胡振中

首页  胡振中  中文信息
头像

胡振中

副教授博士生导师

电话:

邮箱:

地址: 广东省深圳市西丽大学城清华园区海洋大楼702-3

  • 个人简历
  • 教学
  • 研究领域
  • 研究成果
  • 奖励荣誉
  • 概况

    博士、博导、清华大学长聘副教授,清华大学深圳国际研究生院党委副书记。研究方向为海工结构分析、海洋环境预测、海洋数字孪生和国产工业软件研发。发表学术论文170余篇,在多个领域最具权威性的National Science Review、Environmental Science & Technology、Ocean Engineering等SCI期刊共发表论文70余篇。出版论著5本,获授权发明专利10余项、软件著作权20余项,参编标准4部。承担国家自然科学基金项目、国家重点研发计划课题、粤港澳研究团队项目、深港创新A类项目等科研项目,成果直接应用于应对日本核污染水排放危机及深中通道等海洋基础设施的安全建造和智慧运维。担任中国图学学会理事兼BIM专委会副主任、中国力学学会产学研工作委员会副主任委员、中国海洋发展研究会理事;负责清华主办的专业领域期刊Ocean的创办,担任执行主编;担任国际权威期刊Automation in Construction编委、中文核心期刊《图学学报》编委和多个国际学术会议国际学术委员等。获得中国图学学会科技进步奖一等奖(2022)、华夏建设科学技术奖二等奖(2023)、知网高被引学者TOP 1%(2024-2025)、广东省区域联合基金粤港澳团队负责人(2022)、中国图学学会优秀科技工作者奖(2021)、清华大学青年教师教学优秀奖(2024年)、广东省学位与研究生教育学会优秀教学成果奖二等奖(2024年)等荣誉与奖励。


    教育经历

    2005/08-2009/07清华大学土木工程博士

    2001/09-2005/07清华大学土木工程学士


    工作经历

    2021/06-至今清华大学深圳国际研究生院教授、博导

    2019/01-2019/07卡耐基梅隆大学访问学者

    2012/12-2021/05清华大学土木工程系副教授

    2011/08-2012/11清华大学土木工程系讲师

    2009/07-2011/08清华大学深圳研究生院博士后


    学术兼职

    中国图学学会BIM专业委员会副主任委员(中国图学学会主办)

    中国力学学会产学研工作委员会副主任委员(中国力学学会主办)

    中国图学学会组织工作委员会委员(中国图学学会主办)

    中国图学学会理事(中国图学学会主办)

    中国海洋发展研究会理事

    Ocean执行主编

    Automation in Construction期刊编委

    Sustainability期刊编委

    《图学学报》期刊编委

    CIB W78国际学术年会国际学术委员会委员



    社会兼职

  • 教学课程

    《工程硕士数学》,研究生学位课程(公共基础课)

    《土木与建筑工程CAE》,研究生学位课程

    《数字建筑与工程结构设计》,工程博士学位课程


    研究生指导

    独立指导博士生3名、硕士研究生14名(其中7名已毕业)


  • 研究领域

    以海洋工程数智防灾为研究领域,重点开展海工结构分析、海洋环境预测、海洋数字孪生及国产工业软件研发等方向的研究。胡振中教授是清华大学一级交叉学科“海洋科学与工程”下二级学科方向“数智海洋工程”带头人,主持国家自然科学基金项目,国家重点研发课题、广东省粤港澳团队项目、深港联合资助项目(A类)以及企业合作横向课题等20余项科研项目。共发表170余篇学术论文,其中SCI期刊论文70余篇,授权发明专利10余项、软件著作权20余项,多项成果实现转化。


    主要项目

    作为负责人,承担国家项目10项(含1项科技部项目课题、国家科学基金项目3项、科技部子项目3项等)、广东省研究团队项目1项、企事业单位咨询项目10余项,包括(部分)

