师资队伍

省部级人才

杨田

作者:. 来源:. 阅读次数: 日期:2024-03-11

姓名:杨田

职称:研究员,博导

电子邮箱:yangtian19@cdut.edu.cn/tianyang9645@gmail.com

研究室:碎屑岩沉积研究室

个人简介:杨田,男,汉族,中国党员湖北松滋人,1989年生。在Sedimentology、Basin Research、AAPG Bulletin、Marine and Petroleum Geology、石油学报、地球科学等国内外期刊发表论文80余篇,其中第一作者与通讯作者53篇,SCI检索23篇、EI检索12篇。作为项目负责人,获批国家自然科学基金面上项目、国家自然科学基金青年项目、四川省杰出青年科学基金、IAS Post-Doctoral Research Grants、中国石油科技创新基金等基金项目10余项。获山东省科技进步一等奖1项,中国石油化学与工业联合会科技进步一等奖1项,联合出版专著2部,授权国家发明专利7项。四川省杰出青年基金获得者、四川省“天府峨眉计划”青年人才计划入选者、自然资源部高层次科技创新人才、四川省矿物岩石地球化学学会沉积学专业委员会主任委员。《Basin Research》副主编,《Journal of Asian Earth Sciences》、《The Depositional Record》、《Energies》、《沉积学报》客座编辑,《石油学报》、《石油与天然气地质》、《沉积学报》、《成都理工大学学报(自然科学版)》、《岩性油气藏》青年编委;近3年作为共同召集人在国际沉积学大会等重要学术会议主持会议专题4次。《Sedimentology》、《Basin Research》、《AAPG Bulletin》、《中国科学》、《石油勘探与开发》、《石油学报》、《沉积学报》等多个国内外行业知名期刊审稿专家。

学历和工作背景:

学历:

2007.09~2011.06:中国石油大学(华东),本科,地质学

2011.09~2013.06:中国石油大学(华东),硕士,地质学,导师:操应长教授

2013.09~2017.06:中国石油大学(华东),博士(硕博连读),地质学,导师:操应长教授

2015.10~2016.10:丹麦奥胡斯大学联合培养,导师:Henrik Friis

工作背景:

2017.07~2019.06:中国石油大学(华东),博士后,合作导师:刘可禹教授,操应长教授;

2019.07~2020.07:成都理工大学,沉积地质研究院,珠峰人才计划C类,讲师

2020.07~2021.09:成都理工大学,沉积地质研究院,副研究员(破格),硕士生导师,油气藏地质及开发工程全国重点实验室固定研究人员

2021.09~2024.01:成都理工大学,沉积地质研究院,副研究员,博士生导师

2024.01~至今:成都理工大学,沉积地质研究院,研究员(破格),博士生导师

研究兴趣与方向

致力于以定量-定时为原则的沉积地质过程机制量化研究,以过程沉积学为研究主线,综合现代沉积、露头和岩心分析、水槽模拟和数值模拟等技术方法,探讨沉积过程与沉积产物之间的内在联系,解析沉积产物的资源与环境响应。

现阶段主要研究方向为:

l深水重力流沉积过程及其资源环境效应

l河流-三角洲沉积演化与资源环境效应

l细粒沉积物沉积过程与页岩油气富集

l碎屑岩储层成岩作用与优质储层成因

l碎屑岩沉积水槽实验模拟与数值模拟

获得的荣誉:

[1] 2018年中国石油和化学工业联合会科技进步一等奖《陆相湖盆低渗油藏碎屑岩储层表征技术及其应用》(11/15).

[2] 2019年山东省科技进步一等奖《陆相湖盆低渗油藏碎屑岩优质储层成因机制、评价技术及其应用》(11/12).

