导师风采
何政
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个人信息

Personal Information

  • 教授
  • 导师类别:硕士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:土木工程学院
  • 所属专业:
  • 邮箱 : hezheng@usx.edu.cn
  • 工作电话 : -13889660848

个人简介

Personal Profile

1990年9月至2000年12月 哈尔滨工业大学(含合并前哈尔滨建筑大学)先后获建筑工程专业工学学士学位、工程力学专业工学博士学位。1996年7月至2004年12月 哈尔滨工业大学(含合并前哈尔滨建筑大学)土木工程学院助教、讲师、副教授,2005年1月2010年2月 东北大学资源与土木工程学院教授,2010年3月至2025年12月大连理工大学建设工程学院教授(其间2012.05-2014.10担任土木工程学院副院长、2014.10-2019.05担任土木工程学院院长)。在教育部留学基金委(CSC)的资助下,先后于2004年和2009年以普通访问学者身份依次赴加拿大University of Toronto (UofT)土木工程系和美国Universityof Illinois at Urbana- Champaign (UIUC)土木与环境工程系进修,于2015年以高级访问学者身份赴美国University of California at Berkeley (UCB)访学。


2008年入选教育部“新世纪优秀人才支持计划”,辽宁省百千万人才工程入选者,担任中国建筑学会智能建造学术委员会副主任委员、中国土木工程学会防灾减灾分会理事、中国地震学会地震工程专业委员会委员、中国灾害防御协会城乡韧性与防灾减灾专业委员会委员、中国城市科学研究会可持续土木工程研究专业委员会委员。目前的研究兴趣集中在复杂与超高层建筑结构智能与参数化及优化设计、混凝土结构地震灾变预演与智能防灾减灾设计、预制装配式混凝土结构体系性能、基于性能的结构抗震性能分析、设计与评估等方面的研究工作,主持国家重点基础研究发展计划(简称973计划)课题、国家自然科学基金委重大研究计划集成课题和多项国家自然基金项目以及省部级项目,撰写学术专著2部,在国内外学术期刊和会议上发表学术论文257篇,申请获批10余项国家发明专利。同时担任10余个国际期刊和若干国内期刊审稿人。在国家自然科学基金委重大研究计划集成课题资助下,开发高性能超高层建筑结构弹塑性分析程序D-SAP v2.4.5,被成功用于国内两座600米级超高层建筑倒塌全过程的模拟。


  • 研究方向Research Directions
智能结构设计、混凝土结构、结构抗震设计、土木工程智能防灾减灾
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
主要科研项目

1. 国家自然科学基金面上项目“图像—点云驱动的半刚PC框架结构强震灾变“性-态”预演、设计与调控”(编号:52378485),执行期限:2024.01-2027.12,50万(直接经费),课题负责人,在研。

2. 国家自然科学基金面上项目“质刚非均匀分布的框架-核心筒结构弹性地震位移需求估计及分体系调控”(编号:52078105),执行期限:2021.01-2024.12, 58万(直接经费),课题负责人,已结题。

3. 国家自然科学基金面上项目“基于能量的混合型连接高层装配式混凝土框架结构地震损伤性能研究”(编号:51878123),执行期限:2019.01-2022.12, 60万(直接经费),课题负责人,已结题。

4. 国家重点研发计划“公共安全风险防控与应急技术装备”之项目“超高层建筑工程施工安全关键技术研究与示范”(编号:2016YFC0802002),执行期限:2016.07-2020.06. (注:子课题负责人),75万,已结题。

5. 国家重点基础研究发展计划(简称973计划)课题:“基于健康监测的桥梁结构安全评定与控制”(编号:2013CB036305),执行期限:2013-01-2017.12. (注:课题负责人),661万,已结题。

6. 国家自然科学基金重大研究计划“重大工程的动力灾变”集成项目“重大建筑与桥梁结构地震灾变集成”之课题十二“基于OpenSees和其他模拟平台的大型结构地震灾变成果集成与验证”(编号:91315301-12),执行期限:2013-01-2015.12. (注:课题负责人),260万,已结题。

7. 国家自然科学基金国际(地区)合作与交流重点项目:“结构动力灾变效应监测及其验证平台”(编号:51161120359), 执行期限:2012-01-2016-12. (注:子课题负责人),100万,已结题。

8. 国家自然科学基金重大研究计划培育项目:“强地震作用下混凝土结构逐步倒塌性能分析与设计”(编号:90915005), 执行期限:2010.01-2012.12. 50万,已结题。

