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2012.9-2017.4:中国科学技术大学,地球物理学专业,博士研究生
2008.9-2012.7:长安大学,地球物理学专业,本科
2022.7-至今 同济大学海洋与地球科学学院,助理教授
2019.8-2022.7 南方科技大学地球与空间科学系,研究助理教授
2017.8-2019.8 武汉大学/南方科技大学,联合博士后
研究成果
31. 孙耀充, 沈朱悦, 张文强, 余厚云, 吕丽星, 赵顺, 陈晓非. 1902年阿图什M8¼级地震的强地面运动模拟. 地球物理学报, doi: 10.6038/cjg2026T0727.
30. Lu, B., Bao, X., Sun, Y.-C., Zhang, W. (2026). Comparative analysis of Pn full-waveform inversion and travel-time tomography in imaging upper mantle azimuthal anisotropy. Frontiers in Earth Science, 14:1748581.https://doi.org/10.3389/feart.2026.1748581.
29. Lu, B., Bao, X., Sun, Y.-C., Zhang, W. (2026). Full-wave Pn inversion for azimuthal anisotropy of the upper mantle. Geophysical Journal International, 245(1), 1-16. https://doi.org/10.1093/gji/ggag036. [共通讯作者]
28. Li, Y.-X., Sun, Y.-C., Lu, B., Wang, T., Cheng, J., (2026). Numerical simulation of P-wave propagation in 2D VTI media with a topographic free surface by a curvilinear-grid finite-difference method. Frontiers in Earth Science, 14:1930004.https://doi.org/10.3389/feart.2026.1930004. [通讯作者]
27. Sun, Y.-C., Yang, Z., Pan, L., Han, P., Yang, J., Chen, X., (2025). Extracting multimodal Scholte wave dispersion spectra from ocean-bottom cable data using a frequency-Hankel transform. Geophysics, 90(3), KS47–KS59. https://doi.org/10.1190/geo2023-0629.1.
26. Lu, B., Bao, X., Sun, Y.-C., Zhang, W., (2025). On the strategy of full-wave Pn inversion for upper-mantle azimuthal anisotropy. Geophysical Journal International, 242(1), 1-17, https://doi.org/10.1093/gji/ggaf177.
25. 赵顺, 马知途, 孙耀充, 薛梅, 王晓美, (2025). 基于面波相位测量和P波到时检测台站时钟错误和极性反转. 地震学报, 47(3), 356–373.http://dx.doi.org/10.11939/jass.20230164.
24. 沈朱悦, 赵顺, 孙耀充, 徐杜远, 余厚云, 臧楠, 王春静 (2025). 大型低角度断层和巨厚沉积盆地对强地面运动的影响—以新疆喀什地区的逆断层为例. 地震地质, 47(2), 610–626.doi: 10.3969/j.issn.0253-4967.2025.02.20240158. [通讯作者]
23. Yang, Z., Sun, Y.-C., Zhang, D., Han, P., and Chen, X., 2024, A frequency-Hankel transform method to extract multimodal Rayleigh wave dispersion spectra from active and passive source surface wave data: Geophysics, 89(2), KS69–KS81. https://doi.org/10.1190/geo2023-0189.1. [通讯作者]
22. Qiu, H., Sun, Y.-C., Fang, C., Zhang, W., and Chen, X., 2024, An overset-grid finite-difference algorithm for seismic wavefield propagations modelling in the polar coordinate system with a complex free-surface topography: Geophysical Journal International, 241(3), 1881–1895.
21. Gan, Y., Yang, Z., Pan, L., Sun, Y.-C., Zhang, D., Gao, Y., and Chen, X., 2024, Deep Learning-Based Dispersion Spectrum Inversion for Surface Wave Exploration. IEEE Transactions on Geoscience and Remote Sensing, 62, 1–11.
20. Zhang, H., Sun, Y.-C., Ren, H., Zhang, W., Huang, Q., Chen, X. (2023). Discontinuous curvilinear collocated grid combined with nonuniform time step Runge-Kutta scheme for poroelastic finite-difference modeling. Geophysics, 88(1), T1–T12.
19. Dai, A., Bao, X., Sun, Y.-C., Shan, H. (2023). A Novel Method to Estimate Orientations of an Ocean‐Bottom Seismometer Array for Accurate Measurement of Waveform Phases and Amplitudes. Seismological Research Letters, 94(4), 1936–1947.
18. Yang Xiao-Hui, Han Peng, Yang Zhentao, Miao Miao, Sun Yao-Chong, Chen Xiaofei (2022). Broad learning framework for search space design in Rayleigh wave inversion. IEEE Transactions on Geoscience and Remote Sensing, 60: 4512617.
17. Zhang Heng, Sun Yao-Chong, Ren Hengxin, Ma Wenbo, Zhang Wei, Huang Qinghua & Chen, Xiaofei. (2022). 2D electromagnetic simulation for ground penetrating radar with a topographic ground surface by the curvilinear-grid finite-difference method combined with equivalent field method, Journal of Applied Geophysics, 206: 104812.