[3] 2020年四川省高层次人才引进计划

[4] 2023年自然资源部高层次科技创新人才

主持/参与科研项目(部分罗列):

1. IAS Post-Doctoral Research Grants《Effect of organic matter-clay mineral complexes on the dynamics of sediment gravity flows》,2019.07-2021.07, 2500€,项目负责人

2. International Exchanges 2022 (NSFC):《Characterizing hybrid sediment-gravity flows and associated fine-grained deposits (hybrid event beds) in deep-lacustrine basins》, The Royal Society, 2023.03-2025.03, £12,000,项目中方负责人

3.国家自然科学基金面上项目:《深水重力流沉积似镶边泥质碎屑成因与流体演化过程示踪研究》,2024.01-2027.12,项目号42372139,53万元,项目负责人;

4.国家自然科学基金面上项目:《富有机黏土复合体湖盆深水细粒重力流沉积机制研究—以鄂尔多斯盆地三叠系延长组为例》,2021.01-2024.12,项目号42072126,61万元,项目负责人

5.国家自然科学基金青年项目:《重力流混合事件层特征及形成演化机制研究—以山东灵山岛地区下白垩统为例》,2019.01-2021.01,项目号41802127,25万元,项目负责人

6.四川省自然科学基金杰出青年科学基金项目:《陆相湖盆黑色页岩沉积机制与碳循环过程研究》,2025.01-2027.12,40万,2025NSFJQ0004,项目负责人;

7.中国石油科技创新基金:《陆相湖盆深水细粒沉积成因机制与有机质富集规律》,2019.11-2021.11,18万,2019D-5007-0106,项目负责人

8.四川省自然科学基金青年项目:《湖盆细粒沉积机制与页岩油气富集规律研究》,2022.01-2023.12,10万,2022NSFSC0990,项目负责人

9.西南油气田分公司勘探开发研究院校企合作项目:《川西南地区陆相致密气成藏条件综合评价及目标优选》,2021.11-2022.6,88.5万元,项目负责人

10.重庆气矿校企合作项目:《川东地区侏罗系沙溪庙组-凉高山组沉积储层演化特征研究》,2021.6-2022.5,51.5万,项目负责人

11.西南油气田分公司勘探开发研究院校企合作项目:《川中-川西过渡带沙溪庙组沉积储层演化研究》,2020.6-2021.6,59万元,项目负责人

12.胜利油田分公司物探研究院校企合作项目:《断陷湖盆异重流沉积模拟实验》,2020.09-2021.06,47万元,项目负责人

主要学术兼职:

《Basin Research》副主编;四川省矿物岩石地球化学学会沉积学专业委员会主任委员。《Journal of Asian Earth Sciences》、《The Depositional Record》、《energies》客座编辑。《Sedimentology》、《Basin Research》、《AAPG Bulletin》、《Marine and Petroleum Geology》、《Journal of Asian Earth Sciences》、《中国科学》、《石油勘探与开发》、《石油学报》等多个国内外行业知名期刊审稿专家。

代表性文章(部分罗列):

[1] Tian Yang*, Haonan Sun, Yingchang Cao*, Chengfei Luo, Thomas Dodd. Gravel-inlaid mud clasts as indicators of transport processes of subaqueous sediment gravity-flows[J]. Sedimentary Geology, 2024, 472, 106741.

[2] Tian Yang*, Rong Cui, Yingchang Cao*, Yanzhong Wang, Lingli Zhou, Laixing Cai. Characteristics and diagenetic model of hyperpycnite reservoirs in the gentle slope of a lacustrine rift basin: A case study from the third member of the Eocene Shahejie Formation, Bonan Sag, Bohai Bay Basin, Eastern China [J]. AAPG Bulletin, 2024. 108(11), 2093-2125.

[3] Tian Yang*, Xiaofang Li, Yu Yang, Long Wen, Zhenglin Cao, Xiaojun Wang, Shaomin Zhang, Qiangshao Liang. Evolution from shallow-water deltas to fluvial fans in lacustrine basins: A case study from the Middle Jurassic Shaximiao Formation in the central Sichuan Basin, China [J]. Sedimentology, 2024, 71, 1023-1055.

[4] Tian Yang*, Yingchang Cao*, Yanzhong Wang, Laixing Cai, Haining Liu, Jiehua Jin. Sedimentary characteristics and depositional model of hyperpycnites in the gentle slope of a lacustrine rift basin: A case study from the third member of the Eocene Shahejie Formation, Bonan Sag, Bohai Bay Basin, Eastern China [J]. Basin Research, 2023, 35, 1590-1618.