9. 教育部新世纪优秀人才支持计划:“”基于损伤的震后混凝土结构抗震性能评估与FRP加固优化设计(编号:NCET-08-0096),执行期限:2009.01-2011.12,已结题。

10. 国家自然科学基金面上项目:“FRP带载约束加固混凝土柱的动力特性与损伤性能设计”(编号:50778035), 执行期限:2008.01-2010.12. 32万,已结题。

11. 国家自然科学基金青年基金项目:“FRP加筋混凝土构件的力学性能与智能特性”(编号:50208007), 执行期限:2003.01-2005.12. 25万,已结题。

12. 上海建工五建集团有限公司委托科研课题“超高层大型施工装备安全性分析及施工控制关键技术研究”,执行期限:2022.01-2023.03,20万,课题负责人,已结题。

13. 上海建工集团基础研究类科研课题 “极端风环境下超高层施工附属设施安全性态分析与评定技术”(编号:20180224),执行期限:2018.10-2020.09,20万,课题负责人,已结题。

14. 中机国际工程设计研究院有限责任公司委托科研课题“基于性能的装配式混凝土减隔震结构研究与应用”(编号:CMEC-KJFH-2018-01),执行期限:2019.05-2020.10,38万,课题负责人,已结题。

主要研究成果

1. 装配式混凝土结构抗震性能分析、智能评估与灾变预演

2. 结构地震损伤演化、失效模式与倒塌安全储备评估

3. 高层及超高层建筑结构抗灾性能分析、设计与调控

4. 结构弹塑性分析平台开发、集成与应用


部分发表期刊论文

2026.01.01-present

(97) Feng Pan(*), Zheng He, Zhimin Zhang, Jintao Zhang, Dawei Xu. Long-term field measurement and analysis of wind characteristics for a supertall building under construction: The case of Shanghai. 2026, 16: 644.

(96) Yingchang Ma, Zheng He(*), Xiao Lai.Torsional damage mechanism and mitigation strategies of super high-rise RCframe-core tube structure. Computers and Concrete. 2026, 37(1): 79-103.

(95) Dianyou Yu, Zheng He(*), Yuexuan Yu. Adamage-integrated image-point cloud registration network for characterizingmacro-meso hysteretic features of semi-rigid precast concrete beam-columnjoints under strong earthquakes. Advanced Engineering Informatics. 2026, 71:104260.

 

2025.01.01-2025.12.31

(94) Xiao Lai, Zheng He(*), Jian Yang, ZichenLi. An initial subsystem stiffness-integrated seismic performanceoptimization approach for super high-rise frame-core tube structures usinggeneralized models. Soil Dynamics and Earthquake Engineering. 2025, 199:109734.

(93) Dianyou Yu, Zheng He(*). Cohesivezone model-integrated hybrid numerical simulation strategy for RC/PCbeam-column joints under reversed cyclic loadings. Structures. 2025, 80:109772.

(92) Zheng He(*), Jie Yang, Wenfeng Fan,Dianyou Yu. A nonlinear dynamics-informed long short-term model for predictingtime history response of high-rise building structures under strongearthquakes. Computers and Structures. 2025, 316: 107902.

(91) Zheng He(*), Xiao Lai, Yaxu Yao, JianYang, Zhuang Guo. An efficient stiffness demand-based section optimizationstrategy for aseismic super high-rise frame core-tube structures using generalflexure-shear coupling model. The Structural Design of Tall and SpecialBuildings. 2025, 34(10): e70055.

(90) Zhonghui Zhao, Zheng He(*), Dianyou Yu,Shuyu Tian. Development of a semantic segmentation network for plane layoutdesign of super high-rise building structures. Advanced EngineeringInformatics. 2025, 66: 103396.

(89) Yang Yang(*), Zirui Wang, LiangkunLi, Qinyu Zhang, Zheng He. Evaluation of the seismic collapse safety ofoffshore platforms considering the combined influence of welding-corrosion.Ocean Engineering. 2025, 330: 121220.

(88) Sitong Fang, Katherine A. Cashell,Zheng He(*). Seismic behavior of inter-storey isolation systems in superhigh-rise buildings including soil-structure interaction. Soil Dynamics andEarthquake Engineering. 2025, 196: 109445.