    “建筑与市政公用设施智慧运维性态全息快速感知与多源异构数据融合”,国家重点研发计划项目课题,2022/11 - 2025/10

    “海洋-气象灾害数字孪生、数值模拟技术研发及其示范应用”,广东省区域联合基金粤港澳团队项目,2022/10 - 2026/09

    “跨海桥隧应对自然灾害的智能运维方法与鲁棒决策研究”,深港联合资助项目(A类),2025/04 - 2027/04

    “基于GIS/BIM的轻量化平台框架与接口技术”,国家重点研发计划子课题,2018/12 - 2022/12

    “基于能耗监测系统的建筑及其机电系统标准化大数据提取技术研究”,国家重点研发计划子课题,2017/07 - 2020/06

    “信息驱动下既有建筑物/群多尺度性能模拟与分析技术研究”,国家自然科学基金面上,2018/01 - 2021/12

    “基于 BIM 的大型公共建筑运维期安全管理技术研究”,国家自然科学基金面上,2015/01 - 2018/12

    “基于全生命期绿色住宅产品化数字运营管理技术研究”,国家863项目子课题,2013/10 - 2016/09

    “面向设计和施工期的建筑物时变结构安全性能的4D模拟和分析”,国家自然科学青年基金项目,2011/01-2013/12

    “基于中江高速公路改扩建项目的安全数据标准体系建设及应用研究”,企业委托项目,2021/11-2023/10

    “车陂路--新滘东路隧道工程(黄埔大道至新港东路)基于BIM技术的隧道工程精细化设计与施工研究”,企业委托项目,2017/10-2018/08

    “轨道交通BIM管理平台研究与开发”,企业委托项目,2014/12-2017/12


  • 代表性论文

    [1]An, P., Ren, Z.R., Liu, L.X., Lin, J.R., Yu, Y.T., Guo, Y.T., Hou, C., Hu, Z.Z. Precise longitudinal crack detection via continuous texture reconstruction and deep segmentation[J]. Advanced Engineering Informatics, 2026, 76: 104919.

    [2]Ge, K., Wang, C., Guo, Y.T., Dong, X.M., Hu, Z.Z. A differentiable optimization framework for automated design of offshore jacket structures under varied scenarios[J]. Computer-Aided Civil and Infrastructure Engineering, 2026, 45: 100053.

    [3]Jiang, C.H., Li, Y.H., Zhang, J.M., Li, S.W., Chen, S.L., Chen, N.Z., Hu, Z.Z. Real-time virtual sensing for offshore wind turbines with arbitrary sensor configurations using subspace-based spectral graph networks[J]. Ocean Engineering, 2026, 358: 125786.

    [4]Chen, Y.M., Ge, K., Guo, Y.T., Hou, C., Hu, Z.Z. ST-SRNet: A deep learning framework for seismic response prediction of subsea tunnels[J]. Tunnelling and Underground Space Technology, 2026, 174: 107699.

    [5]Li, Y.L., Li, Y.H., Hu, Z.Z., Zhang, J.M., Hu, Z.Q. Typhoon-Induced Risk Evolution in Wind Farms: From Disaster-Inducing Factors Identification to Domino Effect Assessment[J]. Reliability Engineering & System Safety, 2026: 112638.

    [6]Hu, Z.Z., Li, Y.L., Gao, F.P., Zhang, J.M. Digital disaster prevention for ocean engineering: Current progress and future directions[J]. Ocean Engineering, 2026, 355: 125101.

    [7]Feng, Y.X., Chen, Y., Hu, Z.Z., Ren, Z.R. Dynamics-Based Adaptive Scheduling for Large-Scale Edge Computing Networks in Smart Cities[J]. IEEE Internet of Things Journal, 2026.

    [8]Zhang, W.H., Zhou, X.G., Hou, C., Hu, Z.Z., Guo, Y.T. Multi-task deep learning-based failure diagnosis for tubular joints: Automated identification and description generation[J]. Advanced Engineering Informatics, 2026, 72: 104494.

