学位:博士
性别:男
毕业院校:德国布伦瑞克工业大学
学历:博士研究生毕业
在职信息:在职
所在单位:地球探测科学与技术学院
1. 综合地球物理勘查技术:包括重力、磁法和电法用于沙漠地区、黄土高原、森林覆盖、湖泊沼泽等地形地质条件复杂区域地质填图、寻找深部隐伏矿、油气资源、地热资源、地下水、煤田、环境(垃圾处理,海侵)和工程调查(石油管线,隧道)等应用领域;
2. 地面电磁法:包括仪器系统设计研发、理论和方法技术、数据处理解释和应用(大地电磁MT、可控源大地电磁电磁法CSAMT、时间域瞬便电磁法TDEM,时间域激电和频谱激电等);
3. 航空电磁法:包括时间域固定翼系统、时间域直升机吊舱系统、频率域吊舱系统;
4. 海洋电磁法:包括海洋大地电磁MMT和海洋可控源电磁法MCSEM;
5. 电磁感应测井和随钻测井、电磁波前视探测和地质导向、探地雷达、核磁共振等;
6. 地球物理数据综合解释技术,包括重、磁、电、震数据联合反演和解释;
7. 拥有国际最先进的电磁勘探设备 V5、V8网络化多功能电磁观测系统;着手研制多分量电磁感应测井系统;准备购买核磁共振仪器,用于煤田渗水勘查。
1. Ruo Wang, Changchun Yin, et al., 2012, Simulated annealing for controlled-source audio-frequency magnetotelluric data inversion, Geophysics, 77, E127-133.
2. Weng Aihua, Changchun Yin et al. 2012, Effective calculation of EM Green’s Functions Applied to MCSEM Forward Modeling, Extended Abstract, EAGE Saint Petersburg, C004.
3. Changchun Yin and Greg Hodges, 2012, Accurate 2D/3D electromagnetic modeling for time-domain airborne EM systems, Extended Abstract, AGU Fall Meeting, San Francisco.
4. Yunhe Liu and Changchun Yin, 2013, Electromagnetic divergence correction for 3D anisotropic EM modeling, Journal of Applied Geophysics, 96, 19-27.
5. Yunhe Liu and Changchun Yin, 2013, NLCG and L-BFGS optimization for 3D HEM inversion, Extended Abstract, 83rd SEG Annual Meeting, Houston.
6. Yunhe Liu and Changchun Yin, 2013, Electromagnetic fields of AEM systems in a 3D arbitrarily anisotropic earth, Extended Abstract, 83rd SEG Annual Meeting, Houston.
7. Changchun Yin and Yunhe Liu, 2013, Attitude effects for marine CSEM systems, Proceedings of Marelec 2013 (Poster Presentation), Hamburg, Germany.
8. Yanfu Qi, Jing Cai and Changchun Yin, 2013, Laterally constrained inversion for helicopter-borne EM data, Proceedings of NSG Asia Pacific Conference (Oral presentation), Beijing. Honor of Best paper.
9. Xin Huang and Changchun Yin, 2013, Footprints for airborne electromagnetic systems, Proceedings of NSG Asia Pacific Conference (Oral presentation), Beijing.
10. Yunhe Liu and Changchun Yin, 2014,3D Anisotropic Modeling for Airborne EM Systems Using Finite-difference Method, Journal of Applied Geophysics,109, 186-194.
11. Changchun Yin, Xin Huang, Yunhe Liu and Jing Cai, 2014, Footprint for frequency-domain airborne electromagnetic systems, Geophysics,79, E243-254.
12. Changchun Yin, Fang Ben, Wei Huang and Jing Cai, 2014, 3D anisotropic modeling for marine CSEM, Proceedings of EAGE First Applied Shallow Marine Geophysics Conference (Oral presentation), Athens, Greece.
13. Changchun Yin, Bo Zhang, Yunhe Liu and Jing Cai, 2014, Topographic modeling for time-domain AEM systems using finite element method, Proceedings of 20th European Meeting of Environmental and Engineering Geophysics (Poster presentation), Athens, Greece.
14. Changchun Yin, et.al, 2014, Inversion of airborne EM data, ICEEG, Xi’an, China (Keynote Speaker) .
15. Yunhe Liu, Changchun Yin and Jing Cai, 2014, 3D anisotropic inversion for frequency-domain airborne EM data, Extended Abstract, 84th SEG Annual Meeting, Denver.
16. Changkai Qiu,Changchun Yin,2014,The diffusion features of a time-domain helicopter electromagnetic system,Proceedings of ICEEG 2014 (Oral Presentation),Xi’an.
17. Xiuyan Ren,Changchun Yin,2014,The exploration capability of time-domain AEM systems for deep conductors, Proceedings of ICEEG 2014 (Oral Presentation), Xi’an.
18. Yunhe Liu, Changchun Yin, 2014, Three-dimensional frequency domain AEM three-axial anisotropic inversion, Proceedings of ICEEG 2014 (Oral Presentation),Xi’an.
19. Bo Zhang, Changchun Yin, 2014, 2.5-D airborne forward problem with topography, Proceedings of ICEEG 2014 (Oral Presentation),Xi’an.
20. Yifeng Pei, Changchun Yin, 2014, Calculation and application of B-field for time-domain airborne EM, Proceedings of ICEEG 2014 (Oral Presentation),Xi’an.
21. Jianmei Zhou, Jianxun Wang, Hongnian Wang and Changchun Yin, 2014, Regularized inversion of controlled source audio-frequency magnetotelluric data in horizontally layered transversely isotropic media, Journal of Geophysics and Engineering, 11, 1-12.
22. Changchun Yin and Changkai Qiu, 2014, EM Diffusion for a Time-Domain Airborne EM System, Extended Abstract, AGU Annual Meeting, San Francisco.
23. Changchun Yin and Ruo Wang*, 2015, Detection of powerline ground resistance using HEM systems, Geophysics,80,E125-133.
24. Changchun Yin, Xiuyan Ren*, et al, 2015, Review on airborne EM inversion theory and application, Geophysics,80, W17-31.
25. Ruo Wang and Changchun Yin*, 2015, et al. Laterally constrained inversion for CSAMT data interpretation. Journal of Applied Geophysics,121, 63-70.
26. Changchun Yin , Ruo Wang, Limin Pan, 2015,Powerline ground resistance detection from HEM survey, NSGAP Hawaii, USA.
27. Yunhe Liu, Changchun Yin, Aihua Weng, and Jing Cai, 2015, Effect of observation parameters on 3D controlled-source electromagnetic inversion, NSGAP Hawaii, USA.
28. Changchun Yin, 2015,Airborne EM Technology and Applications, 12nd Annual Meeting, Asia Oceania Geosciences Society (AOGS), Singapore, Keynote Speaker.
29. Bo Zhang and Changchun Yin,2015, 3-D modeling on topography for frequency-domain airborne EM systems. 12th China International Geo-electromagnetic Induction Workshop, Changsha. Best Paper for Oral Presentation.
30. Yunhe Liu and Changchun Yin,2015,3D inversion for multi-pulse airborne transient electromagnetic data. 12th China International Geo-electromagnetic Induction Workshop, Changsha.
31. Yanfu Qi and Changchun Yin, 2015,Full-wave forward modeling and inversion for multi-channel transient EM. 12th China International Geo-electromagnetic Induction Workshop, Changsha. Best Paper for Poster Presentation.
32. Ruo Wang, Changchun Yin, Miaoyue Wang, Qingyun Di, and Yalu Wang,2015,Application of Lateral Constraint Inversion to CSAMT Data. 12th China International Geo-electromagnetic Induction Workshop, Changsha.
33. Yunhe Liu and Changchun Yin*,2016,3D inversion for multi-pulse airborne transient EM data,Geophysics,81,E401-E408.
34. Shilong Wang, Changchun Yin*,et. al, 2016, Bipolar square-wave current source for transient EM systems based on constant shutdown time, Review of Scientific Instruments,87,034707 (1-9).
35. Changchun Yin,Yanfu Qi*, Yunhe Liu, 2016, 3D time-domain airborne EM modeling for an arbitrarily anisotropic earth, Journal of Applied Geophysics, 131,163-178.
36. Changchun Yin, Yanfu Qi*, and Yunhe Liu, 2016, 3D time-domain airborne EM forward modeling with topography, Journal of Applied Geophysics,134,11-22.
37. Changchun Yin, Bo Zhang*, Yunhe Liu, Jing Cai, 2016, A goal-oriented adaptive finite-element method for 3D scattered airborne EM modeling, Geophysics, 81, E337-E346.
38. Aihua Weng, Yunhe Liu, Changchun Yin, Dingyu Jia, 2016 Singularity-free Green’s function for EM sources embedded in a stratified medium, Applied Geophysics, 13, 25-36.
39. Changchun Yin, Ping Zhang, Jing Cai, 2016, Forward modeling of marine DC resistivity method for anisotropic models, Applied Geophysics,13,279-287.
40. Liu Yun-he, Yin Chang-chun*, Ren Xiu-Yan, Qiu Chang-Kai,2016, 3D parallel inversion for time-domain airborne EM data. Applied Geophysics, 13, 701-711.
41. Wei Huang, Changchun Yin*, Ben Fang, Liu Yunhe, Chen Hui, Cai Jing, 2016, 3D forward modeling for frequency AEM by vector finite element. Journal of Earth Science, 41(2): 331-342.
42. Changchun Yin, Yanfu Qi*, et al., 2016, 3D time-domain forward modeling for GREATEM system with topography, Oral presentation at EAGE 78th Conference, Vienna.
43. Yanfu Qi, Changchun Yin* et al., 2016, 3D full-wave forward modeling for ground TEM, Poster presentation at EAGE 78th Conference, Vienna.
44. Changchun Yin, Bo Zhang*, et al., 2016, Three dimensional CSAMT modeling with topography, Poster presentation at EAGE 78th Conference, Vienna.
45. Yunhe Liu and Changchun Yin*, 2016, 3D anisotropic inversion for ATEM data, Poster presentation at EAGE 78th Conference, Vienna.
46. Xiaoyue Cao, Changchun Yin* et al., 2016, Forward modeling of 3D anisotropic magnetotelluric sounding based on unstructured finite-element method, Oral Presentation at 13rd Annual Meeting, Asia Oceania Geosciences Society (AOGS), Beijing.
47. Xiuyan Ren,Changchun Yin*,et al. 2016, An efficient method for three-dimensional time-domain airborne EM modeling, Poster presentation at SEG 86th Annual Meeting, Dallas.
48. Xin Huang, Changchun Yin*, et al., 2016, Application of spectral element method for airborne EM modeling, Poster presentation at SEG 86th Annual Meeting, Dallas.
