代旷宇

作者: 时间:2023-11-21 点击数:

代旷宇

基本信息

男,19919月生人,河南驻马店人,直聘研究员

 

20126月毕业于西南大学获土木工程专业工学学士学位

20157月毕业于西安建筑科技大学获防灾减灾工程及防护工程专业工学硕士学位

20216月毕业于哈尔滨工业大学获工程力学专业工学博士学位

其中,20194-20205月于新西兰奥克兰大学进行国家公派留学博士生联合培养

20221-至今    郑州大学土木工程学院 交通工程系 副研究员

20239-202412    郑州大学土木工程学院 智能建造系 副研究员,   硕士研究生导师

20251-至今    郑州大学土木工程学院 智能建造系 直聘研究员,   硕士研究生导师

 

联系邮箱:daikuangyu@zzu.edu.cn

社会兼职

1.   国际期刊Sustainable Engineering Materials青年编委

2.   国际期刊Buildings客座编辑

3.   河南省土木建筑学会会员、青年学术分会成员

4.   Engineering StructuresConstruction and   Building MaterialsOcean EngineeringJournal   of Building EngineeringInternational Journal   of Hydrogen EnergyEngineering   Applications of Artificial IntelligenceCase Studies in   Construction MaterialsNuclear Engineering   and TechnologyArchives of Civil and Mechanical   EngineeringStructuresResults   in EngineeringMaterialsMaterials   LettersApplied SciencesSustainabilityBuildingsInfrastructuresJournal   of Marine Science and EngineeringNatural Hazards   ResearchEngMinerals   EngineeringStructure Concrete、《工程力学》、《哈尔滨工业大学学报》、《振动工程学报》、《振动与冲击》、《防灾减灾工程学报》、《土木与环境工程学报(中英文)》、《震灾防御技术》、《西安建筑科技大学(自然科学版)》、《地震工程学报》等三十余种国内外期刊审稿人。

研究领域

1.既有结构修复及延寿

2.工程结构地震易损性及风险分析

3.快速修复型材料

拟招生专业

1. 桥梁与隧道工程(学术学位)、

2. 土木水利(专业学位)

承担项目

主持国家级科研项目1项,省部级项目7项,厅局级项目2项,省级重点实验室项目1项,横向项目十余项。

1. 国家自然科学基金青年基金   (52408564) 20251-202712月,主持

2. 河南科技研发计划联合基金(优势学科培育类)   (242301420027) 20251-202612月,主持

3. 中国博士后基金面上项目(2023M733247)   20237-20256月,主持

4. 河南省自然科学基金青年基金   (232300421322) 20231-202412月,主持

5. 河南省博士后科研项目启动经费   (HN2022024) 20231-202412月,主持

6. 河南省高等学校重点科研项目   (23A560002) 20231-202412月,主持

7. 广西防灾减灾与工程安全重点实验室开放课题   (2022ZDK030) 20231-202412月,主持

8. 河南省“科技副总”项目,20261-202712月,主持

9.  河南省青年人才托举工程 (2026HYTP055) 20263-202710月,主持

10. 企业委托横向科研项目“纤维固化剂材料的研发与应用”,在研,主持

11. 企业委托横向科研项目“钢筋混凝土节点与框架结构试验”,在研,主持

12. 企业委托横向服务项目“兰州某大型公共建筑安全性鉴定项目”,已结题,主持

获奖

1. 河南省科学技术进步二等奖:桥梁钢束腐蚀断丝监测-检测-防护一体化关键技术与应用(5/10

2. 河南省教育厅科技成果奖一等奖:桥梁钢束腐蚀断丝监测-检测-防护一体化关键技术与应用(3/10

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发表论文

发表论文50篇,含SCI/EI论文42篇,其中一作/通讯30篇。

2026

[1] Zhou Z, Yu X H*, Qiao Y M, Dai K Y, He Z H, Lu D G. Seismic loss   estimation for chloride-corroded reinforced concrete structures in urban   environments[J]. ASCE - Journal of Risk and Uncertainty Analysis ( SCI中科院三区,IF=2.4)

[2] Song G H, Yang A, Dai K Y*, Li S L, Feng H, Yu Z Y, Li W, Yu X H.   Seismic performance of severely corroded RC columns strengthened with HSECC   jacketing: Quasi-static tests and numerical simulation model[J]. Construction   and Building Materials. ( SCI中科院一区,IF=8.0)

2025

[1] Yu X H, Li Z H, Jiang Z C, Dai K Y*. The effect of FRP   retrofitting on the seismic resilience of low-ductility RC frame structures:   A case study[J]. Disaster Prevention and Resilience, 2025.

