[1] 邓胜徽,黄智斌,景秀春,等. 塔里木盆地西部奥陶系内部不整合[J]. 地质论评,2008,54(6):741-747.

Deng Shenghui, Huang Zhibin, Jing Xiuchun, et al. Unconformities in the Ordovician of western Tarim Basin, NW China[J]. Geological Review, 2008, 54(6): 741-747.
[2] 江大勇,皮学军,孙作玉,等. 新疆柯坪大湾沟剖面柯坪塔格组中段底部笔石生物地层初步分析[J]. 地层学杂志,2006,30(3):253-257.

Jiang Dayong, Pi Xuejun, Sun Zuoyu, et al. Report on graptolite biostratigraphy of the basal part of the middle member of the Kepingtage Formation at Dawangou section, Keping, Xinjiang[J]. Journal of Stratigraphy, 2006, 30(3): 253-257.
[3] 赵宗举,赵治信,黄智斌. 塔里木盆地奥陶系牙形石带及沉积层序[J]. 地层学杂志,2006,30(3):193-203.

Zhao Zongju, Zhao Zhixin, Huang Zhibin. Ordovician conodont zones and sedimentary sequences of the Tarim Basin, Xinjiang, NW China[J]. Journal of Stratigraphy, 2006, 30(3): 193-203.
[4] 王清龙,韩剑发,李浩,等. 塔里木盆地西北缘露头区中—下奥陶统碳酸盐岩层序结构、沉积演化及海平面变化[J]. 石油与天然气地质,2019,40(4):835-850,916.

Wang Qinglong, Han Jianfa, Li Hao, et al. Carbonate sequence architecture, sedimentary evolution and sea level fluctuation of the Middle and Lower Ordovician on outcrops at the northwestern margin of Tarim Basin[J]. Oil & Gas Geology, 2019, 40(4): 835-850, 916.
[5] 阎琨,赵志刚,马伟,等. 塔里木柯坪地区上奥陶统印干组碳酸盐岩微相和古地理[J]. 新疆地质,2019,37(3):363-367.

Yan Kun, Zhao Zhigang, Ma Wei, et al. Carbonate microfacies characteristics and palaeogeography of Late Ordovician Yingan Formation in Keping, Xinjiang[J]. Xinjiang Geology, 2019, 37(3): 363-367.
[6] 孙庆峰. 新疆柯坪中奥陶统结核状灰岩的沉积环境及成因[J]. 岩石矿物学杂志,2006,25(2):137-147.

Sun Qingfeng. The sedimentary environment and genesis of Middle Ordovician nodular limestones in Keping, Xinjiang[J]. Acta Petrologica et Mineralogica, 2006, 25(2): 137-147.
[7] 赵宗举,吴兴宁,潘文庆,等. 塔里木盆地奥陶纪层序岩相古地理[J]. 沉积学报,2009,27(5):939-955.

Zhao Zongju, Wu Xingning, Pan Wenqing, et al. Sequence lithofacies paleogeography of Ordovician in Tarim Basin[J]. Acta Sedimentologica Sinica, 2009, 27(5): 939-955.
[8] 林畅松,杨海军,蔡振中,等. 塔里木盆地奥陶纪碳酸盐岩台地的层序结构演化及其对盆地过程的响应[J]. 沉积学报,2013,31(5):907-919.

Lin Changsong, Yang Haijun, Cai Zhenzhong, et al. Evolution of depositional architecture of the Ordovician carbonate platform in the Tarim Basin and its response to Basin processes[J]. Acta Sedimentologica Sinica, 2013, 31(5): 907-919.
[9] 蔡忠贤,贾振远,肖立新. 塔里木盆地北部早古生代早—中奥陶世一次典型的碳酸盐岩台地沉没事件[J]. 现代地质,1998,12(1):32-39.

Cai Zhongxian, Jia Zhenyuan, Xiao Lixin. A typical carbonate platform drowning event during Early Middle Ordovician in north Tarim Basin[J]. Geoscience, 1998, 12(1): 32-39.
[10] 常晓琳. 晚奥陶世古海洋环境演化过程:来自塔里木和中扬子地区的沉积学与地球化学证据[D]. 成都:成都理工大学,2018:2-13.

Chang Xiaolin. Late Ordovician paleoceanographic changing process: Sedimentary and geochemcial evidences from the Upper Ordovician of the Tarim Basin and middle Yangtze regions, China[D]. Chengdu: Chengdu University of Technology, 2018: 2-13.
[11] 王宗哲,杨杰东. 新疆柯坪地区早古生代地层的碳同位素变化特征及其意义[J]. 地层学杂志,1994,18(1):45-52.