49. Hui Chen, Juzhi Deng*,Changchun Yin,2016,Three-dimensional electrical structures of Jiurui ore district in the Middle-Lower Yangtze River Metallogenic Belt, Eastern China from AMT inversion,Poster presentation at SEG 86th Annual Meeting, Dallas.
50. Changchun Yin and Bo Zhang, 2016, 3D Modeling for Frequency and Time-Domain Airborne EM Systems with Topography, ICEG - International Conference on Engineering Geophysics, Venice, Italy.
51. Hui Chen, Changchun Yin, Juzhi Deng, et al., 2016, Three-dimensional frequency-domain EM modeling using aggregation-based algebraic multigrid method, 23rd Electromagnetic Induction Workshop (EMIW2016), Chiang Mai, Thailand.
52. Changchun Yin, 2016, 3D airborne EM modeling using adaptive techniques, ICEEG invited Keynote speaker, Beijing.
53. Changchun Yin, 2016, Adaptive modeling in computational geoelectromagnetics, International Conference on Underground Labortary in Deep Earth from Multiple Boreholes, Invited Keynote speaker, Changchun.
54. Changchun Yin, Xin Huang*, Yunhe Liu, Jing Cai, 2017, 3D modeling for airborne EM using the spectral element method, Journal of Environmental and Engineering Geophysics,22(1), 13-23 (Invited paper for Special Edition on Airborne EM).
55. Xiuyan Ren, Changchun Yin*, et al., 2017, Efficient modeling of time-domain AEM using finite-volume method, Journal of Environmental & Engineering Geophysics, 22 (3):267-278.
56. Chen Hui, Deng Juzhi, Yin Min, Yin Changchun, Tang Wenwu, 2017, Three-dimension DC Resistivity modelling using aggregation-based algebraic multigrid method, Applied Geophysics, 14,154-164.
57. Xin Huang, Changchun Yin , Xiaoyue Cao et al., 2017, 3D anisotropic modeling and identification for airborne EM systems based on the spectral-element method, Applied Geophysics, 14, 419−430.
58. Wei Huang,Fang Ben, Changchun Yin, 2017,Three-dimensional anisotropic modeling for time-domain airborne electromagnetics. Applied Geophysics,14, 431−440.
59. Yunhe Liu, Colin Farquharson, Changchun Yin, 2017, Wavelet-based 3D inversion for frequency-domain AEM data, Oral Presentation at 6th International Symposium on 3D EM, California, USA.
60. Yongchao Lu, Changchun Yin, et al., 2017, Approximation solver of Integral Equation for Airborne EM Modeling, Oral Presentation at CGS/SEG International Geophysical Conference, Qingdao.
61. Jiao Zhu*, Changchun Yin, Changkai Qiu, Xiuyan Ren, Yunhe Liu, Xiaoyue Cao,2017,Quasi-3D constrainted inversion of time-domain airborne electromagnetic data using L-BFGS method,Poster Presentation at 79th EAGE Conference, Paris.
62. Xiaoyue Cao*, Changchun Yin, et al. 2017, A goal-oriented adaptive finite-element algorithm for 3D MT modeling, Poster Presentation at 79th EAGE Conference, Paris.
63. S. Sun*, C. Yin, X. Ren, C. Qiu, Y. Liu, H. Chen, 2017, Joint inversion of geophysical data based on local Pearson correlation constraints, Poster Presentation at 79th EAGE Conference, Paris.
64. Xin Huang*, Changchun Yin, Xiaoyue Cao, Xiuyan Ren, Changkai Qiu, Siyuan Sun, Jiao Zhu,2017,Airborne EM modelling for an anisotropic earth using spectral element method,Oral Presentation at 79th EAGE Conference, Paris.
65. Yongchao Lu* , Changchun Yin, Zonghui Gao, Bo Zhang, 2017, AEM fast forward modeling based on parallel higher order quasi-analytical approximation. Oral presentation, The 13rd International Geo-Electromagnetic Workshop, Wuhan.
66. Zhilong Yang*, Changchun Yin, Xiaoyue Cao, 2017, Design of marine DC resistivity moving platform simulation system for identification of gas hydrate. Oral presentation, The 13rd International Geo-Electromagnetic Workshop, Wuhan.
67. Yunhe Liu, Changchun Yin*, Colin G. Farquharson, Bo Zhang, 2017, Piecewise-constant model inversion based on sparse constraints in Haar wavelet domain. Oral presentation, The 13rd International Geo-Electromagnetic Workshop, Wuhan (Keynote Speaker).
68. Ling Liu, Changchun Yin, Bo Zhang, Xin Huang, Yunhe Liu and Changkai Qiu,2017,Spectral-element method for 3D marine controlled-source EM modeling,poster presentation at AGU Fall Meeting, New Orelean,USA.
69. Bo Zhang, Changchun Yin*, Xiuyan Ren et al., 2017, 3D marine MT modeling for a topographic seafloor, poster presentation at AGU Fall Meeting, New Orelean, USA.
70. Changchun Yin, Xiaoyue Cao, Xin Huang, Bo Zhang, 2017, 3D airborne EM modeling based on the time-domain spectral-element method,poster presentation at AGU Fall Meeting, New Orelean, USA.
71. Sun Siyuan, Yin Changchun, Gao Xiuhe, Liu Yunhe,Bo Zhang, 2017, Three-dimensional gravity inversion using a new gradient scheme on unstructured grids,poster presentation at AGU Fall Meeting, New Orelean, USA.
72. Xiuyan Ren,Changchun Yin,James Macnae, Yunhe Liu, 2018, 3D time-domain airborne EM inversion with finite-volume method, Oral presentation at AEGC 2018, Sydney.
73. Zhilong Yang, Changchun Yin et al. 2018, Research on DC resistivity for an arbitrarily anisotropic earth using circular scanning measurement. Poster presentation at AEGC 2018, Sydney.
74. Yunhe Liu, Colin G. Farquharson, Changchun Yin* and Vikas C. Baranwal,2018,Wavelet-based 3D inversion for frequency-domain airborne EM data,Geophyical Journal International,213, 1-15.
75. Shangyu Du, Yi Zhang, Yifeng Pei, Kun Jiang, Liangliang Rong, Changchun Yin, Yanju Ji, and Xiaoming Xie, 2018, Study of IP effect in TEM measurements utilizing SQUID as B-sensor receiver,Geophysics, 83,E111-116.
76. Bo Zhang, Changchun Yin*, Xiuyan Ren, Yunhe Liu, Yanfu Qi, 2018, Adaptive finite-element for 3D time-domain airborne EM modeling based on hybrid posterior error estimation, Geophysics, 83,WB71-WB79.
77. Xiuyan Ren, Changchun Yin, James Macnae, Yunhe Liu, Bo Zhang*, 2018,3D time-domain airborne EM inversion based on secondary field finite volume method, Geophysics, 83(4), E219-E228 (Bright Spot in Geophysics).
78. Sun Siyuan, Yin Changchun, Gao Xiuhe, Liu Yunhe, Ren Xiuyan*, 2018, Gravity compressed sensing forward modeling and multiscale inversion based on wavelet transform, Applied Geophysics, 15, 342-352.
79. Gao Zonghui, Yin Changchun*, Qi Yanfu at al., 2018, Transdimensional Bayserian inversion of time-domain airborne EM data, Applied Geophysics, 15, 318-331.
80. Changchun Yin, Yunhe Liu, Xiuyan Ren, Bo Zhang, and Jing Cai, 2018, AEM 3D inversion in China: where we are and where we will go? AEM 2018, Denmark (Keynote Speaker).
81. Xin Huang*, Changchun Yin, Colin G. Farquharson, Xiaoyue Cao , 2018, 3D Airborne EM forward modelling by the spectral-element method for deformed hexahedral meshes, Oral presentation at 80th EAGE Conference, Copenhagen, Denmark.
82. Zhang Bo, Yin Changchun*, Liu Yunhe, Ren Xiuyan, Qi Yanfu and Cai Jing, 2018, 3D forward modeling for dual-ship-towed marine CSEM systems and response analysis. Applied Geophysics, 15(1),11 -25.
83. Cao Xiaoyue, Yin Changchun *, Zhang Bo, Huang Xin, Liu YunHe, and Cai Jing, 2018, 3D magnetotelluric inversions with unstructured finite-element and limited-memory quasi-Newton methods. Allpied Geophysics, 15(4), 556-565.
84. Siyuan Sun, Changchun Yin, Yunhe Liu, Xiuhe Gao, Xiuyan Ren, Jing Cai, and Cong Wang, 2018, Three-Dimensional Gravity Forward and Inverse Modeling Based on the Discrete Wavelet Transform, Oral presentation at ICEEG, Hangzhou,Best Student Paper Award.
85. Z. Hui*, C. Yin, Y. Liu, B. Zhang, X. Ren, J. Li, and J. Cai,2018,An adaptive finite-element method for 3D time-domain CSEM modeling, Poster at EMIW 2018, Denmark.
86. Jingfeng Li, Yunhe Liu, Changchun Yin, Bo Zhang, Xiuyan Ren, and Jing Cai, 2018, AEM imaging based on deep neural network system, Oral presentation at EMIW 2018, Denmark.
87. Jie Zhang, Yunhe Liu*, Changchun Yin, Bo Zhang, Jing Cai and Aihua Weng, 2018,3D regularized inversion of marine CSEM with complex seabed topography,Poster presentation at 88th SEG Annual Meeting.
88. Xin Huang, Colin G. Farquharson, Changchun Yin, Xiaoyue Cao, Bo Zhang, Yunhe Liu and Jing Cai, 2018, A new study for airborne EM forward modeling based on the Galerkin spectral-element method, Poster at 88th SEG Annual Meeting, Anaheim, USA.
89. Bo Zhang, Changchun Yin, Yunhe Liu, Xiuyan Ren, Jing Cai , Cong Wang, 2018, 3D time-domain airborne EM forward modelling based on adaptive finite-element method. Posetr at 88th SEG Annual Meeting, Anaheim, USA.
90. Xiaoyue Cao, Changchun Yin, Xin Huang, Yunhe Liu,2018,3D MT anisotropic inversion based on finite-element method with unstructured grids. International Symposium on Deep Earth Exploration and Practices (Deep-2018), Beijing.
91. Changchun Yin and Xiuyan Ren, 2018, 3D Time-Domain Airborne EM Inversion with Finite-Volume Method, 10th Annual Meeting on Inverse Problems, Changchun, Keynote Speaker.
92. Yunhe Liu, Changchun Yin*, 2018, 3D inversion of transient EM data with topography using unstructured tetrahedral grids, Geophysical Journal International, 217(1), 301-318.
93. Xin Huang, Changchun Yin*, Colin G. Farquharson, Xiaoyue Cao, Bo Zhang, 2019, Spectral-element method with arbitrary hexahedron meshes for Time-domain 3D Airborne EM Modeling, Geophysics, 84(1), E37-E46.
