师资队伍

教授/研究员

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董翼昕

作者:0 来源:0 阅读次数: 日期:2025-01-08

姓名:董翼昕

职称:研究员硕导

电子邮箱:dyx@cdut.edu.cn; dongyixin008@hotmail.com

研究室:碎屑岩沉积研究室

董翼昕,男,党员,汉族,山东省东营市人,研究员,硕士生导师。目前主要从事碎屑岩、碳酸盐岩及页岩的构造-岩相古地理、成岩及储层成因演化研究,地质历史时期的主要事件的古海洋、古环境特征及其碳循环研究,页岩气开采过程中的环境效应研究等。作为骨干研究成员参与中石油、中石化及中海油等多项企业项目,对珠江口盆地、西湖凹陷、四川盆地及鄂尔多斯盆地海相和陆相多套地层开展了沉积充填过程、构造-岩相古地理演化及储层演化研究。目前,以第一作者或通讯作者在Earth-Science Reviews、Global and Planetary Change、Palaeogeography, Palaeoclimatology, Palaeoecology、Marine and Petroleum Geology、Journal of Natural Gas Science and Engineering等国际知名期刊上发表多篇SCI论文。

学历和工作背景:

2016.9至2020.12,成都理工大学,沉积学,博士

2019.2至2020.5,美国蒙特克莱尔州立大学,联合培养博士

2012.9至2015.6,中国石油大学(华东),地质工程,硕士

2008.9至2012.6,中国石油大学(华东),资源勘查工程,学士

主要研究领域:

[1]油气藏精细描述(以碎屑岩沉积、成岩作用和储层研究为主)

[2]碳酸盐岩沉积及储层成因研究

[3]古气候、古海洋条件及碳循环研究

[4]页岩沉积、储层特征及有机质富集机理研究

[5]页岩气开采过程中的水岩反应及地下水环境效应研究


获得的荣誉:

主持/参与科研项目:

[1]寒武纪大爆发后华南苗岭世古海洋环境稳定性研究,国家自然科学基金青年项目,42402118,2025.01-2027.12,在研,主持;

[2]元古宙雪球地球期岩石圈风化的时空演变,国家重点研发计划《地球系统联动过程与元古宙极端气候成因》子课题任务二,2024YFF0808002,2024.12-2029.11,在研,主持;

[3]页岩气开采区浅层地下水污染定量表征及成因机制研究—以四川威远-自贡地区为例,四川省自然科学基金项目青年基金项目,2023NSFSC0804,2023.01- 2024.12,完成,主持;

[4]压裂水岩作用模拟实验,中国石油天然气股份有限公司勘探开发研究院,2022.09- 2023.07,完成,主持;

[5]磷和硼多圈层循环与大规模成矿机理,国家重点研发计划《战略性矿产资源开发利用》重点专项子课题,2023YFC2906601,2024.01-2027.10,在研,主要参与人;

[6]页岩有机-无机多孔介质混合润湿性表征及其对页岩油微运移的影响,国家自然科学基金面上项目,42272180,2023.01-2026.12,在研,主要参与人;

[7]川南下寒武统筇竹寺组岩相与沉积微相研究,2023.05-2024.12,完成,主要参与人;

[8]四川盆地及邻区震旦纪-侏罗纪岩相古地理研究与勘探新领域,2022.01-2025.01,在研,主要参与人;

[9]川南地区海相沉积储层格架及有利储层分布,2022.06-2023.12,在研,主要参与人;

[10]四川盆地东南缘下组合构造-沉积分异与有利区带目标,2021.08-2023.3,在研,主要参与人;

[11]四川盆地洗象池组白云岩储层非均质性主控因素研究,2017.03-2018.9,完成,主要参与人;

[12]四川盆地中二叠世构造沉积格局与储层发育分布特征研究,2016.07- 2017.12,完成,主要参与人;

[13]四川盆地栖霞组-茅口组构造-岩相古地理研究,2016.01-2017.02,完成,主要参与人;

[14]东海厚层低孔常规低渗-致密储层甜点地质成因及地质建模研究,2014.01-2015.8,完成,主要参与人;

[15]西湖凹陷平湖组沉积期水体特征及其演化研究,2012.08-2013.12,完成,主要参与人;

[16]文昌13-1油田精细油藏描述,2011.12-2012.12,完成,主要参与人。

主要学术兼职:

代表性文章:

[1]Dong, Y.,Wang, J. *, Zhong, Y., Chen, A., Zheng, R., Zhu, P., ... & Cui, Y., 2025. The paleoenvironmental evolution of the Cambrian Miaolingian Epoch in South China.Palaeogeography, Palaeoclimatology, Palaeoecology, 112713.(二区,IF=3.0)

