[1] Boucot A J,陈旭,Scotese C R,樊隽轩. 2009. 显生宙全球古气候重建. 北京: 科学出版社,1-173.
[Boucot A J,Chen X,Scotese C R,Fan J X. 2009. Phanerozoic Global Paleoclimate Reconstruction. Beijing: Science Press,1-173]
[2] 蔡友贤. 1988a. 内蒙古河套盆地白垩纪地层层序及生油层时代讨论. 石油勘探与开发, 15(3): 27-32.
[Cai Y X. 1988a. A discussion on the Cretaceous stratigraphic sequence and the age of source rocks,Hetao Basin in Inner Mongolia. Petroleum Exploration and Development, 15(3): 27-32]
[3] 蔡友贤. 1988b. 内蒙古河套盆地晚白垩世地层新资料. 地层学杂志, 12(4): 273-280.
[Cai Y X. 1988b. New stratigraphic data of the Late Cretaceous in Hetao Basin,Inner Mongolia. Journal of Stratigraphy, 12(4): 273-280]
[4] 蔡友贤. 1990. 内蒙古河套盆地白垩纪古气候、沉积环境及油气勘探远景. 地质论评, 36(2): 105-115.
[Cai Y X. 1990. Cretaceous palaeoclimatie,sedimentary environment and oil-gas prospect in the Hetao Basin,Inner Mongolia. Geological Review, 36(2): 105-115]
[5] 邓宏文,钱凯. 1993. 沉积地球化学与环境分析. 兰州: 甘肃科学技术出版社,95-104.
[Deng H W,Qian K. 1993. Sedimentary Geochemistry and Environment Analysis. Lanzhou: Gansu Science and Technology Press,95-104]
[6] 范玉海,屈红军,王辉,杨县超,冯杨伟. 2012. 微量元素分析在判别沉积介质环境中的应用: 以鄂尔多斯盆地西部中区晚三叠世为例. 中国地质, 39(2): 382-389.
[Fan Y H,Qu H J,Wang H,Yang X C,Feng Y W. 2012. The application of trace elements analysis to identifying sedimentary media environment: a case study of Late Triassic strata in the middle part of western Ordos Basin. Geology in China, 39(2): 382-389]
[7] 付锁堂,付金华,喻建,姚泾利,张才利,马占荣,杨亚娟,张艳. 2018. 河套盆地临河坳陷石油地质特征及勘探前景. 石油勘探与开发, 45(5): 5-18.
[Fu S T,Fu J H,Yu J,Yao J L,Zhang C L,Ma Z R,Yang Y J,Zhang Y. 2018. Petroleum geological features and exploration prospect of Linhe depression in Hetao Basin,China. Petroleum Exploration and Development, 45(5): 5-18]
[8] 高剑峰,陆建军,赖鸣远,林雨萍,濮巍. 2003. 岩石样品中微量元素的高分辨率等离子质谱分析. 南京大学学报(自然科学版), 39(6): 844-850.
[Gao J F,Lu J J,Lai M Y,Lin Yuping,Pu W. 2003. Analysis of trace elements in rock samples using HR-ICP-MS. Journal of Nanjing University(Natural Science), 39(6): 844-850]
[9] 国家地震局《鄂尔多斯周缘活动断裂系》课题组. 1988. 鄂尔多斯周缘活动断裂系. 北京: 地震出版社,1-328.
[Research group of Ordos Periphery Active Fault System,China Earthquake Administration. 1988. Ordos perimeter active fault system. Beijing: Seismological Press,1-328]
[10] 郭忠铭,于忠平. 1990. 石油勘探与开发—平河套弧形地堑系构造特征和演化机制及其油气勘探. 石油勘探与开发, 3(7): 11-19.
[Guo Z M,Yu Z P. 1990. Structural characteristics,mechanism of evolution and petroleum prospecting of Hetao graben system. Petroleum Exploration and Development, 3(7): 11-19]
[11] 何登发,周新源,杨海军,雷刚林,马玉杰. 2009. 库车坳陷的地质结构及其对大油气田的控制作用. 大地构造与成矿学, 33(1): 19-32.
