三门峡盆地地质矿产勘查历程和油气发现启示

张交东, 周新桂, 杨超, 刘晖, 包书景, 鲁增锋, 张敬凯. 三门峡盆地地质矿产勘查历程和油气发现启示[J]. 中国地质调查, 2025, 12(1): 1-16. doi: 10.19388/j.zgdzdc.2025.103
引用本文: 张交东, 周新桂, 杨超, 刘晖, 包书景, 鲁增锋, 张敬凯. 三门峡盆地地质矿产勘查历程和油气发现启示[J]. 中国地质调查, 2025, 12(1): 1-16. doi: 10.19388/j.zgdzdc.2025.103
ZHANG Jiaodong, ZHOU Xingui, YANG Chao, LIU Hui, BAO Shujing, LU Zengfeng, ZHANG Jingkai. Exploration history of geological mineral resources in Sanmenxia basin and implications from oil and gas discovery[J]. Geological Survey of China, 2025, 12(1): 1-16. doi: 10.19388/j.zgdzdc.2025.103
Citation: ZHANG Jiaodong, ZHOU Xingui, YANG Chao, LIU Hui, BAO Shujing, LU Zengfeng, ZHANG Jingkai. Exploration history of geological mineral resources in Sanmenxia basin and implications from oil and gas discovery[J]. Geological Survey of China, 2025, 12(1): 1-16. doi: 10.19388/j.zgdzdc.2025.103

三门峡盆地地质矿产勘查历程和油气发现启示

  • 基金项目:
    中国地质调查局“三门峡盆地及鄂尔多斯南缘盆地群油气调查评价(编号: DD20230262)”和中国石油化工股份有限公司华北油气分公司科技项目“豫西重点地区构造特征及有利区优选(编号: 34550000-21-FW0399-0002)”联合资助
详细信息
    作者简介: 张交东(1968—),男,教授级高级工程师,主要从事油气勘查及区域构造综合研究。Email: 644184823@qq.com
    通讯作者: 杨超(1988—),男,高级工程师,主要从事油气勘查和战略综合研究。Email: yangchao_cgs@mail.cgs.gov.cn
  • 中图分类号: P618.13;P624.6

Exploration history of geological mineral resources in Sanmenxia basin and implications from oil and gas discovery

More Information
  • 三门峡盆地为华北陆块南缘以新生界为主的一个小型断陷盆地,自20世纪50年代以来,陆续开展过二维地震和钻井等油气勘探工作,2023年油气调查取得突破。近70 a的勘探历程可分为: 石油普查和基础地质调查、公益性油气地质调查、油气突破和潜力评价3个阶段。近年来,公益性油气调查在盆地南缘落实了古近系烃源岩,并取得油气成藏新认识; 为进一步查明盆地含油气性,在函谷关构造带优选部署实施豫峡地1井,测井综合解释油层5层,分层试油均获得稳定工业油流,实现了三门峡盆地油气发现; 初步估算了三门峡盆地油气远景地质资源量。通过总结三门峡盆地勘探历程和油气突破,获得5点启示: 注重一线调查细节,发现潜在烃源岩; 综合以往各类资料,加强油气基础地质研究; 探索经济适用技术,深化认识查验疑点; 地质和工程紧密衔接,促进油气快速突破; 央-地-企协同勘查,加快落实资源潜力。三门峡盆地作为我国数量颇多的低勘探程度中小型盆地的代表,由烃源岩发现到快速突破的勘探经验和工作启示,有助于提振周缘久攻未克的渭河盆地和南华北盆地的勘探信心,对于对我国动力学背景类似的中小型盆地油气勘查也具有重要的引领和借鉴意义。

  • 加载中
  • 图 1  三门峡盆地区域地质简图[8]

    Figure 1. 

    图 2  三门峡盆地石油普查和基础地质调查工作程度

    Figure 2. 

    图 3  三门峡盆地公益性油气调查工作程度

    Figure 3. 

    图 4  三门峡盆地南部五亩—项城露头剖面

    Figure 4. 

    图 5  三门峡盆地油气突破和评价工作程度

    Figure 5. 

    图 6  豫峡地1井含油岩心(深度2 029.4~2 029.8 m)和裂缝照片

    Figure 6. 

