[1] |
邓运华,兰蕾,李友川,等. 论三角洲对南海海相油气田分布的控制作用[J]. 石油学报,2019,40(增刊2):1-12.
Deng Yunhua, Lan Lei, Li Youchuan, et al. On the control effect of deltas on the distribution of marine oil and gas fields in the South China Sea[J]. Acta Petrolei Sinica, 2019, 40(Suppl.2): 1-12. |
[2] |
李友川,邓运华,张功成. 中国近海海域烃源岩和油气的分带性[J]. 中国海上油气,2012,24(1):6-12.
Li Youchuan, Deng Yunhua, Zhang Gongcheng. Zoned distribution of source rocks and hydrocarbon offshore China[J]. China Offshore Oil and Gas, 2012, 24(1): 6-12. |
[3] |
张功成,王琪,苗顺德,等. 中国近海海陆过渡相烃源岩二元分布模式:以珠江口盆地白云凹陷为例[J]. 天然气地球科学,2014,25(9):1299-1308.
Zhang Gongcheng, Wang Qi, Miao Shunde, et al. The duality distribution pattern of marine-continental transitional hydrocarbon source rocks: A case study from Baiyun Sag in Pearl River Mouth Basin, China Offshore[J]. Natural Gas Geoscience, 2014, 25(9): 1299-1308. |
[4] |
李燕,邓运华,李友川. 河流—三角洲体系微相控烃及机理研究:以珠江口盆地恩平组煤系烃源岩为例[J]. 现代地质,2021,35(4):1065-1077.
Li Yan, Deng Yunhua, Li Youchuan. Characteristics and mechanism of source rock development controlled by sedimentary microfacies in river-delta system: Case study of coal-measure source rock in Enping Formation in Pearl River Estuary Basin[J]. Geoscience, 2021, 35(4): 1065-1077. |
[5] |
Wang D D, Zhang G C, Li Z X, et al. The development characteristics and distribution predictions of the Paleogene coal‐measure source rock in the Qiongdongnan Basin, northern South China Sea[J]. Acta Geologica Sinica (English Edition), 2021, 95(1): 105-120. |
[6] |
El-Gendy N H, Radwan A E, Waziry M A, et al. An integrated sedimentological, rock typing, image logs, and artificial neural networks analysis for reservoir quality assessment of the heterogeneous fluvial-deltaic Messinian Abu Madi reservoirs, Salma field, onshore East Nile Delta, Egypt[J]. Marine and Petroleum Geology, 2022, 145: 105910. |
[7] |
El Diasty W S, Moldowan J M, Peters K E, et al. Organic geochemistry of possible Middle Miocene–Pliocene source rocks in the west and northwest Nile Delta, Egypt[J]. Journal of Petroleum Science and Engineering, 2022, 208: 109357. |
[8] |
李丹,杨香华,常吟善,等. 澳大利亚北卡那封盆地中上三叠统Mungaroo三角洲陆源有机质分布特征[J]. 古地理学报,2014,16(2):193-204.
Li Dan, Yang Xianghua, Chang Yinshan, et al. Distribution of the Upper Triassic terrigenous organic matter in Mungaroo delta of North Carnarvon Basin, Australia[J]. Journal of Palaeogeography, 2014, 16(2): 193-204. |
[9] |
屈童,高岗,徐新德,等. 三角洲—浅海沉积体系泥质沉积规律模拟实验:以琼东南盆地崖南凹陷为例[J]. 岩性油气藏,2022,34(1):24-33.
Qu Tong, Gao Gang, Xu Xinde, et al. Simulation experiment of argillaceous sedimentary law of delta-shallow sea sedimentary system: A case study of Yanan Sag, Qiongdongnan Basin[J]. Lithologic Reservoirs, 2022, 34(1): 24-33. |
[10] |
谢玉洪. 中国海洋石油总公司油气勘探新进展及展望[J]. 中国石油勘探,2018,23(1):26-35.
Xie Yuhong. New progress and prospect of oil and gas exploration of China National Offshore Oil Corporation[J]. China Petroleum Exploration, 2018, 23(1): 26-35. |
[11] |
朱伟林. 中国近海新生代含油气盆地古湖泊学与烃源条件[M]. 北京:地质出版社,2009.