[2] Wang W T, Li L*, Chen J, Dai K Y. Experimental and analytical   study on flexural behavior of corroded RC beams strengthened with CFRP rods   and UHPC[J]. Engineering Structures, 2025, 323: 119299.(SCI中科院一区,IF=5.6)

[3] Yu X H, Yang A, Dai K Y*, Zhang W H*, Lu D G, Qian K. Experimental   investigation on flexural performance of corroded RC beams with high-strength   concrete and steel bars[J]. Case Studies in Construction Materials, 2024, 21:   e02043. (SCI中科院二区,IF=6.5)

[4] Sun M, Zhang Y N, Cui X Z, Fan F*, Zeng B, Dai K Y. Experimental   and numerical simulation study of tensile mechanical properties of corroded   carbon steel utilizing galvanostatic corrosion and 3D scanning[J].   Structures, 2025: 108132. (SCI中科院二区,IF=4.3)

[5] 于晓辉, 陈玉琛, 代旷宇*. 基于机器学习的RC板爆炸最大位移响应分析[J]. 建筑科学与工程学报, 2025. (CSCD核心源刊)

[6] Dai K Y, Bi K, Song G H, Jiang Z C, Yu X H*. Evaluating the   seismic risk of FRP retrofitting schemes for corroded RC frame structures   based on benefit-cost assessment[J]. Earthquake Engineering and Resilience,   2025, 4(1): 97-115.(ESCIIF=1.9)

[7] Yu X H, Li Z H, Yang A, Li Y S, Lu D G, Dai K Y*. Time-dependent   seismic fragility analysis of RC frames under the coastal atmospheric   environment considering the effect of distance of buildings from   coastline[J]. Buildings, 2025, 15(5): 737.(SCI中科院三区,IF=3.1)

[8] Ma Y, Li J B, Wang D S*, Mi J H, Dai K Y. Probabilistic prediction   of hysteretic curves of corroded reinforced concrete columns based on   Bayesian theory[J]. Soil Dynamics and Earthquake Engineering, 2025, 193:   109308. (SCI中科院二区,IF=4.2)

[9] 李磊, 王菲菲, 代旷宇*, 于晓辉. 面向抗震韧性评价的型钢混凝土柱易损性函数[J]. 哈尔滨工业大学学报, 2025, 57(01): 24-34. (EICSCD核心源刊)

[10]Dai K Y, Yang A, Song G H, Bi K, Yang J W, Zhou Z, Yu B*, Yu X H.   Experimental study on seismic performance of non-ductile RC columns with   corroded steel bars[J]. Structures, 2025, 77: 109034.(SCI中科院二区,IF=3.9)

[11]Xu S S, Li W, Wang X Z, Zhang H Z, Liu J, Jiang H, Wang X B, Ma H   K, Shi J, Yu Z Y,  Dai K Y*. The mechanical properties and durability of   PE-BFRP hybrid fiber engineered cementitious composite (ECC) [J]. Buildings,   2025. (SCI中科院三区,IF=3.1)

[12]Zhou Z, Dai K Y, Feng D C, Yu X H*. State-dependent life-cycle   structural seismic resilience analysis incorporating corrosion and aftershock   effects: illustrated with a corroded RC frame[J]. Bulletin of Earthquake   Engineering, 2025, 23(11): 4609-4634. (SCI中科院二区,IF=4.1)

