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王震宇

信息来源: 发布日期:2021-10-11

教师简介 博士,教授

姓名

王震宇

性别

政治面貌

中共党员

最高学历

博士

职称

教授

研究方向

FRP制品与海洋土木工程结构

通信地址

山东省烟台市莱山区清泉路30

邮编

264005

联系电话

15046668199

E-mail

zywang@ytu.edu.cn

学 术 兼 职

国际复材学会(IIFC)委员、ASCE会员、中国复合材料学会土木工程分会常务理事、中国土木工程学会混凝土及预应力混凝土分会常务理事、中国土木工程学会先进材料分会理事、中国工程建设标准化协会纤维复合材料与结构专业委员会第一届委员、中国土木工程学会防震减灾工程分会理事、中国标准化协会建筑物鉴定与加固委员会委员,国家自然科学基金、教育部留学回国人员科研启动基金、教育部学位中心论文抽检与评审通讯评审专家,河北省、浙江省、福建省、广东省自然科学基金函评专家,青岛理工大学校外博士生导师、桂林理工大学学报编委。

个 人 履 历

时 间

单位

经 历

2001.07~2004.02

哈尔滨工业大学土木工程学院

20016月于哈工大博士毕业留校,讲师

2004.03~2011.08

哈尔滨工业大学土木工程学院

副教授、硕士生导师

2008.01~2009.01

加拿大多伦多大学土木与环境学院

国家公派访问学者

2011.09~2021.06

哈尔滨工业大学土木工程学院

教授、博士生导师、混凝土与砌体结构学科主任

2021.07~至今

烟台大学土木工程学院

土木工程学科带头人、校学术委员会委员

曾讲授课程

主讲2门本科生核心专业课《混凝土结构原理》、《工程结构抗震设计原理》,主讲2门硕士研究生学位课《高等钢筋混凝土结构理论》、《钢筋混凝土结构非线性分析》,指导多轮本科生毕业设计、课程设计及认识实习。

教 学 成 果

坚持“学高为师、德高为范”的育人理念,2006年《混凝土结构基本原理》获黑龙江省精品课程(排2),20079月获得中国土木工程学会首届全国高等学校土木工程专业多媒体教学课件竞赛一等奖(全国108所高校的627名教师参赛,26人获一等奖),2008年评为哈尔滨工业大学优秀教师, 2011年获哈工大第四届青年教师教学基本功竞赛一等奖,2012年获得哈尔滨工业大学教学一等奖(全校共10人获此奖励),2013年获三育人先进工作者、“优秀共产党员”等荣誉称号,2014年参加沈世钊院士主讲的教育部精品视频公开课《土木工程导论》的录制工作,2016年获学院“突出贡献奖”,2017年负责研究生精品课的建设,2018年获评哈尔滨工业大学金牌授课教师与教学突出贡献奖。入职烟台大学后,2021年获得山东省研究生教育质量提升计划优质课程(排2),2024年获得山东省优质研究生课程(负责),2025年获评烟台大学优秀教师。

科 研 项 目

1. 配置连续纤维箍筋的全复材筋混凝土梁受剪机理与设计方法研究(52278222),国家自然科学基金面上项目,2023.01-2026.1254万(直接经费),负责。

2. 纤维增强复合材料制品及其在海洋土木工程中的应用,烟台大学科研启动基金,2021.10-2025.07100万,负责。

3. 近海环境下配置新型FRP箍筋混凝土梁的受剪性能及设计方法(ZR2022ME007),山东省自然科学基金面上项目,2023.01-2025.1210万,负责。

4. FRP加固非延性钢筋混凝土框架结构的地震易损性分析与性能设计方法(51478143),国家自然科学基金面上项目,2015.01-2018.1280万,负责。

5. 纤维增强复合材料性能提升与建筑高效利用的结构设计理论及方法研究(2017YFC0703001-02),国家重点研发计划子课题,2017.07-2020.0635.5万,子课题负责。

6. FRP加固钢筋混凝土框架填充墙结构的整体抗震性能试验、分析与设计方法(51278150),国家自然科学基金面上项目,2013.01-2016.1280万,负责。

7. FRP及其增强结构在极端服役条件下的性能与控制方法研究 (2012CB026203)973计划项目,2012.01-2016.10100万元/580万元,子课题负责。

8. 非延性钢筋混凝土框架结构的碳纤维抗震加固与设计方法(51078109),国家自然科学基金面上项目,2011.01-2013.1238万,负责。

9. 在研横向课题8项,到账经费共124万元。

个人荣誉

1. 入选2023年全球前2%顶尖科学家“年度科学影响力”榜单,2023

2. 高强混凝土叠合柱结构设计方法,黑龙江省科技进步二等奖,2002.08

3. 既有建筑再生改造安全性提升关键技术创新与应用,华夏建设科学技术奖,2019.01

4. 预制混凝土剪力墙结构在住宅产业化中应用的系统研究,黑龙江省科技进步三等奖,2010.09

专著、论文、专利等

出版专著:

1. 王震宇, 王代玉. 基于OpenSees的钢筋混凝土结构非线性分析[M]. 哈尔滨工业大学出版社,202311月第二次印刷. 十三五国家重点图书出版规划项目、黑龙江省精品图书)

2. 王震宇, 王代玉, 马财龙, 潘晓兰. FRP加固钢筋混凝土框架结构抗震性能与设计方法[M]. 中国建筑工业出版社,20266.

发表论文(近十年):

1. Yanbin Gong, Tianyou Wang, Ye Yuan, Zhenyu Wang*,   Yongbo Shao. Size effect on the shear failure of concrete beams reinforced   with GFRP bars and closed-type winding GFRP stirrups[J]. Engineering   Structures. 2025, Vol.340: 120684

2. Jingkai Chen, Shiwei Lu, Zhenyu   Wang*. Seismic performance of square concrete columns reinforced   with longitudinal glass fiber reinforced polymer bars and innovative   closed-type winding ties[J]. Journal of Building Engineering. 2025, Vol.116: 114663

3. Zhenyu Wang, Muhammad Tahir*, Biao Hu, Muhammad Atasham ul haq. Axial   compressive performance of concrete columns reinforced with GFRP bars and   confined using CFRP strip ties under monotonic and cyclic loading[J]. Structures. 2025, Vol.80: 109710

4. Yanbin Gong, Tianyou Wang, Ye Yuan, Zhenyu Wang*,   Yongbo Shao. The shear-tensile strength of   closed-type winding GFRP stirrups[J]. Advances in Structural Engineering.   2025, Vol.28(14): 2636-2651

5. Yuanliang Xiong, Shiquan Wang, Liguo Ma*, Tingcong Wang,   Manling Zhou, Zhongshuai Hu*, Zhenyu Wang*. Unveiling   the Influence of Activators on Stability and Pore Features of Foamed   Concrete[J]. Materials. 2025, Vol.18(14): 3320.

6. 皮圆圆, 苑金宵, 陈传向, 卢世伟, 王震宇*FRP布与连续纤维复材箍筋双重约束矩形混凝土柱轴压试验与本构模型[J/OL].工程力学. 网络首发,   https://link.cnki.net/urlid/11.2595.o3.20260212.1825.002

7. 公衍斌, 王震宇*, 邵永波, 常志远. 矩形截面连续纤维GFRP箍筋弯曲段受拉性能[J]. 复合材料学报,   2025, Vol.42(6): 3131-3141.

8. 苑金宵, 皮圆圆, 王震宇*.机械刻槽肋GFRP筋与混凝土的粘结性能[J/OL].复合材料学报. 2025网络首发. https://doi.org/10.13801/j.cnki.fhclxb.20250806.004

9. Jialing Ou, Yongbo Shao*, Zhenyu Wang. Flexural   behavior prediction of CFRP-strengthened circular CFST members via finite   element method and artificial neural networks[J]. Structures. 2025, Vol.80:   110089

10.Shiwei Lu, Qiuzhen   Lv, Junlong Yang, Fangduo Xiao, Jizhong Wang, Licheng Wang, Zhenyu Wang*.   Compressive performance of double steel tube confined geopolymer concrete   columns incorporated with waste rubber[J]. Structures.   2025, Vol.84: 110960

11.Ma Cailong*, Deng   Zhihong, Zhou Lina, Wang Zhenyu, Xing Guohua. Shear capacity model of   RC beams based on MCMC approach and reliability analysis [J]. Advances in   Structural Engineering, 2025, 28(8) 1363–1384.

12.Furui Zhu, Mengjie   Zhang, Dawei Zhang, Daiyu Wang*, Zhenyu Wang, Yaodong Zhang. Seismic   behavior of FRP-retrofitted rectangular RC columns subjected to oblique   horizontal earthquake actions[J]. Construction and Building Materials. 2025,   482: 141737

13.Ma Cailong*, Wang   Chuancang, Ning Chaolie, Wang Zhenyu. Examination of the beam   eccentricity on shear capacity of RC eccentric beam-column joints [J].   Advances in Structural Engineering, 2024, 27(13).   DOI:10.1177/13694332241267903.