94. Changkai Qiu, Stefan Güttel, Xiuyan Ren, Changchun Yin*, Yunhe Liu, Bo Zhang, and Gary Egbert, 2019, A block rational Krylov method for three-dimensional time-domain marine controlled-source electromagnetic modeling, Geophysical Journal International,218(1),100-113.
95. Yanfu Qi, Xiu Li, Changchun Yin*,2019, Weighted goal-oriented adaptive finite-element for 3D transient EM modeling, Journal of Environmental and Engineering Geophysics, 24(2), 249-264.
96. Changchun Yin, Ling Liu*, Yunhe Liu, Xin Huang,2019,3D frequency-domain airborne EM forward modeling using spectral element method with GLC polynomials, Exploration Geophysics, 50(5),461-471.
97. Xiuyan Ren, Changchun Yin, Yunhe Liu, Bo Zhang, et.al, 2019, Calibration of airborne EM systems at a conductive ground and data corrections. Poster at GEM 2019, Xi’an.
98. Changkai Qiu, Changchun Yin, Yunhe Liu,Bo Zhang, Xiuyan Ren, 2019, Rational Krylov method for 3D time-domain airborne EM modeling. GEM 2019, Xi’an.
99. Yunhe Liu, Jie Zhang, Changchun Yin, et al., A 3D inversion code for geophysical EM data based on unstructured tetrahedron grid. GEM 2019, Xi’an.
100. Y.H. Liu, C.C. Yin*, X.Y. Ren, C.K. Qiu, B. Zhang, Y. Su,2019, 3D inversion of large fixed-loop transient electromagnetic data with topography. Poster Presentation at 81st EAGE Annual Meeting, London.
101. Yang Su, Changchun Yin*, 2019, Curvelet-based 2-D inversion for MT data. Poster Presentation at 81st EAGE Annual Meeting, London.
102. Changchun Yin*, Siyuan Sun, Yunhe Liu, Xiuyan Ren, 2019, Joint Inversion of Geophysical data and Applications, 5th International Conference on Engineering Geophysics, UAE, Distinguished Invited Speaker.
103. Changchun Yin, Zhejian Hui, Yunhe Liu, Jie Zhang, 2019, 3D Marine EM Forward and Inversion, China First Symposium on Marine EM, Beijing, Invited Speaker.
104. C. Yin, Z. Hui, Y. Liu, 2019, 3D marine CSEM forward modeling and inversion for a topographic seafloor. The 14th International Geo-Electromagnetic Workshop, Xuzhou. Keynote Speaker.
105. W. Zhang, C. Yin, Y. Liu, C. Qiu, Z. Hui, J. Zhang, J. Cai,2019,MCSEM Forward Modeling based on Non-Overlapping Domain Decomposition Method. The 14th International Geo-Electromagnetic Workshop, Xuzhou.
106. Xin Huang, Changchun Yin, Xiaoyue Cao, Liangjun Yan, 2019, 3D Frequency-domain Airborne EM forward modelling based on inverse isoparametric mapping and spectral-element method. The 14th International Geo-Electromagnetic Workshop, Xuzhou.
107. Yunhe Liu, Changchun Yin, Yang Su, Xiuyan Ren,2020,The effect of anomalous diffusion on time-domain airborne EM signal, 82nd EAGE Conference, Amsterdam,Poster presentation.
108. Changchun Yin, Yunhe Liu, Xiuyan Ren, et.al., 2020, Artificially intelligent techniques in geoelectromagnetic exploration, ICEEG 2020, Changchun,Keynote speaker.
109. Mengli Tao, Yunhe Liu,Yang Su,Changchun Yin, Zonghui Gao, Bin Xiong, 2020, Influence of wavelet sparse constraints on trans-dimensional Bayserian inversions, Oral presentation at ICEEG 2020, Changchun, Best student paper.
110. Zhejian Hui, Yunhe Liu*, and Changchun Yin,2020,Research on detection of coal spontaneous combustion by 3D TEM method,Oral presentation at ICEEG 2020, Changchun.
111. Han Wang, Changchun Yin*, Jinfeng Li, Yunhe Liu, Bin Xiong, 2020, Deep reinforcement learning for magnetotelluric data inversion, Oral Presentation at 3rd Asia Pacific Meeting On Near Surface Geoscience & Engineering, Thailand.
112. Haoman Wang, Changchun Yin*, Xiuyan Ren, Yunhe Liu, Jin Cao, Yang Su, Bin Xiong, 2020, CS-based 3D foward modeling for time-domain airborne electromagnetic method, Oral presentation at 3rd Asia Pacific Meeting On Near Surface Geoscience & Engineering, Thailand.
113. Luyuan Wang, Changchun Yin*, Zhejian Hui, Yunhe Liu, 2020, 3D forward modeling and analysis of surface-to-borehole TEM responses, Oral Presentation at EAGE Near Surface Geoscience, Belgrade.
114. Changchun Yin, Yunhe Liu*,Bin Xiong, 2020, Status and prospect of 3D inversions in EM geophysics, Science China, 63(1), 432-435.
115. Qingyun Di, Guoqiang Xue*, Changchun Yin and Xiu Li, 2020, New methods of controlled-source electromagnetic detection in China, Science China, 63(3),1268-1277.
116. Jiao Zhu, Changchun Yin*, Youshan Liu, Yunhe Liu, Ling Liu, Zhilong Yang, Changkai Qiu, 2020, 3D DC resistivity modelling based on spectral element method with unstructured tetrahedral grids, GJI,220 (3), 1748-1761.
117. Jinfeng Li, Yunhe Liu*, Changchun Yin, Xiuyan Ren, Yang Su, 2020, Fast imaging of time-domain airborne EM data using deep learning technology, Geophysics,85(5), E163-E170.
118. Xue Shuyang, Yin Changchun*, Su Yang, Liu Yunhe, Wang Yong, Liu Caihua, Xiong Bin, Sun Huaifeng, 2020, Airborne EM data denoising based on directionary learning, Applied Geophysics, 17(2),306-313.
119. Wang Haosen, Wang Hongnian*, Yang Shouwen, Yin Changchun, 2020, Efficient finite-volume simulation of the LWD orthogonal azimuth electromagnetic response in 3D anisotropic formation using potentials on cylindrical meshes, Applied Geophysics. 17(2),192-207.
120. X. Chen, Y. Liu*, C. Yin, C. Qiu, J. Zhang, X. Ren, B. Zhang, 2020, Three-dimensional inversion of controlled-source audio-frequency magnetotelluric data based on unstructured finite-element method. Applied Geophysics,17(3),349-360.
121. Siyuan Sun, Changchun Yin*, Xiuhe Gao*,2021,3D Gravity inversion on unstructured grids,Applied Sciences,11(2),722, 1-15.
122. Changchun Yin, Zonghui Gao*, Yang Su et. al, 2021, 3D airborne EM forward modeling based on time-domain spectral element method, Remote Sensing, 13(4), 601, 1-18. https://doi.org/10.3390/rs13040601
123. Man Kaifeng, Yin Changchun*, Yunhe Liu, Ren Xiuyan, Siyuan Sun, Miao Jiajia, Xiong Bin, 2021, Inversion of time-domain airborne EM data with IP effect based on Pearson correlation constraints, Applied Geophysics, 17(4), 589-600.
124. Yang Su, Changchun Yin*, Yunhe Liu, Xiuyan Ren, Bo Zhang, Bin Xiong, 2021, Three-dimensional anisotropic inversions for time-domain airborne EM data, Minerals, 11(2), 218, 1-17.
125. Mengli Tao, Changchun Yin*, Yunhe Liu, Yang Su, Bin Xiong, 2021, Trans-dimensional Bayesian Inversion for AEM Data in Sparse Domain, Journal of Applied Geophysics,189,104317,1-12.
126. Xin Huang, Colin Farquaharson,Changchun Yin, Xiaoyue Cao*, 2021, A 3D Forward Modeling Approach for Airborne Electromagnetic Data Using a Modified Spectral-Element Method, Geophysics, 86 (5), E343-354.
127. Bo Zhang, Changchun Yin*, Yunhe Liu, Xiuyan Ren, Vikas C. Baranwal, Bin Xiong, 2021, 3D inversion of large-scale frequency-domain AEM data using unstructured local mesh, Geophysics,86(5),E333-342.
128. Xiaoyue Cao, Xin Huang*, Changchun Yin, Liangjun Yan, 2021, 3D MT anisotropic inversion based on unstructured finite-element method. JEEG,26(1),49-60.
129. Changkai Qiu, Changchun Yin*, Yunhe Liu, Xiuyan Ren, Hui Chen, Tingjie, Yan, 2021, Solution of large-scale 3D controlled-source electromagnetic modeling problem using efficient iterative solvers, Geophysics, 86(4),E283-E296.
130. Zhejian Hui, Yunhe Liu, Changchun Yin*, Yang Su, Xiuyan Ren, Bo Zhang, Bin Xiong, 2021, Detection of coal spontaneous combustion using TEM method - A synthetic study, Pure and Applied Geophysics, 178, 3987-4000, doi:10.1007/s00024-021-02829-5.
131. Wang Haoman, Liu Yunhe, Yin Changchun, Ren Xiuyan*, et. al, 2021, Fast 3D time-domain airborne EM forward modeling using random under-sampling, JAG, 191,104357, 1-13.
132. Lingqi Gao, Changchun Yin*, Ning Wang, Yunhe Liu, Xiuyan Ren, Bo Zhang, Bin Xiong, 2021, 3-D wavelet finite-element modeling of frequency-domain airborne EM data based on B-spline wavelet on the interval using potentials, Remote Sensing,13(17), 3463, 1-23. https://doi.org/ 10.3390/rs13173463.
133. Luyuan Wang, Changchun Yin*, et al., 2021, 3D forward modeling for surface-to-borehole TEM using unstructured finite-element method, Applied Geophysics, 18(1),101-116.
134. Yang Su, Changchun Yin*, Yunhe Liu, Xiuyan Ren, Bo Zhang,2021,Shearlet-based 3-D inversion for frequency domain airborne electromagnetic data,Poster presentation at 83rd EAGE Amsterdam.
135. Xue Han,Changchun Yin, Yang Su*, Bo Zhang, Yunhe Liu, Xiuyan Ren, 2021,Research on 3D Finite-element Forward Modeling for Frequency-Domain Airborne EM Using Octree mesh,Poster presentation at 83rd EAGE Amsterdam.
136. Haoman Wang, Yunhe Liu, Changchun Yin, Pengfei Zhao*, Jin Cao, 2021, Magnetotelluric forward modeling based on deep learning,Poster presentation at 83rd EAGE Amsterdam.