[13]Feng H, Xia S S, Guo A F, Huang H*, Dai K Y, Feng Z H, Yu Z Y.   Mechanical properties of alkali-activated biomass power plant ash recycled   concrete [J]. Construction and Building Materials, 2025, 418: 141549. (SCI中科院一区,IF=8.0)

[14]Song G H, Bi K, Tong M N*, Wang X L, Yu X H, Dai K Y. Experimental   and numerical parametric analysis of seismic performance for end-reinforced   precast pier with socket connection[J]. Structures, 2025. (SCI中科院二区,IF=4.3)

[15]Zhang X C, Li X K, Dai K Y*, Zhou G S, Cai M F, Zhao J. Bond-slip   mechanism and calculation model between PC steel bar and engineered   cementitious composites (ECC)[J]. Journal of Building Engineering, 2025. (SCI中科院二区,IF=7.40)

[16]Yu X H, Chen J B, Chen J, Qian K, Dai K Y, Ding L C*, Caspeele R.   Effects of simulated reinforcement corrosion on the static and dynamic   progressive collapse behavior of RC subassemblies[J]. Journal of Building   Engineering, 2025, 114292. (SCI中科院二区,IF=7.40)

[17]Wang Y, Wang P, Wang D B, Zhang B, Li Y H, Huo H, Yu Z Y, Qu Y W,   Dai K Y*. Determining the optimal FRP mesh - ECC retrofit scheme for corroded   RC structures: A novel multi-dimensional assessment framework[J]. Buildings,   2025. (SCI中科院三区,IF=3.1)

[18]Zhu G B, Cheng Y L, Wang P H, Chai F S, Chen M, Bai W D, Yu Z Y*,   Dai K Y*, Yu X H. Multi-objective collaborative optimization of mechanical   and shrinkage properties for engineered geopolymer composites based on   orthogonal experimental design[J]. Case Studies in Construction Materials,   2025. (SCI中科院二区,IF=6.6)

[19]Xu W Q, Xu W Z, Guo Z B, Yao D P, Li S, Dai K Y, Zhou Z*.   Mainshock-aftershock fragility assessments of corroded reinforced concrete   structures considering FRP retrofitting effect[J]. Buildings, 2025. (SCI中科院三区,IF=3.1)

[20]Chen J, Li L*, Wang W T, Dai K Y, Du J B. Experimental and   numerical study on flexural behavior of corroded RC beams strengthened with   EGC under different corrosion rates[J]. Construction and Building Materials,   2025, 505: 143812. (SCI中科院一区,IF=8.0)

2024

[1] Dai K Y, Yu X H*, Lu D G, Qian K. Fragility functions for corroded   reinforced concrete columns[J]. Journal of Building Engineering, 2024, 82:   108124. (SCI中科院二区,IF=6.40)

[2] Huang P, Dai K Y*, Yu X H. Data-driven shear strength prediction   of steel reinforced concrete composite shear wall[J]. Materials Today   Communications, 2024, 38(10): 108173. (SCI中科院三区,IF=3.80)

[3] Li L, Chen J, Wang W T*, Dai K Y, Hu W B. Experimental and   prediction model of axial compressive responses of corroded RC cylinders   strengthened with CFRP[J]. Engineering Structures, 2024, 317: 118649.(SCI中科院一区,IF=5.6)

[4] 代旷宇, 于晓辉*, 吕大刚. 钢筋混凝土柱的易损性函数研究[J]. 工程力学, 2024, 41(1): 219-228. (EICSCD核心源刊)

2023

[1] Dai K Y, Li S L*, Hu P Y*, Jiang N, Wang D W. Effect of outer rust   layer on cathodic protection and corrosion behavior of high-strength wire   hangers with sheath crack in marine rainfall environment[J]. Case Studies in   Construction Materials, 2023: e02043. (SCI中科院二区,IF=6.5)

[2] Dai K Y, Yu X H*, Jiang Z C, Qian K, Wang D Y. Hysteretic model   for corroded reinforced concrete columns retrofitted with FRP[J].   Construction and Building Materials, 2023, 380: 131207. ( SCI中科院一区,IF=7.693)

