李天阳
作者: 佚名 发布时间: 2023年10月19日 11:02 浏览次数:

姓  名

李天阳

职称职务

副教授/硕士生导师


 

 

 

Email

tli@cqu.edu.cn

联系地址

重庆市高新区大学城南路55

重庆大学虎溪校园工科大楼D

研究方向

流体注入(CO2封存、水力压裂、废水回注)地球物理监测、地震-大地电磁联合反演与深部构造解释、探地(探月)雷达快速成像与精细反演等

https://scholar.google.com/citations?hl=en&user=YhoU1sUAAAAJ

(欢迎对相关领域感兴趣的研究生加入“深地资源探测”团队开展科学研究!)

个人简历

2021.09~至今,重庆大学,资源与安全学院,副教授

2019.07~2021.06University of Alberta,地球物理系,博士后研究员

2017.09~2019.03University of Alberta,地球物理系,CSC联合培养博士

2013.09~2019.06,中国石油大学(华东),石油工程学院,博士

2009.09~2013.06,中国石油大学(华东),石油工程学院,学士

代表性研究项目

1) 国家自然科学基金项目面上项目“基于地震电磁联合反演的滇西麻花坪钨铍矿多尺度成矿背景研究”,2026~2029(负责人)

2) 国家自然科学基金项目重点项目“山地城市桥梁钢筋锈蚀智能无损检测—机理、方法和装备研究”2026~2029(课题负责人)

3) 国家自然科学基金青年基金“二氧化碳封存区高频噪声响应与注入活动时空对应关系研究”,2023~2025(负责人)

4) 国家科技部重点研发计划“低频无人机航空探地雷达装备及配套软件研发”,2023-2026(子课题负责人)

5) 重庆市自然科学基金重点项目“二氧化碳地质封存多尺度地震-电磁探测方法研究”,2024-2026(负责人)

6) 重庆市自然科学基金面上项目“CO2注入封存区地震及电阻率响应三维模拟研究”,2022~2025(负责人)

7) 加拿大自然科学基金项目:工业二氧化碳捕集与埋存监测方法研究,2019~2024(参与)

8) 全重实验室面上项目:煤岩速度-电阻率关系建模及地震电磁联合反演应用,2025(负责人)

9) 横向项目:探地雷达小岩块快速识别模块编制与集成,2025(负责人)

10) 横向项目:盐穴地下空间气体封存区地层速度及电阻率反演研究,2023(负责人)

……

学术兼职

担任国家自然科学基金通讯函评专家、教育部研究生学位论文评审专家等;中国地震学会地壳深部探测专委会委员,中国地球物理学会城市与地下空间专委会委员,重庆市青年科学家创新联盟理事;长期担任GRLIEEE TGRSSurveys   in GeophysicsEarthquake Research Advances等期刊审稿人;AGU会员,IEEE会员,中国地球物理学会会员等。

代表性获奖

1) 2025教育部自然科学二等奖(P3);

2) 2025年中国石油和化学工业联合会科技进步三等奖(P4);

3) 2022年青岛市自然科学二等奖(P2);

4) 2019年国际交流奖学金;

5) 2019年中国石油大学(华东)院长奖学金;

6) 2016年山东省研究生优秀科技创新成果奖一等奖;

代表性论文(一作&通讯)

地震-电磁探测方法与解释:

1) Li, T., Wang, C., Yu, N.*, Lin, R.*, Gu, Y. J., Yu, T., &   Zhang, S. 2025. Contrasting crustal signatures across the 2021 MS6.0 Luxian   (China) induced earthquake revealed by dense seismic and magnetotelluric   data. Journal of Geophysical Research: Solid Earth, 130(10),   e2024JB031083. (Nature   Index期刊, Q1)

2) Li, T., Yu, T., Yu, N.*,   Wang, C., Lin, R.*, & Zhang, S. 2025. Crustal velocity-resistivity   structure of Shizhu earthquake zone, Southwest China: Revealing interaction   with the Yangtze river using dense seismic and magnetotelluric data. Tectonophysics,   915(26), 230924. (Q2)

3) Kong, W., Yu, N.*, Li, X., Chen, Z., Zhang, H., & Li, T*. 2023. A   Gradient Scaling Scheme for the 3-D Magnetotelluric Inversion With Galvanic   Distortion Correction. IEEE Transactions on Geoscience and Remote   Sensing, 61, 2003419. (Q1)

4) Yu, N., Liu, H., Feng, X., Li, T.*, Du, B., & Kong, W., 2023. Advancing CO2 Storage Monitoring via   Cross-Borehole Apparent Resistivity Imaging Simulation. IEEE   Transactions on Geoscience and Remote Sensing, 61, 5922712. (Q1)

5) Yu, N., Chen, Z., Wu, X., Kong, W.*, Chen, H., Li, T.*, & Feng, X. (2024). Unstructured grid   finite element modeling of the three-dimensional magnetotelluric responses in   a model with arbitrary conductivity and magnetic susceptibility anisotropies.   IEEE Transactions on Geoscience and Remote Sensing, 62,   2002013. (Q1)

流体注入诱发地震:

6) Li, T.*, Gu, Y.J., Lawton, D.C., Gilbert, H., Macquet, M.,   Savard, G., Wang, J., Innanen, K. & Yu, N.,   2022. Monitoring CO2 Injection at the CaMI Field Research Station   Using Microseismic Noise Sources. Journal of Geophysical Research:   Solid Earth, 127(12), e2022JB024719. (Nature   Index期刊, Q1)