[He D F,Zhou X Y,Yang H J,Lei G L,Ma Y J. 2009. Geological structural and its controls on giant oil and gas fields in Kuqa Depression,Tarim Basin: a clue from new shot seismic data. Geotectonicac et Metallogenia, 33(1): 19-32]
[12] 胡立. 2017. 河套盆地临河坳陷临河组岩性、岩相及生储盖特征. 西北大学硕士学位论文.
[Hu L. 2017. Research on characteristics of lithology,lithofacies,source rocks,reservoir and seal of Linhe Formation in Linhe depression,Hetao Basin. Masteral dissertation of Northwest University]
[13] 旷红伟,柳永清,刘燕学,彭楠,许欢,董超,陈军,刘海,徐加林,薛沛霖. 2013. 兴蒙造山区及邻区早白垩世盆地岩石地层格架与沉积古地理演化. 地质通报, 32(7): 1063-1084.
[Kuang H W,Liu Y Q,Liu Y X,Peng N,Xu H,Dong C,Chen J,Liu H,Xu J L,Xue P L. 2013. Stratigraphy and depositional palaeogeography of the Early Cretaceous basins in Da Hinggan Mountains-Mongolia orogenic belt and its neighboring areas. Geological Bulletin of China, 32(7): 1063-1084]
[14] 刘成林,曹养同,杨海军,焦鹏程,顾乔元. 2013. 库车前陆盆地古近纪—新近纪盐湖环境变迁及其成钾效应探讨. 地球学报, 34(5): 547-558.
[Liu C L,Cao Y T,Yang H J,Jiao P C,Gu Q Y. 2013. Discussion on Paleogene-Neogene environmental change of salt lakes in Kuqa Foreland Basin and its potash-forming effect. Acta Geoscientica Sinica, 34(5): 547-558]
[15] 刘天顺,张锐锋,丁文龙,焦保程,王少春,吴晨林,杜晓宇,周志成,薛明旺. 2021. 河套盆地临河坳陷下白垩统内部不整合的发现及对构造演化的启示. 中国地质, 48(2): 593-604.
[Liu T S,Zhang R F,Ding W L,Jiao B C,Wang S C,Wu C L,Du X Y,Zhou Z C,Xue M W. 2021. Discovery of Lower Cretaceous unconformity in Linhe depression of Hetao Basin and its implication to structural evolution. Geology in China, 48(2): 593-604]
[16] 柳永清,旷红伟,彭楠,许欢. 2018. 中国最古老风成沉积记录: 华北—西北侏罗白垩纪过渡期风成砂岩. 见: 第十五届全国古地理学及沉积学学术会议摘要集. 229-230.
[The oldest eolian sedimentary record in China: eolian sandstones in the transitional period between Cretaceous and Jurassic in north and northwest China.In: Abstract collection of the 15th National Palaeogeography and Sedimentology Academic Conference,229-230]
[17] 内蒙古自治区地质矿产局. 1991. 内蒙古自治区区域地质志. 北京: 地质出版社.
[Bureau of Geology and Mineral Resources of Inner Mongolia Autonomous Region. 1991. Regional Geology of Inner Mongolia Autonomous Region. Beijing: Geological Publishing House]
[18] 沈华,陆鹿,史原鹏,李壮福,陈树光,曹兰柱,胡延旭,李明桦. 2021. 一种特殊的储集空间成因机制: 断裂—地震—高压水射流作用. 地质论评, 67(4): 1021-1032.
[Shen H,Lu L,Shi Y P,Li Z F,Chen S G,Cao L Z,Hu Y X,Li M H. 2021. A special reservoir space genesis mechanism: fault-earthquake-high pressure water jet process. Geological Review, 67(4): 1021-1032]
[19] 田景春,陈高武,张翔,聂永生,赵强,韦东晓. 2006. 沉积地球化学在层序地层分析中的应用. 成都理工大学学报(自然科学版), 33(1): 30-35.