    图 7  豫峡地1井中上段(1 810~1900 m)测井解释成果

    Figure 7. 

    图 8  豫峡地1井中上段(2 000~2 040 m)测井解释成果

    Figure 8. 

    图 9  豫峡地1井分层试油机抽求产图

    Figure 9. 

    图 10  山西平陆米汤沟石膏露头照片

    Figure 10. 

  • [1]

    中原油田石油地质志编辑委员会. 中国石油地质志. 卷七. 中原·南阳油田. 上册中原油田[M]. 北京: 石油工业出版社, 1993: 337-347.

    Editorial Committee of Petroleum Geology of Zhongyuan Oilfield. Petroleum Geology of China (Volume 7)[M]. Beijing: Petroleum Industry Press, 1993: 337-347.

    [2]

    潘冰. 三门峡盆地油气调查取得重大突破[N]. 中国矿业报, 2025-01-15(1).

    Pan B. Significant breakthrough in oil and gas survey in Sanmenxia Basin[N]. China Mining News, 2025-01-15(1).

    [3]

    国土资源部油气资源战略研究中心. 全国石油天然气资源评价(下册)[M]. 北京: 中国大地出版社, 2010: 577-1487.

    Oil and Gas Resources Strategic Research Center of the Ministry of Land and Resources. National Petroleum and Natural Gas Resource Evaluation (Volume 3)[M]. Beijing: China Land Press, 2010: 577-1487.

    [4]

    刘池洋, 黄雷, 王建强, 等. 小型含油气盆地成因类型、特征与油气赋存[J]. 地球科学与环境学报, 2024, 46(4): 427-453.

    Liu C Y, Huang L, Wang J Q, et al. Genetic classification, characteristics and hydrocarbon occurrence of small-scale petroliferous Basins[J]. Journal of Earth Sciences and Environment, 2024, 46(4): 427-453.

    [5]

    Liu C Y, Huang L, Zhao H G, et al. Small-scale petroliferous basins in China: Characteristics and hydrocarbon occurrence[J]. AAPG Bulletin, 2019, 103(9): 2139-2175. doi: 10.1306/0130191608217014

    [6]

    刘显阳, 李士祥, 周新平, 等. 鄂尔多斯盆地石油勘探新领域、新类型及资源潜力[J]. 石油学报, 2023, 44(12): 2070-2090.

    Liu X Y, Li S X, Zhou X P, et al. New fields, new types and resource potentials of petroleum exploration in Ordos Basin[J]. Acta Petrolei Sinica, 2023, 44(12): 2070-2090.

    [7]

    李玉宏, 高岗, 王行运, 等. 渭河盆地新发现原油的特征及其油气地质意义[J]. 石油与天然气地质, 2019, 40(2): 346-353.

    Li Y H, Gao G, Wang X Y, et al. Characteristics of newly disco\|vered crude oil in the Weihe Basin and its petroleum geological significance[J]. Oil & Gas Geology, 2019, 40(2): 346-353.

    [8]

    谷永昌, 刘永顺, 彭丽娜, 等. 中华人民共和国地质图(华北)(1∶ 1 500 000)及说明书[M]. 北京: 地质出版社, 2019.

    Gu Y C, Liu Y S, Peng L N, et al. Geological Map of the People's Republic of China (North China) (1∶ 1 500 000) and Instructions[M]. Beijing: Geological Publishing House, 2019.

    [9]

    刘康, 魏荣珠, 续世朝. 山西隆起区燕山期构造变形特征[J]. 中国地质调查, 2019, 6(2): 58-67. doi: 10.19388/j.zgdzdc.2019.02.07

    Liu K, Wei R Z, Xu S C. Structure deformation characteristics of Shanxi uplift area during Yanshan movement period[J]. Geological Survey of China, 2019, 6(2): 58-67. doi: 10.19388/j.zgdzdc.2019.02.07

    [10]

    宋佳佳, 田晓峰, 王帅军, 等. 南华北块体及邻区地质结构构造研究进展[J]. 地球物理学进展, 2021, 36(3): 940-952.

    Song J J, Tian X F, Wang S J, et al. Research progress of geolo\|gical structure in the South north China and adjacent areas[J]. Progress in Geophysics, 2021, 36(3): 940-952.