    [9]Sun, Z.Y., Guo, Y.T., Ge, K., Hou, C., Hu, Z.Z. Deep learning-based realtime multiload response prediction and inverse analysis of offshore bridges[J]. Engineering Structures, 2026, 353: 122330.

    [10]Wan, F.H., Guo, Y.T., Zhuang, S.Y., Hou, C., Hu, Z.Z., Elghazouli, A.Y. Multiscale investigation of ternary precursor proportioning in engineered geopolymer composites: Effects of silica fume replacement ratio and GGBS content[J]. Construction and Building Materials, 2026, 512: 145342.

    [11]Liu, Y., Li, Y.L., Min, Y.T., Chen, S.L., Yang, W., Gu, J.T., Feng, W.J., Li, Y.H., Hong, C.P., Du, J.Q., Li, S.W., Li, B.B., Guo, Y.T., Zhang, J.M., Hu, Z.Z. Rebuttal to Correspondence on “Fukushima Contaminated Water Risk Factor: Global Implications”[J]. Environmental Science & Technology, 2025, 59(46): 25116-25118.

    [12]Chen, X.Y., Yu, Y.T., Wang, Y.P., Hu, Z.Z. Multimodal data fusion for ergonomic assessment of construction workers in visually obstructed environments[J]. Automation in Construction, 2025, 179: 106495.

    [13]Chen, S.J., Li, S.W., Hu, Z.Z. Fluid flow and heat transfer characteristics of manifold microchannel heat sinks with ribs of different shapes[J]. International Journal of Heat and Mass Transfer, 2025, 251: 127300.

    [14]Zhou, X.P., Si, Q., Liu, G., Hu, Z.Z., Wang, Y.K., Li, H.R., Guo, M.Z., Xia, S., Tan, C., Xie, Q.S. Vision-based adaptive cross-domain online product recommendation for 3D design models[J]. Computer-Aided Civil and Infrastructure Engineering, 2025, 40(20): 3147-3164.

    [15]Ge, K., Guo, Y.T., Wang, C., Hu, Z.Z. AI-based prediction of seismic time-history responses of RC frame structures considering varied structural parameters[J]. Journal of Building Engineering, 2025,106: 112643.

    [16]Liu, Y., Li, Y.L., Min, Y.T., Chen, S.L., Yang, W., Gu, J.T., Feng, W.J., Li, Y.H., Hong, C.P., Du, J.Q., Li, S.W., Li, B.B., Guo, Y.T., Zhang, J.M., Hu, Z.Z. Fukushima Contaminated Water Risk Factor: Global Implications[J]. Environmental Science & Technology, 2025, 59(7): 3703-3712.

    [17]Chen, Y., Ding, Y.M., Hu, Z.Z., Ren, Z.R. Geometrized Task Scheduling and Adaptive Resource Allocation for Large-Scale Edge Computing in Smart Cities[J]. IEEE Internet of Things Journal, 2025, 12(10): 14398-14419.

    [18]Yang, L., Li, B.B., Dong, Y.H., Hu, Z.Z., Zhang, K., Li, S.W. Large-amplitude rotation of floating offshore wind turbines: A comprehensive review of causes, consequences, and solutions[J]. Renewable and Sustainable Energy Reviews, 2025, 211: 115295.

    [19]Deng, S.K., Chen, S.L., Sui, Y., Hu, Z.Z. Intensification of an Autumn Tropical Cyclone by Offshore Wind Farms in the Northern South China Sea[J]. ‌Journal of Geophysical Research-Atmospheres, 129(21): e2024JD041489.

    [20]Ge, K., Wang, C., Guo, Y.T., Tang, Y.S., Hu, Z.Z., Chen, H.B. Fine-tuning vision foundation model for crack segmentation in civil infrastructures[J]. Construction and Building Materials, 2024, 431: 136573.