[5] Tian Yang*, Yingchang Cao*, Haining Liu. Highstand sublacustrine fans: The role of a sudden increase in sediment supply [J]. Basin Research, 2023, 35, 1486-1508.

[6] Qing He, Tian Yang*, Laixing Cai, Qiqiang Ren, Jie Dai*. Porosity and permeability correction of laumontite-rich reservoirs in the first member of the Shaximiao Formation in the Central Sichuan Basin [J]. Marine and Petroleum Geology, 2023, 150, 106115.

[7] Xiaobing Niu, Tian Yang*, Yingchang Cao*, Shixiang Li, Xinping Zhou, Kelai Xi, Thomas J.H. Dodd,Characteristics and formation mechanisms of gravity-flow deposits in a lacustrine depression basin: Examples from the Late Triassic Chang 7 oil member of the Yanchang Formation, Ordos Basin, Central China[J]. Marine and Petroleum Geology, 2023, 148, 106048.

[8] Tian Yang*, Yingchang Cao*, Keyu Liu, JingchunTian, Ben Kneller,Depositional elements and evolution of gravity-flow deposits on Lingshan Island (Eastern China): An integrated outcrop-subsurface study [J]. Marine and Petroleum Geology, 2022, 138, 105566.

[9] Tian Yang*, Yingchang Cao*, Keyu Liu, Jingchun Tian, Carlos Zavala, Yanzhong Wang. Gravity flow deposits caused by different initiation processes in a deep-lake system. AAPG Bulletin, 2020, 104 (7):1643-1499.

[10] Tian Yang*, Yingchang Cao*, Henrik Friis, Keyu Liu, Yanzhong Wang, Lingli Zhou, Guanghui Yuan, Kelai Xi, Shaomin Zhang. Diagenesis and reservoir quality of lacustrine deep-water gravity-flow sandstones in the Eocene Shahejie Formation in the Dongying sag, Jiyang depression, eastern China [J]. AAPG Bulletin, 2020, 104(5): 1045-1073.

[11] Tian Yang*, Yingchang Cao*, Keyu Liu, Jingchun Tian, Henrik Friis, Lingli Zhou.Formation of zoned ankerite in gravity-flow sandstones in the Linnan Sag, Bohai Bay Basin, Eastern China: Evidence of episodic fluid flow revealed from in-situ trace elemental analysis [J].Marine and Petroleum Geology, 2020, 113, 104139.

[12] Tian Yang*, Yingchang Cao*, Keyu Liu, Lingli Zhou, Jiehua Jin. Origin of deep-water fine-grained sediments as revealed from the Lower Cretaceous rifting basin sequence in the Lingshan Island, Yellow Sea, Eastern China [J]. Journal of Asian Earth Sciences, 2019, 186: 104065.

[13] Tian Yang*, Yingchang Cao*, Yanzhong Wang, Keyu Liu, Chen He, Shaomin Zhang. Determining permeability cut-off values for net pay study of a low-permeability clastic reservoir: A case study of the Dongying Sag, eastern China [J]. Journal of Petroleum Science and Engineering, 2019, 178:262-271.

[14] Tian Yang*, Yingchang Cao*, Keyu Liu, Yanzhong Wang, Carlos Zavala, Henrik Friis, Mingshui Song, Guanghui Yuan, Chao Liang, Kelai Xi, Jian Wang. Genesis and depositional model of subaqueous sediment gravity-flow deposits in a lacustrine rift basin as exemplified by the Eocene Shahejie Formation in the Jiyang Depression, Eastern China [J]. Marine and Petroleum Geology, 2019, 102:231-257.

[15] Tian Yang*, Yingchang Cao*, Henrik Friis, Yanzhong Wang, Lingli Zhou. Diagenetic evolution and chemical changes of deep-water mudstones of Shahejie Formation in the Dongying Sag, Jiyang Depression, Eastern China [J]. Marine and Petroleum Geology, 2018, 93: 14-32.

