Characterization and Controlling Factors of Sandstone Reservoirs in Basalt Development Areas: An Example from Comparison between BZ34-9 and KL6 Areas in South of Bohai Sea
-
摘要: 渤海南部BZ34-9区与KL6区块位于莱北低凸起南北两侧,均发育新生代玄武岩并得到钻井证实,但储层特征差异明显.以三维地震、薄片、SEM以及X衍射等技术手段对两个区块玄武岩时空展布,沉积体系以及储层特征进行对比.研究表明,BZ34-9区构造位于缓坡带,供源速率中等.渐新世玄武岩为沉积期及准同生期喷发且位于砂体主体部位,优质层段形成白云石包壳、沸石胶结溶蚀、混层粘土包膜等成岩响应,整体对储层发育发挥积极作用;KL6区构造近物源,供源强烈,渐新世玄武岩发育在凹陷内部,对砂体影响有限,储层以高岭石及碳酸盐胶结充填为特征,在成岩期受郯庐断裂带岩浆热液影响,绢云母、菱铁矿重结晶等现象普遍.对比分析表明玄武岩对储层的影响受控于火山喷发时机、物源供给速率、砂体及火山岩配置关系等因素.Abstract: BZ34-9 area and KL6 area are located in the north and south of Laibei low uplift, respectively in south of Bohai Sea. The characteristics of the sandstone reservoirs in the two areas are of great differences in spite of the similar background of Cenozoic basalt development which has been proven by drilling. The contrastive studies on structural background, temporal-spacial distribution of basalt, sedimentary system and reservoir development have been taken combined with the analytical methods of 3-D seismic data, well log, casting thin section observation, SEM, BSE and X-ray diffraction. For the BZ34-9 area, braided river deltas were deposited on a gentle slope at low depositional rates. Syndepositional basalt flows occur in the upper and lower parts of the sand body and high-quality sandstone reservoirs are characterized by dolomite coats, zeolite cementation and dissolution, and mixed-layer clay coats, which collectively had a positive impact on the reservoir quality.By contrast, the KL6 area was situated on a steep slope and fan delta deposition occurred at a high rate. The Neogene basalt focused on the middle of the basin and had limited influence on the sandstone reservoirs which is characterized by abundant kaolinite and carbonate cementation. The Oligocene strata of KL6 area which situated near Tan-Lu fault zone has been greatly influenced by the Neogene basalt activities during the diagenesis stages. The magma and hydrothermal activity caused recrystallization of siderite, sericitization and prevailing precipitation of ferrodolomite. The basalt influence on the sandstone reservoirs are controlled by the time of eruption, source supply and the configuration of sandbody and basalt.
-
Key words:
- basalt /
- sandstone reservoir /
- reservoir characteristics /
- BZ34-9 area /
- KL6 area /
- stratigraphy /
- petroleum geology
-
图 4 BZ34-9区火山岩三维时空展布
a为BZ34-9区溢流相与火山通道相火山岩三维显示 (粉红色为沙一二段溢流相火山岩,黄色为沙一二段火山通道;红色为东一二段溢流相火山岩,绿色为东一二段火山通道);b、c分别为沙一二段、东一二段火山岩俯视图;d、e分别为沙一二段、东一二段火山岩侧视图 (b~e中红色为溢流相,绿色为火山通道);f.过井地震剖面,蓝色阴影为溢流相,红色阴影为火山通道;据朱红涛等 (2014)
Fig. 4. Spatial and temporal distribution of volcanic eruption phases in the BZ34-9 area
图 9 BZ34-9区与KL6区沙一二段储层成岩特征
