【出版专著】 Cheng X L, Lu D C, Wang P G. Dynamic Analysis of Offshore Wind Turbine Foundations in Soft Clays[M]. Springer Nature, Singapore, 2024. ISBN 978-981-97-9453-9. 【代表论文】 近5年以第一/通讯作者发表SCI论文32篇,代表论文如下: [1] Cheng X L, Li Y, Zhou Y D, et al, Dynamic responses of OWT hybrid monopile-bucket foundations in sands under seismic and environmental loading, Soil Dynamics and Earthquake Engineering, 2025, 198, 109632. (JCR Q1) [2] Cheng X L, Yang J H, Wang P G, et al. Cyclic lateral response of large-diameter monopiles in soft clays using bounding surface-based analytical p-y curves[J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2025, 49(3): 1004-1023. (JCR Q1) [3] Cheng X L, Su Y M, Mu K, et al. Behaviors of suction bucket foundations in sands under vertical tensile load and seismic action[J]. Soil Dynamics and Earthquake Engineering, 2025, 195: 109378. (JCR Q1) [4] Cheng X L, Liu M M, Li Q, et al. Dynamic response and fatigue damage analysis of offshore wind turbines supported by four-pile jacket in clays under typhoons[J]. Acta Geotechnica, 2025: 1-21. (JCR Q1) [5] Cheng X L, Xing J Y, Wang G S., et al., Numerical investigation on rotation accumulation and natural frequency degradation for offshore wind turbine in clays[J]. Ocean Engineering, 2025, 315, 119761. (JCR Q1) [6] Cheng X L, Fang Z W, Li Qiang, et al., Dynamic response of offshore wind turbine supported by suction bucket in clay considering scour[J], Ocean Engineering, 2024, 313, 119414 (JCR Q1) [7] Cheng X L, Li M L, El Naggar M H, et al., Dynamic response of OWT tripod pile foundation in clay considering scour. Computers and Geotechnics, 2024, 174, 106647. (JCR Q1) [8] Cheng X L, Li Y, Mu K, et al., Seismic response of tripod suction bucket foundation for offshore wind turbine in sands. Soil Dynamics and Earthquake Engineering, 2024, 177, 108353. (JCR Q1) [9] Cheng X L, Li, M., Ma, C., et al., Dynamic analysis of tripod pile foundation in clays for offshore wind turbines. Ocean Engineering, 2023, 287, 115832. (JCR Q1) [10] Cheng X L, Wang T J, Zhang J X, et al., Dynamic response analysis of monopile offshore wind turbines to seismic and environmental loading considering the stiffness degradation of clay. Computers and Geotechnics, 2023, 155: 105210. (JCR Q1) [11] Cheng X L, El Naggar M H, Lu D C, et al., A cyclic p-y elastoplastic model applied to lateral loaded pile in soft clays. Canadian Geotechnical Journal, 2023. 60(6): 885-901. (JCR Q1) [12] Cheng X L, Cheng W L, Wang P G, et al., Response of offshore wind turbine tripod suction bucket foundation to seismic and environmental loading. Ocean Engineering, 2022, 257: 111708. (JCR Q1) [13] Cheng X L, Lu J Q, Zhuang Q, et al., Lateral cyclic behavior of OWT tripod suction bucket foundation in clays. Ocean Engineering, 2022, 265, 112635. (JCR Q1) [14] Cheng X L, Wang T J, Zhang J X, et al., Finite element analysis of cyclic lateral responses for large diameter monopiles in clays under different loading patterns. Computers and Geotechnics, 2021, 134: 104104. (JCR Q1) [15] Zhang J X, Cheng W L, Cheng X L*, et al., Seismic responses analysis of suction bucket foundation for offshore wind turbine in clays. Ocean Engineering, 2021, 232: 109159. (JCR Q1) [16] Cheng X L, Jiang Z Q, Zhang J X, et al., Numerical investigation of inclined plate anchors in clay with linearly increasing undrained shear strength. Ocean Engineering, 2021, 236: 109579. (JCR Q1) [17] Cheng X L, Jiang Z Q, Wang P G, et al., Bearing capacity of plate anchors subjected to average and cyclic loads in clays. Ocean Engineering, 2021, 235: 109343. (JCR Q1) [18] Cheng X L, Du X L, Lu D C, et al., A simple single bounding surface model for undrained cyclic behaviours of saturated clays and its numerical implementation. Soil Dynamics and Earthquake Engineering, 2020, 139: 106389. (JCR Q1) [19] Cheng X L, Wang P G, Li Na, et al., Predicting the cyclic behaviour of suction anchors based on a stiffness degradation model for soft clays. Computers and Geotechnics, 2020, 122: 103552. (JCR Q1) [20] Cheng X L, Li Y F, Wang P G, et al., Model tests and finite element analysis for vertically loaded anchors subjected to cyclic loads in soft clays. Computers and Geotechnics, 2020, 119: 103317. (JCR Q1) |
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