    [11]

    崔加伟, 李振宏, 井向辉, 等. 汾渭地堑系开启时限: 基于中条山奇峰花岗斑岩岩脉的年代学约束[J]. 地质力学学报, 2023, 29(4): 485-496.

    Cui J W, Li Z H, Jing X H, et al. The initial time of the Fen-Wei graben system: Constraints from geochronology of the Qifeng granite porphyry dikes in the Zhongtiaoshan Mountains[J]. Journal of Geomechanics, 2023, 29(4): 485-496.

    [12]

    王丹丹, 张交东, 刘旭锋, 等. 河南三门峡盆地构造格架及其油气资源远景分析[J]. 中国地质, 2024, 51(3): 719-727.

    Wang D D, Zhang J D, Liu X F, et al. Structural framework of Sanmenxia Basin, Henan Province and its oil and gas resources potential analysis[J]. Geology in China, 2024, 51(3): 719-727.

    [13]

    Li D P, Du J J, Ma Y S, et al. Active faults and dip slip rates along the northern margins of the Huashan Mountain and Weinan loess tableland in the southeastern Weihe Graben, central China[J]. Journal of Asian Earth Sciences, 2015, 114: 266-278.

    [14]

    Tian Q H, Zhang W T, Zhu W. Characterizing crustal deformation of the Weihe Fault, Weihe Basin (Central China), Using InSAR and GNSS observations[J]. Applied Sciences, 2023, 13(11): 6835.

    [15]

    Yang C Y, Ji L Y, Yang Y H, et al. Present-day activity and seismic potential of the north Qinling fault, southern ordos block, central China, as revealed from GPS data and seismicity[J]. Frontiers Earth Science, 2023, 10: 1058243. http://www.semanticscholar.org/paper/31aababddb492d533c4a3d665d91c89962a252e1

    [16]

    Shi W, Dong S W, Hu J M. Neotectonics around the Ordos Block, North China[J]. Acta Geologica Sinica (English Edition), 2024, 98(S1): 62-66.

    [17]

    Duan M Y, Neubauer F, Robl J, et al. Northeastward expansion of the Tibetan Plateau: Topographic evidence from the North Qinling Mts. -Weihe Graben Coupling system, Central China[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2023, 623: 111612.

    [18]

    刘瑾, 陈兴强, 王平, 等. 渭河—三门峡盆地三门组沉积充填特征、物源区及其构造意义[J]. 中国地质大学学报: 地球科学版, 2020, 45(7): 2673-2683.

    Liu J, Chen X Q, Wang P, et al. Sedimentary characteristics, provenance and tectonic significance of the Sanmen Formation in Weihe-Sanmenxia Basin[J]. Earth Science: Journal of China University of Geosciences, 2020, 45(7): 2673-2683.

    [19]

    李兆雨, 李永项, 李文厚, 等. 汾渭盆地古近系—新近系沉积特征[J]. 地质科学, 2021, 56(4): 1120-1133.

    Li Z L, Li Y X, Li W H, et al. Sedimentary characteristics of Paleogene-Neogene in Fenwei Basin[J]. Chinese Journal of Geology, 2021, 56(4): 1120-1133.

    [20]

    张瑞胜. 河南灵宝盆地中新生代陆相地层的新划分与对比研究[J]. 资源调查与环境, 2014, 35(2): 114-119.

    Zhang R S. A newly stratigraphic division-correlation of Mesozoic-Cenozoic continental strata of Lingbao basin in Henan Province[J]. Resources Survey and Environment, 2014, 35(2): 114-119.

    [21]

    杜春彦, 尉向东, 宋锋. 河南省新生代沉积盆地岩盐、天然碱成矿预测[M]. 北京: 中国地质大学出版社, 2015: 40-60.

    Du C Y, Wei X D, Song F. Metallogenic Prediction of Rock salt and Natural Alkali in Cenozoic Sedimentary Basins in Henan Province[M]. Beijing: China University of Geosciences Press, 2015: 40-60.

    [22]

    贺清水. 地质报告(1∶ 200 000地质测量I-49-XV幅)[R]. 河南省地质局秦岭地质队一分队, 1956.

