领域:节能环保产业 学校:合肥工业大学职称:
·大跨度桥梁、输电塔线体系风振响应分析
·台风风场数值模拟
·山地地形CFD数值模拟
·风灾危险性分析
·结构风灾易损性分析
...
具体了解该专家信息,请致电:027-87555799 邮箱 haizhi@uipplus.com
[1]高柔结构的风振响应分析与应用(批准号:KJ2016A294),安徽高校自然科学研究重点项目,2016.01-2017.12(注:联合申报);
[2]基于Monte Carlo 模拟及MCP 法的台风极值风速预测(批准号:2015T80652),中国博士后科学基金第八批特别资助,2015.03-2016.12;
[3]台风多发地区考虑复杂地形影响的建筑结构设计风速预测研究(批准号:51408174),国家自然科学青年基金项目,2015.1 -2017.12;
[4]复杂地形台风数值模拟及其作用下大跨度桥梁非平稳抖振时域分析(批准号:1408085QE95),安徽省自然科学青年基金项目,2014.7 -2016.6;
[5]台风易发地区复杂地形下大跨度桥梁非平稳抖振时域分析(批准号:2013M540511),中国博士后科学基金第54批面上项目(一等资助),2013.6 -2015.5;
主持市校级项目:
[6]面向复杂工程环境的结构设计荷载计算系统研发(批准号:JZ2017YYPY0262),合肥工业大学应用培育计划项目,2017.01-2018.12;
[7]台风风场关键参数的优化研究,合肥工业大学博士后专项基金项目(批准号: 2013HGBH0037),2014.1-2015.12;
[8]复杂地形台风风场数值模拟研究(批准号:2012HGBZ0621),合肥工业大学博士专项基金项目,2013.1-2013.12;
[9]高层建筑竖向构件整体置换分析研究(批准号:XC2015JZBZ20),合肥工业大学宣城校区博士产学研启动专项基金项目,2015.6-2018.5;
参与项目:
[10]110kV混压窄基角钢塔关键技术研究(批准号:W2016JSKF0140),安徽华电工程咨询设计有限公司,2016.1-2016.12;
[11]具有损伤自动诊断功能的智能高耸结构系统的基础研究(批准号:50830203),国家自然科学基金重点项目子课题,2009.1-2012.12;
[12]Safety analysis of road vehicles in high winds on long span cable-supported bridges (批准号:PolyU5327/08E),Hong Kong Research Grants Council Program,2010.6-2013.6;
[13]Advance simulation of the Stonecutters Bridge under Traffic, Wind, Earthquake and Ship Collision(批准号:PolyU 1-BB20),Hong Kong Niche Area Program,2010.6-2013.6;
[14]再生混凝土力学性能及其显微结构试验研究(批准号:D0314),黑龙江省自然科学基金项目,2005.6-2007.6;
英文期刊论文
[1]Huang W.F.*, Sun J.P., Prediction of typhoon design wind speed with cholesky decomposition method. The Structural Design of Tall and Special Buildings. 2018, 27(11), e1480. https://doi.org/10.1002/tal.1480.
[2]W.F. Huang*, K.Q. Zou, Non-stationary Buffeting Response Analysis of Long Span Suspension Bridge under Strong Wind Loading, Harbin institute of technology university, 2016, 23(6), 9-16.
[3]W.F. Huang*, H.L. Zhou, A hybrid numerical simulation method for typhoon wind field over complex terrain, Wind and Structures, 2014, 18(5), 549-566.
[4]L. Hu, Y.L. Xu*, W.F. Huang, Typhoon-induced non-stationary buffeting response of long-span bridges in complex terrain, Engineering Structures, 2013, 57, 406-415.
[5]W.F. Huang*, Y.L. Xu, Prediction of typhoon design wind speed and profile over complex terrain, Structural Engineering and Mechanics, 2013, 45(1), 1-18.
[6]W.F. Huang, Y.L. Xu*, A refined model for typhoon wind field simulation in boundary layer, Advances in Structural Engineering, 2012, 15(1), 77-89. (WOS:000299865800007)
[7]W.F. Huang, Y.L. Xu*, C.W. Li, H.J. Liu, Prediction of design typhoon wind speeds and profiles using refined typhoon wind field model, Advanced Steel Construction, 2011, 7(4), 387-402. (WOS:000297192400006)
中文期刊论文
[8]陈佳昊, 黄文锋*.考虑截止频率影响的输电塔线体系风振响应分析, 合肥工业大学学报,2019.
[9]谭谨林, 黄文锋*, 张延.窄基角钢输电塔塔线体系风振响应分析, 建筑结构,2018.
[10]黄文锋*, 陈星, 张延. 窄基角钢输电塔风载体型系数数值模拟, 合肥工业大学学报,2018.
[11]黄文锋*, 周桐, 陈星. 基于CFD数值模拟的典型建筑群风环境评估, 合肥工业大学学报,2018.