Zhu Weilin. Paleolimnology and source rock studies of Cenozoic hydrocarbon-bearing offshore basins in China[M]. Beijing: Geology Press, 2009. |
[12] |
Tyson R V, Follows B. Palynofacies prediction of distance from sediment source: A case study from the Upper Cretaceous of the Pyrenees[J]. Geology, 2000, 28(6): 569-571. |
[13] |
曾智伟,杨香华,朱红涛,等. 白云凹陷恩平组沉积晚期大型三角洲发育特征及其意义[J]. 地球科学,2017,42(1):78-92.
Zeng Zhiwei, Yang Xianghua, Zhu Hongtao, et al. Development characteristics and significance of large delta of Upper Enping Formation, Baiyun Sag[J]. Earth Science, 2017, 42(1): 78-92. |
[14] |
曾智伟,朱红涛,杨香华,等. 珠江口盆地白云凹陷恩平组物源转换及沉积充填演化[J]. 地球科学,2017,42(11):1936-1954.
Zeng Zhiwei, Zhu Hongtao, Yang Xianghua, et al. Provenance transformation and sedimentary evolution of Enping Formation, Baiyun Sag, Pearl River Mouth Basin[J]. Earth Science, 2017, 42(11): 1936-1954. |
[15] |
郭帅,杨海长,曾清波,等. 白云凹陷恩平组南部物源研究及其油气地质意义[J]. 海洋地质前沿,2020,36(6):56-63.
Guo Shuai, Yang Haizhang, Zeng Qingbo, et al. Provenance of Enping Formation in the southern Baiyun Sag, Pearl River Mouth Basin and its implications for petroleum geology[J]. Marine Geology Frontiers, 2020, 36(6): 56-63. |
[16] |
张春生,刘忠保. 现代河湖沉积与模拟实验[M]. 北京:地质出版社,1997.
Zhang Chunsheng, Liu Zhongbao. Modern river and lake deposits and simulated experiment[M]. Beijing: Geological Publishing House, 1997. |
[17] |
刘海,徐耀辉,李阳,等. 海陆过渡相三角洲沉积体系陆源有机质沉积特征及其影响因素的模拟实验研究[J]. 沉积学报,2024,42(1):251-265.
Liu Hai, Xu Yaohui, Li Yang, et al. Experimental simulation of terrigenous organic matter sedimentary characteristics and its influencing factors in transitional facies delta depositional system[J]. Acta Sedimentologica Sinica, 2024, 42(1): 251-265. |
[18] |
Ramaswamy V, Gaye B, Shirodkar P V, et al. Distribution and sources of organic carbon, nitrogen and their isotopic signatures in sediments from the Ayeyarwady (Irrawaddy) continental shelf, northern Andaman Sea[J]. Marine Chemistry, 2008, 111(3/4): 137-150. |
[19] |
李中乔,吴莹,李珍,等. 越南红河水下三角洲表层沉积物中有机物分布及来源分析[J]. 海洋与湖沼,2013,44(3):577-583.
Li Zhongqiao, Wu Ying, Li Zhen, et al. Distribution and source of organic matter in the surface sediments from the red river subaquatic delta, Vietnam[J]. Oceanologia et Limnologia Sinica, 2013, 44(3): 577-583. |
[20] |
Burd A B, Frey S, Cabre A, et al. Terrestrial and marine perspectives on modeling organic matter degradation pathways[J]. Global Change Biology, 2016, 22(1): 121-136. |
[21] |
Li Z Q, Wu Y, Liu S M, et al. An 800-year record of terrestrial organic matter from the East China Sea shelf break: Links to climate change and human activity in the Changjiang Basin[J]. Deep Sea Research Part II: Topical Studies in Oceanography, 2016, 124: 64-73. |
[22] |
蔡进功,包于进,杨守业,等. 泥质沉积物和泥岩中有机质的赋存形式与富集机制[J]. 中国科学:地球科学,2007,37(2):234-243.
Cai Jingong, Bao Yujin, Yang Shouye, et al. Research on preservation and enrichment mechanisms of organic matter in muddy sediment and mudstone[J]. Science China Earth Sciences, 2007, 37(2): 234-243. |
[23] |
Hu L M, Shi X F, Bai Y Z, et al. Recent organic carbon sequestration in the shelf sediments of the Bohai Sea and Yellow Sea, China[J]. Journal of Marine Systems, 2016, 155: 50-58. |
[24] |
陈诚,朱怡翔,石军辉,等. 断陷湖盆浅水三角洲的形成过程与发育模式:以苏丹Muglad盆地Fula凹陷Jake地区AG组为例[J]. 石油学报,2016,37(12):1508-1517.