    He Q S. Geological Report (1∶ 200 000 Geological Survey I-49-XV Sheet)[R]. The First Detachment of Qinling Geological Team, Henan Provincial Bureau of Geology, 1956.

    [23]

    山西省地质局区域地质测量队. 中华人民共和国地质图说明书1∶ 20万运城幅I-49-Ⅸ、三门峡幅I-49-Ⅹ(地质部分)[R]. 西安: 陕西省地质资料档案馆, 1972.

    Regional Geological Survey Team of Shanxi Provincial. Bureau of geology. Description of Geological Map of the People's Republic of China 1∶ 200 000 Yuncheng Sheet I-49-Ⅸ, Sanmenxia Sheet I-49-Ⅹ (Geological Part)[R]. Xi'an: Shaanxi Provincial Geological Data Archive, 1972.

    [24]

    河南省地质局豫07队. 河南省三门峡(包括灵宝)石膏矿普查简报[R]. 郑州: 河南省地质局豫07队, 1961.

    Team Yu 07, Henan Provincial Bureau of Geology. A Brief Report on the General Survey of Sanmenxia (Including Lingbao) Gypsum Mine in Henan Province[R]. Zhengzhou: Henan Geological Bureau, Yu 07 Team, 1961.

    [25]

    栾航. 河南省灵宝县项城煤及油页岩简报[DS]. 全国地质资料馆, 1960, doi: 10.35080/n01.c.19866.

    Luan H. Brief Report on Coal and Oil Shale in Xiangcheng, Lingbao County, Henan Province[DS]. National Geological Data Center, 1960, doi: 10.35080/n01.c.19866.

    [26]

    地质部第三普查勘探大队. 汾渭盆地石油地质普查总结报告[R]. 九江: 地质部第三普查勘探大队, 1967.

    The Third General Survey and Exploration Brigade of the Ministry of Geology. Summary Report of Petroleum Geological Survey in Fenwei Basin[R]. Jiujiang: The Third Survey and Exploration Brigade of the Ministry of Geology, 1967.

    [27]

    李钓松, 姚林庄, 孟宪松, 等. 河南省主要构造体系与中新生代盆地构造特征[R]. 南阳: 河南省地质局地质十二队, 1973.

    Li D S, Yao L Z, Meng X S, et al. Main Tectonic Systems and Tectonic Characteristics of Mesozoic Cenozoic Basins in Henan Province[R]. Nanyang: No. 12 Geological Team, Henan Bureau of Geology, 1973.

    [28]

    李旗沛. 对三门峡盆地下第三系的初步认识及勘探工作建议[R]. 濮阳: 河南石油会战指挥部地质勘探开发研究所, 1978.

    Li Q P. Preliminary Understanding of the Tertiary System in Sanmenxia Basin and Suggestions for Exploration Work[R]. Puyang: Institute of Geological Exploration and Development, Henan Petroleum Battle Command, 1978.

    [29]

    河南省地质局地科研究所. 河南省基岩地质图说明书(前新生界)1∶ 50万基岩地质图[DS]. 全国地质资料馆, 1978, doi: 10.35080/n01.c.61841

    Institute of Geosciences of Henan Provincial Bureau of Geology. Description of Henan Bedrock Geological Map (pre Cenozoic) 1∶ 500 000 Bedrock Geological Map[DS]. National Geological Data Center, 1978, doi: 10.35080/n01.c.61841.

    [30]

    朱云峰. 三门峡地区灵宝凹陷构造灵参1井完井地质总结报告[R]. 河南石油会战指挥部, 1979.

    Zhu Y F. Geological Summary Report on Completion of Well Lingcan 1 in Lingbao Sag of Sanmenxia Area[R]. Henan Petroleum Battle Command, 1979.

    [31]

    梁云亮. 灵宝地区构造灵参二井完井地质总结报告[R]. 南阳: 河南石油会战指挥部, 1980.

    Liang Y L. Geological Summary Report on Completion of Lingcan- 2 Well in Lingbao Area[R]. Nanyang: Henan Petroleum Battle Command, 1980.

