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[1] Liu Z, Li S, Dai L, Suo Y, Wang G, Wang P, Bukhari S W H. Deep-Shallow Coupling Mechanism in Pull-Apart Basins: Insight From 3D Numerical Simulation. J Asian Earth Sci, 2023. 242(105509). (通讯作者)
[2] Dong H, Dai L, Liu L, Jiang X, Li S, Gong W, Wang L, Wang D, Li Z H, Yu S. Joint Geodynamic‐Geophysical Inversion Suggests Passive Subduction and Accretion of the Ontong Java Plateau. Geophysical Research Letters, 2022. 49(23). (通讯作者)
[3] Wang L, Dai L, Gong W, Li S, Jiang X, Foulger G, Dong H, Li Z H, Yu S. Subduction Initiation at the Solomon Back‐Arc Basin: Contributions From Both Island Arc Rheological Strength and Oceanic Plateau Collision. Geophysical Research Letters, 2022. 49(3). (通讯作者)
[4] Wang L, Dai L, Gong W, Li S, Jiang X, Dong H, Wang D, Li F, Yu S. Co-Evolution of Parallel Triple Subduction Systems in the New Guinea Region: A Systematic Numerical Study. Frontiers in Earth Science, 2022. 10. (通讯作者)
[5] Bukhari S W H, Dai L, Suo Y, Li S, Liu Z, Khan M, Zhou J, Wang P, Somerville I. Flexural Subsidence Modelling of Post-Rift Paleobathymetry and Sedimentary Infill in the Northern South China Sea Margin. Journal of Asian Earth Sciences, 2022. 226(105076). (通讯作者)
[6] Liu Z, Dai L, Li S, Li Z, Ding X, Bukhari S W H, Somerville I. Earth's Surface Responses During Geodynamic Evolution: Numerical Insight From the Southern East China Sea Continental Shelf Basin, West Pacific. Gondwana Research, 2022. 102(167-179). (通讯作者)
[7] Liu Z, Dai L, Li S, Wang L, Xing H, Liu Y, Ma F, Dong H, Li F. When Plateau Meets Subduction Zone: A Review of Numerical Models. Earth-Science Reviews, 2021. 215(103556). (通讯作者)
[8] Jianli Tao, Liming Dai, Da Lou, Zhong-Hai Li, Shuhui Zhou, Ze Liu, Sanzhong Li, Hao Dong, Haoyuan Lan, Liangliang Wang, Fakun Li. 2020. Accretion of oceanic plateaus at continental margins: Numerical modeling. Gondwana Research. 81, 390-402. (通讯作者)
[9] Xing Cui, Min Sun, Guochun Zhao, Jinlong Yao, Yigui Han, Liming Dai, 2020. A Devonian arc–back-arc basin system in the southern Chinese Altai: Constraints from geochemical and Sr-Nd-Pb isotopic data for meta-basaltic rocks. Lithos, 366-367, 105540.
[10] Liming Dai, Liangliang Wang, Da Lou, Zhong-Hai Li, Hao Dong, Fangfang Ma, Fakun Li, Sanzhong Li, Shengyao Yu, 2020. Slab rollback versus delamination: contrasting fates of flat-slab subduction and implications for South China evolution in the Mesozoic. Journal of Geophysical Research-Solid Earth, 125(4), e2019JB019164.
[11] Dai, L.M., Li, S.Z., Li, Z. H., Somerville, I.D., Suo, Y.H., Liu, X.C., Gerya, T., Santosh, M., 2018. Dynamics of exhumation and deformation of HP-UHP orogens in double subduction-collision systems: numerical modeling and implications for the western dabie orogen. Earth-Science Reviews, 182,68-84.
[12] Dai, L.M., Li, S.Z., Li, Z. H., Somerville, I.D., Liu, X.C., 2017. Dynamic processes and mechanisms for collision to post-orogenic extension in the Western Dabie Orogen: Insights from numerical modeling, Geological Journal, 52(s1): 44~58
[13] Dai, L.M., Li, S.Z., 2016. Numerical modelling of the relationship between the present tectonic stress field and the earthquakes in the Western Pacific Subduction Zone, Geological Journal, 51(s1): 609~623.
