in the oil-rich Qikou Sag in Bohai Bay Basin. Under the sequence stratigraphy framework,the source-transport path-sink processes has been discussed. The aim of this study is to(1) illuminate the formation of the multiple sources,the configuration relationship between different sources,and the origin of continuous sediment supply.(2) analyze the controlling and evolution of the paleogeomorphology( fault-controlling steep slope and multi-step fault slope),sediment transport,the sedimentary develop mechanism in processes.(3) focus on the distributions,sedimentary patterns and space evolution of the large scale multi-stages gravity flow deposits.(4) discuss the formation mechanism and controlling factors of the gravity flow in Qikou Sag. The conclusions include:(1) the gravity flow was controlled by multiple sources. During the Member 1 of Shahejie Formation,the Binhai slope was supplied by sources from four different areas that include: Dashentang source from northern Yanshan Mountain,Chadian sources,Gegu and Xiaozhan sources from western Cangxian Uplift. The continuous sediment supply allows the large scale gravity flow to be formed in the lacustrine basin.(2) the paleogeomorphology of the Member 1 of Shahejie Formation in the Qikou Sag is the complex of fault-controlling steep slope and multi-step fault slope. The fault-controlling steep slope is developed in the northern part of Binhai Slope,as the multi-step fault slope is mainly developed in the orientation of west to east in the west part of Binhai Slope. The fault zones play a role as the transport paths for the sediments and also provide accumulation space for the deposits to be preserved locally. The differential subsidence of the fault slope controls the distribution of the sedimentary systems.(3) the large scale gravity flow deposits that developed in the Member 1 of Shahejie Formation in the Binhai slope area in the Qikou Sag are mainly of gravity slump deposits,sandy debris flow deposits,muddy debris flow deposits,turbidities. The gravity flow deposits spread wide laterally and overlap onto each other vertically.
引文
Abreu,V.,Sullivan,M.,Pirmez,C.,et al.,2003.Lateral Accretion Packages(LAPs):An Important Reservoir Element in Deep Water Sinuous Channels.Marine and Petroleum Geology,20(6-8):631-648.https://doi.org/10.1016/j.marpetgeo.2003.08.003
    Allen,P.A.,2008.From Landscapes into Geological History.Nature,451(7176):274-276.https://doi.org/10.1038/nature06586
    Amelin,Y.,Lee,D.C.,Halliday,A.N.,et al.,1999.Nature of the Earth's Earliest Crust from Hafnium Isotopes in Single Detrital Zircons.Nature,399(6733):1497-1503.https://doi.org/10.1038/20426
    Bhatia,M.R.,1985.Plate Tectonics and Geochemical Composition of Sandstones:A Reply.The Journal of Geology,93(1):85-87.https://doi.org/10.1086/628922
    Cao,Y.C.,Zhou,L.,Zhang,Y.M.,et al.,2011.Discussion on Provenance Systems in Yingcheng Formation in Shiwu Area of Shiwu Fault Depression,Songliao Basin.Acta Sedimentologica Sinica,29(6):1096-1104(in Chinese with English abstract).
    Cartwright,J.,Huuse,M.,2005.3D Seismic Technology:The Geological‘Hubble’.Basin Research,17(1):1-20.https://doi.org/10.1111/j.1365-2117.2005.00252.x
    Carvajal,C.,Steel,R.,2012.Source-To-Sink Sediment Volumes within a Tectono-Stratigraphic Model for a Laramide Shelfto-Deep-Water Basin:Methods and Results.Tectonics of Sedimentary Basins,79:131-151.https://doi.org/10.1002/9781444347166.ch7
    Chen,S.,Wang,H.,Wei,J.,et al.,2014a.Sedimentation of the Lower Cretaceous Xiagou Formation and Its Response to Regional Tectonics in the Qingxi Sag,Jiuquan Basin,NWChina.Cretaceous Research,47:72-86.https://doi.org/10.1016/j.cretres.2013.11.006
    Chen,S.,Wang,H.,Wu,Y.P.,et al.,2014b.Stratigraphic Architecture and Vertical Evolution of Various Types of Structural Slope Breaks in Paleogene Qikou Sag,Bohai Bay Basin,Northeastern China.Journal of Petroleum Science and Engineering,122:567-584.https://doi.org/10.1016/j.petrol.2014.07.003
    Chen,S.,Wang,H.,Zhou,L.H.,et al.,2011.Recognition and Depiction of Special Geologic Bodies of Member 3 of Dongying Formation in Littoral Slope Zone,Qikou Sag.Journal of Central South University of Technology,18(3):898-908.https://doi.org/10.1007/s11771-011-0779-2
    Chen,S.,Wang,H.,Zhou,L.H.,et al.,2012.Sequence Thickness and Its Response to Episodic Tectonic Evolution in Paleogene Qikou Sag,Bohaiwan Basin.Acta Geologica Sinica(English Edition),86(5):1077-1092.https://doi.org/10.1111/j.1755-6724.2012.00732.x
    Chen,S.G.,Ren,J.Y.,Wu,F.,et al.,2015.Palaeogeomorphic Recovery and Its Application in Shabei Area,Central Bohai Depression.Special Oil&Gas Reservoirs,22(2):52-55(in Chinese with English abstract).