    [21]Liu, Y., Zhang, J.M., Min, Y.T., Yu, Y.T., Lin, C., Hu, Z.Z. A digital twin-based framework for simulation and monitoring analysis of floating wind turbine structures[J]. Ocean Engineering, 2023, 283:115009.

    [22]Ren, Z.R., Zhou, H.Y., Li, B.B., Hu, Z.Z., Yu, M.H., Shi, W. Localization and topological observability analysis of a moored floating structure using mooring line tension measurements[J]. Ocean Engineering, 2022, 266: 112706.

    [23]Leng, S., Li, S.W., Hu, Z.Z., Wu, H.Y., Li, B.B. Development of a micro-in-meso-scale framework for simulating pollutant dispersion and wind environment in building groups[J]. Journal of Cleaner Production, 2022, 364: 132661.

    [24]Li, B.B., Qiao, D.S., Zhao, W.H., Hu, Z.Z., Li, S.W. Operability analysis of SWATH as a service vessel for offshore wind turbine in the southeastern coast of China[J]. Ocean Engineering, 2022, 251:111017.

    [25]Wu, L.T., Lin, J.R., Leng, S., Li, J.L., Hu, Z.Z. Rule-based information extraction for mechanical-electrical-plumbing-specific semantic web[J]. Automation in Construction, 2021, 135:104108.

    [26]Liu, Y., Guo, X.Q., Li, S.W., Zhang, J.M., Hu, Z.Z. Discharge of treated Fukushima nuclear accident contaminated water: macroscopic and microscopic simulations[J]. National Science Review, 2022, 9(1): nwab209.

    [27]Hu, Z.Z., Leng, S., Lin, J.R., Li, S.W., Xiao, Y.Q. Knowledge Extraction and Discovery Based on BIM: A Critical Review and Future Directions[J]. Archives of Computational Methods in Engineering, 2022, 29(1): 335-356.

    [28]Li, W., Hu, Z.Z., Pei, Z.N., Li, S.W., Chan, P.W. A discussion on influences of turbulent diffusivity and surface drag parameterizations using a linear model of the tropical cyclone boundary layer wind field[J]. Atmospheric Research, 2020, 237: 104847.

    [29]Zhou, Y.W., Hu, Z.Z., Lin, J.R., Zhang, J.P. A Review on 3D Spatial Data Analytics for Building Information Models[J]. Archives of Computational Methods in Engineering, 2020, 27(5): 1449-1463.

    [30]Hu, Z.Z., Yuan, S., Benghi, C., Zhang, J.P., Zhang, X.Y., Li, D., Kassem, M. Geometric optimization of building information models in MEP projects: Algorithms and techniques for improving storage, transmission and display[J]. Automation in Construction, 2019, 107: 102941.

    [31]Peng, Y., Li, S.W., Hu, Z.Z. A Self-Learning Dynamic Path Planning Method for Evacuation in Large Public Buildings Based on Neural Networks[J]. NeuroComputing, 2019, 365: 71-85

    [32]Weerasuriya, A.U., Hu, Z.Z., Zhang, X.L., Tse, K.T., Li, S.W., Chan, P.W. New inflow boundary conditions for modeling twisted wind profiles in CFD simulation for evaluating the pedestrian-level wind field near an isolated building[J]. Building and Environment, 2018, 132: 303-318.

    [33]Peng, Y., Lin, J.R., Zhang, J.P., Hu, Z.Z. A hybrid data mining approach on BIM-based building operation and maintenance[J]. Building and Environment, 2017, 126: 483-495.

    [34]Li, S.W., Hu, Z.Z., Chan, P.W., Hu, G. A study on the profile of the turbulence length scale in the near-neutral atmospheric boundary for sea (homogeneous) and hilly land (inhomogeneous) fetches[J]. Journal of Wind Engineering and industrial Aerodynamics, 2017, 168: 200-210.

    [35]Zhang, J.P., Liu, Q., Hu, Z.Z., Lin, J.R., Yu, F.Q. A multi-server information-sharing environment for cross-party collaboration on a private cloud[J]. Automation in Construction, 2017, 81: 180-195.