a.碎屑颗粒表面白云石包壳 (dol),BZ34-A,3 037 m,沙一段,扫描电镜照片;b.碎屑颗粒表面菱形体白云石晶体,A视域局部放大,扫描电镜照片;c.颗粒表面及粒间孔 (IP) 内栉壳状白云石及晶间孔,BZ34-A,3 084 m,沙二段,电子背散射照片;d.多期碳酸盐胶结充填,早期方解石胶结 (红色),晚期铁白云石充填 (蓝色),KL6-B,2 568 m,沙二段,单偏光;e.铁白云石充填交代石英颗粒,KL6-B,2 535 m,沙一段,单偏光;f.鳞片状高岭石等基质充填,压实,KL6-A,3 073 m,沙二段,正交光
Fig. 9. The features and diagenesis of reservoirs from Es1+2, BZ34-9 and KL6 areas
图 10 BZ34-9区与KL6区东三段控制性成岩作用
a.沸石充填粒间孔 (Z) 并次生溶蚀,BZ34-A,2 944 m,Ed3,单偏光;b.石英溶蚀呈现港湾状,BZ34-A,2 944 m,东三段,单偏光;c.混层粘土包膜,抑制石英加大,BZ34-A,2 944 m,Ed3,扫描电镜照片;d.方解石胶结 (Cal) 及钠长石化 (红色箭头),BZ34-A,2 944 m,东三段,电子背散射照片;e.菱铁矿 (S) 致密胶结交代颗粒,KL6-D,2 928.68 m,东三段,正交光;f.方解石 (红)+菱铁矿 (S) 铁白云石 (Ank) 胶结,KL6-D,3 096.61 m,东三段,单偏光;g.高岭石 (K) 致密胶结及铁白云石充填孔隙 (Ank),KL6-D,3 035 m,东三段,电子背散射照片;h.岩屑沿变质岩颗粒缝合线 (红色箭头) 溶蚀,KL6-D,2 928 m,东三段,电子背散射照片
Fig. 10. The features and diagenesis of reservoirs from Ed3, BZ34-9 and KL6 areas
图 11 BZ34-9区与KL6区东三段控制性成岩作用
a.沸石胶结 (Z) 全貌,BZ34-A,2 280 m,东二段,单偏光;b.粒间见沸石 (Z) 溶蚀,点状分布,蓝色铸体,BZ34-A,2 265 m,东二段,单偏光;c.多期沸石充填,伴生绿泥石环边 (C),BZ34-A,2 351 m,东二段,单偏光;d.储层分选差,大小混杂,压实强度大,KL6-D,2 389 m,东二段,电子背散射照片;e.长石钠长石化与溶蚀,KL6-D,2 389 m东二段,电子背散射照片;f.高岭石胶结与充填 (K),KL6-D,2 389 m,东二段,电子背散射照片
Fig. 11. The features and diagenesis of reservoirs from Ed1+2, BZ34-9 and KL6 areas
图 12 KL6区热液作用矿物特征
a.KL6-A井2 543.00 m,长石绢云母化,正交光;b.KL6-A井2 492.50 m,长石绢云母化,正交光;c.KL6-B井,2 600.00 m,长石绢云母化,正交光;d.KL6-D井,2 925.98 m,块状菱铁矿 (黑色块状),单偏光;e.KL6-D井,2 926.78 m,菱铁矿铁白云石化,单偏光;f.KL6-D,3 098.55 m,菱形体菱铁矿,扫描电镜照片
Fig. 12. The reservoir characteristics of KL6 area influenced by hydrothermal activities
-
[1] Cai, X.Y., Liu, C.H., 2005.Main Factors for Controlling Formation of Oil-Gas Reservoir in Central Part of Junggar Basin.Acta Petrolei Sinica, 26(5):1-4 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SYXB200505000.htm [2] Chen, Z.Y., Yan, H., Li, J.S., et al., 1999.Relationship between Tertiary Volcanic Rocks and Hydrocarbons in the Liaohe Basin, People's Republic of China.AAPG Bulletin, 83(6):1004-1014.doi: 10.1306/E4FD2E51-1732-11D7-8645000102C1865D [3] Chipera, S.J., Goff, F., Goff, C.J., et al., 2008.Zeolitization of Intracaldera Sediments and Rhyolitic Rocks in the 1.25 Ma Lake of Valles Caldera, New Mexico, USA.Journal of Volcanology and Geothermal Research, 178(2):317-330.doi: 10.1016/j.jvolgeores.2008.06.032 [4] Fjeldskaar, W., Helset, H.M., Johansen, H., et al., 2008.Thermal Modelling of Magmatic Intrusions in the CjallarRidage, Norwegian Sea:Implication for Vitrinite Reflectance and Hydrocarbon Maturation.Basin Research, 20(1):143-159.doi: 10.1111/j.1365-2117.2007.00347.x [5] Fu, G.M., Dong, M.C., Zhang, Z.S., et al., 2010.Formation Process and Distribution of Laumontite in Yangchang 3 Reservoir of Fuxian Exploration Area in North Shanxi Province and the Controls of the High Quality Reservoirs.Earch Science, 35(1):107-114 