14.Yiqun Man, Tianyou Wang, Zhenyu Wang,   Daiyu Wang*. Study on the bond performance of glass   fiber reinforced polymer bars considering the relative position between   longitudinal bars and stirrups. Journal of Building Engineering. 2023,   71:106478

15.Molan Pan, Daiyu Wang*, Zhenyu Wang,   Tao Yu. Experimental investigation on eccentric   compression behavior of FRP-confined concrete-encased cross-shaped steel   columns [J]. Composite Structures. 2023. 303: 116347

16.Molan Pan, Daiyu Wang*, Weichang Pei, Zhenyu   Wang. Monotonic and cyclic compression behavior   of axially loaded FRP-confined concrete-encased cross-shaped steel columns[J].   Composite Structures. 2023, 307: 116632

17.Yuan Y, Wang Z, Wang D. Shear behavior of concrete beams   reinforced with closed-type winding glass fiber-reinforced polymer stirrups   [J]. Advances in Structural Engineering. 2022. Vol.25(12): 2577-2589.

18.Molan Pan, Daiyu Wang*, Weichang Pei, Zhenyu   Wang. Monotonic and cyclic compression behavior   of axially loaded FRP-confined concrete-encased cross-shaped steel columns   [J]. Composite Structures. 2022, 116632.

19.Chuanxiang Chen, Zhenyu   Wang*, Wei Zhou. Experimental   investigation on axial compressive behavior of FRP reinforced concrete   columns confined with external FRP jackets [J]. Advances in Structural Engineering. 2022,   Vol.25(1)14-27.

20.Tahir, M., Isleem, H. F., & Wang, Z.   Axial compressive stress–strain model for hybrid-reinforced concrete columns   with FRP ties. Proceedings of the Institution of Civil Engineers-Structures   and Buildings, 2022, Vol.175(3), 215-229.

21.原野, 王震宇, 王代玉*.   配置新型封闭缠绕式GFRP箍筋混凝土梁的受剪性能试验[J].   复合材料学报, 2022, 39(11): 5074-5085.

22.Weichang Pei, Daiyu Wang,   Xuan Wang and Zhenyu Wang*. Axial   monotonic and cyclic compressive behavior of square GFRP tube–confined   steel-reinforced concrete composite columns [J]. Advances in Structural   Engineering. 2021, Vol.24(1):25-41.

23.Tahir, M., Wang, Z., Wei, Z., &   Jameel, R. Numerical and analytical modeling of FRP-reinforced concrete   columns subjected to compression loading[J]. Australian Journal of Structural   Engineering, 2021, Vol.22(2): 96-109.

24.Cai Z K, Yuan W, Wang Z,   et al. Seismic behavior of   precast segmental bridge columns reinforced with hybrid FRP-steel bars[J].   Engineering Structures, 2021, 228:111484.

25.蔡忠奎, 王震宇, 王代玉.   面向“一带一路”的土木工程留学生培养策略[J]. 教育教学论坛, 2021 (32):172-176.

26.Le Huang, Tao Yu*, Zhenyu Wang* and Shishun Zhang.   Compressive behaviour of slender FRP-confined concrete-encased cross-shaped   steel columns [J].   Construction and Building Materials. 2020, 258:120356.

27.Haytham F. Isleem, Muhammad Tahir, Zhenyu   Wang*. Axial stress–strain model developed for rectangular RC columns   confined with FRP wraps and anchors[J]. Structures. 2020, Vol. 23: 779–788

28.蔡忠奎, 王震宇, 苑溦. 高强钢筋增强节段拼装桥墩抗震性能分析[J]. 南京工业大学学报(自然科学版), 2020, Vol.42(3):   312-318.

29.Henglei Dong, Wei Zhou, Zhenyu   Wang*. Flexural performance   of concrete beams reinforced with FRP bars grouted in corrugated sleeves [J].   Composite structures, 2019, 215:49-59.

30.Ye Yuan, Zhenyu Wang*. Shear behavior   of large-scale concrete beams reinforced with CFRP bars and handmade strip   stirrups. [J]. Composite structures, 2019, 227:111253.

31.Zhongkui Cai, Zhenyu Wang*, Tony Y.   Yang. Cyclic load tests on precast segmental bridge columns with both steel   and basalt FRP reinforcement [J]. Journal of Composites for Construction, ASCE. 2019,   23(3): 04019014.