    Chen,Y.,Lin,C.S.,Yu,H.Z.,et al.,2006.Controls of Paleogene Syndepositional Faults on the Successions and Depositional Systems in the Qikou Depression,Bohai Bay.Journal of Geomechanics,12(3):378-386(in Chinese with English abstract).
    Corella,J.P.,Loizeau,J.L.,Kremer,K.,et al.,2016.The Role of Mass-Transport Deposits and Turbidites in Shaping Modern Lacustrine Deepwater Channels.Marine and Petroleum Geology,77:515-525.https://doi.org/10.1016/j.marpetgeo.2016.07.004
    Dickinson,W.R.,1985.Interpreting Provenance Relations from Detrital Modes of Sandstones.Provenance of Arenites,29:333-361.https://doi.org/10.1007/978-94-017-2809-6_15
    Feng,Z.Q.,Zhang,S.,Cross,T.A.,et al.,2010.Lacustrine Turbidite Channels and Fans in the Mesozoic Songliao Basin,China.Basin Research,22(1):96-107.https://doi.org/10.1111/j.1365-2117.2009.00442.x
    Fu,G.,Liu,J.T.,2006.Sealing and Preservation Conditions for Large and Medium Gas Fields of China.Petroleum Exploration and Development,33(6):662-666(in Chinese with English abstract).
    Haughton,P.D.W.,Todd,S.P.,Morton,A.C.,1991.Sedimentary Provenance Studies.Geological Society,London,Special Publications,57(1):1-11.https://doi.org/10.1144/gsl.sp.1991.057.01.01
    He,S.,Yang,Q.,Wang,J.D.,2008.Fractal Analysis of Fault System of Central Area in the Huanghua Depression.Geotectonica et Metallogenia,32(4):455-461(in Chinese with English abstract).
    He,Z.H.,Liu,Z.J.,Zhang,F.,2001.Latest Progress of Heavy Mineral Research in the Basin Analysis.Geological Science and Technology Information,20(4):29-32(in Chinese with English abstract).
    Huang,C.Y.,Wang,H.,Wang,J.H.,et al.,2007.Deposi-Tional Character and Model of Fault-Controlling Gravity Flow in Banqiao Depression.Petroleum Geology and Recovery Efficiency,14(6):14-16(in Chinese with English abstract).
    Huang,C.Y.,Wang,H.,Wu,Y.P.,et al.,2010.Analysis of the Hydrocarbon Enrichment Regularity in the Sequence Stratigraphic Framework of Tertiary in Qikou Sag.Journal of Jilin University(Earth Science Edition),40(5):986-995(in Chinese with English abstract).
    Huang,C.Y.,Wang,H.,Wu,Y.P.,et al.,2012.Genetic Types and Sequence Stratigraphy Models of Palaeogene Slope Break Belts in Qikou Sag,Huanghua Depression,Bohai Bay Basin,Eastern China.Sedimentary Geology,261-262:65-75.https://doi.org/10.1016/j.sedgeo.2012.03.005
    Huang,C.Y.,Wang,H.,Zhou,L.H.,et al.,2009.Provenance System Characters of the Third Member of Shahejie Formation in the Paleogene in Beitang Sag.Earth Science,34(6):975-984(in Chinese with English abstract).
    Hubbard,S.M.,Smith,D.G.,Nielsen,H.,et al.,2011.Seismic Geomorphology and Sedimentology of a Tidally Influenced River Deposit,Lower Cretaceous Athabasca Oil Sands,Alberta,Canada.AAPG Bulletin,95(7):1123-1145.https://doi.org/10.1306/12131010111
    Jia,C.Z.,Zhao,Z.Z.,Du,J.H.,et al.,2008.PetroChina Key Exploration Domains:Geological Cognition,Core Technology,Exploration Effect and Exploration Direction.Petroleum Exploration and Development,35(4):385-396(in Chinese with English abstract).
    Jiao,Y.Q.,Zhou,H.M.,1998.The Integated Study of Sediment Sources in Sedimentary Basins:An Example from the Eogene Nanpu Rift Subbasin.Sedimentary Facies and Palaeogeography,5:16-20(in Chinese with English abstract).
    Jin,S.D,Wang,H.,Cao,H.,et al.,2014.Sedimentation of the Paleogene Liushagang Formation and the Response to Regional Tectonics in the Fushan Sag,Beibuwan Basin,South China Sea.Austrian Journal of Earth Sciences,107(2):112-130.
