何之舟

职称:助理研究员
邮箱:hezhizhou@tsinghua.edu.cn
通信地址:北京海淀区清华大学何善衡楼311
邮编:100084

教育背景

2018.8-2023.6    清华大学  土木工程系  研究生/博士

2014.8-2018.7    清华大学  土木工程系  本科/学士
工作履历

2025.07至今 清华大学土木工程系 助理研究员

2023.07-2025.07 清华大学土木工程系  博士后(水木学者)

奖励与荣誉

2024.12 中国安全生产协会第五届安全科学技术奖二等奖  6/10

2024.06 第18届北京市发明创新大赛金奖  3/7

2023.12 第十一届“东升杯”国际创业大赛优秀奖

2023.06 清华大学优秀博士毕业生,优秀博士学位论文

2021.11 江苏省土木建筑学会土木建筑科技奖三等奖  5/5

2020.12 华夏建设科学技术奖一等奖  14/15

研究领域

结构振动控制与抗震韧性提升

结构无损检测与健康监测

科研项目

1. 北京市自然科学基金-昌平创新联合基金 基于探地雷达的城市道路地下隐患及管线三维感知与孪生推演技术 2025.07-2028.06 主持

2. 国家自然科学基金青年科学基金(C类) 基于三维稀疏点云和实测加速度的震损结构变形反演及损伤评估方法研究 2025.01-2027.12 主持

3. 企业委托横向课题 单排钢筋剪力墙三维大板模块结构体系三维模块间连接构造及多层模块单元组合建筑力学性能研究 2025.01-2026.06 主持

4. 国家资助博士后研究人员计划C档 震损建筑多元宏观响应智能感知及“数据-模型”双驱动剩余抗震能力评价方法 2023.12-2025.12 主持

5. 国家重点研发计划子课题 建筑隔减震核心设施质量管理服务平台开发 2022.10-2026.03 参与

6. 住房城乡建设部委托课题 基于灾普数据底图的房屋市政工程安全管理数字镜像技术研究 2023.12-2024.08 参与

7. 国强研究院产业应用类项目 数字孪生基坑快速建模及更新技术研究 2021.06-2022.02 参与

8. 清华大学实验室创新基金重点项目 基于安全管理LCB理论和计算机视觉的实验室安全实时监控及综合管控系统开发 2021.05-2023.05 参与

9. 国家重点研发计划子课题 钢筋混凝土框架、底框、内框结构震损定量评价与剩余抗震能力反演理论研究 2020.01-2023.12 参与

学术成果

[1] He Z., Pan P, Ren J, et al. Experimental and numerical investigation of novel I-shaped GFRP connectors for insulated precast concrete sandwich wall panels[J]. Journal of Composites for Construction, 2020, 24(5): 04020040.

[2] He Z., Pan P, Xiao G Q, et al. Test and analysis on axial performances of GFRP restraint connectors for sandwich insulation wall panels[J]. Journal of Building Engineering, 2022, 45: 103457.

[3] He Z., Pan P, Guo Y, et al. Pull-out and shear tests of long glass FRP connector for sandwich-insulation wall panels[J]. Journal of Composites for Construction, 2021, 25(5): 04021047.

[4] Pan P, He Z., Wang H, et al. Experimental investigation of C-shaped glass-fiber-reinforced polymer connectors for sandwich insulation wall panels[J]. Engineering Structures, 2022, 250: 113462.

[5] He Z., Zhang Y, Wang H, et al. Baseline correction method of acceleration time history based on residual displacement and convex optimization[J]. Soil Dynamics and Earthquake Engineering, 2023, 165: 107676.

[6] He Z., Wang H, Pan P. A model-driven method based on multisource data for reproducing displacement time history[J]. Earthquake Engineering & Structural Dynamics, 2023.

[7] He Z., Zhang L X, Gao H G, et al. Estimation of the displacement time history of high-rise building structures using limited measurement data and structural information[J]. Mechanical Systems and Signal Processing, 2023, 202: 110716.

[8] 何之舟,潘鹏,王海深.夹心保温墙体GFRP连接件轴向性能研究[J].工程力学,2021,38(03):112-121.

[9] 何之舟,潘鹏,王海深.夹心保温墙体分离式连接件系统设计方法研究[J].工程力学,2022,39(06):99-109.

[10] Zeng Y, He Z., Pan P. A deep learning method to monitor axial pressure and shear deformation of rubber bearings under coupled compression and shear loading[J]. Earthquake Engineering & Structural Dynamics, 2023.

[11] Zeng Y, Pan P, He Z., et al. An innovative method for axial pressure evaluation in smart rubber bearing based on bidirectional long-short term memory neural network[J]. Measurement, 2021, 182: 109653.

[12] Shen S., Pan P, He Z., et al. Development of an H-shaped shear key for mutually perpendicular precast shear walls[J]. Measurement, 2021, 168: 108271.

[13] Shen S., Pan P, He Z., et al. Experimental study and finite element analysis of T‐shaped precast shear walls with H‐shaped shear keys[J]. Earthquake Engineering & Structural Dynamics, 2022, 51(5): 1158-1179.

[14] Shen S., Pan P, He Z., et al. Parametric analysis and new design formulas of a prefabricated energy‐dissipating composite slotted shear wall[J]. Earthquake Engineering & Structural Dynamics, 2021, 50(8): 2115-2133.

[15] Wang B., Wang H., He Z., et al. Test and analysis of multi-cavity particle damper for vertical vibration control of pipeline structures [J]. Engineering Structures. 2023, 281: 115744.

[16] Wang B., Wang H., He Z., et al. Test and analysis of multi-cavity particle damper for horizontal vibration control of pipeline structures [J]. Journal of vibration and control. 2023, 1-15.

[17] Cao Y., Pan P., He Z., et al, In situ tests of building structures isolated by innovative three-dimensional vibration isolation bearings [J]. Earthquake Engineering & Structural Dynamics. 2025, 54:146-163

[18] Zeng Y, Pan P, Cao Y., He Z.. Shear deformation detection in smart rubber bearing (SRB) using active sensing method[J]. Engineering Structures, 2021, 242: 112573.

[19] Shen S., Kurata M, Pan P, He Z.. Test, analysis, and design of ovally‐perforated vertically‐flexible steel plate shear wall (OVSPW)[J]. Earthquake Engineering & Structural Dynamics, 2022, 51(1): 66-85.

[20] Ye B., Pan P., Xiao G., Zhang Y., He Z.. Experimental investigation on failure modes of RECC slab-column connections under concentric gravity loading[J]. Engineering Structures, 2021,230: 111559.