谢行思
博士、讲师、建筑工程系主任助理
博士、讲师、建筑工程系主任助理
办公电话:010-51687237 | 电子邮件: xiexingsi@bjtu.edu.cn |
通讯地址:北京市海淀区上园村3号院北京交通大学土木工程楼212室 | 邮编:100044 |
[1] 国家自然科学基金青年科学基金项目(52208455): 复合阻尼自复位支撑-高层混凝土框架结构抗震设计与优化方法研究, 2023-2025.
[2] 国家重点研发计划子课题(2023YFC3805001): 高层建筑多灾耦合机制及韧性提升技术, 2023-2027.
[3] 中国博士后科学基金面上资助项目(2022M710340): 装配式自复位支撑连接节点抗震性能与设计方法研究, 2022-2023.
[4] 中央高校基本科研业务费基础研究项目(2022JBMC042): 自复位支撑连接节点抗震性能与设计方法研究, 2022-2024.
[5] 北京建筑大学大型多功能振动台阵实验室开放研究专项基金项目(2021MFSTL08): 装配式自复位支撑连接节点抗震性能与设计方法研究, 2022-2023.
已发表期刊论文44篇,其中SCI论文29篇、EI论文13篇、ESCI论文1篇。代表性论文如下:
[1] Xingsi Xie, Longhe Xu, Zhongxian Li. Modeling of magnetorheological self-centering brace. Journal of Engineering Mechanics, ASCE, 2020, 146(1): 04019112.
[2] Xingsi Xie, Longhe Xu, Zhongxian Li. Hysteretic model and experimental validation of a variable damping self-centering brace. Journal of Constructional Steel Research, 2020, 167: 105965.
[3] Xing-Si Xie, Long-He Xu, Zhong-Xian Li. Mechanics of a variable damping self-centering brace: seismic performance and failure modes. Steel and Composite Structures, 2019, 31(2): 149-158.
[4] Xingsi Xie, Longhe Xu, Xiaodong Ji, Kaiming Bi. Development and seismic behavior of an assembly composite damping self-centering brace. Earthquake Engineering and Resilience, 2023, 2(2): 180-193.
[5] Longhe Xu, Xingsi Xie, Zhongxian Li. Seismic behavior and design approach of variable-damping self-centering braced frame. Journal of Structural Engineering, ASCE, 2021, 147(6): 05021001.
[6] Long-He Xu, Xing-Si Xie, Zhong-Xian Li. Development and experimental study of a self-centering variable damping energy dissipation brace. Engineering Structures, 2018, 160: 270-280.
[7] Long-He Xu, Xing-Si Xie, Zhong-Xian Li. A self-centering brace with superior energy dissipation capability: development and experimental study. Smart Materials and Structures, 2018, 27(9): 095017.
[8] Long-He Xu, Xing-Si Xie, Zhong-Xian Li. Seismic performances of magnetorheological flag-shaped damping braced frame structures. Smart Materials and Structures, 2020, 29(7): 075032.
[9] Longhe Xu, Xingsi Xie, Xintong Yan, Zhongxian Li. Seismic behavior enhancement of frame structure considering parameter sensitivity of self-centering braces. Structural Engineering and Mechanics, 2019, 71(1): 45-56.
[10]Long-He Xu, Xing-Si Xie, Shi-Qian Yao, Zhong-Xian Li. Hysteretic behavior and failure mechanism of an assembled self-centering brace. Bulletin of Earthquake Engineering, 2019, 17(6): 3573-3592.
[11]Peng Chen, Longhe Xu, Xingsi Xie. Enhanced design and experimental investigation of disc spring-based self-centering buckling-restrained braces with a compounded combination mode. Earthquake Engineering and Structural Dynamics, 2023, 52: 3053-3073.
[12]Longhe Xu, Hao Jiang, Xingsi Xie, Peng Chen. Seismic analysis of a self-centering braced frame in pseudodynamic tests: response characteristics, brace contribution, and damage evolution. Journal of Structural Engineering, ASCE, 2024, 150(8): 04024099.
[13]Jun Li, Longhe Xu, Xingsi Xie. Development and validation of an innovative uplift-restraining friction pendulum bearing. Engineering Structures, 2024, 309: 118080.
[14]Longhe Xu, Zhichao Lin, Xingsi Xie. Assembled self-centering energy dissipation braces and a force method-based model. Journal of Constructional Steel Research, 2022, 190: 107121.
[15]谢行思, 徐龙河, 李忠献. 自复位阻尼耗能支撑力学性能分析与试验研究. 建筑结构学报, 2019, 40(10): 27-34.
[16]谢行思, 徐龙河, 敬祺轲. 考虑主余震效应的自复位支撑RC框架结构设计方法. 土木工程学报, 2022, 55(S1): 32-38.
[17]徐龙河, 谢行思, 张格. 用于抗震韧性提升的自复位结构构件研究综述. 东南大学学报(自然科学版), 2023, 53(6): 1177-1188.
[18]徐龙河, 谢行思, 李忠献. 自复位变阻尼耗能支撑的力学原理与性能研究. 工程力学, 2018, 35(1): 201-208.
[19]徐龙河, 敬祺轲, 谢行思. 主余震下自复位支撑RC框架结构性能研究. 工程力学, 2023, 40(5): 117-124.
徐龙河, 谢行思, 王坤鹏, 李忠献. 一种具有复位功能的磁流体变阻尼耗能支撑. 国家发明专利: ZL 201610498711.5.
徐龙河, 林智超, 谢行思.
一种初始刚度可调的装配式复合阻尼自复位支撑. 国家发明专利:
ZL 202111239116.7.
华夏建设科学技术奖一等奖, 高层建筑剪力墙抗震设计理论和关键技术研究, 2023.
第二批全国高校“百名研究生党员标兵”, 2021.
北京高校优秀共产党员, 2020.
北京交通大学优秀本科生班主任, 2024.
北京交通大学土建学院青年教师教学基本功比赛一等奖, 2022.
国际期刊Earthquake Engineering and Resilience青年编委
国际期刊Engineering Structures、Journal of Building Engineering、Structures、Buildings及国内期刊《东南大学学报》审稿人