    Jin,S.D.,Wang,H.,Chen,S.,et al.,2013.Control of Anticline Crest Zone on Depositional System and Its Geological Significance for Petroleum in Changshaling,Yinger Sag,Eastern Jiuquan Basin.Journal of Earth Science,24(6):947-961.https://doi.org/10.1007/s12583-013-0388-0
    Johnson,C.M.,Winter,B.L.,1999.Provenance Analysis of Lower Paleozoic Cratonic Quartz Arenites of the North American Midcontinent Region:U-Pb and Sm-Nd Isotope Geochemistry.Geological Society of America Bulletin,111(11):1723-1738.https://doi.org/10.1130/0016-7606(1999)111<1723:paolpc>2.3.co;2
    Kneller,B.,2003.The Influence of Flow Parameters on Turbidite Slope Channel Architecture.Marine and Petroleum Geology,20(6-8):901-910.https://doi.org/10.1016/j.marpetgeo.2003.03.001
    Kolla,V.,Bourges,P.,Urru,J.M.,2001.Evolution of Deep-Water Tertiary Sinuous Channels Offshore Angola(West Africa)and Implications for Reservoir Architecture.AAPG Bulletin,85(8):1373-1405.https://doi.org/10.1306/8626cac3-173b-11d7-8645000102c1865d
    Kremer,K.,Hilbe,M.,Simpson,G.,et al.,2015.Reconstructing4000 years of Mass Movement and Tsunami History in a Deep Peri-Alpine Lake(Lake Geneva,France-Switzerland).Sedimentology,62(5):1305-1327.https://doi.org/10.1111/sed.12190
    Li,S.T.,Lin,C.S.,Xie,X.N.,et al.,1995.Approaches of Nonmarine Sequence Stratigraphy a Case Study on the Mesozoic Ordos Basin.Earth Science Frontiers,2(4):133-136(in Chinese with English abstract).
    Lin,C.S.,2006.Tectono-Stratigraphic Analysis of Sedimentary Basins:A Case Study on the Inland Tectonically Active Basins in China.Geoscience,20(2):185-194(in Chinese with English abstract).
    Lin,C.S.,Xia,Q.L.,Shi,H.S.,et al.,2015.Geomorphological E-volution,source to Sink System and Basin Analysis.Earth Science Frontiers,22(1):9-20(in Chinese with English abstract).
    Lin,C.S.,Yang,H.J.,Liu,J.Y.,et al.,2009.Paleostructural Geomorphology of the Paleozoic Central Uplift Belt and Its Constraint on the Development of Depositional Facies in the Tarim Basin.Science in China Earth Science,52(6):823-834.
    Liu,L.,Chen,H.D.,Zhong,Y.J.,et al.,2017.Sedimentological Characteristics and Depositional Processes of Sediment Gravity Flows in Rift Basins:The Palaeogene Dongying and Shahejie Formations,Bohai Bay Basin,China.Journal of A-sian Earth Sciences,147:60-78.https://doi.org/10.1016/j.jseaes.2017.07.021
    Liu,Z.F.,Zhao,Y.L.,Colin,C.,et al.,2016.Source-To-Sink Transport Processes of Fluvial Sediments in the South China Sea.Earth-Science Reviews,153:238-273.https://doi.org/10.1016/j.earscirev.2015.08.005
    Liu,Z.J.,2003.Lacus Subaqueous Fan Sedimentary Characteristics and Influence Factors-A Case Study of Shuangyang Formation in Moliqing Fault Subsidence of Yitong Basin.Acta Sedimentologica Sinica,21(1):148-154(in Chinese with English abstract).
    Lu,S.F.,Liu,W.,Wang,M.,et al.,2017.Lacustrine Shale Oil Resource Potential of Es L3 Sub-Member of Bonan Sag,Bohai Bay Basin,Eastern China.Journal of Earth Science,28(6):996-1005.https://doi.org/10.1007/s12583-016-0945-4
    Lü,L.,Jiao,Y.Q.,Wu,L.Q.,et al.,2012.Reconstruction of Provenance-Sedimentary System of the First Member of the Paleogene Shahejie Formation in the Qikou Sag,Bohai Bay Basin.Acta Sedimentologica Sinica,30(4):629-638(in Chinese with English abstract).