    [32]

    王志明, 许永仁, 陆介儒, 等. 河南省构造体系与地震图及其说明书(1∶ 50万)[DS]. 全国地质资料馆, 1980, doi: 10.35080/n01.c.65093.

    Wang Z M, Xu Y R, Lu J R, et al. Structural System and Seismogram of Henan Province and Its Specification: 1∶ 500 000[DS]. National Geological Data Center, 1980, doi: 10.35080/n01.c.65093.

    [33]

    张家珍, 方志筠. 华北地区石油地质成果图(中、新生界)说明书(1∶ 100万)[DS]. 全国地质资料馆, 1988, doi: 10.35080/n01.c.72836.

    Zhang J Z, Fang Z J. Petroleum Geological Results Map of North China (Mesozoic and Cenozoic) 1∶ 1 000 000 Specification[DS]. National Geological Data Center, 1988, doi: 10.35080/n01.c.72836.

    [34]

    喻积贤. (太峪口幅东半幅)I-49-53-D 1∶ 5万区域地质图说明书[DS]. 全国地质资料馆, 1993, doi: 10.35080/n01.c.85163.

    Yu J X. (Eastern Half of Taiyukou Sheet)I-49-53-D 1∶ 50 000 Regional Geological Map Specification[DS]. National Geological Data Center, 1993, doi: 10.35080/n01.c.85163.

    [35]

    冯建之, 崔燮祥, 王杏村, 等. 河南省灵宝县东南部勘查地球化学综合研究及找矿靶区优选报告: 1∶ 5万水系沉积物测量[DS]. 全国地质资料馆, 1992, doi: 10.35080/n01.c.91088.

    Feng J Z, Cui X X, Wang X C, et al. Comprehensive Research on Exploration Geochemistry and Optimization of Prospecting Targets in the Southeast of Lingbao County, Henan Province: 1∶ 50 000 Stream Sediment Survey[DS]. National Geological Data Center, 1992, doi: 10.35080/n01.c.91088.

    [36]

    白朝军, 张保平. 朱阳镇幅I49E011011 1∶ 5万地质图说明书[DS]. 全国地质资料馆, 1995, doi: 10.35080/n01.c.87380.

    Bai C J, Zhang B P. Description of I49E011011 1∶ 50 000 Geological Map of Zhuyang Town Sheet[DS]. National Geological Data Center, 1995, doi: 10.35080/n01.c.87380.

    [37]

    郭莹, 余郑生, 李刚, 等. 河南省三门峡——灵宝地区区域重力调查报告1∶ 20万[R]. 河南省地质矿产厅地球物理勘查队, 1996.

    Guo Y, Yu Z S, Li G, et al. Regional Gravity Survey Report of Sanmenxia Lingbao Area, Henan Province, 1∶ 200 000[R]. Geophysical Exploration Team of Henan Provincial Department of Geology and Mineral Resources, 1996.

    [38]

    宋红伟, 于增宝, 刘纪尧, 等. 河南省灵宝市五亩煤预查工作总结报告[R]. 新乡: 河南省地质矿产勘查开发局地球物理勘查队, 2009.

    Song H W, Yu Z B, Liu J Y, et al. Summary Report on the Pre Inspection of Wumu Coal in Lingbao City, Henan Province[R]. Xinxiang: Geophysical Exploration Team of Henan Bureau of Geology and Mineral Exploration and Development, 2009.

    [39]

    程林, 杨子荣. 地震勘探在五亩煤预查中的应用[J]. 煤炭技术, 2011, 30(4): 137-139.

    Cheng L, Yang Z R. Application of seismic exploration in anticipation of Wumu coal[J]. Coal Technology, 2011, 30(4): 137-139.

    [40]

    宋红伟, 余郑生, 余哲庆. 五亩盆地沉积环境及聚煤作用分析[J]. 西部资源, 2016(2): 33-37.

    Song H W, Yu Z S, Yu Z Q. The analysis of Wumu basin for depositional environment and coal accumulating effect[J]. Western Resources, 2016(2): 33-37.

    [41]

    陈付申, 齐玉峰, 吴东民, 等. 河南省灵宝市城区一带地热资源详查报告[R]. 郑州: 河南省地质矿产勘查开发局第二水文地质工程队, 2007.