[16] Tian Yang*, Yingchang Cao*, Henrik Friis, Keyu Liu, Yanzhong Wang, Lingli Zhou, Shaomin Zhang, Huina Zhang. Genesis and distribution pattern of carbonate cements in lacustrine deep-water gravity-flow sandstone reservoirs in the third member of the Shahejie Formation in the Dongying Sag, Jiyang Depression, Eastern China [J]. Marine and Petroleum Geology, 2018, 92: 547-564.

[17] Tian Yang*, Yingchang Cao*, Henrik Friis, Keyu Liu, Yanzhong Wang. Origin and evolution processes of hybrid event beds in the Lower Cretaceous of the Lingshan Island, Eastern China. Australian Journal of Earth Sciences, 2018, 65(4): 517-534.

[18] Yang Tian, Cao Yingchang*, Wang Yanzhong. A New Discovery of the Early Cretaceous Supercritical Hyperpycnal Flow Deposits on Lingshan Island, East China [J].Acta geologica sinica (English Edition), 2017, 91(2): 749-750.

[19] Yang Tian, Cao Yingchang*, Wang Yanzhong. Reply to the Comment by Tan Mingxuan et al. (2017), on “A new Discovery of the Early Cretaceous Supercritical Hyperpycnal Flow Deposits on the Lingshan Island, East China”, Acta Geologica Sinica (English Edition), 2017, 91(6): 2346-2348.

[20] Yang Tian, Cao Yingchang*, Wang Yanzhong, et al. Coupling of dynamics and physical property in hydrocarbon accumulation period control the oil-bearing property of low permeability reservoir [J]. Petroleum Science, 2016, 13: 204-224.

[21]Yang Tian, Cao Yingchang*, Wang Yanzhong, et al.Status of and Trends in Research on Deep–Water Gravity Flow Deposits [J].Acta geologica sinica (English Edition), 2015, 89(2): 610-631.

[22]杨田*,操应长,王健,田景春,蔡来星,余文强.陆相湖盆深水浊流与泥质碎屑流间过渡流沉积与沉积学意义[J].沉积学报,2022,doi:10.14027/j.issn.1000-0550.2022.083.

[23]杨 田*,操应长,田景春,牛小兵,李士祥,周新平,金杰华,张倚安.陆相湖盆深水重力流混合事件层沉积及沉积学意义[J].地质学报. 2021,95(12):3842-3857.

[24]杨田*,操应长,田景春.浅谈陆相湖盆深水重力流沉积研究中的几点认识[J].沉积学报,2021,39(1):88-111.

[25]杨田*,操应长,王艳忠,等.东营凹陷沙三中亚段浊积岩低渗透储层有效性评价[J].中国石油大学学报,2016,40(4):1-11.

[26]杨田,操应长,王艳忠,等.深水重力流类型、沉积特征及成因机制—以济阳坳陷沙河街组三段中亚段为例[J].石油学报,2015,36(9):1048-1059.

[27]杨田,操应长,王艳忠,等.渤南洼陷沙四下亚段扇三角洲前缘优质储层成因机制[J].地球科学—中国地质大学学报,2015,40(12):2067-2080.

[28]杨田,操应长,王艳忠,等.异重流沉积动力学过程及沉积特征[J].地质论评,2015,61(1):23-33.

[29]杨田,操应长,石世革,等.中深部碎屑岩储集层异常高孔隙度段划分方案及研究意义[J].矿物岩石化学通报,2017,36(3):483-492.

[30]余文强,杨田*,蔡来星,李晓芳,何青.四川盆地中部中侏罗世沙溪庙组古环境与古气候演化—以永浅1井为例[J].地质学报,2024,98(4):1211-1228.

[31]王小娟,张少敏,庞小婷,杨曦冉,李晓芳,葛新锐,蔡来星,杨田*.四川盆地天府气田沙溪庙组一段储层致密化机理与油气充注耦合关系[J].天然气工业,2024,44(6):33-43.

[32]何青,杨田*,苏朝光,巴素玉,金杰华,蔡来星,任启强.渤海湾盆地沾化凹陷沙四上亚段湖相碳酸盐岩储层特征及其控制因素[J].矿物岩石,2023,43(3):144-156.