    Martínez,S.S.,Horra,R.D.L.,Arenas,R.,et al.,2012.U-Pb A-ges of Detrital Zircons from the Permo-Triassic Series of the Iberian Ranges:A Record of Variable Provenance during Rift Propagation.The Journal of Geology,120(2):135-154.https://doi.org/10.1086/663983
    Martinsen,O.J.,Smme,T.O.,Thurmond,J.B.,et al.,2010.Source-To-Sink Systems on Passive Margins:Theory and Practice with an Example from the Norwegian Continental Margin.Geological Society,London,Petroleum Geology Conference Series,7(1):913-920.https://doi.org/10.1144/0070913
    Mc Lennan,S.M.,Hemming,S.,Mc Daniel,D.K.,et al.,1993.Geochemical Approaches to Sedimentation,Provenance,and Tectonics.Geological Society of America Special Papers,25:21-40.https://doi.org/10.1130/spe284-p21
    Morton,A.,Hurst,A.,1995.Correlation of Sandstones Using Heavy Minerals:An Example from the Statfjord Formation of the Snorre Field,Northern North Sea.Geological Society,London,Special Publications,89(1):3-22.https://doi.org/10.1144/gsl.sp.1995.089.01.02
    Pang,X.,2012.Sequence Stratigraphy Configuration of Deepwater Gravity-Flow Sediments and its Controls:A Line of Thinking in Sequence Stratigraphy of Gravity-Flow Sediments in Baiyun Deepwater Area,the Northern South China Sea.China Offshore Oil and Gas,24(2):1-8(in Chinese with English abstract).
    Parsons,D.R.,Peakall,J.,Aksu,A.E.,et al.,2010.Gravity-Driven Flow in a Submarine Channel Bend:Direct Field Evidence of Helical Flow Reversal.Geology,38(12):1063-1066.https://doi.org/10.1130/g31121.1
    Posamentier,H.W.,2001.Lowstand Alluvial Bypass Systems:Incised vs.Unincised.AAPG Bulletin,85(10):1771-1793.
    Pu,X.G.,Wu,Y.P.,Zhou,J.S.,et al.,2007.Characteristics and Exploration Potential of Lithologic-Stratigraphic Hydrocarbon Reservoirs in Qikou Sag of Dagang Oilfield.Acta Petrolei Sinica,28(2):35-39(in Chinese with English abstract).
    Pu,X.G.,Zhou,L.H.,Han,W.Z.,et al.,2014.Gravity Flow Sedimentation and Tight Oil Exploration in Lower First Member of Shahejie Formation in Slope Area of Qikou Sag,Bohai Bay Basin.Petroleum Exploration and Development,41(2):138-149(in Chinese with English abstract).
    Qi,P.,Ren,J.Y.,Shi S.S.,et al.,2010.Features of the Cenozoic Structure of the Coastal Zone in Qikou Sag and Its Formation Mechanism.Acta Petrolei Sinica,31(6):900-905(in Chinese with English abstract).
    Reading,H.G.,1996.Sedimentary Environments:Processes,Facies,and Stratigraphy.Encyclopedia of Geology,688(5703):580-587.
    Richards,M.,Bowman,M.,1998.Submarine Fans and Related Depositional Systems Ii:Variability in Reservoir Architecture and Wireline Log Character.Marine and Petroleum Geology,15(8):821-839.https://doi.org/10.1016/s0264-8172(98)00042-7
    Robertson,A.I.,Alongi,D.M.,2013.Mangrove Sediments and Geomorphology.American Geophysical Union,Washington,DC.
    Sambridge,M.S.,Compston,W.,1994.Mixture Modeling of Multi-Component Data Sets with Application to Ion-Probe Zircon Ages.Earth and Planetary Science Letters,128(3-4):373-390.https://doi.org/10.1016/0012-821x(94)90157-0
    Sasaki,H.,Sasaki,Y.,Saito-Kato,M.,et al.,2016.Stratigraphic Variations in Lacustrine Sediment Gravity-Flow Deposits Intercalated in Varved Diatomite:An Example from the Hiruzenbara Formation,Okayama Prefecture,Southwest Japan.Quaternary International,397:208-222.https://doi.org/10.1016/j.quaint.2015.08.032
    Simonneau,A.,Chapron,E.,Vannière,B.,et al.,2013.MassMovement and Flood-Induced Deposits in Lake Ledro,Southern Alps,Italy:Implications for Holocene Palaeohydrology and Natural Hazards.Climate of the Past,9(2):825-840.https://doi.org/10.5194/cp-9-825-2013
    Smme,T.O.,Helland-Hansen,W.,Martinsen,O.J.,et al.,2009.Relationships between Morphological and Sedimentological Parameters in Source-To-Sink Systems:A Basis for Predicting Semi-Quantitative Characteristics in Subsurface Systems.Basin Research,21(4):361-387.https://doi.org/10.1111/j.1365-2117.2009.00397.x
    Smme,T.O.,Jackson,C.A.L.,Vaksdal,M.,2013.Source-ToSink Analysis of Ancient Sedimentary Systems Using a Subsurface Case Study from the Mre-Trndelag Area of Southern Norway:Part 1-Depositional Setting and Fan Evolution.Basin Research,25(5):489-511.https://doi.org/10.1111/bre.12013
    Sun,Y.,Chen,C.,Ma,S.Z.,et al.,2012.Hydrocarbon Accumulation Characteristics and Its Main Controlling Factors in Lithologic Reservoirs Area:Example of Fuyu Oil Layer in the Southern Fuxin Uplift of Songliao Basin.Advanced Materials Research,524-527:134-139.https://doi.org/10.4028/www.scientific.net/amr
    Taylor,S.R,Mclennan,S.M,1985.Greywackes:The Continental Crust:Its Composition and Evolution.Blackwell Scientific Publication,Oxford.