Chen Cheng, Zhu Yixiang, Shi Junhui, et al. The forming process and development pattern of shallow water delta in fault Depression lacustrian basin: A case study of AG Formation in the Jake area in Fula Sag, Muglad Basin, Sudan[J]. Acta Petrolei Sinica, 2016, 37(12): 1508-1517. |
[25] |
魏康强,张元福,李媛,等. 利用水槽实验对不同流速下三角洲发育区别的探究[J]. 复杂油气藏,2017,10(3):6-11.
Wei Kangqiang, Zhang Yuanfu, Li Yuan, et al. Study on difference of delta development under different flow velocities by flume experiment[J]. Complex Hydrocarbon Reservoirs, 2017, 10(3): 6-11. |
[26] |
郭超,何青. 黏性泥沙絮凝研究综述与展望[J]. 泥沙研究,2021,46(2):66-73.
Guo Chao, He Qing. Review of the research on cohesive sediment flocculation[J]. Journal of Sediment Research, 2021, 46(2): 66-73. |
[27] |
李胜利,李顺利,付超. 长试管静置沉降实验结果对湖盆细粒沉积纹层成因的启示[J]. 古地理学报,2022,24(3):405-414.
Li Shengli, Li Shunli, Fu Chao. Implication of the large-tube settling experiment results on genesis of fine-grained deposition lamination of lacustrine basin[J]. Journal of Palaeogeography (Chinese Edition), 2022, 24(3): 405-414. |
[28] |
程乐峰,余涛,张孝顺,等. 机器学习在能源与电力系统领域的应用和展望[J]. 电力系统自动化,2019,43(1):15-31.
Cheng Lefeng, Yu Tao, Zhang Xiaoshun, et al. Machine learning for energy and electric power systems: State of the art and prospects[J]. Automation of Electric Power Systems, 2019, 43(1): 15-31. |
[29] |
Niu X X, Suen C Y. A novel hybrid CNN–SVM classifier for recognizing handwritten digits[J]. Pattern Recognition, 2012, 45(4): 1318-1325. |
[30] |
林景栋,吴欣怡,柴毅,等. 卷积神经网络结构优化综述[J]. 自动化学报,2020, 46(1): 24-37.
Lin Jingdong, Wu Xinyi, Chai Yi, et al. Structure optimization of convolutional neural networks: A survey[J]. Acta Automatica Sinica, 2020, 46(1): 24-37. |
[31] |
周永章,王俊,左仁广,等. 地质领域机器学习、深度学习及实现语言[J]. 岩石学报,2018,34(11):3173-3178.
Zhou Yongzhang, Wang Jun, Zuo Renguang, et al. Machine learning, deep learning and Python language in field of geology[J]. Acta Petrologica Sinica, 2018, 34(11): 3173-3178. |
[32] |
苏恺明,徐耀辉,徐旺林,等. 鄂尔多斯盆地延长组多油源贡献比例与分布规律:基于机器学习与可解释性研究[J]. 地学前缘,2024,31(3):530-540.
SU Kaiming, XU Yaohui, XU Wanglin, et al. Contribution ratio and distribution of numerous oil sources in the Yanchang Formation of the Ordos Basin: Based on machine learning and interpretability studies[J]. earth science Froniters, 2024, 31(3): 530-540. |
[33] |
匡立春,刘合,任义丽,等. 人工智能在石油勘探开发领域的应用现状与发展趋势[J]. 石油勘探与开发,2021,48(1):1-11.
Kuang Lichun, Liu He, Ren Yili, et al. Application and development trend of artificial intelligence in petroleum exploration and development[J]. Petroleum Exploration and Development, 2021, 48(1): 1-11. |
[34] |
李增学,张功成,王东东,等. 确定控制陆源分散有机质分布三角洲体系外缘坡度的方法:中国,108629130B[P]. 2019-09-24.
Li Zengxue, Zhang Gongcheng, Wang Dongdong, et al. A method to control the slope of the outer edge of the terrigenous dispersed organic matter distribution delta system is determined: CN, 108629130B[P]. 2019-09-24. |
[35] |
李增学,刘莹,李晓静,等. 琼东南盆地古近纪泥炭沼泽破坏与重建作用对煤型源岩物质形成的控制[J]. 石油与天然气地质,2022,43(6):1309-1320.
Li Zengxue, Liu Ying, Li Xiaojing, et al. The control of Paleogene peat swamp destruction and reconstruction on the formation of coal-type source material in the Qiongdongnan Basin[J]. Oil & Gas Geology, 2022, 43(6): 1309-1320. |