    Chen F S, Qi Y F, Wu D M, et al. Detailed Survey Report of Geothermal Resources in the Urban Area of Lingbao City, Henan Province[R]. Zhengzhou: The Second Hydrogeological Engineering Team of Henan Bureau of Geology and Mineral Exploration and Development, 2007.

    [42]

    田庆水, 沈阳, 赵民, 等. 河南省小秦岭北麓覆盖区金矿预查报告[R]. 郑州: 河南省航空物探遥感中心, 2015.

    Tian Q S, Shen Y, Zhao M, et al Pre Inspection Report on Gold Deposits in the Coverage Area of the Northern Foot of the Xiaoqinling Mountains in Henan Province[R]. Zhengzhou: National Geological Data Center, 2015.

    [43]

    张红亮, 牛宇航, 杜欣. 河南省三门峡市交口凹陷岩盐矿预查报告[R]. 郑州: 河南省地质矿产勘查开发局第四地质勘查院, 2019.

    Zhang H L, Niu Y H, Du X. Pre Investigation Report of Rock Salt Mine in Jiaokou Sag, Sanmenxia City, Henan Province[R]. Zhengzhou: The Fourth Geological Exploration Institute of Henan Bureau of Geology and Mineral Exploration and Development, 2019.

    [44]

    蔡兰花. 二维地震技术在三门峡盆地东交口地区盐矿勘查中的研究与应用[J]. 能源与环保, 2022, 44(8): 115-122.

    Cai L H. Research and application of two-dimensional seismic technology in salt mine exploration in Dongjiaokou Area, Sanmenxia Basin[J]. China Energy and Environmental Protection, 2022, 44(8): 115-122.

    [45]

    王丹丹, 张交东, 刘旭锋, 等. 南华北盆地上古生界油气地质调查成果报告[R]. 北京: 中国地质调查局油气资源调查中心, 2021.

    Wang D D, Zhang J D, Liu X F, et al. Report on the Results of Oil and Gas Geological Survey of the Upper Paleozoic in the South North China Basin[R]. Beijing: Oil and Gas Resources Survey Center, China Geological Survey, 2021.

    [46]

    周阳, 洪增林, 张卉, 等. 关中盆地浅层地热能赋存规律及资源量估算[J]. 中国地质调查, 2020, 7(2): 21-29. doi: 10.19388/j.zgdzdc.2020.02.03

    Zhou Y, Hong Z L, Zhang H, et al. Occurrence rules and resource estimation of shallow geothermal energy in Guanzhong Basin[J]. Geological Survey of China, 2020, 7(2): 21-29. doi: 10.19388/j.zgdzdc.2020.02.03

    [47]

    周武. 陕西省潼关县地热水资源地质条件分析[J]. 陕西地质, 2015, 33(1): 90-92.

    Zhou W. Geology of geothermal water source in Tongguan county of Shaanxi[J]. Geology of Shaanxi, 2015, 33(1): 90-92.

    [48]

    李腾超, 王书宏, 寇正卫. 河南省地温场分布规律及成因机制分析[J]. 城市地质, 2020, 15(2): 194-200.

    Li T C, Wang S H, Kou Z W. Analysis of the distribution and formation mechanism of the geothermal field in Henan Province[J]. Urban Geology, 2020, 15(2): 194-200.

    [49]

    严珊珊, 王俊杰, 郑严, 等. 豫西某地热井油层封堵处理措施[J]. 地质装备, 2023, 24(4): 45-48.

    Yan S S, Wang J J, Zhang Y, et al. Sealing measures for oil layer of a geothermal well in western Henan[J]. Equipment for Geotechnical Engineering, 2023, 24(4): 45-48.

    [50]

    何发岐, 王付斌, 於文辉. 三门峡断陷盆地成因机制分析[J]. 中文科技期刊数据库(全文版)自然科学, 2022(5): 290-293.

    He F Q, Wang F B, Yu W H. Analysis of the genesis mechanism of the Sanmenxia fault basin[J]. Chinese Science and Technology Journal Database (Full Text Edition) Natural Science, 2022(5): 290-293.

    [51]

    何发岐, 於文辉, 马超, 等. 三门峡断陷盆地及邻区深部结构及成因——来自深地震反射与大地电磁测深的证据[J]. 地质学报, 2024, 98(4): 1088-1100.