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-DQKX201001014.htm [6] Gao, Y.Q., Liu, L., 2003.Brief Introduction of Effect of Magma Intrusion Activity on Sandstone.Geological Science and Technology Information, 22(2):13-16 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DZKQ200302003.htm [7] Guo, T., Yang, B., Chen, L., et al., 2016.3D Fine Description of Magmatic Rocks:the Discovery of BZ34-9 Oilfield in The Southern Slope of Huanghekou Sag.China Offshore Oil and Gas, 28(2):71-77 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-ZHSD201602008.htm [8] Han, S.H., Yu, H.Z., Si, C.S., et al., 2007.Corrosion of Analcite in Reservoir of Junggar Basin.Acta Petrolei Sinica, 28(3):51-54 (in Chinese with English abstract). https://www.researchgate.net/publication/287894397_Corrosion_of_analcite_in_reservoir_of_Junggar_Basin [9] Hay, R.L., 1966.Zeolites and Zeolites Reactions in Sedimentary Rocks.Geological Society of America, INC, 85:1-122.doi: 10.1130/SPE85-p1 [10] Iijima, A., 2001.Zeolites in Petroleum and Natural Gas Reservoirs.Reviews in Mineralogy and Geochemistry, 45(1):347-402. https://www.researchgate.net/publication/279146204_Zeolites_in_petroleum_and_natural_gas_reservoirs [11] Jin, Q., Xiong, S.S., Lu, P.D., 1998.Volcanic Activity in Major Source Rocks in Faulted Basins of China and Its Significance.Geological Review, 44(2):136-142 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DZLP199802004.htm [12] Li, H.M., Chen, H.H., Zhao, Y.J., 2009.The Hydrocarbon Charging Events and Ages in the Volcanic Reservoir of Santanghu Basin.Earth Science, 34(5):785-791 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQKX200905011.htm [13] Liu, C.Z., Yu, H.S., Lü, Y.F, .et al., 2012.Volcanic Oil and Gas Reservoir Characteristics and Formation Mechanism in Kalagang Formation of Malang Sag in Santanghu Basin.Earth Science, 37(S1):134-142 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQKX2012S1015.htm [14] Liu, L., Yu, J.M., Sun, X.M., et al., 2000.Basic Characteristics of Thermal Convection Diagenesis and Its Research Significance.Advances in Earth Science, 15(5):485-490 (in Chinese with English abstract). http://www.adearth.ac.cn/EN/abstract/abstract9301.shtml [15] Liu, L.Y., 1997.Study on Diagenesis of the Middle and Upper Jurassic Reservoir in Turpan Depression.Experimental Petroleum Geology, 19(2):173-178 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SYSD199702012.htm [16] Liu, M., Chen, Z.M., Chin, Q.Y., 1997.The Role of Organic Matter in the Genesis of Siderite from the Xuanlong Area.Acta Sedimentologica Sinica, 15(3):96-102 (in Chinese with English abstract). https://www.researchgate.net/publication/225626265_The_role_of_organic_matter_in_the_formation_of_siderite_from_Xuanlong_Area_Hebei_Province [17] Liu, X.S., Zhou, S.Z., 1985.On the Occurrence of Middle Ordovician Volcanics and Analysis of Ore-Forming Mechanism of Siderite Poly-Metallic Ore Deposit from Dabaoshan, Qujiang County, Guandong Province.Journal of Nanjing University (Natural Sciences), 21(2):348-361 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-NJDZ198502015.htm [18] Liu, Z.Y., Xiao, S.B., Jiang, Z.X., 2001.Volcanic Rocks of Bohai Bay Basin in Tertiary and Their Genesis.Journal of the University of Petroleum, China, 25(1):22-26 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-SYDX200101007.htm [19] Lu, W.Z., Zhu, G.H., Li, D.C., et al., 2004.Discovery of Sloanite Sandstone Reservoir of Jurassic XiaximiaoFormation in Central Sichuan Region and Its Signi cance.China Petroleum Exploration, 9(5):53-58 (in Chinese with English abstract). [20] Maineri, C., Benvenuti, M., Costagliola, P., et al., 2003.Sericitic Alteration at the La Crocetta Deposit (Elba Island, Italy):Interplay between Magmatism, Tectonics and Hydrothermal Activity.Mineralium Deposita, 38(1):67-86.doi: 10.1007/s00126-002-0279-2 [21] Niu, C.M., 2012.Tectonic Evolution and Hydrocarbon Accumulation of Laizhouwan Depression in Southern Bohai Sea.Oil & Gas Geology, 33(3):424-431 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SYYT201203014.htm [22] Othman, R., Arouri, K.R., Ward, C.R., 2001.Oil Generation by Igneous Intrusions in the Northern Gunnedah Basin, Australia.Organic Geochemistry, 32(10):1219-1232.doi: 10.1016/S0146-6380(01)00089-4 [23] Petford, N., McCaffrey, K., 2003.Hydrocarbons in Crystalline Rocks:An Introduction.Geological Society, London, Special Publications, 214(1):1-5.doi: 10.1144/GSL.SP.2003.214.01.01 [24] Paxton, S.T., Szabo, J.O., Ajdukiewicz, J.M., et al., 2002.Construction of an Intergranular Volume Compaction Curve for Evaluating and Predicting Compaction and Porosity Loss in Rigid-Grain Sandstone Reservoirs.AAPG Bulletin, 86(12):2047-2067.doi: 10.1306/61EEDDFA-173E-11D7-8645000102C1865D [25] Robinson, N., Parnell, J., Brassell, S., 1989.Hydrocarbon Compositions of Bitumens from Mineralized Devonian Lavas and Carboniferous Sedimentary Rocks, Central Scotland.Marine and Petroleum Geology, 6(4):316-323 doi: 10.1016/0264-8172(89)90028-7 [26] Schutter, S.R., 2003.Occurrences of Hydrocarbons in and around Igneous Rocks.Geological Society, London, Special Publications, 214(1):35-68.doi: 10.1144/GSL.SP.2003.214.01.03 [27] Sruoga, P., Rubinstein, N., 2007.Processes Controlling Porosity and Permeability in Volcanic Reservoirs from the Austral and Neuquen Basins, Argentina.AAPG Bulletin, 91:115-129.doi: 10.1306/08290605173 [28] Sun, H.F., Zhang, L., Huang, C.C., et al., 2012.Characteristics of Fault System and Its Control on Hydrocarbon