    Tong,X.G.,Niu,J.Y.,1989.Effects of Regional Cap Formation on Oil and Gas Accumulation.Petroleum Exploration and Development,16(4):1-8(in Chinese with English abstract).
    Wang,G.,2003.Formation and Evolution of the Cenozoic Tectonics within and Surrounding the Qikou Sag.Scientia Geologica Sinyangca,38(2):230-240.
    Wang,H.,Bai,Y.F.,Huang,C.Y.,et al.,2009.Reconstruction and Application of the Paleogene Provenance System of the Dongying Formation in Qikou Depression.Earth Science,34(3):448-456(in Chinese with English abstract).
    Wang,H.,Chen,S.,Gan,H.J.,et al.,2015.Accumulation Mechanism of Large Shallow Marine Turbidite Deposits:A Case Study of Gravity Flow Deposits of the Huangliu Formation in Yinggehai Basin.Earth Science Frontiers,22(1):21-34(in Chinese with English abstract).
    Wang,H.,Chen,S.,Huang,C.Y.,et al.,2017.Architecture of Sandstone Bodies of Paleogene Shahejie Formation in Northern Qikou Sag,Northeast China.Journal of Earth Science,28(6):1078-1085.https://doi.org/10.1007/s12583-016-0937-4
    Wang,H.,Liao,Y.T.,Lu,Y.C.,et al.,2010.Sequence Architecture Styles of Cenozoic Continental Rift Basins in East China.Journal of Central South University(Science and Technology),41(1):277-285(in Chinese with English abstract).
    Wang,J.H.,Wang,H.,Zhao,Z.X.,et al.,2003.Sequence Stratigraphy in Paleogeomorphy Analysis:An Example from Tahe Oilfield.Earth Science,28(4):425-430(in Chinese with English abstract).https://doi.org/10.3321/j.issn:1000-2383.2003.04.011
    Wang,M.F.,Jiao,Y.Q.,Ren,J.Y.,et al.,2006.Method and Thinking of Palaeogeomorphologic Reconstruction in Sedimentary Basin-Example from Depositional Stage of Xishanyao Formation in Junggar Basin.Xinjiang Geology,24(3):326-330(in Chinese with English abstract).
    Wang,W.F.,Lu,S.K.,Jin,Q.,1999.Geodynamics of Sedimentary Basins in Eastern China.Journal of the University of Petroleum,China,23(4):1-5(in Chinese with English abstract).
    Wang,Y.S.,Liang,C.,Sun,X.N.,2017.Shale Oil Reservoir Characteristics and Enrichment in the Jiyang Depression,Bohai Bay Basin,East China.Journal of Earth Science,28(6):977-986.https://doi.org/10.1007/s12583-016-0940-9
    Weimer,P.,Slatt,R.M.,2004.Petroleum Systems of Deepwater Settings.Geology,25(10):939.
    Wu,Y.Y.,Liu,Z.,Wang,W.H.,et al.,1996.Sequence Stratigraphy of Shahejie Formation in Qibei Sag.Acta Sedimentologica Sinica,14(1):167-175(in Chinese with English abstract).
    Xian,B.Z.,Wang,L.,Liu,J.P.,et al.,2016.Sedimentary Characteristics and Model of Delta-Fed Turbidites in Eocene Eastern Dongying Depression.Journal of China University of Petroleum(Edition of Natural Science),40(5):10-21(in Chinese with English abstract).
    Xie,J.M.,1995.Relations between Faulting and Petroleumgas Gathering in the Fault Basins.Journal of Xi'an Engineering University,17(3):48-55(in Chinese with English abstract).
    Xie,X.Y.,Mann,P.,2014.U-Pb Detrital Zircon Age Patterns of Cenozoic Clastic Sedimentary Rocks in Trinidad and Its Implications.Sedimentary Geology,307:7-16.https://doi.org/10.1016/j.sedgeo.2014.04.001
    Xu,C.G.,2013.Controlling Sand Principle of Source-Sink Coupling in Time and Space in Continental Rift Basins:Basic Idea,Conceptual Systems and Controlling Sand Models.China Offshore Oil and Gas,25(4):1-11(in Chinese with English abstract).
    Xu,S.M.,Zhai,S.K.,Li,S.Z.,et al.,2001.An Analysis on Sequence Stratigraphy and Sedimentary System of Early Neocene in Qikou Sag.Acta Sedimentologica Sinica,19(3):363-367(in Chinese with English abstract).