137. Zhihao Rong, Yunhe Liu*, Changchun Yin, et al., 2021, Deep electrical structure of Cascadia derived from 3D anisotropic inversion of USArray long-period magnetotelluric data,Oral presentation at 83rd EAGE Amsterdam.
138. Ma Xinpeng, Liu Yunhe*, Yin Changchun, Gao Yongxin, Li Jun, 2021, Salinity estimation using seismo-electromagnetic signals arising from the electrokinetic effect, Poster at The 15th China International Geo-Electromagnetic Workshop.
139. Man Kaifeng, Yin Changchun*, Liu Yunhe, Ren Xiuran, Sun Siyuan, Su Yang, 2021, Three-dimensional inversion of time-domain airborne electromagnetic data with IP effect, Poster at The 15th China International Geo-Electromagnetic Workshop.
140. Zhang Bo, Yin Changchun*, Liu Yunhe, Ren Xiuyan, Cai Hongzhu, Lei Da, 2021, Three dimensional inversion of field data for towed electromagnetic system, Oral presentation at The 15th China International Geo-Electromagnetic Workshop.
141. Rong Zhihao, Liu Yunhe*, Yin Changchun, Qiu Changkai,2021,Research on 3D Joint inversion of CSAMT and MT Data,Poster at the 15th China International Geo-Electromagnetic Workshop.
142. Xiaoyue Cao, Liangjun Yan*, Changchun Yin, Xin Huang, Siyuan Sun, 2021,Three-dimensional inversion of Z-axistipper electromagnetic data with topography, Oral presentation at the 15th China International Geo-Electromagnetic Workshop.
143. Hongnian Wang*, Haosen Wang, Shihan Shen, Changchun Yin, 2021, 3-D Generalized Born Nonlinear Approximation and Pixel-based Inversion of Multi-component Ultra-deep EM Looking Ahead Measurement While Drilling,Oral presentation at PIERS 2021,Hangzhou.
144. Changchun Yin, Xin Huang, Jiao Zhu, Zonghui Gao, 2021, Spetral element methods and its application in EM simulation, Oral presentation at 15th China International Geo-Electromagnetic Workshop. Invited Speaker.
145. Han Wang, Changchun Yin*, Yunhe Liu, Yang Su, Bo Zhang, Xiuyan Ren,2021, 2D magnetotelluric data super-resolution inversion using U-NET,Oral presentation at 4th International Workshop on Mathematical Geophysics (SEG), Beijing.
146. Yanfu Qi, Xiu Li, Changchun Yin*, Huaiyuan Li, Zhipeng Qi, Yunhe Liu and Xiuyan Ren, 2022, 3D time-domain airborne EM inversion for a topographic earth, IEEE Transactions on Geoscience and Remote Sensing,60 , 2000113, 1-13.
147. Yang Su, Changchun Yin*, Yunhe Liu, et al., 2022, Sparse-promoting 3D airborne electromagnetic inversion based on shearlet transform, IEEE Transactions on Geoscience and Remote Sensing,60,5901713,1-13,doi: 10.1109/TGRS.2021.3061160.
148. Xiaoyue Cao, Xin Huang*, Changchun Yin, Liangjun Yan, et al., 2022, 3-D Inversion of Z-Axis Tipper Electromagnetic Data Using Finite-Element Method With Unstructured Tetrahedral Grids, IEEE Transactions on Geoscience and Remote Sensing,60, 5904811 , 1-11, doi: 10.1109/TGRS.2021.3077510.
149. Zhuangzhuang Kang, Hongnian Wang, Yazhou Wang, and Changchun Yin,2022,Fourier Series Approximation of Tensor Green’s Function in Biaxial Anisotropic Media. IEEE Transactions on Geoscience and Remote Sensing, 19,8006205,1-5, DOI: 10.1109/LGRS.2020.3048111.
150. Lei Yu, Hongnian Wang*, Haosen Wang, Shouwen Yang and Changchun Yin, 2022, 3D Finite Volume Modeling for LWD Azimuthal Propagation Resistivity Tool with Multiple Annular Antenna Recesses Using Coupled Potentials on Cylindrical Grids,IEEE Transactions on Antennas and Propagation,70(1),514-525, DOI: 10.1109/ TAP.2021.3098522.
151. Yunhe Liu, Xu Na, Changchun Yin, Yang Su*, Siyuan Sun, Bo Zhang, Xiuyan Ren and Vikas C Baranwal, 2022,3D joint inversion of airborne electromagnetic and magnetic data based on local Pearson correlation constraints, IEEE Transactions on Geoscience and Remote Sensing, 60, 5910813, 1-13. DOI: 10.1109/TGRS.2022.3143659.
152. Han Wang,Yunhe Liu*, Changchun Yin, 2022, Stochastic inversion of magnetotelluric data using deep reinforcement learning, Geophysics, 87(1),E49-E61.
153. Jiao Zhu, Changchun Yin*, Lingqi Gao, Zhejian Hui, Xiuyan Ren, Yunhe Liu, Bo Zang, Junbo Wang, Bin Xiong, 2022,3D unstructured spectral element method for frequency-domain airborne EM forward modeling based on Coulomb gauge, IEEE Transactions on Geoscience and Remote Sensing, 60, 5910913,1-13. DOI: 10.1109/TGRS. 2022.3141713.
154. Xue Han, Changchun Yin*, Yang Su, Bo Zhang, Yunhe Liu, 2022, 3D Finite-Element Forward Modeling of Airborne EM systems in Frequency-Domain Using Octree Meshes, IEEE Transactions on Geoscience and Remote Sensing, 60, 5912813,1-13. DOI 10.1109/ TGRS.2022.3153026.
155. Shuang Zhang, Changchun Yin*, Xiaoyue Cao, Siyuan Sun, 2022, DecNet: Decomposition Network for 3-D Gravity Inversion,Geophysics, 87(5), G103–G114, DOI 10.1190/GEO2021-0744.1.
156. Shuang Zhang, Changchun Yin*, 2022, 3D Gravity Inversion Based on Deep Learning, Extended Abstract, IWEG 2022, Qingdao.
157. Zhuangzhuang Kang, Hongnian Wang*, and Changchun Yin,2022, Finite-Region Approximation for EM Fields in Layered Biaxial Anisotropic Media,Remote Sensing,14(15), 3836, 1-20, DOI: https://doi.org/10.3390/rs14153836.
158. Zhihao Rong, Yunhe Liu*, Changchun Yin,Luyuan Wang, Xinpeng Ma, Changkai Qiu, Bo Zhang, Xiuyan Ren, Yang Su and Aihua Weng, Three-dimensional magnetotelluric inversion for arbitrarily anisotropic earth using unstructured tetrahedral discretization, Journal of Geophysical Research: Solid Earth, 127, e2021JB023778. https://doi. org/10.1029/2021JB023778.
159. Zhejian Hui, Changchun Yin*, Wenqiang Zhang, Yunhe Liu, Bin Xiong, 2022,3D MCSEM modeling based on domain-decomposition finite-element method , JAG, 207(104847),1-8.
160. Xinchong Zhang, Changchun Yin*, Luyuan Wang, Yang Su, Yunhe Liu,2022,3D Time-Domain Airborne EM Forward Modeling with IP effect Based on Implicit Difference Discretization of Caputo Operator,IEEE TGRS, 60,1-10. DOI 10.1109/TGRS.2022.3225226.
161. Zhuangzhuang Kang, Hongnian Wang, and Changchun Yin,Semi-analytic Sensitivity of the MCIL Responses in Homogeneous Biaxial Anisotropic Media,IEEE TGRS Letters,19,1-5. DOI:10.1109/LGRS.2022.3225598.
162. Xinpeng Ma, Yunhe Liu*, Changchun Yin, Yongxin Gao*, Bo Zhang, Xiuyan Ren,2022,Estimation of fluid salinity using coseismic electric signal generated by an earthquake. GJI, 233, 127-144. https://doi.org/10.1093/gji/ggac444.
163. Yunhe Liu, Luyuan Wang*, Changchun Yin, Bo Zhang, Xiuyan Ren, Yang Su, Zhihao Rong, Xinpeng, 20,3, Three-dimensional forward modeling of transient EM field in rough media using implicit time-domain finite-element method. IEEE TGRS, 61,5901011,1-11. DOI: 10.1109/TGRS.2022.3231921.
164. Qiang Liu, Changchun Yin*, Yang Su, Yunhe Liu, Luyuan Wang, Hao Liang, Han Wang, 2023, Two-dimensional frequency-domain AEM data imaging based on U-net neural network. Fountier in Earth Sicence, 10,1-13. DOI: 10.3389/feart.2022.1082876.
165. Xianyang Huang, Changchun Yin*, Luyuan Wang, Yunhe Liu, Bo Zhang, Xiuyan Ren, Yang Su, Jun Li and Hui Chen,2023, A geometric multigrid method for 3D magnetotelluric forward modeling using finite-element method, Remote Sensing,15(2), 1-22. https://doi.org/10.3390/rs15020537.
166. Jianfu Ni, Xue Han, Sixin Liu, Changchun Yin, Andreas Hördt, 2023, Numerical simulation and analysis of directional borehole radar for fracture detection. DGG Tagung (Annual Meeting of German Geophysical Society), Bremen, Germany.
167. Xue Han, Changchun Yin, Jianfu Ni, Andreas Hördt, 2023, AEM forword modeling with adptive octree mesh, DGG Tagung (Annual Meeting of German Geophysical Society), Bremen, Germany.
168. Han Wang, Yunhe Liu, Changchun Yin, Yang Su, Bo Zhang, Xiuyan Ren,2023,Flexible and accurate prior model construction method based on deep learning for 2D magnetotelluric data inversion,IEEE TGRS, 61,5902511,DOI 10.1109/TGRS.2023.3239105.
169. Xiuyan Ren, Mingquan Lai, Luyuan Wang, Changchun Yin, Yunhe Liu, Yang Su, Bo Zhang, Fang Ben, Wei Huang, 2023, A Fast 3D Inversion for Airborne EM Data Using Preconditioned Stochastic Gradient Descent, Geophysical Journal International, ggad094, https://doi.org/10.1093/gji/ggad094.
170. Luyuan Wang, Changchun Yin*, Yunhe Liu, Yang Su, Xiuyan Ren, Bo Zhang,2023,Three-dimensional dual mesh inversion for sparse surface-to-borehole TEM data, Remote Sensing, 15(7), 1845. https://doi.org/10.3390/rs15071845.
171. Ning Wang, Changchun Yin*, Lingqi Gao, Changkai Qiu, Xiuyan Ren, 2023, 3D anisotropic modeling of geomagnetic depth sounding based on unstructured edge-based finite-element method,GJI, 235 (1), 178–199, https://doi.org/10.1093/gji/ggad224.