Accumulation in South of Bohai Sea.Petroleum Geology, 17(4):29-35 (in Chinese with English abstract). https://www.researchgate.net/publication/289638358_Characteristics_of_fault_structure_and_its_control_to_hydrocarbon_in_Bozhong_Depression [29] Thorpe, A.N., Senftle, F.E., Finkelman, R.B., et al., 1998.Change in the Magnetic Properties of Bituminous Coal Intruded by an Igneous Dike, Dutch Creek Mine, Pitkin County, Colorado.International Journal of Coal Geology, 36(3):243-258.doi: 10.1016/S0166-5162(98)00006-8 [30] Wang, L., Li, J.H., Shi, Y.M., et al., 2015.Review and Prospect of Global Volcanic Reservoirs.Geology in China, 42(5):1610-1620 (in Chinese with English abstract). https://www.researchgate.net/publication/287521428_Review_and_prospect_of_global_volcanic_reservoirs [31] Wang, M., Lu, S.F., Xue, H.T., et al., 2010.The Effects of Magmatic Intrusions on the Mattration of Organic Matter and Its Numerical Simulation.Acta Petrologica Sinica, 26(1):177-184 (in Chinese with English abstract). https://www.researchgate.net/publication/279669806_The_effects_of_magmatic_intrusions_on_the_maturation_of_organic_matter_and_its_numerical_simualtion [32] Xiao, W.Y., Wang, L.S., Li, H., et al., 2001.Geotemperature Field in Bohai Sea.China Offshore Oil and Gas (Geology), 15(2):105-110 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-ZHSD200102004.htm [33] Xue, Y.A., Yang, H.F., Xu, C.G., 2016.Differential Reservoir-Controlling Effect and Hydrocarbon Enrichment of Slope Zone in Huanghekou Sag, Bohai Bay Basin.China Petroleum Exploration, 21(4):65-74 (in Chinese with English abstract). [34] Yang, X.P., Zhang, B.M., Lei, Z.Y., et al., 2006.Formation and Distribution of Laumonitide Cement in Petroliferous Basin and Its Significance for Oil-Gas Exploration.China Petroleum Exploration, 11(2):33-38 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-KTSY200602006.htm [35] Zhao, G.X., Liu, L., Qu, X.Y., et al., 2010.Geological Genesis and Significance of the Sericite in Sandstone:A Case Study from the Well-Wu19, Wuerxun Depression of Hailar Basin.Jilin Geology, 29(1):12-17 (in Chinese with English abstract). [36] Zhang, K., Zhu, X.K., 2013.Basic Geological Characteristics of the Siderite-Rich Strata in the Xiamaling Formation, Jixian County.Acta Petrologica et Mineralogica, 32(4):529-537 (in Chinese with English abstract). https://www.researchgate.net/publication/276267241_Basic_Geological_characteristics_of_the_siderite-rich_strata_in_the_Xiamaling_Formation_Jixian_County [37] Zhou, Q.H., Feng, Z.H., Men, G.T., 2007.The Relationship between Present Ground Temperature and Generation of Gas in Xujia-Weizi Rift in Songliao Basin.Science in China (Series D), 37(A02):177-188 (in Chinese). [38] Zhu, H.T., Liu, Y.M., Wang, Y.L., et