[3] Hu PY, Li S L*, Dai K Y*, Jiang N, Wang D W. Analysis of hydrogen   embrittlement and applied potential of 1670, 1770, and 1860 MPa   ultrahigh-strength steel wire for impressed current cathodic protection on   cables and hangers[J]. International Journal of Hydrogen Energy, 2023:. (SCI中科院二区,IF=7.200)

[4] Huang P, Dai K Y*, Yu X H. Machine learning approach for   investigating compressive strength of self-compacting concrete containing   supplementary cementitious materials and recycled aggregate[J]. Journal of   Building Engineering, 2023: 107904. (SCI中科院二区,IF=6.400)

2022

[1] Dai K Y, Yu X H*, Qian K, Wang D Y. Deformation capacity of FRP   retrofitted reinforced concrete columns with corroded reinforcing bars[J].   Engineering Structures, 2022(254): 113834. (SCI中科院一区,IF=4.795)

[2] Rong X L, Zhang Y X*, Zheng S S, Wang J Y, Dong L G, Dai K Y.   Seismic performance of reinforced concrete beams under freeze-thaw cycles[J].   Journal of Building Engineering, 2022: 103979. (SCI中科院二区,IF=5.318)

[3] Wang J Y, Rong X L*, Zheng S S, Zhang Y X, Dai K Y, Dong L G, Wang   Z S. Cyclic behavior of RC beams under artificial climate rapid freeze-thaw   environment: A further research[J]. Case Studies in Construction Materials,   2022: e01589. (SCI中科院二区,IF=4.934)

[4] 代旷宇, 于晓辉*, 李雨适, 吕大刚. 锈蚀钢筋混凝土结构地震易损性分析[J]. 建筑结构学报, 2022, 43(8): 20-31. (EICSCD核心源刊)

[5] 何子涵, 代旷宇, 吕大刚, 于晓辉*. 基于耐震时程法的锈蚀RC框架结构抗地震倒塌能力评估[J]. 地震工程与工程振动, 2022, 42(06): 129-135 (CSCD核心源刊)

2021

[1] Dai K Y, Lu D G*, Yu X H*. Experimental investigation on the   seismic performance of corroded reinforced concrete columns designed with low   and high axial load ratios[J].  Journal of Building Engineering, 2021:   102615. (SCI中科院二区,IF=5.318)

[2] Yu X H, Dai K Y*, Li Y S. Variability in corrosion damage models   and its effect on seismic collapse fragility of aging reinforced concrete   frames under corrosion[J]. Construction and Building Materials, 2021: 123654.   ( SCI中科院一区,IF=6.841)

[3] Yu X H, Dai K Y, Li Y S, Li B*. Seismic resilience assessment of   aging RC frames designed according to Chinese codes[J]. Earthquake   Engineering and Engineering Vibration, 2021, 20(2): 303 - 316. (SCI中科院三区,IF=2.47)

[4] 代旷宇, 于晓辉, 王硕, 吕大刚. 基于改进Ibarra-Medina-Krawinkler材料模型的RC圆柱恢复力模型参数识别[J].   工程力学, 2021, 38(1): 154-163, 173. (EICSCD核心源刊)

2020

[1] Dai K Y, Liu C, Lu D G*, Yu X H*. Experimental investigation on   seismic behavior of corroded RC columns under artificial climate environment   and electrochemical chloride extraction: A comparative study[J]. Construction   and Building Materials, 2020(242):118014. (SCI中科院一区,IF=6.841)

[2] Dai K Y, Yu X H*, Lu D G. Phenomenological hysteretic model for   corroded RC columns[J]. Engineering Structures, 2020(210): 110315. (SCI中科院一区,IF=4.795)

[3] Rong X L, Zheng S S, Zhang Y X*, Dai K Y. Seismic behavior of   frost-damaged squat RC shear walls under artificial climate environment: a   further experimental research[J]. Archives of Civil and Mechanical   Engineering, 2020, 20(4). (SCI中科院二区,IF=4.369)