[14] Dai, L.M., Li, Q.W., Li, S.Z., Guo, L.L..2015. Numerical modeling of stress fields and earthquakes jointly controlled by NE- and NW-trending fault zones in the Central North China Block., Journal of Asian Earth Sciences,114(2015): 28~40.
[15] Dai, L.M., Li, S.Z., Lou, D., Liu, X., Suo, Y.H., Yu, S., 2014. Numerical modeling of Late Miocene tectonic inversion in the Xihu Sag, East China Sea Shelf Basin, China. Journal of Asian Earth Sciences, 86:25-37
[16] Liu, Z., Dai, L.M., Li, S.Z., Guo, L.L., Hu, M.Y., Ma, F.F., Tao, J.L., 2017. Mesozoic magmatic activity and tectonic evolution in the southern east china sea continental shelf basin: thermo‐mechanical modelling. Geological Journal, 53(4). (通讯作者)
[17] Xing Cui, Liming Dai, Sanzhong Li, Lingli Guo, Yanhui Suo, 2018. Control of strike-slip and pull-apart processes to tectonic transition of the southern East China Sea Shelf Basin. Geological Journal, 54(1-4). (通讯作者)
[18] 戴黎明, 李三忠, 索艳慧, 刘鑫, 周均太, 周立宏, 蒲秀刚, 楼达, 周淑慧. 渤海湾盆地黄骅坳陷现今应力场的三维数值模拟分析. 地球物理学报,2013,48(5):543-560 (SCI和EI收录)
[19] 戴黎明, 李三忠, 陶春辉, 李西双, 刘鑫, 索艳慧, 楼达.俯冲带耦合作用对苏门答腊地区应变场影响的三维数值模拟.地球物理学报,2010, 53(8):1837-1851 (SCI和EI收录).
[20] 戴黎明, 李三忠, 刘泽, 胡梦颖, 刘连启, 杨彦峰. 车镇凹陷大1断层对区域油气成藏控制性作用的三维数值模拟. 大地构造与成矿学, 2016,40(1):47-57 (EI收录).
[21] 戴黎明, 李三忠, 楼达, 索艳慧, 刘鑫, 余珊, 周淑慧.亚洲大陆主要活动块体的现今构造应力数值模拟.吉林大学学报-地球科学版,2013, 43(2): 469-483
[22] 戴黎明, 李三忠, 陶春辉, 李西双, 周永刚.印度板块挤压对龙门山断裂带活动的三维数值模型. 地球物理学进展, 2011, 26(1): 41-51.
[23] 武子涵, 于海波, 张参, 戴黎明, 李法坤. 渤海湾盆地中部428构造带近S-N向走滑断裂的形成时期及其在中生代期间的调节转换作用. 海洋地质与第四纪地质, 2023,43(1): 71-81. (通讯作者)
[24] 李法坤, 戴黎明, 杜晓东, 蔡国富, 李三忠, 董昊, 王宇. 构造-沉积耦合过程的数值模拟:以南海北部阳江凹陷为例. 海洋地质与第四纪地质, 2021,41(05): 139-150. (通讯作者)
[25] 董昊,戴黎明*,李三忠*,胡泽明.太古宙多岩浆通道与穹脊构造的动力学关联[J].海洋地质与第四纪地质,2020,40(04):116-126. (通讯作者)
[26] 董昊, 戴黎明, 李三忠, 杨悦, 胡泽明. 太古宙岩石圈构造变形过程与岩浆作用的数值模拟研究. 大地构造与成矿学, 2021,45(4): 621-633. (EI收录,通讯作者)
[27] 马芳芳, 楼达, 戴黎明, 李三忠, 董昊, 陶建丽, 李法坤, 王亮亮, 刘泽. 俯冲板片熔融柱的数值模拟:上覆板块破坏及动力地形效应. 海洋地质与第四纪地质, 2019, 39(5): 186-196. (通讯作者)
[28] 陶建丽, 楼达, 戴黎明, 李三忠, 董昊, 马芳芳, 兰浩圆, 李法坤, 王亮亮, 刘泽. 中国东部大陆边缘中生代晚期增生过程的数值模拟:以那丹哈达为例. 海洋地质与第四纪地质, 2019, 39(5): 174-185. (通讯作者)