172. Bo Zhang, Changchun Yin*, Xue Han, Luyuan Wang, Yunhe Liu, Xiuyan Ren, Yang Su , and Vikas Chand Baranwal, 2023, 3D airborne electromagnetic inversion with flight height correction. IEEE TGRS, 5910610, 1-10. DOI 10.1109/TGRS.2023.3276701.
173. Zhihao Rong, Yunhe Liu*, Changchun Yin, Xinpeng Ma, Luyuan Wang, Changkai Qiu, Bo Zhang, Xiuyan Ren and Yang Su, 2023, Gradient filtering regularization for 3D MT inversion based on unstructured tetrahedral discretization, GJI,235(1), 94–108. https://doi.org/10.1093/gji/ggad209
174. Xue Han, Jianfu Ni, Changchun Yin*, Bo Zhang, Xin Huang, Jiao Zhu, Yunhe Liu, 2023, 3D airborne EM forward modeling based on finite-element method with adaptive octree mesh. Remote Sensing, 15(11), 2816. https://doi.org/10.3390/rs15112816
175. Jun Li, Changchun Yin*, Yunhe Liu, Luyuan Wang, Xinpeng Ma, 2023, Simulation of seismoelectric waves using time-domain finite-element in 2D PSVTM mode. Remote Sensing, 15(13), 3321. https://doi.org/10.3390/rs15133321
176.Colin Farquharson, Xiangyun Hu, Qinghua Huang, Xiu Li, Jianhui Li*, Guoqiang Xue, Changchun Yin, 2023, Advances in transient electromagnetic methods, JGE, 20(6) , 1305-1307.
177. Zhejian Hui, Xuben Wang, Changchun Yin, Yunhe Liu, 2023, Efficient 3D frequency semi-airborne electromagnetic modeling based on domain-decomposition, Remore Sensing,15(24), 5636,1-19. https://doi.org/10.3390/rs15245636.
178. Jianmei Zhou, Dirk Husmeier, Hao Gao, Changchun Yin, Changkai Qiu, Xu Jing, Yanfu Qi and Wentao Liu,2023,Bayesian inversion of frequency-domain airborne EM data with spatially correlation prior information. IEEE TGRS, 2000816, 62, 1-17. DOI 10.1109/ TGRS.2023. 3344946.
179. Bo Chen, Hongnian Wang*, Shouwen Yang, Haosen Wang and Changchun Yin, 2023,A Rapidly Direct Algorithm of Explicit Fréchet Derivatives for MCSEM in a 3-D TI Formation using Finite Volume of Coupled Potentials,IEEE Access,11,143285,1-11. DOI: 10.1109/ ACCESS.2023.3343394.
180. Lei Yu, Hongnian Wang, Yazhou Wang, Wenxiu Zhang, Shouwen Yang and Changchun Yin, 2023, Adaptive Global Optimization of Real-time Boundary Detection from the LWD Azimuthal Electromagnetic Measurements in Layered TI Formation with Arbitrarily Deviated Borehole. IEEE TGRS,62,5903115,1-15,DOI 10.1109/TGRS. 2024.3352901.
181. Ruoyun Gao, Changchun Yin, Hao Liang, Yunhe Liu*, Luyuan Wang , Yang Su , Bin Xiong, 2024, Three-dimensional simulation and characterization of airborne transient electromagnetic response in rough media. Geophysics, 89(3), E61-E71.
182. Jun Li, Changchun Yin*, Yunhe Liu, Luyuan Wang, Xinpeng Ma,2024,Time-domain finite element method based on arbitrary quadrilateral meshes for 2D SHTE mode seismoelectric and electroseismic waves modeling,Geophysical Prospecting, 72(4), 2419-2438 DOI: 10.1111/1365-2478.13518.
183. Zhejian Hui, Xuben Wang*, Changchun Yin, 2024, 3D Inversion of Semi-Airborne Transient Electromagnetic Data Based on Decoupled Mesh, IEEE TGRS, 62, 1-11,5913411, DOI 10.1109/TGRS.2024.3395628.
184. Yunhe Liu, Xinpeng Ma, Luyuan Wang, Changchun Yin, Xiuyan Ren*, Bo Zhang, Yang Su, 2024,A robust approach for geo-electromagnetic sounding data inversion using L1-norm misfit and adaptive moment estimation. IEEE TGRS, 62, 1-12,5913612, DOI 10.1109/ TGRS.2024.3396080.
185. Bo Zhang, Kelin Qu, Changchun Yin*, Yunhe Liu, Xiuyan Ren, Yang Su, 2024, 3D airborne electromagnetic data inversion basing on the block coordinate descent method, Geophysics,89(5), E221-E228. https://doi.org/10.1190/geo2023-0673.1
186. Jin Cao, Yunhe Liu, Changchun Yin, Haoman Wang, Yang Su, Luyuan Wang, Xinpeng Ma, Bo Zhang*, 2024, Hybrid meshless-FEM method for 3D magnetotelluric modelling using non-conformal discretization, GJI, 238,1181-1200, https://doi.org/10.1093 /gji/ggae215.
187. Hao Liang, Ruyun Gao, Changchun Yin*, Yang Su, Zhanxiang He, Yunhe Liu, 2024, Physics-driven deep-learning for marine CSEM data inversion, JAG, 229, 125074, 1-15. https://doi.org/10.1016/j.jappgeo.2024.105474.
188. Yang Su, Xiuyan Ren*, Changchun Yin, Libao Wang, Yunhe Liu, Bo Zhang, Luyuan Wang, 2024, Multiscale 3-D stochastic inversion of frequency-domain airborne electromagnetic data, Remote Sensing,16(16), 3070, 1-18. https://doi.org/10.3390/ rs16163070.
189. Xu Yang, Yunhe Liu, Yang Su*, Changchun Yin, Luyuan Wang, Yu Gao, Bo Zhang, Xiuyan Ren, 2024, An Efficient Bayesian Inference for Geo-electromagnetic Data inversion based on Surrogate Modeling with Adaptive Sampling DNN, IEEE TGRS,62, 1-17,5921817. DOI 10.1109/TGRS.2024.3426612.
190. Xinpeng Ma, Yunhe Liu*, Changchun Yin, Jingru Li, Jun Li, Xiuyan Ren and Shiwen Li, 2024, Global Mantle Conductivity Imaging using 3-D GDS Inversion with Real Earth Surface Conductivity Constraint. Computer and Geoscience,192. 105697,1-12, https://doi.org/10.1016/j.cageo.2024.105697.
191. Yongji Li, Yunhe Liu*, Changchun Yin, Yang Su, Zhiyuan Ke, Luyuan Wang, Xiuyan Ren, and Bo Zhang,2024,Three-Dimensional Electrical Resistivity Tomography Method for Leachate Imaging Considering Thin Impermeable Layers of Landfills,IEEE TGRS, 62,4511514. DOI 10.1109/TGRS.2024.3467673.
192. Shuang Zhang, Changchun Yin, Yang Su*, Yunhe Liu, Xiuyan Ren, Bo Zhang, Luyuan Wang, Xiaoyue Cao, Siyuan Sun, 2024, Three-dimensional Joint Inversion of MT and Gravity Data Based on Unstructured Tetrahedron Discretization, IEEE TGRS, 62, 5931112, 1-12, DOI 10.1109/TGRS.2024.3476031.
193. Yinglin Wang, Xiuyan Ren*, Changchun Yin , Mingquan Lai, Yang Su, Bo Zhang and Yunhe Liu, 2024, Impact of Satellite Orbit Altitudes on the Global Induced Magnetic Fields, IEEE TGRS ,62, 5930915,1-15, DOI 10.1109/TGRS.2024.3476442.
194. Yang Su, Luyuan Wang, Changchun Yin*, Xianyang Huang, Yunhe Liu, Xiuyan Ren, Bo Zhang, 2024, 3-D Multiscale Inversion of Airborne EM Data Based on Correlation of Spatial Resolution and Shearlet Coefficients. IEEE TGRS,1-12,DOI 10.1109/TGRS. 2024.3491797.
195. Xiuyan Ren, Mingquan Lai, Luyuan Wang*, Changchun Yin, Yunhe Liu, Yang Su, and Bo Zhang,2025,Footprint-driven stochastic approximation inversion for time-domain airborne electromagnetic data,Geophysics, 90(3), WA17–WA29. https://doi.org/10.1190/ geo2023-0751.1.
196. Bo Zhang, Kelin Qu, Changchun Yin*, Yinfeng Wang, Yunhe Liu, Xiuyan Ren, Yang Su, 2025, Review on 3D electromagnetic modeling and inversion for Mineral Exploration, Geophysics,90(3),WA47–WA59. https://doi.org/10.1190/geo2024-0132.1.
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1. 刘云鹤, 翁爱华, 贾定宇, 殷长春,2011, 三维可控源电磁法正反演研究,第 27届中国地球物理年会论文集,湖南, 长沙。
2. 刘云鹤,殷长春*等, 2012, 海洋可控源电磁法发射源姿态影响研究,地球物理学报, 55卷,第8期, 2757-2768。
3. 翁爱华,刘云鹤,贾定宇,廖祥东,殷长春,2012,地面可控源频率测深三维非线性共轭梯度反演,地球物理学报,55卷,第10期。
4. 殷长春, 刘云鹤*等,2012,海洋可控源电磁法空气波研究现状及展望,吉林大学学报(地学版),42卷,第5期。
5. 贾定宇,翁爱华,刘云鹤,殷长春,2013,海洋环境中水平电偶极子电磁场特征分析,地球物理学进展,28卷,第1期。
6. 翁爱华,刘云鹤,贾定宇,殷长春, 2013, 基于电场不连续边界条件的层状介质电磁格林函数计算,吉林大学学报,43卷,第2期。
7. 殷长春,黄威*,奔放, 2013, 时间域航空电磁系统瞬变全时响应正演模拟,地球物理学报,56卷,第9期,3153-3162。
8. 刘云鹤,殷长春*,2013,三维频率域航空电磁反演研究,地球物理学报, 56卷,第12期, 4278-4287。
9. 汪建勋,汪宏年,周建美,杨守文,刘晓军,殷长春,2013,用改进的传输线算法计算水平层状横向同性地层中海洋可控源电磁响应,物理学报,62卷,第20期,224101(1-11)。
10. 殷长春,齐彦福*,刘云鹤,蔡晶,2014,频率域航空电磁数据变维数贝叶斯反演研究, 地球物理学报,57卷,第9期,2971-2980。
11. 王若,殷长春*,王妙月,底青云,2014,CSAMT法一维层状介质灵敏度分析,地球物理学进展,29卷,第3期,1284-1291。
12. 蔡晶,齐彦福,殷长春*, 2014, 频率域航空电磁数据的加权横向约束反演, 地球物理学报,第57卷,第3期, 953-960。
13. 周建美,张烨,汪宏年,杨守文,殷长春,2014,耦合势有限体积法高效模拟各向异性地层中海洋可控源三维电磁响应,物理学报,63卷,第15期,159101.
