
2014.09-2019.09,香港大学,结构工程,博士(导师:区达光教授)
2011.09-2014.06,同济大学,结构工程,硕士(导师:陈素文教授)
2007.09-2011.06,合肥工业大学,土木工程,学士
2022.12-至今,bw必威西汉姆联官方网站,上岗副研究员
2019.10-2022.06,香港理工大学,建筑环境及能源工程学系,研究助理教授(合作导师:Asif Sohail Usmani教授、黄鑫炎教授)
低空无人机技术与综合应用
结构抗火性能
交通基础设施智能巡检
交通基础设施智能防灾
1. 国家重点研发计划项目战略性科技创新合作重点专项,城市交通基础设施受限空间智慧消防与应急管理关键技术,2025-2027,项目骨干
2. 国家自然科学基金青年基金项目,火灾场景下钢筋混凝土板柱节点的破坏规律及智能预警研究,52108480,2022-2024,主持
3. 江苏省科技厅创新支撑计划国际科技合作项目,气候变化下数字城市交通基础设施网络韧性与抗灾关键技术,2024-2027,项目骨干。
3. 中央财政经费,融合多源信息的隧道火灾监控预警方法,2023-2026,主持
4. 香港理工大学科研启动基金,真实火灾下钢筋混凝土板柱结构倒塌预警,2021-2022,主持
5. 香港理工大学本科生创新研究计划,无人机技术在智慧消防烟雾探测方面的应用,2021-2022,主持
6. 香港研究资助局主题基金:SureFire:智慧城市消防及应急救援研究,项目管理助理
7. 内地与港澳高校联合基金,预应力混凝土桥梁的抗火性能研究,参与
8. 国家自然科学基金面上项目,爆炸作用下点支式玻璃幕墙的破损机制和模式研究,参与
9. 国家重点研发计划,港珠澳大桥智能化运维集成应用:课题二:跨海集群设施服役状态评估及智能维养技术与装备,参与
[19] Wu X, Gao Y, Huang X, Xiong W, Cai CS. Experimental and numerical studies on flat slab-column joint exposed to fire considering slab boundary conditions. Fire Safety Journal. 2026:104684.
[18] Wu X, Gao Y, Xiong W, Cai C. A Deep Learning Framework for Real-Time Prediction of Thermal and Structural Responses in Car Park Fires. Fire. 2025,8(12): 470.
[17] 张小宁, 吴西强, 黄鑫炎. 基于数字孪生的隧道火灾实时量化、预测与风险评估技术[J]. 消防科学与技术, 2025, 44(02): 163-167+174.
[16] Xie W, Zeng Y, Zhang X, Wong HY, Zhang T, Wang Z, Wu X, Shi J, Huang X, Xiao F, Usmani A. AIoT-powered building digital twin for smart firefighting and super real-time fire forecast. Advanced Engineering Informatics. 2025 May 1;65:103117.
[15] Zhang XN, Jiang YS, Wu XQ*, Nan ZJ, Jiang YS, Shi JH, Zhang YX, Huang XY*, Huang GG. AIoT-enabled digital twin system for smart tunnel fire safety management. Developments in the Built Environment. 2024:100381.
[14] Jiang YS, Li M, Wu W, Wu XQ, Zhang XN, Huang XY, Zhong Y, Huang GQ (2023) Multi-domain ubiquitous digital twin model for information management of complex infrastructure systems. Advanced Engineering Informatics. (IF=7.862; JCR1)
[13] Zeng YF, Zhang XN, Su LC, Wu XQ*, Huang XY* (2022) Artificial Intelligence tool for fire safety design (IFETool): Demonstration in large open spaces. Case Studies in Thermal Engineering. (IF=6.268; JCR1)
[12] Zhang TH, Wang ZL, Zeng YF, Wu XQ, Huang XY, Xiao F (2022) Building Artificial-Intelligence Digital Fire (AID-Fire) System: A Real-scale Demonstration, Journal of Building Engineering. (IF=5.146; JCR1)
[11] Zhang XN, Wu XQ*, Huang XY* (2022) Smart real-time forecast of transient tunnel fires by a dual-agent deep learning model. Tunnelling and Underground Space Technology. (IF=6.225; JCR1)
[10] Wu XQ, Zhang XN, Jiang YS, Huang XY, Huang GQ, Usmani Asif (2021) An intelligent tunnel firefighting system and small-scale demonstration. Tunnelling and Underground Space Technology. Doi: 10.1016/j.tust.2021.104301 (IF=6.255; JCR1)
[9] Wang ZL, Zhang TH, Wu XQ*, Huang XY* (2021) Predicting Transient Building Fire Based on External Smoke Images and Deep Learning. Journal of Building Engineering. Doi: 10.1016/j.jobe.2021.103823 (IF=5.146; JCR1)
[8] Su LC#, Wu XQ#, Zhang XN, Huang XY (2021) Smart Performance-Based Design for Building Fire Safety: Prediction of Smoke Motion via AI. Journal of Building Engineering. 102529. Doi: 10.1016/j.jobe.2021.102529. (IF=5.146; JCR1)
[7] Wu XQ, Zhang XN, Huang XY, Xiao F and Usmani A (2021) A real-time forecast of tunnel fire based on numerical database and artificial intelligence. Building Simulation. Doi: 10.1007/s12273-021-0775-x. (IF=3.326; JCR1)
[6] Wu XQ, Park Y, Li A, Huang XY, Xiao F and Usmani A (2021) Smart Detection of Fire Source in Tunnel Based on the Numerical Database and Artificial Intelligence. Fire Technology. Doi: 10.1007/s10694-020-00985-z. (IF=2.239; JCR2)
[5] Zhang XN, Wu XQ*, Park Y, Zhang TH, Huang XY*, Xiao F and Usmani A (2021) Perspectives of Big Experimental Database and Artificial Intelligence in Tunnel Fire Research. Tunnelling and Underground Space Technology. Doi: 10.1016/j.tust.2020.103691. (IF=6.255; JCR1)
[4] Wu XQ, Huang T, Au FTK and Li J (2020) Post-tensioned Concrete Bridge Beams Exposed to Hydrocarbon Fire. Journal of Structural Engineering-ASCE. Doi: 10.1061/(ASCE)ST.1943-541X.0002791. (IF=3.82; JCR2)
[3] Wu XQ, Huang T, Au FTK and Li J (2020) A Localized Fire Model for Predicting the Surface Temperature of Box Girder Bridges Subjected to Tanker Truck Fire. Fire Technology. Doi: 10.1007/s10694-020-00966-2. (IF=2.239; JCR2)
[2] Wu XQ, Huang T, Zhang L and Au FTK (2020) Bond performance of grouted tendons at elevated temperatures. Proceedings of the Institution of Civil Engineers-Structures and Buildings. Doi: 10.1680/jstbu.20.00090. (IF=1.054; JCR4)
[1] Chen SW, Chen X, and Wu XQ (2018) The mechanical behavior of polyvinyl butyral at intermediate strain rates and different temperatures. Construction and Building Materials. 182: 66-79. Doi: 10.1016/j.conbuildmat.2018.06.080. (IF=6.841; JCR1)江苏省“双创博士”,2024
第二届数字孪生国际会议(DTIC2022)最佳报告提名奖,2022
第十一届火灾科学与消防工程国际研讨会最佳论文奖, 2025
材料力学,桥梁计算机辅助设计,桥梁抗水与抗火,桥梁抗灾与韧性。
每年招收硕士生1~2名。