论文及专著(*代表通讯作者):
(1)Zhang, J., Zhao, M.H*., Sun, Z*., Sun, L.T., Xu, M., Yang, H.F., Wang, Q., Pang, X., Zheng, J.Y., and Yao, Y.J. (2023). Large volume of magma involved in South China Sea rifting: Implication for mantle breakup earlier than crust. Tectonophysics. 853: 229801.
(2)Zhang, J., Yang, H.F*. Zhu G. H., Chen, H., Zhang, F., & Sun, Z. (2023). The effect of along-strike variable plate deflection on bending stress and seismicity at the southern Mariana Trench. Tectonophysics. 850: 229752.
(3)张江阳, 林间, 张帆, 等. (2023) 西太平洋俯冲带岩石圈变形研究. 科技导报. 41(2): 29-34; doi: 10.3981/j.issn.1000-7857.2023.02.003.
(4)Zhang, J., Sun, Z., Yang, H. & Zhang, F. (2022). A Model of Plate Bending at the Transition Zone From Subduction to Collision in Northernmost Manila Trench. Geophysical Research Letters. 49 (18), e2022GL100474.
(5)Zhang, J., Zhang, F., Yang, H., Lin, J., & Sun, Z. (2022). The effects of plateau subduction on plate bending, stress and intraplate seismicity. Terra Nova. 34(2), 113– 122. https://doi.org/10.1111/ter.12570
(6)Zhang, J., Zhang, F*., Lin, J*., & Yang, H.F. (2021). Yield failure of the subducting plate at the Mariana Trench. Tectonophysics. 814: 228944.
(7)Zhang, J., Xu, M*., & Sun, Z. (2020). Lithospheric flexural modelling of the seaward and trenchward of the subducting oceanic plates. International Geology Review. 62(7-8): 908-923.
(8)张江阳,孙珍,邱宁,张云帆,李付成. (2019). 基于粒子群算法的俯冲带三维有效弹性厚度反演. 地球物理学报. 62(12): 4738 - 4749.
(9)Zhang, J., Sun, Z*., Xu, M., Yang, H.F., Zhang, Y.F. & Li, F.C. (2018). Lithospheric 3-D flexural modelling of subducted oceanic plate with variable effective elastic thickness along Manila Trench. Geophysical Journal International, 215(3): 2071-2092.
(10)Guo, Z., Lin, J.*, Zhang, J.*, Zhang, F., Yang, X., Cheng, Z & Zhou, P. (2023). The effect of pre- existing fabrics on plate bending and seismicity in Alaska subduction zone. Terra Nova. 00, 1–7. https://doi.org/10.1111/ter.12699.
(11)邱宁,姚永坚,张江阳*,王利杰,徐东海. (2019). 南海东南部陆缘地壳结构特征及其构造意义. 地球物理学报. 62(7): 2607-2621.
(12)Dong, M., Hao, T., Xu, L., Zhang, J., Zhang, J., Lü, C. & He, Q. (2024). Subduction without volcanic arc magma: Insights from two young subduction zones in the western Pacific. Tectonophysics. 874: 230231.
(13)Zhang, Y., Zhang, F., Zhang, X., Zhang, T., Lin, J., Zhou, Z., & Zhang, J. (2023). Modification of along-ridge topography and crustal thickness by mantle plume and oceanic transform fault at ultra-slow spreading Mohns Ridge. Geophysical Research Letters, 50, e2023GL105871.
(14)Zhang, F., Lin, J., Zhu, R.X., Zhang, X.B., Zhang, J.Y. and Zhou, Z.Y. (2023). Dual hydration of oceanic lithosphere. National Science Review. 10: nwad251.
(15)周鹏程,张江阳. (2023).汤加火山的地震学研究[J]. 科技导报. 41(2): 51-55; doi: 10.3981/j.issn.1000-7857.2023.02.006.
(16)Chen H., He, X.H., Yang, H.F. & Zhang, J.Y. (2021). Fault-Plane Determination of the 4 January 2020 Offshore Pearl River Delta Earthquake and Its Implication for Seismic Hazard Assessment. Seismol. Res. Lett., 92 (3): 1913–1925.
(17)Zhao, Y., Ding, W., Ren, J., Li, J., Tong, D., & Zhang, J. (2021). Extension discrepancy of the hyper-thinned continental crust in the baiyun rift, northern margin of the South China Sea. Tectonics, 40, e2020TC006547. https://doi.org/10.1029/2020TC006547.
(18)王利杰,孙珍,姚永坚,赵中贤,李学杰,张江阳,卓海腾,杨振. (2021). 南海东南部陆缘 Nido 灰岩发育特征及其构造控制因素.地球科学. https://kns.cnki.net/kcms/detail/42.1874.P.20210409.1425.002.html.
(19)Zhang, C.M*., Sun, Z*., etc. Zhang, J.Y. (2020). Syn-rift magmatic characteristics and evolution at a sediment-rich margin: Insights from high-resolution seismic data from the South China Sea. Gondwana Research. 91: 81-96.
(20)Zhang, C., Manatschal, G., Pang, X., Sun, Z., Zheng, J., Li, H., Sun, L., Zhang, J.Y., & Zhao, Y. (2020). Discovery of mega‐sheath folds flooring the Liwan subbasin (South China Sea): Implications for the rheology of hyperextended crust. Geochemistry, Geophysics, Geosystems, 21, e2020GC009023. https://doi.org/ 10.1029/2020GC009023
(21)Zhang, Y.F., Sun, Z*., Zhang, J.Y. & Wang, L.J. (2020). The structure, depositional style and accumulation characteristics of continental margin with diachronous breakup in the northern South China Sea. International Geology Review. 62(7-8): 1006-1018.
(22)Li, F.C., Sun, Z*. & Zhang, J.Y. (2018). Influence of mid-crustal rheology on the deformation behavior of continental crust in the continental subduction zone. Journal of Geodynamics. 117, 89-99.
(23)李付成,孙珍*,张江阳. (2018). 大洋板块运动方向反转控制活动陆缘岩石圈张裂过程数值模拟. 地球科学. 43(10): 3762-3777.
(24)李付成,孙珍*,张江阳. (2016). 海山俯冲过程中的变形特征—物理模拟和数值模拟证据. 热带海洋学报. 35(1): 31-37.
(25)Liu, J.B., Sun, Z., Wang, Z.F., Sun, Z.P., Zhao, Z.X., Wang, Z.W., Zhang, C.M., Qiu, N. and Zhang, J.Y. (2015). Tectonic differences between eastern and western sub-basins of the Qiongdongnan Basin and their dynamics. Mar. Geophys. Res., 36: 61-79.
(26)张江阳,孙珍,张素芳. (2014). 珠江口盆地潮汕坳陷中生代构造变形分析. 热带海洋学报. 33(5): 41-49.
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