14. 殷长春,贲放*,刘云鹤,黄威,蔡晶, 2014,三维任意各向异性介质中海洋可控源电磁法正演研究,地球物理学报,57卷,第12期,4110-4122。
15. 裴易峰,殷长春*,刘云鹤,蔡晶,2014,时间域航空电磁磁场计算与应用,地球物理学进展,29卷,第15期,2191-2196。
16. 殷长春,任秀艳*,刘云鹤,蔡晶,2015,航空瞬变电磁法对地下典型目标体的探测能力研究,地球物理学报,58卷,第9期,3370-3379。
17. 殷长春,张博*, 刘云鹤, 蔡晶,2015,2.5维起伏地表条件下时间域航空电磁正演模拟, 地球物理学报, 58卷,第4期,1411-1424。
18. 殷长春,张博*,刘云鹤等,2015,航空电磁勘查发展现状及展望,地球物理学报,58卷,第8期,2637-2653。获中国地球物理学会陈宗器优秀论文奖。
19. 齐彦福,殷长春*,王若,蔡晶,2015,多通道瞬变电磁m序列全时正演模拟与反演,地球物理学报,58卷,第7期,2566-2577。
20. 邓居智,陈辉*,殷长春,周彪华, 2015, 九瑞矿集区三维电性结构研究及找矿意义, 地球物理学报,58卷,第12期,4465-4477。
21. 陈辉,邓居智*,吕庆田,殷长春,邱姜歆,2015,九瑞矿集区重磁三维约束反演及深部找矿意义,地球物理学报,58卷,第12期,4478-4489。
22. 黄威,殷长春*, 贲放,刘云鹤,陈辉,蔡晶,2015,频率域航空电磁三维矢量有限元正演模拟,地球科学,41卷,第2期,331-342。
23. 任秀艳,殷长春*,刘云鹤,蔡晶,2015,基于有限体积法的地-空瞬变电磁响应计算,中国地球科学联合会,北京,获优秀研究生论文奖。
24. 缪佳佳,殷长春*,2015,航空电磁激电效应正演模拟研究,中国地球科学联合会,北京。
25. 陈辉,殷长春*,邓居智,2016,基于Lorenz规范条件下磁矢势和标势耦合方程的频率域电磁法三维正演,地球物理学报,59卷,第8期,3087-3097。
26. 李世文,殷长春*,翁爱华,2016,时间域航空电磁电阻率和磁导率同步反演,吉林大学学报(地球科学版),46卷,第6期,1830-1836。
27. 张博,殷长春*,刘云鹤,蔡晶,2016,起伏地表频域/时域航空电磁系统三维正演模拟研究,地球物理学报,59卷,第4期,1506-1520。
28. 殷长春,邱长凯*,刘云鹤,蔡晶,2016,时间域航空电磁扩散特征和成像深度研究,地球物理学报,59卷,第8期,3079-3086。
29. 殷长春, 邱长凯*,刘云鹤,蔡晶,2016,时间域航空电磁数据加权横向约束反演,吉林大学学报(地球科学版),46卷,第1期,254-261。
30. 王若,王妙月,底青云,薛国强,殷长春,雷达,2016,伪随机编码源激发下的时域电磁信号合成,地球物理学报,59卷,第12期,4414-4423。
31. 殷长春,缪佳佳*,蔡晶,2016,时间域航空电磁中激电效应对电磁扩散的影响,地球物理学报,59卷,第12期,4710-4719。
32. 殷长春,2016,电性各向异性与矢量电磁场研究,香山会议特邀报告,贵阳。
33. 殷长春,张平,蔡晶,2016,海洋直流电阻率法各向异性正演模拟研究,应用地球物理,13卷,第2期,279-287.
34. 黄威,孟庆敏,贲放,殷长春,2016,各向异性介质中的三维时间域航空电磁法,中国地球科学联合会,北京。
35. 邱长凯, 殷长春, 刘云鹤, 蔡晶, 王聪,2016, 基于总场方程的频率域可控源电磁法矢量有限元正演模拟,中国地球科学联合会,北京,优秀学生论文奖。
36. 朱姣,殷长春,刘云鹤,蔡晶,王聪,2016,基于L-BFGS法的时间域航空电磁数据拟三维约束反演,中国地球科学联合会,北京。
37. 卢永超,殷长春,刘云鹤,王德智,蔡晶,王聪,2016,基于MGQL的三维航空电磁正演模拟,中国地球科学联合会,北京。
38. 殷长春,张博,齐彦福,任秀艳,黄鑫,曹晓月,邱长凯,卢永超,2016,地球物理电磁多维正演模拟技术,大规模科学计算及应用研讨会,特邀报告,北京。
39. 殷长春,张博,齐彦福,黄鑫,任秀艳,曹晓月,邱长凯,卢永超,2016,电磁三维正演模拟新技术现状和展望,中国矿业全产业链大会,特邀报告,北京。
40. 刘云鹤,殷长春,2016,时间域航空电磁三维并行反演研究,Applied Geophysics,13卷,第4期,701-711。
41. 殷长春,张博*,刘云鹤,蔡晶,2017,面向目标自适应三维大地电磁正演模拟,地球物理学报,60卷,第1期,327-336。
42. 齐彦福,殷长春*,刘云鹤,蔡晶,2017,基于瞬时电流脉冲的三维时间域航空电磁全波形正演模拟,地球物理学报,60卷,第1期,369-382。
43. 陈辉,邓居智,尹敏,殷长春, 2017,直流电阻率法三维正演的聚集代数多重网格法,Applied Geophysics,14卷,第1期,1-11。
44. 王赟,杨顶辉,殷长春,高原,2017,各向异性地球物理与矢量场,科学通报,62卷,第23 期:2595-2605. doi: 10.1360/N972016-01114。
45. 刘云鹤, 殷长春, Colin G.Farquharson, 张博, 任秀艳, 2017,基于Haar 小波域稀疏约束的分段常数模型反演,13rd中国国际地球电磁学术讨论会,特邀报告(Keynote speaker),武汉。
46. 高宗慧,殷长春,张博等,2017,时间域航空电磁数据一维贝叶斯反演,中国地球科学联合会,北京,口头报告。
47. 杨志龙,殷长春,张博等,2017,全托曳式深海直流电阻率法三维正演模拟,中国地球科学联合会,北京,张贴报告。
48. 卢永超,殷长春,张博,任秀艳,黄鑫,蔡晶,2017,基于压缩积分方程技术的航空电磁正演模拟研究,中国地球科学联合会,北京,口头报告。
49. 惠哲剑,殷长春,张博,刘云鹤,2017,时间域海洋可控源电磁法三维有限元模拟,中国地球科学联合会,北京,口头报告。
50. 张文强,殷长春,张博,刘云鹤,任秀艳,2017,海洋可控源电磁一维各项异性正演研究,中国地球科学联合会,北京,张贴报告。
51. 苏扬,殷长春,张博,刘云鹤,任秀艳, 2017,时间域航空电磁一维Occam反演,中国地球科学联合会,北京,口头报告。
52. 陈辉,邓居智,殷长春等,2017,大地电磁截断牛顿法三维反演研究,中国地球科学联合会,北京,张贴报告。
53. 齐彦福,李貅,殷长春等,2017,三维各向异性介质时间域航空电磁正演与影响特征分析,中国地球科学联合会,北京,口头报告。
54. 黄鑫,殷长春*,曹晓月等,2017,基于谱元法三维航空电磁各向异性模拟及识别特征研究,Applied Geophysics, 14卷,第3期,419−430。
55. 黄威,贲放*,殷长春,孟庆敏,廖桂香,吴珊,西永在,2017,三维时间域航空电磁任意各向异性正演模拟,Applied Geophysics,14卷,第3期,431-440。
56. 殷长春,孙思源*,高秀鹤,刘云鹤,陈辉,2018,基于局部相关性约束的三维大地电磁数据和重力数据的联合反演研究,地球物理学报,61卷,第1期,358-367,入选2020年中国精品科技期刊顶尖学术论文平台—领跑者5000。
57. 刘云鹤,殷长春,蔡晶*,黄葳,贲放等,2018,电磁勘探中各向异性研究现状和展望,地球物理学报,61卷,第8期,3468-3487。
58. 刘玲,殷长春,刘云鹤等,2018,基于谱元法的频率域三维海洋可控源电磁正演模拟,地球物理学报,61卷,第2期,756-766。
59. 殷长春,杨志龙*等, 2018,基于环形扫面测量的三维直流电阻率法任意各向异性研究,吉林大学学报(地球科学版),48卷,第3期,872-880。
60. 殷长春,朱姣,邱长凯,蔡晶*,2018, 航空电磁拟三维模型空间约束反演, 地球物理学报,61卷,第6期,2537-2547。
61. 曹晓月,殷长春*等,2018,面向目标自适应有限元法的带地形三维大地电磁各向异性正演模拟,地球物理学报,61卷,第6期,2618-2628。
62. 陈辉,尹敏,殷长春*,邓居智,2018,大地电磁三维正演聚集多重网格算法,吉林大学学报(地球科学版), 48卷,第1期,261-270。
63. 殷长春,卢永超*等,2018,多重网格准线性近似技术在三维航空电磁正演模拟中的应用,吉林大学学报(地球科学版),48卷,第1期,252-260。
64. 邱长凯,殷长春*,刘云鹤等,2018,任意各向异性介质中三维可控源音频大地电磁正演模拟,地球物理学报,61卷,第8期,3488-3498。
65. 孙思源,殷长春 ,高秀鹤,刘云鹤,任秀艳*,2018,基于小波变换的重力压缩感知正演和多尺度反演研究,Applied Geophysics,15卷,第2期,342-352。
66. 杨志龙,殷长春*,张博,刘云鹤,任秀艳,2018,全托曳式深海直流电阻率法三维任意各向异性正演模拟,吉林大学学报(地球科学版),2018, 48卷,第6期,1845-1853。
67. 殷长春,任秀艳,刘云鹤,张博,蔡晶,2018,我国航空电磁三维正反演发展现状,中国地球物理学会工程地球物理专业委员会特邀报告,广西南宁。
68. 刘云鹤,殷长春,张博,任秀艳,2018,我国航空电磁三维反演研究现状和展望,中国地球科学联合会,北京,特邀报告。
69. 曹晓月,殷长春,黄鑫,张博,刘云鹤,蔡晶, 2018,基于非结构网格的大地电磁数据三维反演算法研究,中国地球科学联合会,北京。
70. 张爽,吴燕冈,殷长春,任秀艳,孙思源,2018,总梯度方向导数法在航磁三轴梯度数据处理中的应用,中国地球科学联合会,北京。
71. 黄鑫,殷长春,曹晓月,张博,刘云鹤,蔡晶,2018,基于GLL基函数的时域谱元法三维航空电磁正演模拟,中国地球科学联合会,北京。
72. 苏扬,殷长春等,2018,时间域航空电磁广义模型约束反演,中国地球科学联合会,北京。