    Yang,C.Y.,Zhou,Z.L.,2000.Petroleum System and Petroleum Exploration in Qikou Sag.Petroleum Exploration in China,5(3):64-70(in Chinese with English abstract).
    Yun,J.B.,Luo,D.Q.,Li,Y.X.,1994.Tectonical Evolution and Petroleum Accumulation in the Rift Group in North-Eastern China.Petroleum Exploration and Development,21(6):40-45(in Chinese with English abstract).
    Zeng,H.L,2001.From Seismic Stratigraphy to Seismic Sedimentology:A Sensible Transition.AAPG Bulletin,85:413-420.https://doi.org/10.1306/8626d031-173b-11d7-8645000102c1865d
    Zeng,H.L.,Ambrose,W.A.,Villalta,E.,2001.Seismic Sedimentology and Regional Depositional Systems in Mioceno Norte,Lake Maracaibo,Venezuela.The Leading Edge,20(11):1260-1269.https://doi.org/10.1190/1.1487259
    Zhang,J.Y.,Covault,J.,Pyrcz,M.,et al.,2018.Quantifying Sediment Supply to Continental Margins:Application to the Paleogene Wilcox Group,Gulf of Mexico.AAPG Bulletin,102(9):1685-1702.https://doi.org/10.1306/01081817308
    Zhang,J.Y.,Steel,R.,Ambrose,W.,2016.Greenhouse Shoreline Migration:Wilcox Deltas.AAPG Bulletin,100(12):1803-1831.https://doi.org/10.1306/04151615190
    Zhang,Q.Q.,Cao,Y.C.,Liu,K.Y.,et al.,2017.Sedimentary Characteristics of Re-Transported Gravity Flow Deposits and Their Distribution:Influence of Deltaic Sedimentation in the Dongying Sag.Earth Science,42(11):2026-2038(in Chinese with English abstract).https://doi.org/10.3799/dqkx.2017.129
    Zhang,S.W.,2012.Thinking and Practice of Tertiary Oil and Gas Exploration of Maturing Region in Eastern China:A Case Study of Jiyang Depression.Acta Petrolei Sinica,33(S1):53-62(in Chinese with English abstract).
    Zhao,D.N.,Zhu,X.M.,Dong,Y.L.,et al.,2014.Application of Seismic Sedimentology to Prediction of Beach and Bar Sandbodies in Gentle Slope of Lacustrine Basin:A Case Study of the Lower Cretaceous in Chepaizi Area,Junggar Basin,NW China.Petroleum Exploration and Development,41(1):60-67.https://doi.org/10.1016/s1876-3804(14)60006-9
    Zhao,J.X.,Chen,H.D.,Shi,Z.Q.,2001.The Way and Implications of Rebuilding Palaeogeomorphology-Taking the Research of Palaeogeomorphology of the Ordos Basin before Jurassic Deposition as Example.Journal of Chengdu University of Technology,28(3):260-266(in Chinese with English abstract).
    Zhao,R.,Chen,S.,Wang,H.,et al.,2018.Paleogene Sedimentation Changes in Lenghu Area,Qaidam Basin in Response to the India-Eurasia Collision.International Journal of Earth Sciences,1-22.https://doi.org/10.1007/s00531-018-1640-8
    Zhao,W.Z.,Zhang,G.Y.,Wang,H.J.,et al.,2003.Basic Features of Petroleum Geology in the Superimposed Petroliferous Basins of China and Their Research Methodologies.Petroleum Exploration and Development,30(2):1-8(in Chinese with English abstract).
    Zhao,X.Z.,Pu,X.G.,Zhou,L.H.,et al.,2017a.Geologic Characteristics of Deep Water Deposits and Exploration Discoveries in Slope Zones of Fault Lake Basin:A Case Study of Paleogene Shahejie Formation in Banqiao-Qibei Slope,Qikou Sag,Bohai Bay Basin.Petroleum Exploration and Development,44(2):165-176(in Chinese with English abstract).
    Zhao,X.Z.,Pu,X.G.,Zhou,L.H.,et al.,2017b.Reconstruction of Paleogene Sedimentary System and Reservoir Evaluation in Qikou Sag,Bohai Bay Basin,China.Journal of Chengdu University of Technology(Science&Technology Edition),44(5):565-578(in Chinese with English abstract).
    Zhou,L.H.,Fu,L.X.,Lou,D.,et al.,2012.Structural Anatomy and Dynamics of Evolution of the Qikou Sag,Bohai Bay Basin:Implications for the Destruction of North China Craton.Journal of Asian Earth Sciences,47(1):94-106.https://doi.org/10.1016/j.jseaes.2011.06.004
    Zhou,L.H.,Lu,Y.,Xiao,D.Q.,et al.,2011.Basinal Texture Structure of Qikou Sag in Bohai Bay Basin and Its Evolution.Natural Gas Geoscience,22(3):373-382(in Chinese with English abstract).