[Tian J C,Chen G W,Zhang X,Nie Y S,Zhao Q,Wei D X. 2006. Application of sedimentary geochemistry in the analysis of sequence stratigraphy. Journal of Chengdu University of Technology(Science & Technology Edition), 33(1): 30-35]
[20] 腾格尔,刘文汇,徐永昌,陈践发. 2004. 缺氧环境及地球化学判识标志的探讨: 以鄂尔多斯盆地为例. 沉积学报, 22(2): 365-372.
[Tonger,Liu W H,Xu Y C,Chen J F. 2004. The discussion on Anoxic environments and its geochemical identifying indices. Acta Sedimentologica Sinica, 22(2): 365-372]
[21] 王爱华. 1996. 不同形态锶钡比的沉积环境判别效果比较. 沉积学报, 14(4): 168-173.
[Wang A H. 1996. Discriminant effect of sedimentary environment by the Sr/Ba ratio of different exising forms. Acta Sedimentologica Sinica, 14(4): 168-173]
[22] 王飞,马占荣,蒲仁海,张才利. 2019. 河套盆地吉兰泰地区白垩系地层划分及地质特征. 西安科技大学学报, 39(4): 656-664.
[Wang F,Ma Z R,Pu R H,Zhang C L. 2019. Division of Cretaceous strata and analysis of geological characteristics in the Jilantai area of Hetao Basin. Journal of Xi'an University of Science and Technology, 39(4): 656-664]
[23] 吴兆剑,韩效忠,林中湘,李紫楠,季辉,殷栋法,蒋喆,胡航. 2020. 中国北方主要中新生代盆地构造沉积气候演化及其成煤、铀意义. 大地构造与成矿学, 44(4): 710-724.
[Wu Z J,Han X Z,Lin Z X,Li Z N,Ji H,Yin D F,Jiang Z,Hu H. 2020. Tectonic,sedimentary,and climate evolution of Meso-Cenozoic Basins in North China and its significance of coal accumulation and uranium mineralization. Geotectonicac et Metallogenia, 44(4): 710-724]
[24] 许欢,柳永清. 2017. 华北北部侏罗—白垩过渡期陆相红层及其古地理、古生态和构造演化. 地球学报,38(增刊1): 25-28.
[Xu H,Liu Y Q. 2017. Jurassic-Cretaceous transition terrestrial red beds in northern North China and their regional paleogeography,paleoecology,and tectonic evolution. Acta Geoscientica Sinica,38(supp.1): 25-28]
[25] 杨兴莲,朱茂炎,赵元龙,张俊明,郭庆军,李丙霞. 2007. 黔东前寒武纪—寒武纪转换时期微量元素地球化学特征研究. 地质学报, 81(10): 1391-1397.
[Yang X L,Zhu M Y,Zhao Y L,Zhang J M,Guo Q J,Li B X. 2007. Trace element geochemical characteristics from the Ediacaran Cambrian transition interval in Eastern Guizhou,South China. Acta Geologica Sinica, 81(10): 1391-1397]
[26] 曾艳,陈敬安,朱正杰,李键. 2011. 湖泊沉积物Rb/Sr比值在古气候/古环境研究中的应用与展望. 地球科学进展, 26(8): 805-810.
[Zeng Y,Chen J A,Zhu Z J,Li J. 2011. Advance and porspective of Rb/Sr ratios in lake sediments as an index of paleoclimate/paleoenvironment. Advances in Earth Science, 26(8): 805-810]
[27] 张昊址. 2015. 河套盆地临河坳陷油气成藏. 安石油大学硕士学位论文.
[Zhang H Z. 2015. Research of hydrocarbon accumulation conditions in Linhe depression of Hetao Basin. Masteral dissertation of Xi'an Shiyou University]
[28] 张锐锋,何海清,陈树光,李国欣,刘喜恒,郭绪杰,王少春,范土芝,王会来,刘静,曹兰柱. 2020. 河套盆地临河坳陷石油地质新认识与重大发现. 中国石油勘探, 25(6): 1-12.
