杨明
副教授
办公室:705
邮箱:mingyang@seu.edu.cn
黑龙江省哈尔滨人,1980年3月生,博士、副教授、博导。所属团队:长大桥结构及建管养研发中心。联系电话:18115160030
教育背景

教育经历

2004.03-2008.07 哈尔滨工业大学交通学院桥梁与隧道工程系,博士,导师:黄侨教授

2001.09-2004.01 哈尔滨工业大学交通学院桥梁与隧道工程系,硕士,导师:黄侨教授

1997.09-2001.07 哈尔滨工业大学交通学院桥梁与隧道工程系,学士


工作经历

工作经历

2012.04-至今      东南大学交通学院桥梁系,副教授

2010.12-2012.03     东南大学交通学院桥梁系,讲师

2008.10-2010.11    东南大学交通学院桥梁系,博士后,导师:叶见曙教授

2019.3-2024.6      东南大学交通学院桥梁系,副主任

2013.12-至今      东南大学交通学院桥梁系,博士生导师

2012.12-至今        东南大学交通学院桥梁系,硕士生导师

2013.09-2014.09    美国匹兹堡大学访问学者


研究领域

主要研究方向

1. 桥梁工程

2. 桥梁结构设计理论

3. 桥梁组合结构

4. 高性能混凝土材料


科研项目

主持和参与的科研课题

1.  国家自然科学基金:交通土建工程中基于有机半导体g-C3N4 的光催化降解NOx应用基础研究(51208102),主持。

2.  江苏省自然科学基金面上项目:定向钢纤维UHPC 纤维定向机理、材料力学性能及UHPC-NC组合梁基本力学性能研究(BK20221472),主持。

3. 教育部博士后科学基金:波纹钢腹板预弯组合梁弯曲力学性能研究(20100471368),主持。

4.“六大人才高峰”第十二批:圆环腹梁力学性能研究(JY-003),主持。

5.交通部西部交通建设科技项目:大中跨径混凝土桥梁预应力检测技术研究(200538181215),参与,排名2

6.行业标准编写:《公路桥梁加固质量检验评定标准》,参与,排名2

7.国家自然科学基金面上项目:波纹钢腹板预弯槽型梁静力学性能研究(51078078),参与,排名2

8.863项目:大跨径预应力混凝土连续箱梁桥长期下挠和开裂的控制研究(2007AA11Z106),参与,排名5

9.吉林省交通厅科技项目:钢-混凝土组合连续梁桥结构力学性能分析及设计方法研究,参与,排名2

10.横向课题:宁波机场南延线工程槽型梁力学特性研究,主持。

11.横向课题:波形钢腹板预应力组合槽型梁力学性能和施工工艺研究,主持。


发明专利

已授权发明专利(第一发明人):


1.一种波纹钢腹板预弯组合梁及其施工方法. 200910026496.9. 2010.12.29

2.一种波纹钢腹板预弯组合槽形梁及其制备方法. 200910035830.7. 2011.02.09

3.一种圆管腹梁及其制备方法. 201410004371.7. 2016.03.16.

4.一种改善抗风性能的分离式桥梁结构及其改善方法. 201810497198.7. 2020.01.03

5.一种改善钢箱梁疲劳性能的可替换构件及施工方法. 201711347019.3. 2020.05.05

6.一种横向预应力体系及其施工方法. 201810313954.6. 2020.08.11

7.一种改善大跨径桥梁抗风性能的主动控制系统及控制方法. 201810497199.1. 2020.08.18

8.一种新型桥梁加固体系及其施工方法. 201910376365.7. 2021.04.30

9.一种扭转试验台.202011320895.9. 2022.03.11

10.钢混组合梁负弯矩区的定向纤维UHPC桥面板及制备施工方.202210456846.0. 2024.03.08

11.一种各向异性混杂纤维增强水泥基复合材料及制备方法. 202211039812.8. 2024.03.22

12.基于PBS系统的预弯组合梁Abaqus快速建模方法. 202111538689.X. 2024.11.05

13.一种预弯组合梁设计验算系统及使用方法.202111301562.6. 2024.11.19

14.采用UHPC装配板的大跨径装配连续桩板结构及装配施工方法.202410545329.X.2025.10.03

15.一种基于Excel的波形钢腹板组合槽型梁Abaqus参数化建模及分析方法. 202010715536.7.  2025.11.07






学术著作
学术论文

期刊论文:

第一作者或通讯作者发表论文80余篇,其中SCI检索40篇(JCR 120篇),累计影响因子150+ EI检索10篇。


1.   Yang Ming, Huang Qiao, Wang De-jun. Equivalent Bending Stiffness of Simply Supported Preflex Beam Bridge with Variable Cross-Section. Journal of Harbin Institute of Technology. 2010,17(1):13-17. EI

2.   Huang Qiao, Yang Ming. A Nonlinear FEA Method of Calculation for composite beam bridge. Journal of Natural Science of Heilongjiang University. 2008,25(2):149-154. 核心