(87) YangYang(*), Tao Li, Pengyu Chen, Jing Wang, Wanyang Lv, Zheng He. Seismic damageresistance analysis of jacket platform considering loading history andcorrosion damage. Ocean Engineering. 2025, 325: 120739.

 

2024.01.01-2024.12.31

(86) Sitong Fang, Chunyan Quan, ZhengHe(*), Katherine A. Cashell. The influence of mass ratio on the response ofinter-storey seismic isolation systems. Structures. 2024, 71: 108113.

(85) Qian Tao, Zheng He(*), Haijiang Li.Simulation and factor analysis for post-earthquake recovery of denselypopulated urban residential communities in China. Structure and InfrastructureEngineering. 2024, 20(11): 1746-1764.

(84) Zheng He(*), Maoxing Gao, Tian Liang,Xiao Lai, Yi Lu and Feng Pan. Tornado-induced vibration assessment ofconstruction elevator attached to high-rise buildings. The Structural Design ofTall and Special Buildings. 2024, 33(13): e2129.

(83) Xiao Lai, Zheng He(*), Ling Ma.Strain energy-based uniformity spectrum for elastic deformation control ofsuper high-rise buildings under near-fault pulse-like earthquake excitations.Soil Dynamics and Earthquake Engineering. 2024, 181: 108663.

(82) Wengao Lu(*), Zheng He. Effect ofuncertainties in cable corrosion and material strength on seismic fragility oflong-span cable-stayed bridges in marine environments. Structures. 2024, 62:106274.

(81) Zheng He(*), Yuanyuan Chen, Xiao Lai,Maoxing Gao. A damage-oriented ground motion intensity measure for degradingsuper high-rise buildings. Journal of Building Engineering. 2024, 86: 108874.

 

2023.01.01-2023.12.31

(80) Yang Yang(*), Pengyu Chen, Zheng He,Yuchuan Bai. Study on low-cycle hysteresis properties of seawater corrodedsteel considering loading history effects. Applied Ocean Research.  2023,142: 103845.

(79) Yang Yang(*), Wanyang Lv, Tianyu Xu,Jing Wang, Zheng He. Numerical investigation on hysteretic behavior of corrodedT-shaped tubular joints under compressive bending. Applied Ocean Research.2023, 142: 103839.

(78) Dianyou Yu, Zheng He(*),and Ling Ma.A modified multiscale semantic segmentation network accounting for multi-levelseismic damage feature of PC structures. Journal of Building Engineering. 2023,78: 107600.

(77) Xiaoying Ou, Zheng He(*), Bin Du,Maoxing Gao. Multiple-level earthquake-resistant design strategy for precastconcrete frames with semi-rigid connections: a case study. Structures. 2023,54(8): 570-586.

(76) Yang Yang(*), Yuanhang Li, Jing Wang,Zheng He, Xili Dong, Xiuxiu Yuan. Time-varying dynamic performance of afloating platform-mooring system based on the mechanical experimental dataderivation method for corroded wire ropes. Ocean Engineering. 2023, 280:114873.

(75) BinLiang(*), Jilin Hou and Zheng He. Research on rapid assessment method for thevulnerability of structures with vulnerability index and disaster matrix.Bulletin of Earthquake Engineering. 2023, 21: 2691-2722. 

(74) Zheng He(*), Maoxing Gao, Zhenhui Li,Zhuang Guo, Shanjie Ke, Zhe Qi, Xiang Tu, Bin Du and XiaoLai. Parametrized multi-objective seismic optimization for precastconcrete frame with a novel post-tensioned energy dissipation beam-columnjoint. Computers and Structures. 2023, 275: 106911.

 

2022.01.01-2022.12.31

(73) Tingting Liu, Zheng He(*).Enhancement of seismic damage endurance of large-span lattice shells withreplaceable fuse-type components. Journal of Building Engineering. 2022, 62:105365.

(72) Zheng He(*), Tian Liang, Xiao Lai,Maoxing Gao, Xiang Tu, Yi Lu. Vibration acceleration-integrated parametrizedaerodynamic shape optimization of super high-rise buildings with spiralconfigurations. Structural and Multi-disciplinary Optimization. 2022, 65(9):291.

(71) Xiao Lai, Zheng He(*). Dynamics-basedanalytical correlation between flexure-shear coupled model andframe-tube-outrigger model for frame core-tube structural systems. ASCE,Journal of Engineering Mechanics. 2022, 148(11): 04022068.