[33]刘安琪,田景春,张少敏,陈守春,易娟子,罗鑫,罗妮娜,蔡来星,杨田*.川东地区侏罗系凉高山组致密砂岩储层特征及控制因素[J].矿物岩石,2023,43(1):144-155.

[34]蔡来星,杨田*,田景春,易娟子,任启强.致密砂岩储层中黏土矿物发育特征及其生长机理研究进展[J].沉积学报.2023,41(6):1859-1889.

[35]于吉星,杨田*,田景春,蔡来星,任启强,郭为雪.深水重力流沉积油气勘探中的几个基础沉积学问题与研究展望[J].古地理学报. 2023,25(6):1299-1314.

[36]侯明才,杨田*,田景春,蔡来星,李晓芳,何青,余文强.吉尔伯特型三角洲沉积过程与沉积模式[J].沉积学报,2023,41(5):1281-1294.

[37]王小娟,洪海涛,吴长江,刘敏,关旭,陈双玲,张少敏,梁庆韶,杨 田*.四川盆地川中地区侏罗系沙溪庙组致密砂岩储层特征及成因[J].吉林大学学报(地球科学版). 2022,52(04):1037-1051.

[38]黄军平,杨田*,张艳,李相博,董岐石,杨占龙,Guilherme Bozetti,郑泽宇.湖相细粒沉积岩沉积动力学机制与沉积模式——以鄂尔多斯盆地铜川地区延长组长7油层组露头为例[J].沉积学报,2023,41(4):1227-1239.

[39]刘海宁,韩宏伟,操应长,曲志鹏,张云银,杨 田*.东营凹陷东坡古近系沙三中亚段异重流沉积特征与沉积模式[J].中国石油大学学报(自然科学版). 2022,46(01):13-22.

[40]周新平,何青,刘江艳,李士祥,杨 田*.鄂尔多斯盆地三叠系延长组7段深水碎屑流沉积特征及成因[J].石油与天然气地质,2021,42(05):1063-1077.

[41]张倚安,李士祥,田景春,周新平,杨 田*.鄂尔多斯盆地上三叠统延长组长7段深水重力流沉积类型[J].沉积学报,2021,39(2):297-309.

[42]操应长,杨 田*,宋明水,等.陆相断陷湖盆低渗透碎屑岩储层特征及相对优质储层成因——以济阳坳陷东营凹陷古近系为例[J].石油学报,2018,39(7):727-743.

[43]操应长,杨 田*,王艳忠,等.超临界沉积物重力流形成演化及其作用下的沉积特征[J].石油学报,2017,38(6):607-621.

[44]操应长,杨 田*,王艳忠,等.深水碎屑流与浊流混合事件层类型及成因机制[J].地学前缘,2017,24(3):234-248.

[45]操应长,杨 田*,王 健,等.东营凹陷南坡沙四上亚段滩坝砂岩有效储层成因[J].中国石油大学学报,2013,37(6):1-9.

[46]操应长,杨 田*,王艳忠,等.济阳坳陷特低渗透油藏地质多因素综合定量分类评价[J].现代地质,2015,29(1):119-130.

[47]石世革,杨 田*,操应长,等.临南洼陷浊积岩储层成岩作用与孔隙演化[J].特种油气藏,2017,24(2):57-62.

出版教材及专著:

[1] 2021《陆相湖盆深水重力流沉积作用》(操应长;杨田;王艳忠)中国石油大学出版社.

[2] 2021《深水重力流沉积与油气成藏》(李相博;刘化清;杨田;杨仁超;李树同;庞玉茂)石油工业出版社.

代表性授权专利(部分罗列):

[1]杨田,李晓芳,蔡来星,刘蓥霖,崔 蓉,郭为雪,刘飞扬,朱忠华,葛新锐.基于沉积构型解析的致密储层非均质性分析方法,发明专利,ZL202311822255.1.

[2]杨田,余文强,蔡来星,刘蓥霖,崔 蓉,郭为雪,刘飞扬,朱忠华,葛新锐.基于地震属性与水平井轨迹分析的河道砂体内幕结构解析方法,发明专利,ZL 202311822238.8.