Wang Zongzhe, Yang Jiedong. Features of the carbon isotope changes in the Early Palaeozoic rocks of the Kalpin area, Xinjiang and their significance[J]. Journal of Stratigraphy, 1994, 18(1): 45-52.
[12] 杨杰东,王宗哲. 新疆柯坪地区早古生代地层的碳、氧和锶同位素[J]. 地质论评,1994,40(4):377-385.

Yang Jiedong, Wang Zongzhe. C, O and Sr isotopes of Early Paleozoic strata in the Kalpin area, Xinjiang[J]. Geological Review, 1994, 40(4): 377-385.
[13] Zhang Y D, Munnecke A. Ordovician stable carbon isotope stratigraphy in the Tarim Basin, NW China[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 2016, 458: 154-175.
[14] 林畅松,李思田,刘景彦,等. 塔里木盆地古生代重要演化阶段的古构造格局与古地理演化[J]. 岩石学报,2011,27(1):210-218.

Lin Changsong, Li Sitian, Liu Jingyan, et al. Tectonic framework and paleogeographic evolution of the Tarim Basin during the Paleozoic major evolutionary stages[J]. Acta Petrologica Sinica, 2011, 27(1): 210-218.
[15] 侯明才,江文剑,邓敏,等. 塔里木盆地盐下地区奥陶系火山碎屑物质特征[J]. 地球科学,2019,44(3):822-832.

Hou Mingcai, Jiang Wenjian, Deng Min, et al. Characteristics of Ordovician volcaniclastic materials in Yanxia area of northern Tarim Basin and their geological significance[J]. Earth Science, 2019, 44(3): 822-832.
[16] 林畅松,杨海军,刘景彦,等. 塔里木早古生代原盆地古隆起地貌和古地理格局与地层圈闭发育分布[J]. 石油与天然气地质,2008,29(2):189-197.

Lin Changsong, Yang Haijun, Liu Jingyan, et al. Paleohigh geomorphology and paleogeographic framework and their controls on the formation and distribution of stratigraphic traps in the Tarim Basin[J]. Oil & Gas Geology, 2008, 29(2): 189-197.
[17] 皮学军,刘楚雄,陈颖,等. 新疆柯坪大湾沟奥陶系顶部—志留系底部化学地层特征讨论[J]. 北京大学学报(自然科学版),2007,43(2):183-189.

Pi Xuejun, Liu Chuxiong, Chen Ying, et al. Discussion on chemo-stratigraphic characteristics of boundary bed between the top part of the Ordovician and the basal part of the Silurian at Dawangou section, Keping, Xinjiang[J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2007, 43(2): 183-189.
[18] 陈旭,王志浩. 上奥陶统底界全球辅助层型剖面在我国的确立[J]. 地层学杂志,2003,27(3):264-265.

Chen Xu, Wang Zhihao. Global auxiliary stratotype section of the Upper Ordovician in China[J]. Journal of Stratigraphy, 2003, 27(3): 264-265.
[19] 周志毅,赵治信,胡兆旬,等. 塔里木盆地各纪地层[M]. 北京:科学出版社,2001:42-81.

Zhou Zhiyi, Zhao Zhixin, Hu Zhaoxun, et al. Stratigraphy of the Tarim Basin[M]. Beijing: Science Press, 2001: 42-81.
[20] Wang Z H, Bergström S M, Lane H R. Conodont provinces and biostratigraphy in Ordovician of China[J]. Acta Palaeontologica Sinica, 1996, 35(1): 26-59, 133-136.
[21] 李越,王建坡,沈安江,等. 新疆巴楚中奥陶统上部一间房组瓶筐石礁丘的演化意义[J]. 古生物学报,2007,46(3):347-354.

Li Yue, Wang Jianpo, Shen Anjiang, et al. Evolutionary significance of the calathium reef mound from the Yijianfang Formation, Bachu, Xinjiang[J]. Acta Palaeontologica Sinica, 2007, 46(3): 347-354.
[22] Chen X, Bergström S M, Finney S C, et al. Darriwilian to Katian (Ordovician) graptolites from northwest China[M]. Amsterdam: Elsevier, 2015: 370.
[23] 朱筱敏. 沉积岩石学[M]. 北京:石油工业出版社,2008:399-407.

Zhu Xiaomin. Sedimentary petrology[M]. Beijing: Petroleum Industry Press, 2008: 399-407.
[24] 埃里克·弗吕格尔. 碳酸盐岩微相:分析、解释及应用[M]. 马永生,刘波,郭荣涛,译. 2版. 北京:地质出版社,2016:587-590.[

Flügel E. Microfacies of carbonate rocks: Analysis, interpretation and application[M]. Ma Yongsheng, Liu Bo, Guo Rongtao, trans. 2nd ed. Beijing: Geological Publishing House, 2016: 587-590.]
[25] 包洪平,杨承运. 碳酸盐岩微相分析及其在岩相古地理研究中的意义[J]. 岩相古地理,1999,19(6):59-64.