(70) Xiao Lai, Zheng He(*), Yuanyuan Chen,Yantai Zhang, Zhenhui Li, Zhuang Guo, Ling Ma. A modifiedspectral-velocity-based earthquake intensity measure for super high-risebuildings. Soil Dynamics and Earthquake Engineering. 2022, 162: 107504.

(69) Xiao Lai, Zheng He(*). A generalized hybrid model considering earthquake-inducedinternal force distribution rules for super high-rise frame-core tubestructures. Engineering Structures. 2022, 268: 114745.

(68) Yang Yang(*), Xiaoyun Chen, Yi Liu, TianyuXu, Pengyu Chen, Zheng He. Study on hysteretic performance of welded T-jointscircular tube on platform considering seawater corrosion. Ocean Engineering.2022, 259: 111942.

(67) Yang Yang(*), Yi Liu, Xiaoyun Chen, ZhengHe, Dan Zhao, Lei Chen. Mechanical properties of steel plate compressionjoint under seawater corrosion and welding. Ships and Offshore Structures.2022, TSOS2076991.

(66) Yang Yang(*), Xiuxiu Yuan, YuanhangLi, Zheng He, Shenhe Zhang, Shaojie Zheng. Effect of time-varying corrosion onthe low-cycle fatigue mechanical properties of wire rope. Ocean Engineering.2022, 250: 111027.

(65) Dan Zhao, Yang Yang(*), Qiqi Lu,Zheng He, Yi Liu, Li Zhou. The effect of corrosion on the hysteresis propertiesof welded steel. Ships and Offshore Structures. 2022, TSOS2032988.

(64) Xiang Tu, Zheng He(*), Bowen Jiang,Bin Du, Zhe Qi, Guohui Huang. Strength-reserve-based seismic optimization forprecast concrete frames with hybrid semi-rigid connections. Structural andMulti-disciplinary Optimization. 2022, 65(4): 109.

(63) Dianyou Yu, Zheng He(*). Digitaltwin-driven intelligence disaster prevention and mitigation for infrastructure:advances, challenges and opportunities. Natural Hazards. 2022, 112: 1-36.

(62) Huan Li, Xixian Chen, Hongliang Chen,Bowen Wang, Weijie Li(*), Shenglan Liu, Peng Li, Zuoqiu Qi, Zheng He, XuefengZhao(*). Simulation of smartphone-based public participation in earthquakestructural response emergency monitoring using virtual experiment and AI.Buildings. 2022, 12(4), 492.

(61) Bin Du, Zheng He(*), Wanliang Jiang,Xiang Guo, Guohui Huang. Design-oriented energy capacity spectrum method forseismic performance control of precast concrete structures with semi-rigidconnections. ASCE, Journal of Structural Engineering. 2022, 148(6): 04022058.

(60) Xiao Lai, Shuaishuai He, Zheng He(*).Earthquake-resistant sub-system stiffness demand estimate of frame-core tubestructures with mass and stiffness non-uniformities. The Structural Design ofTall and Special Buildings. 2022, 31: e1925.

(59) Xiang Tu, Zheng He(*), Guohui Huang.Seismic multi-objective optimization of vertically irregular steel frames withsetbacks upgraded by buckling-restrained braces. Structures. 2022, 39: 470-481.

(58) Tingting Liu, Jeriniaina SitrakaTantely, Zheng He(*). Effect of vertical-to-horizontal acceleration ratio ofearthquake components on the utilization of buckling-restrained braces in steelframes. Structures. 2022, 38: 1111-1124.

(57) Wengao Lu(*), Zheng He. Effect ofcable corrosion on nonlinear elastic stability of girder in cable-stayedbridges with floating systems. Structures. 2022, 37: 893-904.

(56) Zheng He(*), Maoxing Gao, Tian Liang,Yi Lu, Xiao Lai and Feng Pan. Tornado-affected safety assessment of towercranes outer-attached to super high-rise buildings in construction. Journal ofBuilding Engineering. 2022, 51: 104320.

(55) Bin Du, Wanliang Jiang, Zheng He(*),Zhe Qi, Chaojie Zhang. Development of a modified low-cycle fatigue model forsemi-rigid connections in precast concrete frames. Journal of BuildingEngineering. 2022, 50: 104232.