    Zhu,H.T.,Yang,X.H.,Zhou,X.H.,et al.,2014.ThreeDimensional Facies Architecture Analysis Using Sequence Stratigraphy and Seismic Sedimentology:Example from the Paleogene Dongying Formation in the BZ3-1 Block of the Bozhong Sag,Bohai Bay Basin,China.Marine and Petroleum Geology,51(2):20-33.https://doi.org/10.1016/j.marpetgeo.2013.11.014
    Zhu,H.T.,Liu,K.Y.,Zhu,X.M.,et al.,2018.Varieties of Sequence Stratigraphic Configurations in Continental Basins.Earth Science,43(3):770-785(in Chinese with English abstract).https://doi.org/10.3799/dqkx.2018.906
    Zhu,H.T.,Xu,C.G.,Zhu,X.M.,et al.,2017.Advances of the Source-To-Sink Units and Coupling Model Research in Continental Basin.Earth Science,42(11):1851-1869(in Chinese with English abstract).https://doi.org/10.3799/dqkx.2017.117
    Zhu,X.M.,Dong,Y.L.,Guo,C.M.,et al.,2007.Sequence Framework and Reservoir Quality of Sha 1 Member in Shahejie Formation,Qikou Sag.Acta Sedimentologica Sinica,25(6):934-941(in Chinese with English abstract).
    Zhu,X.M.,Li,Y.,Dong,Y.L.,et al.,2013.The Program of Seismic Sedimentology and Its Application to Shahejie Formation in Qikou Depression of North China.Geology in China,40(1):152-162(in Chinese with English abstract).
    Zou,C.N.,Tao,S.Z.,Xue,S.H.,2005.Connotation of‘Facies Control Theory’and Its Significance for Exploration.Petroleum Exploration and Development,32(6):7-12(in Chinese with English abstract).
    操应长,周磊,张玉明,等,2011.松辽盆地十屋断陷十屋地区营城组物源体系探讨.沉积学报,29(6):1096-1104.
    陈树光,任建业,吴峰,等,2015.渤中坳陷沙北地区古地貌恢复及其应用.特种油气藏,22(2):52-55.
    陈莹,林畅松,余宏忠,等,2006.歧口凹陷古近纪同沉积断裂对层序和沉积体系的控制.地质力学学报,12(3):378-386.
    付广,刘江涛,2006.中国高效大中型气田形成的封盖保存条件.石油勘探与开发,33(6):662-666
    何书,杨桥,王家鼎,2008.黄骅坳陷中区断裂系统分形研究.大地构造与成矿学,32(4):455-461.
    和钟铧,刘招君,张峰,2001.重矿物在盆地分析中的应用研究进展.地质科技情报,20(4):29-32.
    黄传炎,王华,王家豪,等,2007.板桥凹陷断控重力流沉积特征及沉积模式.油气地质与采收率,14(6):14-16.
    黄传炎,王华,吴永平,等,2010.歧口凹陷第三系层序格架下的油气藏富集规律.吉林大学学报(地球科学版),40(5):986-995.
    黄传炎,王华,周立宏,等,2009.北塘凹陷古近系沙河街组三段物源体系分析.地球科学,34(6):975-984.
    贾承造,赵政璋,杜金虎,等,2008.中国石油重点勘探领域---地质认识、核心技术、勘探成效及勘探方向.石油勘探与开发,35(4):385-396.
    焦养泉,李珍,周海民,1998.沉积盆地物质来源综合研究.岩相古地理,5:16-20.
    李思田,林畅松,解习农,等,1995.大型陆相盆地层序地层学研究---以鄂尔多斯中生代盆地为例:地学前缘,2(4):133-136.
    林畅松,2006.沉积盆地的构造地层分析---以中国构造活动盆地研究为例.现代地质,20(2):185-194.
    林畅松,夏庆龙,施和生,等,2015.地貌演化、源-汇过程与盆地分析.地学前缘,22(1):9-20.
    刘招君,2003.湖泊水下扇沉积特征及影响因素---以伊通盆地莫里青断陷双阳组为例.沉积学报,21(1):148-154.
    吕琳,焦养泉,吴立群,等,2012.渤海湾盆地歧口凹陷古近系沙一段物源-沉积体系重建.沉积学报,30(4):629-638.
    庞雄,2012.深水重力流沉积的层序地层结构与控制因素---南海北部白云深水区重力流沉积层序地层学研究思路.中国海上油气,24(2):1-8.
    蒲秀刚,吴永平,周建生,等,2007.歧口凹陷岩性地层油气藏特征及勘探潜力.石油学报,28(2):35-39.
