学术论文:
[1]Yi-Fan Ding, Yu-Fei Liu*, Xiao-Gang Liu, Qing-Rui Yue, Jian-Guo Nie, Xuan Chen. FE model updating of grid structure considering deformation of crooked members. Structures. 2024, 62: 106182.
[2]Mu-Nan Xu, Li-Min Sun, Yu-Fei Liu*, Bao-Luo Li, Meng Zhou, Xuan Chen. Member Separation and Deformation Recognition of Spatial Grid Structures In-Service. Engineering Structures. 2024, 304(1): 117642.
[3]Xiao-Chen Wei, Han-Shuo Zhang, Yu-Fei Liu*. Thermal effect on dynamic characteristics of concrete girder bridges. Structures, 2024, 61: 105974.
[4]Jing-Lin Xiao, Jian-Sheng Fan, Yu-Fei Liu*, Bao-Luo Li, Jian-Guo Nie. Region of interest (ROI) extraction and crack detection for UAV-based bridge inspection using point cloud segmentation and 3D-to-2D projection. Automation in Construction, 2024, 158, 105226.
[5]Chu-Qiao Feng, Bao-Luo Li, Yu-Fei Liu*, Fu Zhang, Yan Yue, Jian-Sheng Fan. Crack assessment using multi-sensor fusion simultaneous localization and mapping (SLAM) and image super-resolution for bridge inspection. Automation in Construction, 2023, 155, 105047.
[6]Jin-Tao Wang, Yu-Fei Liu*, Xiao-Gang Liu, Qing-Rui Yue, Jian-Guo Nie. Photogrammetry-based bending monitoring and load identification of steel truss structures. Advances in Structural Engineering. 2023, 26(13): 2543-2561.
[7]Bao-Luo Li, Yu Qi, Jian-Sheng Fan, Yu-Fei Liu*, Cheng Liu. A grid-based classification and box-based detection fusion model for asphalt pavement crack. Computer-Aided Civil and Infrastructure Engineering. 2023, 38(16): 2279-2299.
[8]Jing-Lin Xiao, Xin Nie, Yu-Fei Liu*, Jian-Sheng Fan. Structural performance assessment of RC flexural members through crack-based fibre beam-column model updating. Computers and Structures. 2023, 281: 107029.
[9]Han-Shuo Zhang, Yu-Fei Liu*, Hong-Tao Li, Jian-Guo Nie, Jian-Sheng Fan, Cheng Liu. An Efficient Model for Solar Radiation Induced Top Displacement of Steel-concrete Composite Bridge Towers. Structures. 2023, 52: 1009-1019.
[10]Jin-Tao Wang, Yu-Fei Liu*, Meng Zhou, Jian-Guo Nie, Xuan Chen. Deformation prediction of large-span spatial structure considering adverse weather conditions. Structures. 2023, 50: 508-523.
[11]Han-Shuo Zhang, Yang Zhao, Jing Ruan, Xin Nie, Jian-Sheng Fan, Yu-Fei Liu*. Experiment study on temperature field and effect on steel-concrete composite bridge towers. Structures. 2023, 50: 937-953.
[12]Jian-Sheng Fan, Bao-Luo Li, Cheng Liu, Yu-Fei Liu*, An efficient model for simulation of temperature field of steel-concrete composite beam bridges. Structures. 2022, 43: 1868-1880.
[13]Xiao-Chen Wei, Jian-Sheng Fan, Yu-Fei Liu*, Jin-Xun Zhang, Xiao-Gang Liu, Si-Yu Kong. Automated inspection and monitoring of member deformation in grid structures. Computer-Aided Civil and Infrastructure Engineering. 2022, 37(10): 1277-1297.
[14]Xiao-Chen Wei, Yu-Fei Liu*, Jian-Sheng Fan, Xiao-Gang Liu, Si-Yu Kong. Safety assessment of existing pin-jointed grid structures with crooked members using static model updating. Engineering Structures, 2021, 247: 113107.