(54) Yi Lu, Maoxing Gao, Tian Liang, ZhengHe(*), Fan Feng, Feng Pan. Wind-induced vibration assessment of tower cranesattached to high-rise buildings under construction. Automation inConstruction. 2022, 135: 104132.

 

2021.01.01-2021.12.31

(53) Yang Yang(*), Sheng Qian, Zheng He, TianyuXu. Design-oriented uniaxial material model for predicting longitudinalcompressive behaviour of D36 steel plates with multiple mechanicallyinduced pits. Ships and Offshore Structures. 2021, TSOS1934963.

(52) Tingting Liu, Zheng He(*). A multipleresponse-based structural capacity reserve assessment model for long-spansingle-layer lattice shells under strong earthquakes. Journal of EarthquakeEngineering. 2021, 25(3): 2697-2717.

(51) Yang Yang(*), Wenzhu Li, Tianyu Xu,Zheng He. Dan Zhao. Experimental study of hysteretic behaviour of corrodedsteel with multi-angle welding joints. Journal of Constructional SteelResearch. 2021, 187, 106990.

(50) Yang Yang(*), Tianyu Xu, Junli Guo,Zheng He, Houbiao Ma. Strength reserve assessment on pitting-corroded jacketoffshore platforms based on the modified generalized constitutive model.Thin-Walled Structures. 2021, 169, 108494.

(49) Bin Du, Ge Li, Yan Wu, Zheng He(*), ZheQi, Guohui Huang. Efficient storey lateral stiffness estimate andgradient-based multi-objective optimization of reinforced concrete frames withhybrid semi-rigid precast connections. Engineering Optimization. 2021, 53(11):1964-1979.

(48) Yang Yang(*), Tianyu Xu, JingyuanQin, Zheng He, Qiao Yu, Juan Su, Xiaofeng Zhou. Experimental study on the compressionmechanical behaviour of steel pipes with mechanically induced pittingcorrosion. Applied Ocean Research. 2021, 116, 102880.

(47) Zheng He(*), Zhinan Ren, Zhe Qi,Shaojun Fu. A temporal-spatial hybrid dynamic algorithm strategy for inelasticearthquake response analysis of super high-rise building structures. TheStructural Design of Tall and Special Structures. 2021, 30(14): e1885.

(46) Xinqiang Yao, Bin Liang(*), Hai Zhang(*),Ziliang Zhang, Zheng He. Typical brick masonry walls reinforced with high-strengthmortar and steel bars in the horizontal joints. Advances in StructuralEngineering. 2021, 24(12): 2767-2779.

(45) Bin Du, Zheng He(*), Guohui Huang. Anestimate on distribution of hysteretic energy demand in seismic precastconcrete frame structures. Journal of Earthquake Engineering. 2021, 25(10):1981-2007.

(44) Yang Yang(*), Xin Zhang, Zheng He,Junli Guo and Yi Liu. Uniaxial behaviour and corrosion-welding-basedconstitutive model of marine structural steel. Ocean Engineering. 2021, 235: 109370.

(43) Tingting Liu, Zheng He(*), Yang Yang.Damage-endurance-based seismic performance assessment for long-span latticeshells with pre-stressed elements. International Journal of Steel Structures.2021, 21(3): 969-986.

(42) Yi Lu, Luo Zhang, Zheng He(*), FanFeng, Feng Pan. Wind-induced vibration fragility of outer-attached tower craneto super-tall buildings: a case study. Wind and Structures. 2021, 32(5):405-421.

(41) Jinke Li, Zheng He, Xuefeng Zhao(*).Data-driven building's seismic response estimation method using a deepconvolutional neural network. IEEE Access.  2021, 9: 50061-50077.

(40) Xiao Lai, Zheng He(*), Yan Wu. Elasticinter-story drift seismic demand estimate of super high-rise buildings usingcoupled flexural-shear model with mass and stiffness non-uniformities.Engineering Structures. 2021, 226: 111378.

 

2020.01.01-2020.12.31

(39) Yang Yang(*), Fei Ji, Zheng He. HoubiaoMa, Ziyue Jia. Generalized hysteretic constitutive model of marine structuralsteel with pitting corrosion. Ocean Engineering. 2020, 218: 108248.

(38) Qian Tao, Zheng He(*). Functionalityindicator for an occupant-centered performance model of high-rise residentialbuildings subjected to earthquakes. Structure and Infrastructure Engineering.2020, 16(11): 1493-1511.