7) Li, T., Gu, Y.J.*, Wang, Z., Wang, R., Chen,   Y., Song, T.R.A. & Wang, R., 2019. Spatiotemporal variations in crustal   seismic anisotropy surrounding induced earthquakes near Fox Creek, Alberta. Geophysical Research Letters,   46(10), 5180-5189. (Nature Index期刊, Q1)

8) Wang, J.*, Li, T.*, Gu, Y.J., Schultz, R., Yusifbayov, J. & Zhang, M., 2020. Sequential Fault Reactivation and Secondary Triggering in   the March 2019 Red Deer Induced Earthquake Swarm. Geophysical Research   Letters, 47(22), e2020GL090219. (Nature Index期刊, Q1)

9) Li, T., Gu, Y.J., Wang, J.,   Wang, R.*, Yusifbayov, J., Canlales, M. & Shipman, T., 2022. Earthquake swarm induced by wastewater disposal near   Musreau Lake, Alberta, 2018-2020. Seismological Research Letters,   93(2A), 727-738. (Q2)

10) Sun, W.*, Gu, Y.J., Liu, Y., Li,   T., Wang, R., Wang, J., ... & Jiang, G. (2026). Rupture cascade   initiated by wastewater disposal: Nucleation and domino effect of Canada's   largest induced earthquake. Geophysical Research Letters,   53(1), e2025GL118405. (Nature Index期刊, Q1)

探地雷达成像与反演:

11) Yu, N., Huang, C., Li, T.*, Ou Y., Wang W., Yu W.,   & El-Kaliouby, H. 2026. Instance Segmentation and   Localization of Overlapping Subsurface Rocks in GPR Images Using ConvNeXt and   Hybrid Task Cascade. IEEE Transactions on Geoscience and Remote Sensing. 64, 4500713. (Q1)

12) Wang, W., Li, T.*, Kong, W., Huang, C.,   Yu, T., Lin, R., & Yu, N. 2025. Exploring the Effectiveness of Improved   Reverse Time Migration on Multi-GPUs in Unmanned Aerial Vehicle-Based Ground-Penetrating   Radar. IEEE Geoscience and Remote Sensing Letters, 22, 3501905. (Q1)

13) Li, R., Zhang, H., Chen, Z., Yu, N., Kong, W.*, Li, T.*, ... & Liu, Y. 2022.   Denoising method of ground-penetrating radar signal based on independent   component analysis with multifractal spectrum. Measurement,   192, 110886. (Q1)

井筒岩石物理:

14) Li, T., Li, R.*, Yu, N.*, Wang, Z., & Wang, R. 2021. A novel approach based on   feature fusion for fracture identification using well log data. Fractals,   29(08), 2150256. (Q1)

15) Li, T.*, Wang,   Z., Wang, R. and Yu, N., 2021. Pore Type Identification in Carbonate Rocks   using Convolutional Neural Network Based on Acoustic Logging Data. Neural Computing and Applications,   33(9), 4151-4163. (Q1)

16) Li, T.*,   Wang, Z., Yu, N., Wang, R. and Wang, Y., 2020. Numerical Study of Pore   Structure Effects on Acoustic Logging Data in the Borehole Environment. Fractals, 28(3), 2050049-518. (Q1)

17) Li, T.*,   Wang, Z., Gu, Y.J., Wang, R. and Wang, Y., 2019. Experimental Study of Fracture   Structure Effects on Acoustic Logging Data using   a Synthetic Borehole Model. Journal of Petroleum Science and Engineering, 183,   106433. (Q1)

18) Li, T., Wang, R.* and Wang, Z., 2019. A   method of rough pore surface model and application in elastic wave   propagation. Applied Acoustics, 143,   100-111. (Q2)

19) Li, T.*,   Wang, R., Wang, Z., Zhao, M. & Li, L., 2018. Prediction of   fracture density using genetic algorithm support vector machine based on   acoustic logging data. Geophysics,   83(2), D49-D60. (Q2)

20) Li, T.*,   Wang, R., Wang, Z. & Wang, Y., 2016. Experimental study on the effects of   fractures on elastic wave propagation in synthetic layered rocks. Geophysics, 81(4), D441-D451. (Q2)

代表性专利

1) 一种探地雷达机器学习目标检测方法,202411970263.5.

2) 一种无人机探地雷达逆时偏移成像方法,202410431897.7.

3) 一种基于地层自适应加密的大地电磁反演方法,202310543810.0.

4) 一种可控裂缝参数的碳酸盐岩井筒模型制备方法及应用,201810521918.9.

5) 一种二维不同表面粗糙度的随机孔隙生成方法,201610591693.5.

6) 一种测量液体环空气侵后低频弹性波响应特征的实验装置,201611216869.5.

7) 基于低频弹性波响应特征的井筒气侵早期主动监测方法,201611216470.7.

8) 一种多重孔隙结构人造岩心及其制备方法,201410341399.X.

9) 背景噪声互相关及噪声源定位系统V1.0. 软件著作权:2025SR0546816.

10) 无人机探地雷达偏移成像系统V1.0. 软件著作权:2024SR0774273.

 

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