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陶伟峰
陶伟峰
副教授

主要研究方向:工程不确定性量化、生命线系统抗灾韧性、风电支撑结构


一、基本情况

陶伟峰,男,汉族,浙江绍兴人,博士研究生学历,副教授,毕业于同济大学结构工程专业,中国工程建设标准化协会城市生命线工程安全专业委员会委员,主要从事工程不确定性量化、生命线系统抗灾韧性和风电支撑结构方面的研究。

二、学习与工作经历

1、学习经历

2010.9-2017.5,同济大学结构工程专业(直博,导师:中国科学院院士李杰教授)

2016.3-2016.5,都柏林圣三一学院短期访学(访问导师:Biswajit Basu教授)

2006.9-2010.6,重庆大学土木工程专业(本科)

2、任职经历

2026.1-至今,ylzzcom永利总站线路检测ylzzcom永利总站线路检测副教授

2021.1-2025.12,西北工业大学力学与交通运载工程学院(原力学与土木建筑学院)副教授

2018.9-2020.12,浙江大学建筑工程学院博士后(合作导师:王乃玉研究员)

2017.7-2018.8,美国俄克拉荷马大学土木与环境科学学院博士后(合作导师:王乃玉助理教授)

三、教学情况

讲授《工程荷载与可靠度分析》(本科)、《智能建造机器人》(本科)、《混凝土损伤力学》(研究生)、《人工智能算法与应用》(研究生)等课程。

四、研究方向

工程不确定性量化、生命线系统抗灾韧性、风电支撑结构

五、获奖情况

六、科研情况

1、主持的科研项目

陕西省自然科学基础研究计划青年项目:基于深度强化学习的震损桥梁网络修复策略优化研究,批准号:2022JQ-513,时间:2022.1-2023.12。(5万元)

横向科研项目:混凝土塔筒的疲劳性能研究技术服务合同,委托单位:一重(黑龙江)风电混塔有限公司,时间:2023.9-2024.8。(87.2万元)

横向科研项目:混凝土塔架连接问题合作开发服务,委托单位:金风科技股份有限公司,时间:2023.6-2023.12。(74.5万元)

横向科研项目:干式连接混凝土塔筒粘接界面力学性能试验及数值模拟研究,委托单位:中国电建集团华东勘测设计研究院有限公司,时间:2023.4-2024.8。(48万元)

2、近几年发表文章

Huang, C.R., Zhang, D.L., Fu, K.,Tao, W.F.*, Li, T.H., TseDan, D., Zhang, J.W., Wan, Z.Q., 2026. Measuring ultimate strengths and critical separations of concrete-to-epoxy interface under mode-I and mode-II loadings by large-size direct tensile and shear tests. Construction andBuilding Materials, 518: 145726.https://doi.org/10.1016/j.conbuildmat.2026.145726

Tao, W.F., TseDan, D., Zhang, D.L., Huang, C.R.*, Fu, K., Zhao, C., Zhang, J.W., Li, J.L., Wan, Z.Q., 2025. Torsional capacity of prestressed assembled quarter-shell concrete tower with adhesive bonded vertical joints. Case Studies in Construction Materials, 23: e04947.https://doi.org/10.1016/j.cscm.2025.e04947

Tao, W.F., Wan, Z.Q.*, Wang, X.L., 2025. Fréchet-derivative-based global sensitivity analysis and its physical meanings in structural design. Applied Sciences-Basel, 15(5): 2703.https://doi.org/10.3390/app15052703

Huang, C.G.*, Diao, Y.F., Liu, Y., Chen, L., Liu, W.,Tao, W.F.*, Wang, F.S., 2024. Nonlinear dynamics of 3D superconducting maglevs with six degrees of freedom: dependence on magnetization strategy and disturbance type. Superconductor Science & Technology, 37(1): 015016.https://doi.org/10.1088/1361-6668/ad1467

Tao, W.F., Fu, J.*, Li, Y.G., 2024. The possibility of detrimental effects on soil-structure interaction in seismic design due to a shift in system frequency. Applied Sciences-Basel, 14(17): 7519.https://doi.org/10.3390/app14177519

Wan, Z.Q., Gao, Y.,Tao, W.F.*, 2024. Structural reliability analysis using generalized distribution reconstruction method with novel improvements. ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering, 10(2): 04024028.https://ascelibrary.org/doi/abs/10.1061/AJRUA6.RUENG-1298

Wan, Z.Q., Chen, J.B.,Tao, W.F.*, 2023. A two-stage framework of uncertainty quantification for reliability and sensitivity analysis of structures using the probability density evolution method integrated with the Fréchet-derivative-based method. Engineering Structures, 294: 116782.https://doi.org/10.1016/j.engstruct.2023.116782

Wan, Z.Q., Chen, J.B.,Tao, W.F.*, Wei, P.F., Beer, M., Jiang, Z.M., 2023. A feature mapping strategy of metamodelling for nonlinear stochastic dynamical systems with low to high-dimensional input uncertainties. Mechanical Systems and Signal Processing, 184: 109656.https://doi.org/10.1016/j.ymssp.2022.109656

Tao, W.F., Lin, P.H.*, Wang, N.Y., 2021. Optimum life-cycle maintenance strategies of deteriorating highway bridges subject to seismic hazard by a hybrid Markov decision process model. Structural Safety, 89: 102042.https://doi.org/10.1016/j.strusafe.2020.102042

Tao, W.F., Wang, N.Y.*, Ellingwood, B., Nicholson, C., 2021. Enhancing bridge performance following earthquakes using Markov decision process. Structure and Infrastructure Engineering, 17(1): 62-73.https://doi.org/10.1080/15732479.2020.1730410







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