(37) Bin Du, Zheng He(*), Yan Wu, Guohui Huangand Feng Pan. A compatible energy demand estimate considering code-specifieddesign spectra. Soil Dynamics and Earthquake Engineering. 2020, 137: 106273.

(36) Yang Yang(*), Qiao Yu, Zheng He, JingyuanQin, Juan Su. Investigation on failure mechanism of stiffened plates withpitting corrosion under uniaxial compression. Applied Ocean Research. 2020,102: 102318.

(35) Yantai Zhang, Zheng He(*). Acceptablevalues of collapse margin ratio with different confidence levels. StructuralSafety. 2020, 84: 101938.

(34) Xiang Guo, Zheng He(*), Jingjing Xu.Identification of incremental seismic damage development in RC structuresexcited with sequence-type ground motions. Structures. 2020, 24: 464-476.

(33) Zheng He(*), Yi Lu, Fengning Liu,Feng Pan, Shuaishuai He. An estimate on in-construction differential settlementof super high-rise frame core-tube buildings. The Structural Design of Tall andSpecial Buildings. 2020, 29(9): e1737.

(32) Xiang Guo, Zheng He(*). A macroscopicapproach for evaluation on damage development within reinforced concretewall-frame structures under strong earthquakes. The Structural Design of Talland Special Buildings. 2020, 29(9): e1731.

(31) Tingting Liu, Zheng He(*), Yang Yang.Vertical earthquake vulnerability of long-span spherical lattice shells withlow rise-span ratios. Engineering Structures. 2020, 207: 110181.

(30) Yang Yang(*), Ruixin Huang, Zheng He.Experimental study of the uniaxial compressive behaviour of DH36 steel plateswith mechanically induced pits. Ocean Engineering. 2020, 200: 107058.

(29) Qiao Tao, Zheng He(*). Measurement of thethreshold of community seismic resilience using dynamics-based metrics.Structural Safety, 2020, 83: 101907.

(28) Xiang Tu, Zheng He(*), Guohui Huang.Performance-based multi-objective collaborative optimization of steel frameswith fuse-oriented buckling-restrained braces. Structural andMulti-disciplinary Optimization. 2020, 61(1): 365-379.

(27) Yantai Zhang, Zheng He(*). Seismiccollapse risk assessment of super high-rise buildings considering modelinguncertainty: a case study. The Structural Design of Tall and SpecialBuildings. 2020, 29: e1687.

(26) Zhinan Ren, Zheng He(*), Zhe Qi. Atemporal hybrid dynamic integration algorithm strategy for inelastictime-history analysis of high-rise reinforced concrete structures under strongearthquakes. The Structural Design of Tall and Special Buildings. 2020, 29:e1690.

 

2019.01.01-2019.12.31

(25) Houbiao Ma, Yang Yang(*), Zheng He, YahuiZhang, Fei Ji. Experimentalstudy on mechanical properties of steel under extreme cyclic loadingconsidering pitting damage. Ocean Engineering. 2019, 186: 106091.

(24) Ziyue Jia, Yang Yang(*), Zheng He, HoubiaoMa, Fei Ji. Mechanical test study on corroded marine high performance steelunder cyclic loading. Applied Ocean Research. 2019, 93(12): 101942.

(23) Jeriniaina Sitraka Tantely, Zheng He(*).Vertical collapse safety margin assessment for steel frames againstearthquake-induced loss of column. Engineering Failure Analysis. 2019, 105(11):945-960.

(22) Jeriniaina Sitraka Tantely, Zheng He(*). Collapse safetymargin-based design optimization of steel structures with concentrically bracedframes. Advanced Steel Construction. 2019, 137:(2): 137-144.

(21) Zheng He(*), Tingting Liu.Structural-capacity-reserved-based performance assessment of long-spansingle-layer lattice shell structures. Journal of Constructional SteelResearch, 2019, 159: 301-314.

(20) Zheng He(*), Xiaoying Ou, Jiangwei Li, Jinping Ou.Collapse-safety-margin-oriented seismic retrofit strategy for corrodedreinforced concrete frames using fiber reinforced plastics. Structure andInfrastructure Engineering, 2019, 15(8): 1025-1035.

(19) Zheng He(*), Ning An, Yantai Zhang. The 50-year expectationof structural residual seismic capacity ratios based on uniform collapseprobability. Bulletin of Earthquake Engineering, 2019, 17(5): 2459-2484.