al., 2014.Volcanic Eruption Phases and 3-D Characterization of Volcanic Rocks in BZ34-9 Block of Huanghekou Sag, Bohai Bay Basin.Earch Science, 39 (9):1309-1316 (in Chinese with English abstract). https://www.researchgate.net/publication/287306438_Volcanic_eruption_phases_and_3-D_characterization_of_volcanic_rocks_in_BZ34-9_block_of_Huanghekou_Sag_Bohai_Bay_Basin [39] Zhu, G.H., 1985.Formation of Lomonitic Sand Bodies with Secondary Porosity and Their Relationship with Hydrocarbons.Acta Petrolei Sinica, 6:1-8 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SYXB198501000.htm [40] Zhu, S.F., Zhu, X.M., Wang, X.L., et al., 2011.Zeolite Diagenesis and Its Control on Petroleum Reservoir Quality of Permian in Northwestern Margin of Junggar Basin, China.Science in China (Series D), 41(11):1602-1612 (in Chinese). http://mall.cnki.net/magazine/Article/JDXG201203005.htm [41] Zhu, X.K., Zhang, K., Zhang, F.F., et al., 2013.Discovery of Siderite Concretes in MesoproterozoicXiamaling Formation, Jixian Section.Geological Review, 59(5):816-822 (in Chinese with English abstract). https://www.researchgate.net/publication/270885087_Discovery_of_Siderite_Concretes_in_Mesoproterozoic_Xiamaling_Formation_Jixian_Section [42] Zong, T., Zhai, S.K., Yu, Z.H., 2016.Regional Differences of Magmatism in Okinawa Trough.Earth Science, 41(6):1031-1040 (in Chinese with English abstract). https://www.researchgate.net/publication/305417408_Regional_differences_of_magmatism_in_the_Okinawa_trough [43] Zou, C.N., Zhao, W.Z., Jia, C.Z., et al., 2008.Formation and Distribution of Volcanic Hydrocarbon Reservoirs in Sedimentary Basins of China.Petroleum Exploration and Development, 35(3):257-271 (in Chinese with English abstract). doi: 10.1016/S1876-3804(08)60071-3 [44] 蔡希源, 刘传虎, 2005.准噶尔盆地腹部地区油气成藏的主控因素.石油学报, 26(5): 1-4. doi: 10.7623/syxb200505001 [45] 付国民, 董满仓, 张志升, 等, 2010.浊沸石形成与分布及其对优质储层的控制作用:以陕北富县探区延长组长3油层为例.地球科学, 35(1): 107-114. http://www.earth-science.net/WebPage/Article.aspx?id=1934 [46] 高玉巧, 刘立, 2003.岩浆侵入活动对砂岩的改造作用研究简介.地质科技情报, 22(2): 13-16. http://www.cnki.com.cn/Article/CJFDTOTAL-DZKQ200302003.htm [47] 郭涛, 杨波, 陈磊, 等, 2016.岩浆岩三维精细刻画——黄河口凹陷南斜坡BZ34-9油田的发现.中国海上油气, 28(2): 71-77. http://www.cnki.com.cn/Article/CJFDTOTAL-ZHSD201602008.htm [48] 韩守华, 余和中, 斯春松, 等, 2007.准噶尔盆地储层中方沸石的溶蚀作用.石油学报, 28(3): 51-54. doi: 10.7623/syxb200703010 [49] 金强, 熊寿生, 卢培德, 1998.中国断陷盆地主要生油岩中的火山活动及其意义.地质论评, 44(2): 136-142. http://www.cnki.com.cn/Article/CJFDTOTAL-DZLP199802004.htm [50] 李华明, 陈红汉, 赵艳军, 2009.三塘湖盆地火山岩油气藏油气充注幕次及成藏年龄确定.地球科学, 34(5): 785-791. http://www.earth-science.net/WebPage/Article.aspx?id=1889 [51] 柳成志, 于海山, 吕延防, 等, 2012.三塘湖盆地马朗凹陷卡拉岗组火山岩油气储层特征及其形成机理.地球科学, (37S): 134-142. http://www.cnki.com.cn/Article/CJFDTOTAL-DQKX2012S1015.htm [52] 刘立, 于均民, 孙晓明, 等, 2000.