32.Cailong Ma, Daiyu Wang, Zhenyu   Wang*. Seismic performance of   large-scale RC eccentric corner beam-column-slab joints strengthened with   CFRP systems [J]. Journal   of Composites for Construction, ASCE. 2019, 23(3): 04019014.

33.Muhammad Tahir, Zhenyu   Wang*, Kanwar Majid Ali. Axial   compressive behavior of square concrete columns confined with CFRP strip ties   using wet lay-up technique[J]. Construction and Building Materials. 2019,   Vol. 200: 282–292

34.Muhammad Tahir, Zhenyu Wang*, Kanwar   Majid Ali, Haytham F. Isleem. Shear behavior of concrete beams reinforced   with CFRP sheet strip stirrups using wet-layup technique. Structures [J]. 2019, 22:43-52.

35.HengLei Dong, Daiyu Wang, Zhenyu Wang* and Yunlong   Sun. Axial compressive behavior of square concrete columns reinforced with   innovative closed-type winding GFRP stirrups [J]. Composite Structures, 2018, 192: 115-125.

36.Daiyu Wang, Zhenyu Wang*, Tao Yu and   Hui Li. Seismic performance of CFRP-retrofitted large-scale rectangular RC   columns under lateral loading in different directions [J]. Composite Structures, 2018, 192:   115-125.

37.Haytham F. Isleem, Daiyu   Wang, Zhenyu Wang*. Modeling   the axial compressive stress-strain behavior of CFRP-confined rectangular RC   columns under monotonic and cyclic loading [J]. Composite Structures, 2018, 185: 229-240.

38.Isleem   HF, Wang   Z.Y.*, Wang DY, Smith ST. Monotonic and cyclic axial compressive behavior   of CFRP-confined rectangular RC columns [J]. Journal of Composites for Construction, ASCE, 2018,   22(4): 0000860.  

39.Zhongkui Cai, Zhenyu Wang*, T. Y. Yang.   Experimental testing and modeling of precast segmental bridge columns with   hybrid normal- and high-strength steel rebars [J]. Construction and Building Materials. 2018, 166:   945-955.

40.Zhong-kui Cai, Zheng zhou, Zhenyu Wang*.   Influencing factors of residual drifts of precast segmental bridge columns   with energy dissipation bars [J]. Advances in Structural Engineering. 2018, 1-15.

41.Jia-Qi Yang, Scott T. Smith, Zhenyu Wang,   Yee Yan Lim. Numerical simulation of FRP-strengthened RC slabs anchored with   FRP anchors[J]. Construction and Building Materials. 2018. 172:725-750.

42.Xiaolan Pan, Jiachuan Yan, Zhenyu Wang*   and Chaoying Zou. Numerical modelling and seismic evaluation of masonry   infilled RC frames retrofitted with CFRP wraps [J]. Advances in Structural Engineering. 2018, 21(10):   1526-1541.

43.Haytham F. Isleem, Daiyu   Wang, Zhenyu Wang*. Axial   stress-strain model for square concrete columns internally confined with GFRP   hoops [J]. Magazine of   Concrete Research, 2018, 70(20): 1064-1079.

44.Xiaolan Pan, Zhi Zheng, Zhenyu   Wang*. A multi-mode method   for estimation of floor response spectra [J]. Journal of Earthquake   Engineering. 2018, Vol.22(6): 1111-1136.

45.Le Huang, Shishun Zhang*, Tao Yu* and Z. Y.   Wang. Compressive behaviour of large rupture strain FRP-confined   concrete-encased steel columns [J]. Construction and Building Materials.   2018, 183: 513-522.

46.王洋, 董恒磊, 王震宇*. GFRP筋混凝土梁受弯性能试验 [J]. 哈尔滨工业大学学报. 2018, Vol.50(12): 23-30.

47.Zhongkui Cai, Daiyu Wang, Zhenyu Wang*.   Full-scale seismic testing of concrete building columns reinforced with both   steel and CFRP bars [J].   Composite Structures, 2017, 178: 195-209.

48.Daiyu Wang, Zhenyu Wang*, Scott Smith,   and Tao yu. Seismic Performance of CFRP-Confined Circular High-Strength   Concrete Columns with High Axial Compression Ratio [J]. Construction and   Building Materials. 2017, 134: 91-103.