[12]黄文锋*, 孙志文, 张延. 基于台风风场经验模型的海面风场数值模拟, 自然灾害学报, 2017, 26(1), 35-40.
[13]孙建鹏, 樊敏江, 崔玉明, 谭天宇, 黄文锋. 一种变参数连接单元在结构分析中的应用. 四川建筑科学研究, 2017, 43(5), 12-16.
[14]孙志文,黄文锋*. 窄基塔风振系数分析,特种结构,2016, 6, 13-16.
[15]孙建鹏,谭天宇,黄文锋. 冲击荷载作用下弹性压杆的动力稳定分析,西安建筑科技大学学报, 2016, 48(4), 1-5.
[16]黄文锋*, 周焕林, 孙建鹏. 基于台风风场经验模型的台风极值风速预测, 哈尔滨工业大学学报, 2016, 48(2), 142-146. (EI)
[17]邹孔庆, 黄文锋*, 王美芹, 周焕林. 基于模态贡献度系数的大跨度桥梁抖振响应分析,合肥工业大学学报,2016, 39(1), 122-127.
[18]黄文锋*, 邹孔庆, 孙建鹏, 王美芹. 普立特悬索桥抖振响应时域分析, 西安建筑科技大学学报, 2015, 47(3), 371-375.
中文会议论文
[19]谭谨林, 黄文锋, 张延. 输电塔及塔线体系风振响应研究, 第四届全国风工程研究生论坛, 长沙, 2017, 573-574.
[20]黄文锋*,邹孔庆, 周焕林. 强风作用下大跨度悬索桥非平稳抖振响应分析,第七届全国建筑振动学术会议,合肥, 2015, 104-108.
[21]黄文锋*, 孙建鹏, 周焕林, 张笑. 台风关键参数相关性分析的Cholesky分解法, 第十七届全国结构风工程会议,武汉, 2015, 93-96.
英文会议论文
[22]W.F. Huang*, K.Q. Zou, H.L. Zhou. Typhoon wind field simulation with empirical typhoon wind field model for use in engineering applications. The 13th International Symposium on Structural Engineering, Hefei, China, 2014, 1596-1607. (ISTP收录)
[23]Y.L. Xu*, W.F. Huang, Simulation of typhoon wind field in atmospheric boundary layer, 第十六届全国结构风工程会议,Chengdu, 2013. (大会报告)
[24]S. Zhu, Y.L. Xu, K.Y. Wong, Y. Zheng, S.L. Li, W.F. Huang, L. Hu, Diagnosis and prognosis of Stonecutters Bridges based on structural health monitoring system, Proceedings of the 5th International Conference on Structural Health Monitoring of Intelligent Infrastructure (SHMII-5), Cancun, Mexico, 2011, December, 11-15. (EI: 20135217148078)
[25]W.F. Huang, Y.L. Xu*, Numerical models for simulating typhoon wind fields in boundary layer, Proceedings of the 8th International Advanced School in Wind Engineering, 1-17, Hong Kong, 2011, November, 14-18.
[26]W.F. Huang, Y.L. Xu*, C.W. Li, H.J. Liu, Directional typhoon wind speeds and profiles in Hong Kong, Proceedings of the 8th International Advanced School in Wind Engineering, 18-33, Hong Kong, 2011, November, 14-18.
[27]Y.L. Xu*, W.F. Huang, H.J. Liu, Simulation of directional typhoon wind speeds and profiles over complex terrain, Proceedings of the 8th International Advanced School in Wind Engineering, 34-51, Hong Kong, 2011, November, 14-18.
[28]L. Hu, Y.L. Xu*, W.F. Huang, H.J. Liu, Typhoon-induced nonstationary buffeting response of Long-span Bridges, Proceedings of 14th Asia Pacific Vibration Conference, Hong Kong, 2011, December, 5-8.
[29]Xu Y.L.*, Huang W.F., Typhoon wind simulation and design wind speed, introduction to seismic and wind resistant design of building structures followed by international advance school in wind engineering, India, 2010, Dec, 3rd to 8rd.
[30]W.F. Huang*, Y.L. Xu, C.W. Li, H.J. Liu, Typhoon wind field in atmospheric boundary layer, Proceedings of the Seventh Asia Pacific Conference on Wind Engineering, Taipei, Taiwan, 2009. (EI: 20120814782039)
[31]W.F. Huang*, Y.L. Xu, C.W. Li, H.J. Liu, Prediction of extreme wind speeds in Hong Kong using refined typhoon wind field model, 第十四届全国结构风工程会议,Beijing, 2009. (注:优秀论文三等奖)
[32]Xu Y.L.*, Huang W.F., Typhoon wind simulation and design wind speed, Proceedings of the 6th International Advanced School on Wind Engineering, 323-345, Beijing, 2009.