热对流成岩作用的基本特征与研究意义.地球科学进展, 15(5): 485-490. http://www.cnki.com.cn/Article/CJFDTOTAL-DXJZ200005016.htm [53] 刘林玉, 1997.吐鲁番拗陷中上侏罗统储集层成岩作用研究.石油实验地质, 19(2): 173-178. doi: 10.11781/sysydz199702173 [54] 刘敏, 陈志明, 陈其英, 1997.有机质在宣龙地区菱铁矿形成中的作用.沉积学报, 15(3): 96-102. http://www.cnki.com.cn/Article/CJFDTOTAL-CJXB703.017.htm [55] 刘孝善, 周顺之, 1985.广东大宝山中泥盆世火山岩与层状菱铁矿、多金属矿床成矿机制分析.南京大学学报, 21(2): 348-361. http://www.cnki.com.cn/Article/CJFDTOTAL-NJDZ198502015.htm [56] 刘中云, 肖尚斌, 姜在兴, 2001.渤海湾盆地第三系火山岩及其成因.石油大学学报:自然科学版, 25(1): 22-26. http://www.cnki.com.cn/Article/CJFDTOTAL-SYDX200101007.htm [57] 卢文忠, 朱国华, 李大成, 等, 2004.川中地区侏罗系下沙溪庙组浊沸石砂岩储层的发现及意义.中国石油勘探, 9(5): 53-58. http://www.cnki.com.cn/Article/CJFDTOTAL-KTSY200405009.htm [58] 牛成民, 2012.渤海南部海域莱州湾凹陷构造演化与油气成藏.石油与天然气地质, 33(3): 424-431. doi: 10.11743/ogg20120312 [59] 孙和风, 张蕾, 黄传超, 等, 2012.渤海南部断裂系统特征及其对油气成藏的控制.中国石油勘探, 17(4): 29-35. http://www.cnki.com.cn/Article/CJFDTOTAL-KTSY201204006.htm [60] 王洛, 李江海, 师永民, 等, 2015.全球火山岩油气藏研究的历程与展望.中国地质, 42(5): 1610-1620. http://www.cnki.com.cn/Article/CJFDTOTAL-DIZI201505028.htm [61] 王民, 卢双舫, 薛海涛, 等, 2010.岩浆侵入体对有机质生烃 (成熟) 作用的影响及数值模拟.岩石学报, 26(1): 177-184. http://www.cnki.com.cn/Article/CJFDTOTAL-YSXB201001022.htm [62] 肖卫勇, 王良书, 李华, 等, 2001.渤海盆地地温场研究.中国海上油气 (地质), 15(2): 105-110. http://www.cnki.com.cn/Article/CJFDTOTAL-ZHSD200102004.htm [63] 薛永安, 杨海风, 徐长贵, 2016.渤海海域黄河口凹陷斜坡带差异控藏作用及油气富集规律.中国石油勘探, 21(4): 65-74. http://www.cnki.com.cn/Article/CJFDTOTAL-KTSY201604008.htm [64] 杨晓萍, 张宝民, 雷振宇, 等, 2006.含油气盆地中浊沸石的形成与分布及其对油气勘探的意义.中国石油勘探, 11(2): 33-38. http://www.cnki.com.cn/Article/CJFDTOTAL-KTSY200602006.htm [65] 赵国祥, 刘立, 曲希玉, 等, 2010.砂岩中自生绢云母的成因及意义——以海拉尔盆地乌尔逊凹陷乌19井为例.吉林地质, 29(1): 12-17. http://www.cnki.com.cn/Article/CJFDTOTAL-JLDZ201001005.htm [66] 张衎, 朱祥坤, 2013.蓟县下马岭组富菱铁矿地层的基本地质特征.岩石矿物学杂志, 32(4): 529-537. http://www.cnki.com.cn/Article/CJFDTOTAL-YSKW201304011.htm [67] 周庆华, 冯子辉, 门广田, 2007.松辽盆地北部徐家围子断陷现今地温特征及其与天然气生成关系研究.中国科学 (D辑), 37(A02): 177-188. http://cdmd.cnki.com.cn/Article/CDMD-10220-2002073204.htm [68] 朱红涛, 刘依梦, 王永利, 等, 2014.渤海湾盆地黄河口凹陷BZ34-9区带火山岩三维刻画及火山喷发期次.地球科学, 39(9): 1309-1316. http://www.earth-science.net/WebPage/Article.aspx?id=2944 [69] 朱国华, 1985.陕北浊沸石次生孔隙砂体的形成与油气关系.石油学报, 6: 1-8. doi: 10.7623/syxb198501001 [70] 朱世发, 朱筱敏, 王绪龙, 等, 2011.准噶尔盆地西北缘二叠系沸石矿物成岩作用及对油气的意义.中国科学:地球科学, 41(11): 1602-1612. http://www.cnki.com.cn/Article/CJFDTOTAL-JDXK201111006.htm [71] 朱祥坤, 张衎, 张飞飞, 等, 2013.蓟县中元古界下马岭组中菱铁矿的发现及其意义.地质评论, 59(5): 816-822. http://www.cnki.com.cn/Article/CJFDTOTAL-DZLP201305002.htm [72] 宗统, 翟世奎, 于增慧, 2016.冲绳海槽岩浆作用的区域性差异.地球科学, 41(6): 1031-1040. http://www.earth-science.net/WebPage/Article.aspx?id=3314 [73] 邹才能, 赵文智, 贾承造, 等, 2008.中国沉积盆地火成岩油气藏形成与分布.石油勘探与开发, 35(3): 257-271. http://www.cnki.com.cn/Article/CJFDTOTAL-SKYK200803002.htm