Bao Hongping, Yang Chengyun. The earbonate microfacies analysis and its applications to sedimentary facies and palaeogeographic research[J]. Sedimentary Facies and Palaeogeography, 1999, 19(6): 59-64.
[26] Boggs S. Principles of sedimentology and stratigraphy[M]. 5th ed. Boston: Pearson, 2012: 366-382.
[27] Wilson J L. Carbonate facies in geologic history[M]. New York: Springer, 1975: 20-46.
[28] 武振杰,姚建新,陈留勤. 塔里木盆地柯坪地区奥陶系层序地层研究[J]. 岩石矿物学杂志,2012,31(6):875-884.

Wu Zhenjie, Yao Jianxin, Chen Liuqin. Ordovician sequence stratigraphy of Keping area, northwest Tarim Basin[J]. Acta Petrologica et Mineralogica, 2012, 31(6): 875-884.
[29] 童金南,殷鸿福. 古生物学[M]. 北京:高等教育出版社,2007:100-109.

Tong Jinnan, Yin Hongfu. Paleontology[M]. Beijing: Higher Education Press, 2007: 100-109.
[30] 郑兴平,罗平. 川东渝北飞仙关组的米兰克维奇周期及其应用[J]. 天然气勘探与开发,2004,27(1):16-19.

Zheng Xingping, Luo Ping. Analysis and application of Milankovitch cycles on Feixianguan Formation, northeast Sichuan Basin, China[J]. Natural Gas Exploration & Development, 2004, 27(1): 16-19.
[31] 胡修棉,王成善. 白垩纪大洋红层:特征、分布与成因[J]. 高校地质学报,2007,13(1):1-13.

Hu Xiumian, Wang Chengshan. Cretaceous oceanic red beds: Characters, occurrences, and origin[J]. Geological Journal of China Universities, 2007, 13(1): 1-13.
[32] 张元动,詹仁斌,甄勇毅,等. 中国奥陶纪综合地层和时间框架[J]. 中国科学(D辑):地球科学,2019,49(1):66-92.

Zhang Yuandong, Zhan Renbin, Zhen Yongyi, et al. Ordovician integrative stratigraphy and timescale of China[J]. Science China(Seri.D):Earth Sciences, 2019, 49(1): 66-92.
[33] Wang W H, Muir L A, Chen X, et al. Earliest Silurian graptolites from Kalpin, western Tarim, Xinjiang, China[J]. Bulletin of Geosciences, 2015, 90(3): 519-542.
[34] Ge R F, Zhu W B, Wilde S A, et al. Neoproterozoic to Paleozoic long-lived accretionary orogeny in the northern Tarim Craton[J]. Tectonics, 2014, 33(3): 302-329.
[35] 贾振远,蔡华,蔡忠贤,等. 鄂尔多斯地区南缘奥陶纪层序地层及海平面变化[J]. 地球科学:中国地质大学学报,1997,22(5):491-503.

Jia Zhenyuan, Cai Hua, Cai Zhongxian, et al. Sequence stratigraphy and sea level change of the Ordovician in the southern margin of Ordos region[J]. Earth Science: Journal of China University of Geosciences, 1997, 22(5): 491-503.
[36] 苏文博,李志明,陈建强,等. 海平面变化全球可比性的可靠例证:上扬子地台东南缘奥陶纪层序地层及海平面变化研究[J]. 沉积学报,1999,17(3):345-354.

Su Wenbo, Li Zhiming, Chen Jianqiang, et al. A reliable example for eustacy Ordovician sequence stratigraphy on the southeastern margin of the Upper Yangtze Platform[J]. Acta Sedimentologica Sinica, 1999, 17(3): 345-354.
[37] Ross J R P, Ross C A. Ordovician sea-level fluctuations[M]//Webby B D, Laurie J R, Sydney A. Global perspectives on Ordovician geology. Rotterdam: A.

Balkema A., 1992: 327-335.
[38] Woodcock N H. Sequence stratigraphy of the Palaeozoic Welsh Basin[J]. Journal of the Geological Society, 1990, 147(3): 537-547.
[39] Haq B U, Schutter S R. A chronology of Paleozoic sea-level changes[J]. Science, 2008, 322(5898): 64-68.
[40] Zhao Z J, Wang J G, Wang P X. Carbon and oxygen isotope variation and its implication for marine sequence: A case study of Ordovician in Tarim Basin[J]. Petroleum Research, 2017, 2(3): 281-290.
[41] 谢环羽,赵靖舟,王培玺,等. 中—上扬子地区奥陶系层序地层格架[J]. 石油学报,2019,40(10):1202-1222.

Xie Huanyu, Zhao Jingzhou, Wang Peixi, et al. Ordovician sequence stratigraphic framework in the Middle-Upper Yangtze area[J]. Acta Petrolei Sinica, 2019, 40(10): 1202-1222.