73. 齐彦福,李貅,殷长春,戚志鹏,孙乃泉,周建美,张博, 2018,三维瞬变电磁自适应有限元正演模拟,中国地球科学联合会,北京。
74. 关珊珊,殷长春*,嵇艳鞠等,2018三维随机断裂带的航空时域电磁响应数值模拟,地球物理学报,61卷,第11期,4660-4676。
75. 曹晓月,殷长春*,张博,黄鑫,刘云鹤,蔡晶,2018,基于非结构网格的三维大地电磁法有限内存拟牛顿反演研究,Applied Geophysics, 第15卷,第4期,556-565。
76. 曹晓月,殷长春*,张博,黄鑫,刘云鹤,蔡晶, 2018, 面向目标自适应有限元法的带地形三维大地电磁各向异性正演模拟,地球物理学报,第61卷,第6期,2618-2628。
77. 王青,刘云鹤*,殷长春,李金峰,张洁,2019,基于模型空间压缩感知的大地电磁三维反演研究,地球物理学报,62卷,第2期,752-762。
78. 苏扬,殷长春,刘云鹤,张博,任秀艳*, 2019,基于广义模型约束的时间域航空电磁反演研究,地球物理学报,62卷,第2期,743-751。
79. 张文强, 殷长春, 刘云鹤等,2019,基于场延拓的海洋可控源电磁正演模拟及各向异性特征识别,吉林大学学报(地球科学版), 49 (2), 578-590。
80. 殷长春,惠哲剑,张博*, 2019, 起伏海底地形时间域海洋电磁三维自适应正演模拟研究,地球物理学报,62(5), 1942-1953。
81. 裴易峰, 荣亮亮, 张懿 , 殷长春*, 伍俊,王远,谢晓明,2019,低温SQUID瞬变电磁法中去除地磁场影响的方法研究,地球物理学进展,34(2), 622-627。
82. 殷长春,苏扬,任秀艳,刘云鹤,孙思源,邱长凯,2019,时间域航空电磁数据处理与反演软件平台研发,中国地球科学联合会特邀报告, 北京。
83. 薛舒杨,殷长春,苏扬,刘云鹤,2019,字典学习用于电磁数据去噪研究,中国地球科学联合会,北京。
84. 高玲琦,殷长春,王玲,苏扬,2019,曲波变换用于航空电磁数据调平研究,中国地球科学联合会,北京。
85. 王玲,殷长春,高玲琦, 苏扬,2019,曲波变换用于航空电磁数据去噪研究,中国地球科学联合会,北京。
86. 陶梦丽,殷长春,刘云鹤,高宗慧,苏扬,2019,小波稀疏约束航空电磁数据贝叶斯反演,中国地球科学联合会,北京。
87. 王路远,殷长春,惠哲剑,刘云鹤,2019, 地井瞬变电磁三维正演响应特征研究,中国地球科学联合会,北京。
88. 殷长春*,苏扬,刘云鹤,高玲琦,王宁,2019,曲波变换在电磁勘探中的应用,中国地球科学联合会,北京。
89. 殷长春,苏扬*,任秀艳,刘云鹤,孙思源,邱长凯,2019, 时间域航空电磁数据处理与反演软件平台研发与应用,中国地球物理学会水电及工程地球物理联合学术年会,优秀论文一等奖。
90. 韩雪,殷长春*,刘云鹤,张博,任秀艳,2019,时间域航空电磁系统探测深度研究,吉林大学学报,49(5), 1448-1456。
91. 底青云,朱日祥,薛国强*,殷长春,李貅,2019,我国深地资源电磁探测新技术研究进展,地球物理学报,62(6),2128-2138,获2022年度陈宗器优秀论文奖。
92. 张洁,刘云鹤*,殷长春,王青,李金峰,2019,基于非结构网格剖分的海洋可控源电磁三维正则化反演研究,地球物理学报,62(11),4451-4461。
93. 惠哲剑,殷长春*,刘云鹤,任秀艳,王聪,2020,基于非结构有限元的时间域海洋电磁三维反演研究,地球物理学报,63(8),3167-3179。
94. 任秀艳,殷长春*,刘云鹤,张博,蔡晶,2020,导电大地上航空电磁系统校准技术研究,地球物理学报,63(1), 726-735。
95. 邱长凯,殷长春*,刘云鹤,张博,任秀艳,齐彦福,蔡晶, 2020,三维时间域航空电磁有理Krylov正演研究,地球物理学报,63(2), 715-725。
96. 殷长春,刘云鹤*,熊彬,2020,地球物理三维电磁反演研究现状与展望,中国科学(地球科学), 63(1), 432-435。
97. 齐彦福,李貅,殷长春*等,2020,时间域航空电磁各向异性大地自适应有限元正演研究,地球物理学报,63(6),2434 - 2448。
98. 殷长春,朱姣,刘云鹤,任秀艳,熊彬,2020,四面体网格谱元法直流电阻率正演模拟,中国地球科学联合会(特邀报告)。
99. 朱姣,殷长春,刘云鹤,任秀艳 ,谷宇,2020,各向异性介质中高精度谱元法直流电阻率正演模拟,中国地球科学联合会。
100. 满开峰,殷长春,刘云鹤,任秀艳,孙思源,缪佳佳,熊彬,2020,时间域航空电磁激发极化数据的Pearson相关性约束反演,中国地球科学联合会。
101. 韩雪,殷长春,张博,刘云鹤,任秀艳,蔡晶,王聪,2020,八叉树网格在频率域航空电磁三维正演中的应用研究,中国地球科学联合会, 获优秀学生论文奖。
102. 曹晓月,严良俊*,殷长春,黄鑫等,基于非结构有限元法的三维ZTEM反演研究,中国地球科学联合会。
103. 殷长春,张博,齐彦福,刘云鹤,任秀艳,苏扬,2020,航空电磁三维正反演软件平台研发,中国地球物理学会工程地球物理学术年会优秀论文一等奖,张掖。
104. 谷宇, 殷长春*, 邱长凯, 张博,2020,基于有理Krylov子空间法的海洋电磁三维各向异性正演,第二届全国地学研究生论坛,长沙。
105. 王宁,殷长春*,高玲琦,苏扬,刘云鹤,李金峰,熊彬,2020,基于曲波变换的航空电磁数据去噪技术研究,地球物理学报,63(12),4592-4603。
106. 底青云, 薛国强*, 殷长春, 李貅,2020,中国人工源电磁探测新方法技术,中国科学(地球科学),50(9),1219-1227。
107. 谷宇,殷长春*,邱长凯,张博,张文强,熊彬,2020,基于有理Krylov子空间法的可控源海洋电磁三维各向异性正演研究,地球物理学进展,35(6),2332-2350。
108. 满开峰,殷长春*,刘云鹤,任秀艳,孙思源,缪佳佳,熊彬,2020,时间域航空电磁激发极化数据的Pearson相关性约束反演,Applied Geophysics,17(4),465-474。
109. 康庄庄, 汪宏年*, 王浩森, 杨守文, 殷长春,2020,用传播矩阵法研究层状交错地层中的多分量感应测井,地球物理学报,63(11),4277-4289。
110. 苏扬,殷长春*,刘云鹤,任秀艳,张博,熊彬,2021, 基于曲波变换的大地电磁二维稀疏约束反演,地球物理学报,64(1),314-326。
111. 陈博,汪宏年*,杨守文,殷长春,2021,海洋可控源三维电磁响应显式灵敏度矩阵的高效算法,物理学报,70(6),069101。
112. 高玲琦,殷长春*,刘云鹤,苏扬,2021,基于曲波变换的航空电磁数据调平技术研究,地球物理学报,64(5),1785-1796。
113. 汪宏年,于蕾,王浩森,杨守文,殷长春,2021,环状刻槽钻铤中随钻方位电磁波响应的混合算法,地球物理学报,64(5),1811-1829。
114. 于蕾,王浩森,汪宏年,杨守文,殷长春,2021,含环状天线槽的正交方位随钻电磁波测井仪器三维有限体积法数值模拟,地球物理学报,64(9),3391-3409。
115. 姚鸿波,任政勇*,汤井田,林玉峰,殷长春,胡祥云,黄清华,张可可,2021,高精度感应地磁场正演模拟计算及其潜在应用分析,中国科学,51(10),1796-1812,doi: 10.1360/SSTe-2020-0234。
116. 朱姣,殷长春,2021,直流电阻率各向异性三维非结构谱元正演模拟算法研究,地球物理学报,64(12),4644-4657, doi:10.6038/cjg2021P0199。
117. 王涵,刘云鹤*,殷长春等,2021,基于深度学习的TEM实时成像研究,中国地球物理学会地球物理技术第九届学术会议,武汉。
118. 谷宇,殷长春*,邱长凯,张博,任秀艳等,2021,基于有理Krylov子空间法的海洋电磁三维各向异性正演,中国地球物理学会地球物理技术第九届学术会议,武汉。
119. 梁昊,殷长春*,高若云等,2021,基于深度学习海洋电磁快速成像方法研究,中国地球物理学会地球物理技术第九届学术会议,武汉。
120. 惠哲剑,殷长春*,张文强等,2021,基于区域分解法的时间域海洋电磁三维正演,中国地球物理学会地球物理技术第九届学术会议,武汉。
121. 苏扬,殷长春,刘云鹤,那旭*,张博,任秀艳,熊彬,2021,基于Pearson局部相关性约束航空电磁与航空磁法数据三维联合反演,中国地球物理学会工程地球物理年会,泉州,中国地球物理学会工程地球物理优秀论文奖。
122. 殷长春,刘云鹤*, 2022,各向异性介质中电磁模拟技术,中国地球科学联合会,特邀报告,福州。
123. 高若云,殷长春*,刘云鹤,张博,任秀艳,苏扬,梁昊,熊彬,蔡晶,2021,粗糙介质中瞬变电磁响应特征分析,中国地球科学联合会,福州。
124. 朱姣,殷长春*,高玲琦,刘云鹤,任秀艳, 2021,三维非结构谱元法频率域航空电磁正演模拟,中国地球科学联合会特邀报告,福州。
125. 高玲琦,殷长春*,王宁,熊彬,基于区间B样条小波和耦合势方程的频率域航空电磁法三维正演研究,中国地球科学联合会,福州。
126. 王宁,殷长春* ,高玲琦,刘云鹤,张博,任秀艳,熊彬,2021,地磁测深三维各向异性正演模拟,中国地球科学联合会,福州。
127. 王路远,殷长春*,惠哲剑,刘云鹤,2021,地—井瞬变电磁三维反演研究,中国地球科学联合会,福州。
128. 马鑫鹏,张博*,殷长春,刘云鹤,任秀艳,熊彬,2021,阵列式多频电磁梯度仪系统响应模拟与分析,中国地球科学联合会,福州。
129. 陶梦丽,殷长春*,刘云鹤,张博,任秀艳,熊彬,2021,频率域航空电磁多尺度有限元正演方法研究,中国地球科学联合会,福州。