16. Zhang Heng, Sun Yao-Chong, Ren Hengxin, Zhang Wei, Huang Qinghua & Chen Xiaofei. (2022). Discontinuous curvilinear grid combined with nonuniform time step Runge-Kutta scheme for poroelastic finite-difference modelling. Geophysics, 88(1): 1-12.
15. Zheng Xu-Zhen, Ren Hengxin, Butler Karl E., Zhang Haiming, Sun Yao-Chong, Zhang Wei, Huang Qinghua & Chen Xiaofei (2021). Seismoelectric and electroseismic modelling in stratified porous media with a shallow or ground surface source, Journal of Geophysical Research: Solid Earth, 126(9), e2021JB021950.
14. Ren Hengxin, Zeng Ling, Sun Yao-Chong, Yamazaki Ken'ichi, Huang Qinghua & Chen Xiaofei (2021). Semi-analytical solutions of seismo-electromagnetic signals arising from the motional induction in 3-D multi-layered media: part II - numerical investigations, Earth Planets and Space, 73.
13.Yao-Chong Sun, Wei Zhang, Hengxin Ren, Xueyang Bao, Jian-Kuan Xu, Nan Sun, Zhentao Yang, Xiaofei Chen (2021). 3D seismic-wave modeling with a topographic fluid-solid interface at the sea bottom by the curvilinear grid finite-difference method. Bulletin of Seismological Society of America, 111(5): 2753-2779.
12.Yao-Chong Sun, Hengxin Ren, Ken'ich Yamazaki, Ling Zeng, Qinghua Huang, Xiaofei Chen (2021). Semi-analytical solutions of seismo-electromagnetic signals arising from the motional induction in 3-D multi-layered media: part I-theoretical formulations. Earth, Planets and Space, 73: 20.
11.孙楠, 孙耀充 (2020). 数值模拟激发条件对宾川水库气枪信号振幅的影响. 地震研究, 43: 53-61.
10.Yao-Chong Sun, Makoto Uyeshima, Hengxin Ren, Qinghua Huang et al. (2019). Numerical simulations to explain the coseismic electromagnetic signals: a case study for a M5.4 aftershcok of the 2016 Kumamoto earthquake. Earth, Planets and Space, 71: 143.
9.Yao-Chong Sun, Henxin Ren, Xu-Zhen Zheng, Na Li, Wei Zhang, Qinghua Huang, Xiaofei Chen (2019). 2D poroelastic wave modeling with a topographic free surface by the curvilinear grid finite-difference method. Geophysical Journal International, 218: 196-1982.
8.Yao-Chong Sun, Wei Zhang, Xiaofei Chen (2018). 3D Seismic Wavefield Modeling in Generally Anisotropic Media with a Topographic Free Surface by the Curvilinear Grid Finite-Difference Method. Bulletin of Seismological Society of America, 108(3A): 1287-1301.
7.Yao-Chong Sun, Wei Zhang, Jian-Kuan Xu, Xiaofei Chen (2017). Numerical simulation of 2-D seismic wave propagation in the presence of a topographic fluid-solid interface at the sea bottom by the curvilinear grid finite-difference method. Geophysical Journal International, 210(3): 1721-1738.
6.孙楠,孙耀充,庾汕 (2017). 含有限水体介质中地震波场数值模拟. 地震研究, 4(40): 557-564
5.Yao-Chong Sun, Wei Zhang, Xiaofei Chen (2016). Seismic-wave modeling in the presence of surface topography in 2D general anisotropic media by a curvilinear grid finite-difference method. Bulletin of the Seismological Society of America, 106(3): 1036-1054.
4.张振国, 孙耀充, 徐建宽, 张伟, 陈晓非 (2014). 2014年8月3日云南鲁甸地震强地面运动初步模拟及烈度预测. 地球物理学报, 57(9), 3038-3041.
3.张振国, 张伟, 孙耀充, 朱耿尚, 文健, 陈晓非 (2014). 2014年2月12日新疆于田地震强地面运动初步模拟及烈度预测. 地球物理学报, 57(2), 685-689.
2. Zhong-Sheng Li, Chao-Ying Bai, Yao-Chong Sun (2013). Seismic wavefield simulation in 2D elastic and viscoelastic tited transversely isotropic media: comparisions between four different kinds of finite-difference grid schemes. Journal of Geophysics and Engineering, 10(4), 045005.
1.孙耀充, 张延腾, 白超英 (2013). 二维弹性及粘弹性TTI介质中地震波场数值模拟:四种不同网格高阶有限差分算法研究. 地球物理学进展, 28(4), 1817-1827.
教学情况
本科生:《行星笔记》、《天然地震学》、《地球灾害》、《地球物理综合实习》
研究生:《高等天然地震学》、《定量地震学》(助教,2014)、《大洋板块》
指导研究生
在读学生:
沈朱悦、李宇轩、尚彤彤
毕业学生:
赵顺
GJI, BSSA, Journal of Geophysics and Engineering等期刊审稿人
2021年广东省地球物理学会科技技术奖(“微地震实时监测技术”)
2017年中国科技大学优秀博士毕业生
2016年CASC奖学金
2009年国家奖学金