[15]Jian-Sheng Fan, Yu-Fei Liu*, Cheng Liu. Experiment study and refined modeling of temperature field of steel-concrete composite beam bridges. Engineering Structures, 2021, 240(6): 112350.
[16]Si-Yu Kong, Jian-Sheng Fan, Yu-Fei Liu*, Xiao-Chen Wei, Xiao-Wei Ma. Automated crack assessment and quantitative growth monitoring, Computer-Aided Civil and Infrastructure Engineering, 2021, 36(5): 656-674.
[17]Meng Zhou, Jian-Sheng Fan, Yu-Fei Liu*, Jin-Xun Zhang, Xian-Jun Duan, Su-Su Lei. Non-uniform temperature field and effect on construction of large-span steel structures, Automation in Construction. 2020, 119, 103339.
[18]Yu-Fei Liu*, Xin Nie, Jian-Sheng Fan. Xiao-Gang Liu. Image-based Crack Assessment of Bridge Piers using Unmanned Aerial Vehicles and 3D Scene Reconstruction, Computer-Aided Civil and Infrastructure Engineering, 2020, 35: 511-529.
[19]Yu-Fei Liu*, Xiao-Gang Liu, Jian-Sheng Fan, B.F. Spencer Jr, Xiao-Chen Wei, Si-Yu Kong, Xiao-Hua Guo. Refined safety assessment of steel grid structures with crooked tubular members, Automation in Construction, 2019, 99(1): 249-264.
[20]Yu-Fei Liu, Soojin Cho, Billie F. Spencer, Jr., Jian-Sheng Fan*, Concrete Crack Assessment Using Digital Image Processing and 3D Scene Reconstruction, ASCE Journal of Computing in Civil Engineering, 2016, 30(1): 04014124.
[21]Yu-Fei Liu, Soojin Cho*, Billie F. Spencer, Jr., Jian-Sheng Fan, Automated Assessment of Cracks on Concrete Surfaces Using Adaptive Digital Image Processing, Smart Structures and Systems, 2014, 14(4): 719-741.
[22]Ming Zheng, Xin Nie, Jiansheng Fan, Yufei Liu, Liangdong Zhuang*, Jinlong Ren, Muning Rong, Wei Zhai. Field test study for evaluation of vibration control capacity of cracked mass concrete layer. Case Studies in Construction Materials, 2023, 18: e02030.
[23]Ming Zheng, Liangdong Zhuang*, Jiansheng Fan, Yufei Liu, Jinlong Ren, Muning Rong, Wei Zhai. Field test study on the evaluation of the microvibration controlling capacity of a mass concrete layer. Scientific Reports, 2022, 12: 20245.
[24]Yi-Wei Gu, Xin Nie*, Ai-Guo Yan, Jia-Hua Zeng, Yu-Fei Liu, Yue-Xin Jiang. Experimental and numerical study on vibration and structure-borne noise of high-speed railway composite bridge. Applied Acoustics, 2022, 192:108757.
[25]Xiao-Chen Wei, Yu-Fei Liu, Shen-You Song, Jian-Sheng Fan*, Zong-Xian Su. Overall deformation of steel-concrete-steel immersed structures during construction stage considering temperature effect. Structures. 2022, 46:1055-1066.
[26]Jia-Ji Wang, Yu-Fei Liu, Xin Nie*, and Y. L. Mo. Deep convolutional neural networks for semantic segmentation of cracks. Structural Control and Health Monitoring, 2022, 29(1): e2850.
[27]Yi-Wei Gu, Xin Nie*, Yu-Fei Liu, Shu-Kun Duan, Jian-Sheng Fan. Experimental and numerical study of steel-to-concrete joint section in hybrid cable-stayed bridges. Journal of Constructional Steel Research, 2021(187): 106982.
[28]Xiao-Gang Liu, Jian-Sheng Fan*, Yu-Fei Liu, Ming-Zhao Zheng, Jian-Guo Nie. Theoretical research into cyclic web buckling and plastic overstrength of shear links, Thin-Walled Structures, 2020, 152:106644.