[Zhang R F,He H Q,Chen S G,Li G X,Liu X H,Guo X J,Wang S C,Fan T Z,Wang H L,Liu J,Cao L Z. 2020. New understandings of petroleum geology and great discovery in the Linhe depression,Hetao Basin. China Petroleum Exploration, 25(6): 1-12]
[29] 张锐锋,于福生,刘喜恒,刘静,陈树光,吴晨林,王逸群,王盛亮. 2021. 河套盆地临河坳陷及其周边地区中—新生代成盆演化特征. 石油与天然气地质, 41(6): 1139-1150.
[Zhang R F,Yu F S,Liu X H,Liu J,Chen S G,Wu C L,Wang Y Q,Wang S L. 2021. Evolutionary characteristics of Linhe Depression and its surrounding areas in Hetao Basin from the Mesozoic to Cenozoic. Oil and Gas Geology, 41(6): 1139-1150]
[30] 张以明,张锐锋,王少春,刘喜恒,李拥军,刘静,王会来,汪剑,吴晨林,淡伟宁. 2018. 河套盆地临河坳陷油气勘探重要发现的实践与认识. 中国石油勘探, 23(5): 1-11.
[Zhang Y M,Zhang R F,Wang S C,Liu X H,Li Y J,Liu J,Wang H L,Wang J,Wu C L,Dan W N. 2018. Practice and understanding of great discovery in oil and gas exploration in Linhe depression of Hetao Basin. China Petroleum Exploration, 23(5): 1-11]
[31] 赵重远,郭忠铭,惠斌耀. 1984. 河套弧形构造体系及其形成和演化机制. 石油天然气地质, 5(4): 349-361.
[Zhao C Y,Guo Z M,Hui B Y. 1984. Hetao arcuate tectonic system and their mechanism of formation and evolution. Oil and Gas Geology, 5(4): 349-361]
[32] 赵衡,张进,曲军峰,张北航,牛鹏飞,惠洁,云龙,李岩峰,王艳楠,张义平. 2020. 阿拉善地块东缘新生代中新世挤压变形及动力学背景. 地球科学, 45(4): 1337-1361.
[Zhao H,Zhang J,Qu J F,Zhang B H,Niu P F,Hui J,Yun L,Li Y F,Wang Y N,Zhang Y P. 2020. Characteristics and dynamic background of Cenozoic compressive structures in eastern margin of Alxa Block. Earth Science, 45(4): 1337-1361]
[33] 赵孟为. 1988. 河套盆地断裂活动的特征及其与油气的关系. 西北大学学报, 18(2): 85-94.
[Zhao M W. 1988. Characteristics of the fault activity in Hetao Basin and its relation with oil and gas. Journal of Northwest University, 18(2): 85-94]
[34] Jones B,Manning D A C. 1994. Comparison of geochemical indices used for the interpretation of palaeoredox conditions in ancient mudstones. Chemical Geology, 111: 111-129.
[35] Darby B J,Ritts B D. 2002. Mesozoic contractional deformation in the middle of the Asian tectonic collage: the intraplate Western Ordos fold-thrust belt,China. Earth and Planetary Science Letters,205(1-2): 13-24.
[36] Darby B J,Ritts B D. 2007. Mesozoic structural architecture of the Lang Shan,North-Central China: intraplate contraction,extension,and synorogenic sedimentation. Journal of Structural Geology, 29: 2006-2016.
[37] Zhang K J. 2004. Secular geochemical variations of the Lower Cretaceous siliciclastic rocks from central Tibet(China)indicate a tectonic transition from continental collision to back-arc rifting. Earth and Planetary Science Letters, 229: 73-89.
[38] Zhang K J. 2012. Destruction of the North China Craton: lithosphere folding-induced removal of lithospheric mantle? Journal of Geodynamics, 53: 8-17.
[39] Zhang J,Li J Y,Xiao W X,Li Y F,Liu J F,Qu J F. 2014. Mesozoic-Cenozoic multi-stage intraplate deformations in the Langshan region and their tectonic implication. Acta Geologica Sinica, 88(1): 78-102. |