49.Daiyu Wang, Zhenyu Wang*, Tao yu, and   Hui Li. Shake Table Tests of Large-Scale Substandard RC Frames Retrofitted   with CFRP Wraps before Earthquakes [J]. Journal of Composites for   Construction, ASCE. 2017, 21(1): 04016062:1-15.

50.Cailong Ma, Daiyu Wang, Zhenyu Wang*.   Seismic retrofitting of full   scale RC interior beam –column-slab subassemblies with CFRP wraps [J].   Composite Structures. 2017, Vol.159: 397-409.

51.Daiyu Wang, Le Huang, Tao Yu and Zhenyu   Wang*. Seismic Performance of CFRP-Retrofitted Large-Scale Square RC   Columns with High Axial Compression Ratio [J]. Journal of Composites for   Construction, ASCE. 2017, 21(5): 04017031.

52.Haytham F. Isleem, Daiyu   Wang, Zhenyu Wang*. Axial   stress-strain model for square concrete columns internally confined with GFRP   hoops. Magazine of Concrete Research, 2017. (Doi: 10.1680/jmacr.17.00122)

53.Haytham F. Isleem, Daiyu   Wang, Zhenyu Wang*. A new   numerical model for polymer-confined rectangular concrete columns [J]. Proceedings of the Institution of   Civil Engineers-Structures and Buildings, 2017. (Doi: 10.1680/jstbu.17.00103)

54.Le Huang, Tao Yu, Shi-Shun Zhang and Zhen-Yu   Wang. FRP-confined concrete-encased cross-shaped steel columns: Concept   and behaviour [J]. Engineering structures. 2017,12. Vol.152: 348-358.

55.Huawen Zhang, Scott T. Smith, Rebecca J.   Gravina and Zhenyu Wang. Modelling of FRP-concrete bonded interfaces   containing FRP anchors [J]. Construction and Building Materials. 2017,   139:394-402.

56.Xiaolan Pan, Zhi Zheng, Zhenyu   Wang*. Estimation of floor   response spectra using modified modal pushover analysis [J]. Soil Dynamics   and Earthquake Engineering. 2017, 92: 472-487.

57.Xiaolan Pan, Zhi Zheng and Zhenyu Wang*.   Amplification factors for design of non-structural components considering the   near-fault pulse-like ground motions [J]. Bulletin of Earthquake   Engineering. 2017, Vol.15(4): 1519-1541.

58.D. Y. Wang, Z. Y. Wang*, S. T. Smith,   and T. Yu. Size effect on axial   stress-strain behavior of CFRP-confined square concrete columns [J].   Construction and Building Materials. 2016, 118:116-126.

59.Zhongkui Cai, Daiyu Wang, Scott T. Smith, and Zhenyu   Wang*. Experimental investigation on the seismic performance of   GFRP-wrapped thin-walled steel tube confined RC columns [J]. Engineering   structures. 2016, Vol.110: 269-280.

60.Yuanyuan Xia, Guijin Xian*, Zhenyu Wang,   and Hui Li. Static and Cyclic Compressive Properties of Self-Compacting   Concrete-Filled Flax Fiber–Reinforced Polymer Tubes [J]. Journal of   Composites for Construction, ASCE. 2016. Vol.20(6), 04016046:1-10

61.王震宇*, 马财龙, 乔鑫, 王代玉.CFRP加固RC--柱框架中节点抗震性能试验研究 [J].   建筑结构学报. 2016. Vol.37(5):   226-232.

62.王震宇*, 王旭阳, 蔡忠奎. 复材筋与钢筋混合配筋混凝土柱的抗震性能分析 [J]. 工业建筑(期刊特邀文章). 2016, Vol.46(5):1-7.

专利:

1. Precast segmental pire reinforced with both FRP bars and   conventional steel bars, PCT专利,2024.03.12

2. Precast segmental pier reinforced with both   conventional steel bars and high-strength steel bars, PCT专利,2022.08.30

3. 一种装配式剪力墙单元,实用新型专利,2021.11.09

4. 一种装配式钢筋混凝土柱单元与节点之间的连接装置,实用新型专利,2021.11.09

5. 一种装配式钢筋混凝土梁柱节点,实用新型专利,2021.11.05

6. 一种混合配置FRP筋与普通钢筋的拼装混凝土墩体系,实用新型专利,2018.12.25

指 导 研 究 生

培养毕业博士13人、硕士65人,其中5名博士和2名硕士获得研究生国家奖学金,目前指导在读博士生1人、硕士生6人。


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