[3]杨田,李晓芳,蔡来星,刘蓥霖,崔蓉,郭为雪,刘飞扬,朱忠华,葛新锐.基于砂体构型与成岩演化过程分析的致密储层甜点预测方法,发明专利,ZL 202410158432.9.

[4]杨田,余文强,蔡来星,刘蓥霖,崔蓉,郭为雪,刘飞扬,朱忠华,葛新锐.一种基于测井数据的古土壤层识别方法,发明专利,ZL 202410269504.7,2024.09.20.

[5]杨田,何青,蔡来星,余文强,李晓芳.基于覆压孔渗测试的富浊沸石碎屑岩储层物性校正方法,发明专利,ZL 202210404149.0

[6]杨田,田景春,余文强,李晓芳,何青.一种重力流沉积成因测井识别方法,发明专利,ZL 202111151678.6

会议组织或召集

[1] Ben Kneller, Eckart Meiburg, Tian Yang. 2022.0902-2022.0904. Particulate Gravity Currents in the Environment 2022, University of Aberdeen and Chengdu University of Technology.

[2]第七届全国沉积学大会,2023,成都,“沉积盆地地质流体”、“深水重力流沉积体系与致密油气富集”专题召集人

[3] The 21st International Sedimentological Congress, Beijing, 2022,“Deep-lacustrine sedimentary processes and products”专题召集人

[4] 2023 Perkins-Rosen GCSSEPM RC, Houston, Houston, 2023,Society for Sedimentary Geology, Technical Program Committee

[5] The 6th International Conference of Palaeogeography, Nanjing, 2024,“Reading the records of event deposits: processes, mechanisms and implications”专题共同召集人,Yin LU, Massimo MORETTI, Tian YANG, Qiliang SUN, Renchao YANG

代表性学术报告:

[1] Yang Tian. Reveal paleo earthquake from turbidite, possible or impossible? Oral presentation for the 6th International Conference of Palaeogeography, 2024, Nanjing, China.

[2] Yang Tian, Cao Yingchang. Quasi-armored mud clasts as indicators of transport processes of subaqueous sediment gravity-flow. Oral presentation for the International Symposium New Advances in geological events deposition in 2023, Lanzhou, China.

[3] Yang Tian, Cao Yingchang. Hybrid event beds in deep-lacustrine basins. Oral presentation for the 21 International Sedimentologic al Congress, 2022, Beijing, China.

[4] Yang Tian, Cao Yingchang. Quasi-armored mud clasts as indicators of transport processes of subaqueous sediment gravityflow. Oral presentation for the 2022 Bouma Conference, University of Utrecht, Netherlands.

[5] Yang Tian, Cao Yingchang. Sedimentary characteristics and depositional model of hyperpycnites in a lacustrine rift basin. Oral presentation for the 5th International Conference of Palaeogeography, 2022, Wuhan, China.

[6] Yang Tian, Cao Yingchang, Liu Keyu, Tian Jingchun. Ancient hyperpycnites in lacustrine basins. Oral presentation for the International Symposium New Advances in Sedimentary Reservoir in 2022, Lanzhou, China.

[7] Yang Tian, Cao Yingchang, Liu Keyu, Tian Jingchun. Formation of Zoned Ankerite in Gravity-Flow Sandstones in the Linnan Sag, Bohai Bay Basin, Eastern China: Evidence of Episodic Fluid Flow Revealed from In-Situ Trace Elemental Analysis. Oral presentation for the 2020 AAPG annual meeting, Houston, American.

[8] Yang Tian, Cao Yingchang, Wang Yanzhong, et al. Diagenesis and Reservoir Quality of Lacustrine Deep‐Water Gravity Flow Sandstones of the Shahejie Formation (43.7‐38.2 Ma) in the Dongying Sag, Jiyang Depression, Eastern China. Geneva. Oral presentation for the AAPG/SEG 2017 International Conference & Exhibition (ICE), London, United Kingdom.

[9]杨田.陆相湖盆重力流混合事件层沉积及其油气地质意义.十六届沉积学及岩相古地理学学术会议,分会场邀请报告,2021.

[10]杨田.细粒重力流沉积研究进展及其非常规油气意义.第七届沉积学大会,分会场邀请报告,2023.

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