[29]Xiao-Gang Liu, Jian-Sheng Fan*, Yu-Fei Liu, Qing-Rui Yue, Jian-Guo Nie. Experimental research of replaceable Q345GJ steel shear links considering cyclic buckling and plastic overstrength, Journal of Constructional Steel Research, 2017, 134: 160-179.
[30]Xiao-Gang Liu*, Yu-Fei Liu. Cyclic behavior of Q345GJ steel used in energy dissipation shear links, International Journal of Steel Structures, 2016, 16(3): 697-704.
[31]刘宇飞*, 冯楚乔, 陈伟乐, 樊健生. 基于机器视觉法的桥梁表观病害检测综述研究. 中国公路学报, 2024, 37(2): 1-15.
[32]冯楚乔, 刘宇飞*, 岳岩, 樊健生, 张晋勋, 王聪颖. 基于三维视觉的房屋智能巡检技术研究. 建筑结构学报, 2024.
[33]张寒硕, 卜凡民, 聂建国, 李延昌, 刘宇飞*, 耿彬, 马强. 超长混凝土框架结构温度场模拟与温度效应研究. 工程力学, 2024.
[34]樊健生, 魏晓晨, 宋神友, 金文良, 苏宗贤, 刘宇飞*. 深中通道钢壳-混凝土组合沉管浇筑变形研究. 工程力学, 2024.
[35]刘宇飞, 张寒硕, 王仁贵, 魏乐永, 聂鑫, 樊健生*. 张靖皋长江大桥日照作用下组合结构桥塔温度效应研究. 中国公路学报, 2024.
[36]王锦涛, 刘宇飞*, 樊健生, 周勐, 聂建国, 强安鹏, 周照飞. 大跨斜腿钢管桁架结构日照非均匀温度场研究. 工程力学, 2024, 41(1):208-218.
[37]刘宇飞, 齐玉, 李保罗, 冯楚乔, 丁一凡, 聂鑫, 樊健生*. 工程结构运维多场景的敏感服役指标智能识别. 建筑结构学报, 2022, 43(10): 1-15.
[38]丁一凡, 刘宇飞*, 樊健生, 刘家豪. 基于空间位形的在役索膜结构有限元模型修正与安全评估, 工程力学, 2022. 39(5): 44-54.
[39]刘宇飞, 樊健生*, 聂建国, 孔思宇, 齐玉. 结构表面裂缝数字图像法识别研究综述与前景展望, 土木工程学报, 2021, 54(6): 79-98.
[40]刘宇飞*, 樊健生, 孔思宇, 魏晓晨. 多视角几何三维重建法识别工程结构缺损与变形, 工程力学, 2020, 37(9): 103-111.
[41]周勐, 樊健生, 刘宇飞*, 张晋勋, 段先军, 雷素素. 北京大兴国际机场航站楼核心区钢网格结构日照非均匀温度场研究, 工程力学, 2020, 37(05):46-54/73.
[42]雷素素, 刘宇飞*, 段先军, 郭小华, 李学飞, 李建华, 侯进峰, 李海兵, 杨建平, 幸坤涛, 崔政涛, 关键, 毕登山, 聂鑫. 复杂大跨空间钢结构施工过程综合监测技术研究, 工程力学, 2018, 35(12): 203-211.
[43]陈全胜, 侯圣均, 蒋晨晨, 汤维宇, 刘宇飞, 樊健生, 刘入瑞*. 钢-混凝土-ECC组合梁受弯性能试验研究与有限元分析. 建筑结构学报, 2022, 43(S1): 136-146.
[44]樊健生*, 刘诚, 刘宇飞. 钢-混凝土组合梁桥温度场与温度效应研究综述. 中国公路学报, 2020, 33(04):1-13.
[45]刘宇飞*, 樊健生, 魏晓晨, 刘晓刚, 杨建平. 在役空间网格结构的安全监测与杆件变形指标研究, 工业建筑, 2021, 51(5): 16-21+36.
[46]张晋勋, 李建华, 段先军, 刘宇飞*, 樊健生, 雷素素, 李海兵, 高继领, 王留成, 孔思宇. 超大平面复杂空间曲面钢网格屋盖施工设计与控制技术研究, 施工技术, 2019, 48(10): 43-48.