    [36]Hu, Z.Z., Zhang, X.Y., Wang, H.W., Kassem, M. Improving interoperability between architectural and structural design models: An industry foundation classes-based approach with web-based tools[J]. Automation in Construction, 2016, 66: 29-42.

    [37]Lin, J.R., Hu, Z.Z., Zhang, J.P., Yu, F.Q. A natural-language-based approach to intelligent data retrieval and representation for cloud BIM[J]. Computer-Aided Civil and Infrastructure Engineering, 2016, 31(1): 18-33.

    [38]Zhang, J.P., Yu, F.Q., Li, D., Hu, Z.Z. Development and Implementation of an Industry Foundation Classes-Based Graphic Information Model for Virtual Construction[J]. Computer-Aided Civil and Infrastructure Engineering, 2014, 29(1): 60-74.

    [39]Hu, Z.Z., Zhang, J.P. BIM- and 4D-based integrated solution of analysis and management for conflicts and structural safety problems during construction: 2. Development and site trials[J]. Automation in Construction, 2011, 20(2): 167-180.

    [40]Zhang, J.P., Hu, Z.Z. BIM- and 4D-based integrated solution of analysis and management for conflicts and structural safety problems during construction: 1. Principles and methodologies[J]. Automation in construction, 2011, 20(2): 155-166.


    代表性著作

    《土木与建筑工程CAE》

    《数值分析实验》

    《智慧城市基础设施运维》

    《全国BIM技能等级考试试题集》

    《数字化运维》


    主要专利成果

    深水结构健康监测方法及系统(2026)

    海上风机结构健康监测方法及系统(2026)

    一种基于深度学习的动态电缆动力响应监测方法、计算机可读存储介质及程序产品(2025)

    一种基于数字孪生的风机安装力学分析方法及系统(2024)

    一种基坑柔性挡墙墙后有限黏性土主被动土压力模型试验装置(2023)

    海面波浪的三维动态模拟和可视化方法(2023)

    基于词典匹配的实体标注方法、模块及装置(2022)

    基于浓度分析的水体污染扩散模拟预测方法和装置(2022)

    基于粒子运动的水体污染扩散模拟预测方法和装置(2022)

    基坑柔性挡墙墙后有限黏性土主被动土压力模型试验装置(2020)

    基于IFC标准的建筑信息模型数据集成与交换引擎装置和方法(2012)


    其他成果

  • 荣誉奖项

    广东省学位与研究生教育学会优秀教学成果奖二等奖(2024)

    清华大学2023年度“青年教师教学优秀奖”(2024)

    ChatTwin:大模型赋能的建造过程虚实核验与动态监控数字孪生平台》,日内瓦国际发明展金奖(2025)

    《数字孪生驱动的城市地铁数字化建造关键技术及应用》,华夏建设科学技术奖二等奖(2023)

    《基于BIM的数字建造关键技术与自主软件研发》,中国图学学会科技进步奖一等奖(2022)

    《基于BIM和人工智能的超大型工程虚拟建造关键技术与应用》,上海市土木工程学会科技进步奖二等奖(2021)

    《基于BIM的建设工程一体化信息集成技术与平台研究》,华夏建设科学技术奖二等奖(2018)

    《北京市中心城区特大型地下生态水厂现代化建造技术研究与应用》,华夏建设科学技术奖三等奖(2018)

    《建筑全生命期BIM信息集成与应用技术研究》,北京市科学技术进步奖三等奖(2018)

    《北京市中心城区大型地下生态水厂现代化建造技术研究与应用》,中施企协科学技术进步奖一等奖(2017)

    《基于自主BIM平台的建筑机电安装工程模块化生产、集成交付及运维技术》,华夏建设科学技术奖二等奖(2015)


版权所有@清华大学深圳国际研究生院 京ICP备15006448号 京公网安备 110402430053 号