    蒲秀刚,周立宏,韩文中,等,2014.歧口凹陷沙一下亚段斜坡区重力流沉积与致密油勘探.石油勘探与开发,41(2):138-149.
    祁鹏,任建业,史双双,等,2010.歧口凹陷沿岸带新生代构造特征及其形成机制.石油学报,31(6):900-905.
    童晓光,牛嘉玉,1989.区域盖层在油气聚集中的作用.石油勘探与开发,16(4):1-8.
    王华,白云风,黄传炎,等,2009.歧口凹陷古近纪东营期古物源体系重建与应用.地球科学,34(3):448-456.
    王华,陈思,甘华军,等,2015.浅海背景下大型浊积扇研究进展及堆积机制探讨:以莺歌海盆地黄流组重力流为例.地学前缘22(1):21-34.
    王华,廖远涛,陆永潮,等,2010.中国东部新生代陆相断陷盆地层序的构成样式.中南大学学报(自然科学版),41(1):277-285.
    王家豪,王华,赵忠新,等,2003.层序地层学应用于古地貌分析---以塔河油田为例.地球科学,28(4):425-430.
    王敏芳,焦养泉,任建业,等,2006.沉积盆地中古地貌恢复的方法与思路---以准噶尔盆地西山窑组沉积期为例.新疆地质,24(3):326-330.
    王伟锋,陆诗阔,金强,1999.中国大陆东部盆地构造动力学分析.中国石油大学学报(自然科学版),23(4):1-5.
    吴元燕,刘震,王伟华,等,1996.歧口凹陷滨海地区沙河街组深层碎屑岩储层特征及主控因素.沉积学报,14(1):167-175.
    鲜本忠,王璐,刘建平,等,2016.东营凹陷东部始新世三角洲供给型重力流沉积特征与模式.中国石油大学学报:自然科学版,40(5):10-21.
    解建民,1995.断陷盆地中断裂作用与油气的关系.西安工程学院学报,17(3):48-55.
    徐长贵,2013.陆相断陷盆地源-汇时空耦合控砂原理:基本思想、概念体系及控砂模式.中国海上油气,25(4):1-11.
    许淑梅,翟世奎,李三忠,等,2001.歧口凹陷滩海区下第三系层序地层分析及沉积体系研究.沉积学报,19(3):363-367.
    杨池银,周宗良,2000.歧口凹陷含油气系统与油气勘探.中国石油勘探,5(3):64-70.
    云金表,罗笃清,李玉喜,1994.东北地区中生代断陷盆地群构造演化与成油关系探讨.石油勘探与开发,21(6):40-45.
    张青青,操应长,刘可禹,等,2017.东营凹陷滑塌型重力流沉积分布特征及三角洲沉积对其影响.地球科学,42(11):2026-2038.https://doi.org/10.3799/dqkx.2017.129
    张善文,2012.中国东部老区第三系油气勘探思考与实践---以济阳坳陷为例.石油学报,33(s1):53-62.
    赵俊兴,陈洪德,时志强,2001.古地貌恢复技术方法及其研究意义---以鄂尔多斯盆地侏罗纪沉积前古地貌研究为例.成都理工学院学报,28(3):260-266.
    赵文智,张光亚,王红军,等,2003.中国叠合含油气盆地石油地质基本特征与研究方法.石油勘探与开发,30(2):1-8.
    赵贤正,蒲秀刚,周立宏,等,2017a.断陷湖盆深水沉积地质特征与斜坡区勘探发现---以渤海湾盆地歧口凹陷板桥-歧北斜坡区沙河街组为例.石油勘探与开发,44(2):165-176.
    赵贤正,蒲秀刚,周立宏,等,2017b.渤海湾盆地歧口凹陷古近系沉积体系重建与储集层评价.成都理工大学学报(自科版),44(5):565-578.
    周立宏,卢异,肖敦清,等,2011.渤海湾盆地歧口凹陷盆地结构构造及演化.天然气地球科学,22(3):373-382.
    朱红涛,刘可禹,朱筱敏,等,2018.陆相盆地层序构型多元化体系.地球科学,43(3):770-785.https://doi.org/10.3799/dqkx.2018.906
    朱红涛,徐长贵,朱筱敏,等,2017.陆相盆地源-汇系统要素耦合研究进展.地球科学,42(11):1851-1869.https://doi.org/10.3799/dqkx.2017.117
    朱筱敏,董艳蕾,郭长敏,等,2007.歧口凹陷沙河街组一段层序格架和储层质量分析.沉积学报,25(6):934-941.
    朱筱敏,李洋,董艳蕾,等,2013.地震沉积学研究方法和歧口凹陷沙河街组沙一段实例分析.中国地质,40(1):152-162.
    邹才能,陶士振,薛叔浩,2005.“相控论”的内涵及其勘探意义.石油勘探与开发,32(6):7-12.

© 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