[47]刘宇飞*, 李忠煜, 惠云玲, 郭小华. 附加粘滞阻尼器的RC框架振动台试验研究, 建筑结构, 2019, 49(8): 43-48.
[48]刘宇飞*, 樊健生. 基于白噪声模型的结构响应估计及控制优化, 力学与实践, 2018, 40(1): 30-38.
[49]魏思航, 刘宇飞, 刘家豪. 基于无人机与数字图像法的混凝土结构表面裂缝检测应用研究. 特种结构, 2020, 37(5): 107-111.
[50]Yu Qi*, Fan Yang*, Yousong Zhu, Yufei Liu, Liwei Wu, Rui Zhao, Wei Li. Exploring Stochastic Autoregressive Image Modeling for Visual Representation[C]. Proceedings of the AAAI Conference on Artificial Intelligence. 2023.
发明专利👩🏽🎓:
[1]刘宇飞, 肖靖林, 聂建国, 樊健生. 桥梁病害检测方法、装置👱🏻♂️、计算机设备和存储介质, 专利申请日2023-02-07, 授权公告日2023-06-02, 中国, ZL 202310070370.1
[2]邹威, 樊健生, 李毅, 刘宇飞, 李彦兵, 岳岩, 许杨铭, 付佰勇, 朱尧于, 黎伟捷, 刘涛, 黎啸宇. 钢箱梁内疲劳裂纹的识别方法、系统、计算机设备及介质, 专利申请日2023-08-08, 授权公告日2024-03-21, 中国, ZL 202310990195.8
[3]樊健生, 冯楚乔, 刘宇飞. 基于计算机视觉的建筑结构改扩建安全排查方法与装置, 专利申请日2022-12-30, 授权公告日2023-06-06, 中国, ZL 202211713032.7
[4]樊健生, 刘宇飞, 刘家豪. 一种建筑结构的整面动位移的测量方法. 专利申请日2021-11-29, 授权公告日2022-04-08, 中国, ZL 202111432226.5
[5]聂建国, 宋神友, 陈伟乐, 徐国平, 樊健生, 唐亮, 金文良, 夏丰勇, 黄清飞, 邱盛源, 刘宇飞. 一种考虑混凝土脱空的角钢连接件承载力的确定方法. 专利申请日2020-07-02, 授权公告日2020-10-02, 中国, ZL 202010634203.1
[6]刘宇飞, 樊健生, 周勐, 张晋勋, 段先军, 雷素素. 一种计算空间结构中的各种构件的太阳辐射量的方法, 专利申请日2020-06-03, 授权公告日2022-09-23, 中国, ZL 202010494311.3
[7]刘宇飞, 樊健生, 魏晓晨. 一种基于多视角三维重建的空间网格结构监测的相机布置方法, 专利申请日2020-04-27, 授权公告日2022-06-21, 中国, ZL 202010344166.0
[8]刘宇飞, 樊健生. 一种使用飞行器检测工程结构表面裂缝的方法,专利申请日2019-08-26, 授权公告日2020-11-06, 中国, ZL 201910789063.2
[9]刘宇飞, 樊健生, 聂鑫. 一种工程结构表面裂缝识别与投影修正方法及系统, 专利申请日2018-12-18, 授权公告日2020-11-27, 中国, ZL 201811547207.5
[10]刘宇飞, 樊健生, 聂鑫, 魏晓晨. 一种既有空间钢结构杆件弯曲变形的监测方法, 专利申请日2018-06-27, 授权公告日2020-12-29, 中国, ZL 201810676369.2
[11]刘宇飞, 樊健生, 陶慕轩. 一种既有空间网格结构剩余承载力的评估方法, 专利申请日2018-05-25, 授权公告日2022-05-06, 中国, ZL 201810516797.9
[12]刘宇飞, 雷素素, 郭小华, 崔政涛, 关键, 毕登山. 一种振弦式传感器的安装工具及安装方法专利申请日2017-11-30, 授权公告日2019-12-13, 中国, ZL 201711242060.4