[2]Dong, Y.,Gachetti, A., Wu, Q., ... & Cui, Y.*, 2024. Paleoenvironment reconstruction of the eastern Tethys during the pre-onset excursion prior to the PETM.Palaeogeography, Palaeoclimatology, Palaeoecology, 647, 112234.(二区,IF=3.0)

[3]Dong, Y., Gao, J.*, Liu, Y., Tao, L., Wu, J., Zhu, P., ... & Huang, T., 2024. Salinization of groundwater in shale gas extraction area in the Sichuan Basin, China: Implications for water protection in shale regions with well-developed faults.Science of The Total Environment, 915, 170065. (一区,IF=9.8)

[4]Dong, Y., Cui, Y.*, Wang, J., Chen, H., ... & Jiang, S., 2021. Paleozoic carbon cycle dynamics: Insights from stable carbon isotopes in carbonate and C3land plants.Earth-Science Reviews, 103813. (一区,IF=12.4)

[5]Dong Y, Convers L C, Jiang S, … & Cui, Y.*, 2022. Reconstruction of the early Eocene paleoclimate and paleoenvironment of the southeastern Neo-Tethys Ocean.Global and Planetary Change, 103875. (一区,IF=4.96)

[6]Dong, Y., Xu, S.*, Chen, H., ... & Cui, Y., 2020. Tectonic control of Guadalupian-Lopingian cherts in northwestern Sichuan Basin, South China.Palaeogeography, Palaeoclimatology, Palaeoecology, 557, 109915. (二区,IF=3.3)

[7]Dong, Y.,Chen, H.*, Wang, J., Hou, M., Xu, S., Zhu, P., ... & Cui, Y.*, 2020. Thermal convection dolomitization induced by the Emeishan Large Igneous Province.Marine and Petroleum Geology, 116, 104308. (二区,IF=4.3)

[8]Zhu, P.,Dong, Y.*, Chen, M., Li, Z., Han, B., Wang, J., & Cui, Y., 2020. Quantitative evaluation of pore structure from mineralogical and diagenetic information extracted from well logs in tight sandstone reservoirs.Journal of Natural Gas Science and Engineering, 80, 103376. (二区,IF=4.97)

[9]董翼昕,倪云燕,张津川,2023.页岩气开发潜在水环境风险与应对措施.天然气地球科学,34(11): 2021-2035.(北大中文核心,IF=1.8)

[10]董翼昕,祝鹏,王久源,钟怡江,张晨,黄涵宇,任启强.一种基于页岩气开发的页岩压后的返排地质模型,ZL 2024 1 0913698.X(发明专利

[11]Zhu, P., Meng, X., Wang, X.,Dong, Y., Li, X., Zhang, C., ... & Guo, J., 2022. Geochemical characteristics of diagenetic fluid and densification model of tight gas sandstone reservoirs in Linxing area, eastern margin of Ordos Basin, China.Marine and Petroleum Geology, 105496. (二区,IF=4.3)

[12]Lu, F., Tan, X., Xiao, D., Shi, K., Li, M., Zhang, Y., ... &Dong, Y., 2023. Sedimentary control on diagenetic paths of dolomite reservoirs in a volcanic setting: A case study of the Permian Chihsia Formation in the Sichuan Basin, China.Sedimentary Geology, 454, 106451. (二区,IF=3.2)

[13]Zheng, H., Lu, F.,Dong, Y., Liu, B., ... & Qing, H., 2024. Magma-driven thermal convection dolomitization of the Lower-Middle Ordovician strata caused by Mg sourced from underlying Cambrian dolomites in the Tarim Basin, China.Marine and Petroleum Geology, 106740. (二区,IF=4.3)

[14]Wu, Q., Cui, Y., Wang, Y., Jiang, S.,Dong, Y., & Shen, J., 2024. Biogeochemical responses to global warming during the Paleocene–Eocene Thermal Maximum in the eastern Tethys.Palaeogeography, Palaeoclimatology, Palaeoecology, 636, 111969. (二区,IF=3.0)

[15]Zhu, P., Ma, T., Wang, X., Li, X.,Dong, Y., Yang, W., & Teng, Z., 2023. Wavelet transform coupled with Fischer plots for sequence stratigraphy: A case study in the Linxing area, Ordos Basin, China.Geoenergy Science and Engineering, 231, 212306. (二区,IF=4.4)

[16]Xia, W., Chen, A., Azmy, K., ... &Dong, Y., 2023. A pilot study of upper Yangtze shallow-water carbonates of the Paibian global marine euxinia: Implications for the late Cambrian SPICE event.Marine and Petroleum Geology, 150, 106146. (二区,IF=4.3)