【在研项目】 [1]国家自然科学基金青年项目,52208498,爆炸受损钢筋混凝土柱剩余抗震能力评估方法及修复策略研究,30万,2023-01至2025-12,主持 [2]天津市自然科学基金青年项目,23JCQNJC00900,砌体承重墙燃气爆炸损伤破坏机理及FRP抗爆加固设计方法研究,6万,2023-10至2025-9,主持 [3]教育部“春晖计划”合作科研项目,HZKY20220593,室内燃气爆炸荷载作用下砌体结构承重墙破坏机理及减爆、抗爆措施研究,5万,2023-05至2025-04,主持 [4]中国博士后科学基金面上项目,2023M732608,爆炸受损钢筋混凝土柱剩余偏心受压和抗震能力评估,8万,2023-07至2024-06,主持 [5]北京工业大学城市与工程安全减灾教育部重点实验室开放课题,2024B09,室内燃气爆炸下砌体结构承重墙破坏机理及抗爆措施研究,3万,2024-01至2025-12,主持 [6]横向项目,2023H0_0403,钢筋混凝土板高速冲击性能测试技术及毁伤评估技术开发,19.5万,2023-10至2024-08,主持 [7]横向项目,2023H0_0352,近海复杂环境土-桩-桥墩-水地震响应数值模拟技术研发,19.5万,2023-10至2024-09,主持 【完成项目】 [1]横向项目,2022H0_0295,复杂环境下燃气爆炸冲击波传播数值模拟及建筑结构损伤评估技术开发,30万,2023-06至2023-12,主持 [2]横向项目,2022H0_0252,地铁车致振动预测技术开发,20万,2022-09至2023-12,主持 [3]横向项目,2022H0_0295,燃气爆炸荷载作用下波纹钢板综合管廊动态响应与损伤评估,30万,2022-11至2023-07,主持 [4]横向项目,2023H0_0142,混凝土与砌体材料动态本构关系模型研发,22万,2023-04至2023-09,主持 [5]横向项目,2023H0_0418,LNG接收站深基坑储罐爆炸破坏规律三维仿真项目模拟项目,4万,2023-09至2023-12,主持 [6]横向项目,2023H0_0372,设备振动抗震性能测试,3万,2023-10至2023-12,主持 [7]横向项目,2023H0_0351,钢筋混凝土柱拟静力试验,2.99万,2023-09至2023-12,主持 [8]横向项目,2023H0_0161,增材制造金属动态拉伸测试,1.1万,2023-04至2023-06,主持 |
【出版著作与教材】 [1] 吕杨,李杰,黄信,刘中宪,张学杰.《盈建科结构设计软件应用及案例分析》(英文). 中国建筑工业出版社, 2022年 【发表论文】已在国内外学术刊物发表学术论文20余篇,主要包括: [2] Chunlei Zhang,Xuejie Zhang*. The fracture energy of concrete reinforced with double-helix macro basalt-fibre-reinforced polymer fibre[J]. Magazine of Concrete Research, 2024: 1-9. [3] Jie Li, Yanfen Pang, Kansheng Wang,Xuejie Zhang*, Ning Wang. Explainable machine learning model for rapid damage assessment of CFST columns after close in explosion[J]. Journal of Performance of Constructed Facilities, 2024, 38(3): 04024010. [4] Jie Li, Yanfen Pang, Quanping Mu,Xuejie Zhang*, Yanchao Shi, Honglong Wang. Post-blast capacity evaluation of concrete-filled steel tubular (CFST) column based on machine learning technique[J]. Advances in Structural Engineering, 2023,26(11): 1953-1972.. [5]吕杨,张煜,吴学乾,王大永,张永权,张学杰*.BTRC和BRRC加固混凝土梁的抗冲击性能试验研究[J].土木与环境工程学报(中英文),2023,45(01):25-34. [6]Xuejie Zhang, Honglong Wang, Yang Lv*, Jie Li. Quasi-static and dynamic properties of unidirectional glass fiber/epoxy laminate for structural strengthening[J]. Materials and Structures, 2022, 55(7):1-15 [6]Xuejie Zhang, Zhong-Xian Li, Yanchao Shi*, Chengqing Wu*, Jun Li. Fragility analysis for performance-based blast design of FRP-strengthened RC columns using artificial neural network[J]. Journal of Building Engineering, 2022, 52: 104364. [7]Xuejie Zhang, Zhong-Xian Li, Yanchao Shi. Experimental study on the tensile behavior of unidirectional and plain weave CFRP laminates under different strain rates[J]. Composites Part B: Engineering, 2019, 164: 524-536. [8] Zhong-Xian Li,Xuejie Zhang*, Yanchao Shi*, Chengqing Wu*, Jun Li. Predication of the residual axial load capacity of CFRP-strengthened RC column subjected to blast loading using artificial neural network[J]. Engineering Structures, 2021, 242: 112519. |