(18) Yantai Zhang, Zheng He(*). Appropriate ground motionintensity measures for estimating earthquake demand of floor acceleration-sensitiveelements in super high-rise buildings. Structure and InfrastructureEngineering, 2019, 15(4): 467- 483.

(17) Yang Yang(*), Qingjin Wu, Zheng He, Ziyue Jia, XiaoweiZhang. Seismic collapse performance of jacket offshore platforms withtime-variant zonal corrosion model. Applied Ocean Research, 2019, 84: 268-278.

 

2018.01.01-2018.12.31

(16) Zheng He(*), Xiang Guo, Yantai Zhang, Xiaoying Ou. Globalseismic damage model of RC structures based on structural modal properties.ASCE, Journal of Structural Engineering, 2018, 144(10): 04018171.

(15) Zheng He(*), Zheng Wang, Yantai Zhang. Collapse safetymargin and seismic loss assessment of RC frames with equal material cost. TheStructural Design of Tall and Special Buildings, 2018, 27(1): e1407. 

(14) Xiang Guo, Zheng He(*). Vibration-mode-based story damageand global damage of reinforced concrete frames. Earthquakes and Structures,2018, 14(6): 589-598.

(13) Yantai Zhang, Zheng He(*), Youfu Yang. Aspectral-velocity-based combination-type earthquake intensity measure for superhigh-rise buildings. Bulletin of Earthquake Engineering, 2018, 16(2):643-677. 

(12) Yantai Zhang, Zheng He(*), Wengao Lu, Youfu Yang. Aspectral-acceleration-based linear combination-type earthquake intensitymeasure for high-rise buildings. Journal of Earthquake Engineering, 2018, Vol.22(8): 1479-1508.

(11) Yuan Yao, Yang Yang(*), Zheng He, Yanpeng Wang.Experimental study on generalized constitutive model of hull structural platewith multi-parameter pitting corrosion. Ocean Engineering, 2018, 170: 407-415.

(10) Houbiao Ma, Yang Yang(*), Zheng He, Ziyue Jia, Yahui Zhang.Experimental study on constitutive relation of the high performance marinestructural steel under extreme cyclic loads. Ocean Engineering. 2018, 168:204-215.

 

2017.01.01-2017.12.31

(09) Zheng He(*), Shaojun Fu, Yongan Shi, Qian Tao, ChengjiangSun. New speedup algorithms for nonlinear dynamic time history analysis ofsuper tall building structures under strong earthquakes. The Structural Designof Tall and Special Buildings, 2017, 26(6): e1369. 

(08) Zheng He(*), Shaojun Fu, Jinping Ou. State transformationprocedures for fiber beam-column element in inelastic dynamic time-historyanalysis for moment-resisting frames. ASCE, Journal of Computing in CivilEngineering, 2017, 31(5): 04017036. 

(07) Zheng He(*), Zhenyu Zhu, Xiang Guo, Tingting Liu, Yitao Hu.Development of a macroscopic global seismic damage model for lattice shellstructures. ASCE, Journal of Structural Engineering, 2017, 143(2): 04016174. 

(06) Zheng He(*), Yichao Xu. Correlation between global damageand local damage of RC frame structures under strong earthquakes. StructuralControl and Health Monitoring, 2017, 24(3): e1877. 

(05) Wengao Lu, Zheng He(*). Potential correlation between corrosion-inducedconfiguration alteration and seismic performance of long-span cable-stayedbridges with floating system. ASCE, Journal of Bridge Engineering, 2017.22(12): 04017105. 

(04) Qian Tao, Zheng He(*). Change mechanism of solverperformance: with a special focus on time history analysis of supertallbuildings. The Structural Design of Tall and Special Buildings, 2017, 26(17):e1389.

(03) Jeriniaina Sitraka Tantely, Zheng He(*). Seismic collapsemargin of steel frame structures with symmetrically placed concentric braces.International Journal of Steel Structures, 2017, 17(3): 969-982.

(02) Yang Yang(*), Xuhua Ying, Bixin Guo, Zheng He. Collapsesafety reserve of jacket offshore platforms subjected to rare intenseearthquakes. Ocean Engineering, 2017, 131: 36-47. 

(01)Guofu Qiao(*), Bingbing Guo, Jinping Ou, Zuohua Li, Zheng He. Corrosionbehavior of steel bar embedded in cement-based conductive composite.Construction and Building Materials, 2017, 134: 388-396. 


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