130. 殷长春,张文强*,苏扬,刘云鹤,邱长凯,惠哲剑,熊彬,2022,基于区域分解法的海洋可控源电磁三维正演模拟研究,地球物理学进展,37(1),469-477。
131. 王路远,薛舒扬,殷长春*,刘云鹤,任秀艳,张博,苏扬,熊彬,2022,基于非结构有限元的SBTEM三维正反演研究,中国地球物理学会工程地球物理年会,泉州。
132. 薛舒扬,王路远,殷长春*,刘云鹤,张博,任秀艳,苏扬,熊彬,2022,基于间断有限元的探地雷达三维正演研究,中国地球物理学会工程地球物理年会,泉州。
133. 柯智渊,刘云鹤*,殷长春,2022,复杂地质条件下半航空电磁法对隧道突水突泥等隐蔽地质灾害的响应特征分析,中国地球科学联合会,福州。
134. 马鑫鹏,刘云鹤*,殷长春,李俊,熊彬,2022,全球地磁测深非结构有限元三维反演研究,中国地球科学联合会,福州。
135. 张鑫崇,殷长春*,刘云鹤,蔡晶, 2022,2022,基于非结构有限元的时间域航空电磁激电效应三维正演研究,中国地球科学联合会,福州。
136. 刘强,殷长春*, 刘云鹤, 苏扬, 王涵,2022,基于神经网络的频率域航空电磁二维成像研究,中国地球科学联合会,福州。
137. 韩雪,殷长春*,张博,倪建福,刘云鹤,任秀艳,蔡晶,2022,基于八叉树网格的频率域航空电磁自适应有限元三维正演,中国地球科学联合会,福州。
138. 凌宏,殷长春*,苏扬,刘云鹤,张博,王涵,2022,基于MADDPG的大地电磁数据反演研究,中国地球科学联合会,福州。
139. 燕帅,殷长春*,张博,苏扬,梁昊,张爽,王涵,柯智渊,2022,基于神经网络的时间域可控源电磁数据成像算法研究,中国地球科学联合会,福州。
140. 舒杰伟,刘云鹤*,殷长春,张博,任秀艳,苏扬,2022,基于非结构有限元的ELF卫星电磁正演研究,中国地球科学联合会,福州。
141. 乔彩月,殷长春*,张博,苏扬, 2022,时间域电磁系统探测能力分析,中国地球科学联合会,福州。
142. 任秀艳,赖明泉,殷长春*,刘云鹤,苏扬,蔡晶,2022,基于预条件随机梯度法时间域航空电磁三维反演研究,中国地球科学联合会特邀报告,福州。
143. 张博,殷长春*,王路远,刘云鹤,任秀艳,苏扬,蔡晶,2022,基于飞行高度校正算法的航空电磁数据三维反演,中国地球科学联合会特邀报告,福州。
144. 曲科霖,张博*,殷长春,刘云鹤,任秀艳,陶梦丽,马鑫鹏,韩雪,2022,基于多尺度有限元的航空电磁三维快速正演研究,中国地球科学联合会,福州。
145. 王猛,邓明*,余平,殷长春,陈凯,罗贤虎,2022,深水拖曳式大功率时频发射与多链缆多分量电磁探测系统研发与试验研究,地球物理学报,65(9),3664-3673。
146. 王亚洲,汪宏年*,莫修文,康庄庄,殷长春,2022,随钻超深前视电阻率测井二次场耦合势三维有限体积法高效数值仿真,地球物理学报,65(12),4981-4996。
147. 满开峰,殷长春*,刘云鹤,孙思源,熊彬, 2023,时间域航空电磁激发极化参数三维反演研究,地球物理学报,66(3),2537-2547。
148. 于蕾,王浩森, 殷长春,汪宏年*, 2023,层状各向异性地层中含环状天线槽随钻方位电磁波测井几何因子算法,地球物理学报,66(3),1298-1314。
149. 崔扬,刘洋*,殷长春,王典,惠哲剑,2023,单船拖曳可控源电磁数据自适应分频匹配滤波消噪方法,地球物理学报,66(4),1732-1742。
150. 王亚洲,汪宏年,康庄庄,殷长春,2023,基于微分算子展开与耦合势三维有限体积法快速计算随钻超深前视电阻率测井响应非线性Born逼近,地球物理学报,66(7):3102-3114。
151. 张鑫崇,殷长春*,2023,基于Debye模型的时间域航空电磁激电效应正演模拟,吉林大学学报,53(5),1573-1581。
152. 燕帅,殷长春*,苏扬,王路远,2023,基于卷积神经网络的瞬变电磁数据快速成像算法,地球物理学报,66(10):4290-4300,doi:10.6038/cjg2023Q0827。
153. 陶梦丽,殷长春*,张博,任秀艳,刘云鹤,苏扬,2024,基于多尺度有限元法的频域航空电磁三维正演研究,地球物理学报,64(4),1656-1668,doi:10.6038/cjg2023Q0725。
154. 黄贤阳,殷长春*,苏扬,刘云鹤,张博,任秀艳,李俊,陈辉,2024,基于多重网格算法的大地电磁三维反演研究,地球物理学报, 67(8):3150-3161。
155. 朱姣,姜志海*,殷长春,邱长凯,李毛飞,高兆丰,2024,金属干扰环境下矿井瞬变电磁有限元正演模拟研究,煤炭学报,45(11),4578-4589, DOI:10.13225 /j.cnki.jccs.2023.1596。
147. 满开峰,殷长春*,刘云鹤,孙思源,熊彬, 2023,时间域航空电磁激发极化参数三维反演研究,地球物理学报,66(3),1-12。
148. 于蕾,王浩森, 殷长春,汪宏年*, 2023,层状各向异性地层中含环状天线槽随钻方位电磁波测井几何因子算法,地球物理学报,66(3),1-17。
[1] 基于非结构网格的面向目标自适应三维频率域航空电磁正演模拟软件,登记号2017SR415900;
[2] 基于局部相关性约束的三维大地电磁和重力联合反演软件,登记号2017SR415890;
[3] 面向目标自适应有限元法三维大地电磁各向异性正演模拟软件,登记号2017SR415908;
[4] 基于瞬时电流脉冲的三维时间域航空电磁全波正演模拟软件,登记号2017SR430612;
[5] 基于谱元法电各向异性条件下频率域航空电磁三维模拟软件,登记号2017SR438879;
[6] 基于时域谱元法时间域航空电磁三维模拟软件,登记号2017SR4456333;
[7] 时间域航空激电全波形正演模拟软件,登记号2017SR456868;
[8] 三维直流电阻率任意电各向异性特征识别数值模拟软件,登记号2017SR434781;
[9] 三维非结构重力正反演软件,登记号2017SR452255;
[10] 基于多重网格准线性近似技术的频率域航空电磁正演软件,登记号2017SR467969;
[11] 基于L-BFGS最优化拟三维空间约束反演软件,登记号2017SR487004;
[12] 航空瞬变电磁系统数据处理解释软件,登记号2017SR502656;
[13] 基于谱元法的高精度频率域航空电磁三维正演模拟软件,登记号2017SR505107;
[14] 时间域航空电磁一维快速横向约束反演软件,登记号2017SR534531;
[15] 时间域航空电磁变维数贝叶斯一维反演软件,登记号2018SR545602;
[16] 基于广义模型约束的时间域航空电磁一维反演软件,登记号2018SR736387;
[17] 基于正交多项式算法的航空瞬变电磁数据线圈运动噪声去除软件,登记号2018SR737479;
[18] 时间域海洋电磁三维自适应非结构有限元正演模拟软件,登记号2018SR760051;
[19] 基于谱元法的高精度频率域海洋可控源电磁三维正演模拟软件,登记号2018SR760648;
[20] 基于场延拓的海洋可控源电磁一维各向异性正演模拟软件,登记号2018SR821503;
[21] 三维大地电磁法三轴各向异性反演软件,登记号2018SR745858;
[22] 基于非结构网格的三维大地电磁有限内存拟牛顿反演软件,登记号2018SR812958;
[23] 基于曲波变换的航空地球物理数据调平软件,登记号2019SR1346050;
[24] 基于时域有限元方法的地井瞬变电磁三维正演模拟软件,登记号2019SR1346104;
[25] 基于曲波变换的电磁数据去噪软件,登记号2019SR1345924;
[26] 基于四面体网格谱元法的直流视电阻率三维睁眼软件,登记号2019SR1389945;
[27] 时间域航空电磁系统探测深度软件,登记号2019SR1303139;
[28] 基于非结构网格剖分的频率域海洋电磁三维正则化反演软件,登记号2019SR0719907;
[29] 航空电磁数据稀疏变换域变维贝叶斯反演方法研究软件,登记号2020SR0093140;
[30] 基于字典学习的航空电磁数据去噪软件,登记号2020SR0278360;
[31] 基于非结构有限元的时间域海洋电磁三维反演软件,登记号2020SR0092079;
[32] 方位随钻电磁波测井井眼校正库计算软件, 登记号2020SR1127438;
[33] 方位随钻电磁波测井三维正演模拟软件, 登记号2020SR1129023;
[34] 方位随钻电磁波测井视电导率与倾角转换库正演计算软件, 登记号2020SR1129031;
[35] 随钻电磁前视响应灵敏度空间分布数值模拟软件, 登记号2020SR1129015;
[36] 随钻电磁前视响应有限体积法电磁场正演数值模拟软件, 登记号2020SR1129007;
[37] 多尺度有限元法三维频域航空电磁正演研软件,登记号2023SR0089488;
[38] 基于时域有限元方法的地井瞬变电磁三维反演软件,登记号2023SR0089487;
[39] 基于物理信息神经网络大地电磁正演软件,登记号2023SR0089485;
[40] 基于曲波变换的大地电磁二维反演软件,登记号2023SR0089484;
[41] 基于深度学习的一维海洋电磁快速成像软件,登记号2023SR0089483;
[42] 基于非结构矢量有限元法的地磁测深三维各向异性正演软件,登记号2023SR0089486.
[43] 基于Pearson局部约束的航空电磁与磁法三维联合反演软件,登记号2023SR0403184;
[44] 无网格法大地电磁三维正演软件,登记号2023SR0403202;
[45] 基于区间B样条小波有限元法的频率域航空电磁三维正演软件,登记号2023SR0403201;
[46 ] 基于四面体网格谱元法的频率域航空电磁三维正演软件,登记号2023SR0403185。