1.Hang D., Yusong C., Chuannan X., Yuxiao L.*, et al. (2026) A physics-informed deep learning model for seismic response prediction and fragility assessment of offshore wind turbine towers, Ocean Engineering, 343:123237 (SCI, 通讯)
2.Gui C., Kaoshan D., Yuxiao L.*, et al. (2025) Design framework for double-layer flexible photovoltaic support structures under static loads, Engineering Structures, 343:121086 (SCI, 通讯)
3.Hang D., Chuannan X., Kaoshan D., Junlin H., Yuxiao L.*, et al. (2025) Data-driven prediction of load transfer function for high neck flexible flange bolts in lattice wind turbine towers, Structures, 81:110224 (SCI, 通讯)
4.Yuxiao L., Dong Z., Junli H.*, et al., (2025) Probabilistic Fatigue Prognosis of Novel Ring-Flange Connections in Lattice-Tubular Hybrid (LTH) Wind Turbine Towers. Thin-Walled Structures, 209:112908. (SCI,一作)
5.Chuannan X., Kaoshan D., Yuxiao L.*, et al., (2025) Innovative large-scale prefabricated lattice wind turbine support structures: multiparameter collaborative optimization and design guidelines, Structural Design of Tall and Special Buildings, 34:e70010. (SCI,通讯,获“威立Wiley中国高贡献作者奖”)
6.Chuannan X., Kaoshan D., Yuxiao L.*, et al., (2024) Proposal and application of onshore lattice wind turbine support structure and integrated multi-scale fatigue assessment method, Engineering Structures, 302:117314 (SCI,通讯,获Editors’ featured paper奖)
7.Chuannan X., Kaoshan D., Yuxiao L.*, et al., (2024) Optimizing dimension selection for rain flow counting in fatigue assessment of large-scale lattice wind turbine support structures: A comprehensive study and design guidance, Thin-Walled Structures, 201:112051 (SCI,通讯)
8.Zhe J., Jiawei T., Kaoshan D.*, Chao F., Yuxiao L.* (2024) A tuned cable-inerter system for wind turbine blades vibration suppression, International Journal of Mechanical Sciences, 269:109030. (SCI,共同通讯)
9.Yuxiao L., Keyi Q., Minjuan H., Renle M., Riccardo F., Seiichiro T. (2022) Fatigue performance of the slit end area of slotted CHS tube-to-gusset plate connection, Thin-Walled Structures, 173: 108920. (SCI,一作)
10.Chuannan X., Kaoshan D., Yuxiao L.*, et al., (2024) Integrated fatigue assessment method considering average stress effects of large-scale lattice wind turbine support structures, Journal of Constructional Steel Research, 214:108432 (SCI,通讯)
11.Yuxiao L., Seiichiro T.; Rui H.; et al. (2022) Parametric formulae for stress concentration factor and clamping-induced stress of butt-welded joints under fatigue test condition, Welding in The World, 66(9): 1897. (SCI,一作)
12.Kaoshan D., Hang D., Yuxiao L.*, et al., (2023) Stress distribution prediction of circular hollow section turbine flexible high-neck flange joints based on the hybrid machine learning model, Materials, 16:6815. (SCI,通讯)
13.唐骁,熊川楠,常颖,罗宇骁*等.(2025)考虑过载迟滞效应的风电塔节点疲劳评估方法,太阳能学报,录用.(EI,通讯)
14.戴靠山,杜航,罗宇骁*等. (2025) 考虑低应力循环影响的风电结构疲劳损伤模型,太阳能学报, 46(05):522-530. (EI,通讯)
15.李志, 邱旭, 戴靠山, 罗宇骁*,等. (2025) 风浪环境参数对22兆瓦海上风电结构荷载的影响初探, 太阳能学报, 2025, 录用.(EI,通讯)
16.罗宇骁, 马人乐*, 裘科一. (2022) 构架式预应力抗疲劳钢管风电塔抗疲劳设计方法, 建筑钢结构进展, 23: 73.
17.Yuxiao L., Renle M., Seiichiro T. (2020) Parametric Formulae for Elastic Stress Concentration Factor at the Weld Toe of Distorted Butt-Welded Joints, Materials, 13: 169. (SCI,一作)