    He F Q, Yu W H, Ma C, et al. Deep structure and genesis of Sanmenxia fault basin and its adjacent area: Evidence from deep seismic reflection and magnetotelluric sounding[J]. Acta Geologica Sinica, 2024, 98(4): 1088-1100.

    [52]

    何发岐, 黎小伟, 谢兴兵, 等. 豫西—关中地区深部电性结构特征分析[J]. 石油物探, 2023, 62(3): 557-566.

    He F Q, LI X W, Xie X B, et al. Characteristics and interpretation of deep electrical structures in the Western Henan-Guanzhong area[J]. Geophysical Prospecting for Petroleum, 2023, 62(3): 557-566.

    [53]

    曲志成, 贾会冲, 田刚, 等. 三门峡盆地重力异常特征与构造格局[J]. 科学技术与工程, 2022, 22(24): 10425-10433.

    Qu Z C, Jia H C, Tian G, et al. Gravity anomaly characteristics and tectonic framework in Sanmenxia basin[J]. Science Technology and Engineering, 2022, 22(24): 10425-10433.

    [54]

    张交东, 刘旭锋, 王丹丹, 等. 三门峡盆地及周缘油气基础地质调查年度报告[R]. 北京: 中国地质调查局油气资源调查中心, 2022.

    Zhang J D, Liu X F, Wang D D, et al. Annual Report on Basic Geological Survey of Oil and Gas in and around Sanmenxia basin[R]. Beijing: Oil and gas Resources Survey Center, China Geological Survey, 2022.

    [55]

    张交东, 刘旭锋, 王丹丹, 等. 三门峡盆地及鄂尔多斯南缘盆地群油气调查评价年度报告[R]. 北京: 中国地质调查局油气资源调查中心, 2023.

    Zhang J D, Liu X F, Wang D D, et al. Annual Report on Oil and Gas Investigation and Evaluation of Sanmenxia Basin and Southern Ordos Basin Group[R]. Beijing: Oil and Gas Resources Survey Center, China Geological Survey, 2023.

    [56]

    张交东, 刘旭锋, 王丹丹, 等. 豫西地区中小盆地油气基础地质调查项目年度报告[R]. 北京: 中国地质调查局油气资源调查中心, 2024.

    Zhang J D, Liu X F, Wang D D, et al. Annual Report of Basic Geological Survey of Oil and Gas in Small and Medium-sized Basins in Western Henan Province[R]. Beijing: Oil and gas Resources Survey Center, China Geological Survey, 2024.

    [57]

    程俊阳, 何贤科, 段冬平, 等. 渤海湾盆地某油田混积岩名称厘定及储层特征[J]. 中国地质调查, 2023, 10(5): 27-33. doi: 10.19388/j.zgdzdc.2023.05.04

    Cheng J Y, He X K, Duan D P, et al. Name determination and re|servoir characteristics of diamictite in a certain oilfield of Bohai Bay Basin[J]. Geological Survey of China, 2023, 10(5): 27-33. doi: 10.19388/j.zgdzdc.2023.05.04

    [58]

    Ji H C, LI H Q, Chen L, et al. Composition and resource prediction of the Nanxiang basin geothermal system: A case study of the Bi yang and Nanyang Sags[J]. Earth Science Frontiers, 2017, 24(3): 199-209.

    [59]

    Su A, Chen H H, Zhao J X, et al. Integrated fluid inclusion analysis and petrography constraints on the petroleum system evolution of the central and southern Biyang Sag, Nanxiang Basin, Eastern China[J]. Marine and Petroleum Geology, 2020, 118: 104437.

    [60]

    林玉祥, 孟彩, 韩继雷, 等. 华北地台区古近纪—新近纪岩相古地理特征[J]. 中国地质, 2015, 42(4): 1058-1067.

    Lin Y X, Meng C, Han J L, et al. Characteristics of lithofacies paleogeography during Paleogene-Neogene in the area of North China platform[J]. Geology in China, 2015, 42(4): 1058-1067.

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出版历程
收稿日期:  2025-01-26
修回日期:  2025-02-18
刊出日期:  2025-02-25

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