[4] 代旷宇, 于晓辉, 吕大刚, . 采用光圆钢筋配筋的锈蚀RC框架结构抗震性能分析:以新西兰结构为例[J]. 土木工程学报, 2020, 53(S2): 53-60. (EICSCD核心源刊)

2019

[1] 于晓辉, 代旷宇, 周洲,. 主余震序列作用下钢筋混凝土框架结构损伤分析[J]. 建筑结构学报, 2019, 40(03):131-137. (EICSCD核心源刊)

[2] 于晓辉, 乔雨蒙, 代旷宇,. 主余震序列作用下非线性单自由度体系的增量损伤分析[J]. 工程力学, 2019, 36(03):131-140. (EICSCD核心源刊)

2017

[1] 吕大刚, 代旷宇, 于晓辉,. FRP加固非延性RC框架结构的地震易损性分析[J]. 工程力学, 2017, 34(S1):49-53,70. (EICSCD核心源刊)

2015

[1] 郑山锁, 代旷宇, 韩超伟,. 基于材料性能退化模型的钢排架结构易损性分析[J]. 振动与冲击, 2015(17):26-32. (EICSCD核心源刊)

[2] 郑山锁, 代旷宇, 孙龙飞, . 钢框架结构的地震损伤研究[J]. 地震工程学报, 2015, 37(2):290-297. (CSCD核心源刊)

专利

目前已授权发明专利4项,实用新型专利5

(1) 于晓辉;   吕大刚; 代旷宇; 张伟恒, 一种用于钢筋混凝土平面结构锈蚀的试验装置, 2017-07-27, 中国,   ZL201710621504.9(发明专利)

(2) 于晓辉;   吕大刚; 代旷宇; 乔雨蒙; 王勃,   一种基于Copula理论的主余震联合易损性分析方法, 2017-12-11, 中国,   ZL201711307738.2(发明专利)

(3) 于晓辉;   代旷宇; 吕大刚; 周洲,   一种无底座钢筋混凝土柱拟静力试验装置及方法, 2017-12-11, 中国,   ZL201721710447.3(发明专利)

(4) 吕大刚;   于晓辉; 刘亭亭; 代旷宇, 一种基于典型相关分析的多元地震破坏势评估方法, 2017-12-11, 中国, ZL201711306898.5(发明专利)

(5) 吕大刚;   刘畅; 代旷宇; 贾明明 ; 一种钢筋混凝土框架中区域性锈蚀的实验装置及实验方法, 2022-10-18, 中国,   CN202210809068.9

(6) 李胜利;   胡鹏越; 姜楠; 代旷宇;   王东炜; 郭攀; 毋光明;   王希东; 徐斌; 李攀杰;   郑鹏飞; 崔灿; 李金珂   ; CFRP-钢材组合缆索结构及利用雨水导电的电化学防腐蚀方法, 2023-08-29, 中国,   CN202111258754.3

(7) 代旷宇,   陈睿, 陈闻宇,孟维奇,郭普仁,于振云.一种抽拉式泥沙启动测量装置, 2022-8-16, 中国, ZL202221179231.X(实用新型专利)

(8) 于晓辉;   代旷宇; 田玉滨; 吕大刚;   周洲, 高度可调的柱构件实验连接装置,   2017-12-11, 中国, ZL201721712225.5(实用新型专利)

(9) 于晓辉;   吕大刚; 张伟恒; 代旷宇, 一种用于锈蚀钢筋混凝土梁的试验装置, 2017-07-27, 中国,   ZL201720918887.1(实用新型专利)

(10) 吕大刚;   于晓辉; 代旷宇; 张伟恒, 一种用于钢筋混凝土柱锈蚀的试验装置, 2017-07-27, 中国, ZL201720918867.4(实用新型专利)

 

 

著作

目前已申请软件著作权1项,已授权

(1) 郑山锁;   孙龙飞; 代旷宇; 程明超; 李楠,   型钢混凝土框架结构优化分析软件, 计算机软件著作权,   中国, 登记号:   2013SR150620, 登记时间: 2013.12.19.

其他科研成果

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