3.   杨明,孙筠,张树仁,黄侨. 波纹钢腹板体外预应力箱梁桥的发展与展望. 公路交通科技. 2006,23(12):72-75. 核心

4.   黄侨,杨明. 预弯梁收缩、徐变计算方法解析. 公路交通科技应用技术版. 2005,(7):95-99. 核心

5.   杨明,黄侨. 预弯组合梁收缩、徐变计算方法解析. 公路交通科技应用技术版. 2005,(8):119-121. 核心

6.   黄侨,杨明. 变截面预弯组合简支梁桥挠度计算方法研究. 北京交通大学学报. 2006,30(增刊)(130):252-257. 核心

7.   张树仁,杨明. 高强混凝土和中高强钢筋在桥梁结构中的应用. 公路交通科技应用技术版. 2005,(2):124-125. 核心

8.   黄侨,杨大伟,杨明. 预应力混凝土桥梁的全寿命分析理念研究. 中国公路学会桥梁和结构工程分会2004年全国桥梁学术会议. 昆明,2004():922-925.

9.   黄侨,杨明. 预弯组合梁桥收缩、徐变特性的理论研究. 桥梁. 2006,(1)

10.  杨明,黄侨,陈晓强. 双套拱斜拉桥拱塔竖转提升测控技术研究. 桥梁建设. 2010,(4):32-36. 核心

11.  Ming Yang, Qiao Huang. A nonlinear FEA method for Preflex Beam. International Symposium on Maintenance New Technologies for Long-Span Bridges. 南京,2010():39-44. 会议

12.  杨明,黄侨,荣学亮. 混凝土肋式转向装置力学性能研究. 哈尔滨工业大学学报. 2011,43(10):119-123. EI

13.  YANG Ming, FENG Jianqing, HUANG Qiao. Influence of mechanical milling on photocatalytic activity of g-C3N4 prepared by heating melamine. Journal of Wuhan University of Technology (Materials Science). 2010,25(6):914-918. IF=0.3

14.  杨明,黄侨,叶见曙,张树仁. 波纹钢腹板体外预应力箱梁桥钢制块式转向装置力学性能研究. 东南大学学报自然科学版. 2011,41(1):174-180. EI

15.  Ming Yang, Xiaoqi Jin, Qiao Huang. Electrochemical glucose oxidation on dendritic cuprous oxide film fabricated by PSS-assisted electrochemical deposition. Solid State Sciences. 2011,13(2):427-433. IF=1.675

16.  Ming Yang, Xiaoqi Jin, Qiao Huang. Facile synthesis of vaterite core-shell microspheres. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2011,374(1-3):102-107. IF=2.1

17.  Ming Yang, Shuang Gao, Qiao Huang. Facile synthesis of nanocrystalline Cr2O3 thin film. Journal of Wuhan University of Technology (Materials Science). 2011,26(6):1032-1035. IF=0.3

18.  Ming Yang, Qiao Huang, Xiaoqi Jin. Facile synthesis of the assembled hexagonal vaterite plates and the application as red phosphor doped with Eu3+ ions. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2011,386(1-3):87-91. IF=2.1

19.  杨明,黄侨,马文刚,黄志伟. 波纹钢腹板体外预应力箱梁混凝土块式转向装置力学性能研究. 工程力学. 2012,29(2):185-191. EI

20.  Ming Yang, Qiao Huang, Xiaoqi Jin. Microwave synthesis of porous ZnGaNO solid solution for improved visible light photocatalytic performance. Solid State Sciences. 2012,14(4):465-470. IF=1.675

21.  Ming Yang, Qiao Huang, Xiaoqi Jin. ZnGaNO solid solution–C3N4 composite for improved visible light photocatalytic performence. Materials Science and Engineering B. 2012,177(8):600-605. IF=1.676

22.  Yang Ming*, Jin Xiao-qi. Facile synthesis of Zn2GeO4 nanorods toward improved photocatalytic reduction of CO2 into renewable hydrocarbon fuel. J. Cent. South Univ. 2014,21(7):2838-2842. IF=0.52

23.  Yang Ming*, Jin Xiao-qi. Visible Light-induced Cr-doped SrTiO3-g-C3N4 Composite for Improved Photocatalytic Performance. Journal of Wuhan University of Technology-Mater. Sci. Ed. 2014,29(6):1111-1116. IF=0.399

24.  Yang Ming*, Jin Xiao-qi. Synthesis of BiVO4–g-C3N4 composite photocatalyst with improved visible light-induced photocatalytic activity. Journal of Wuhan University of Technology-Mater. Sci. Ed. 2015,30(2):217-222. IF=0.399

25.  Yang Ming*, Jin Xiao-qi. Improvement of visible light-induced photocatalytic performance by Cr-doped SrTiO3-carbon nitride intercalation compound (CNIC) composite. J. Cent. South Univ. 2016,23(2):310-316. IF=0.562

26.  Yang Ming*,Wan Li-juan,Jin Xiao-qi. Synthesis of ZnGaNO solid solution–carbon nitride intercalation compound composite for improved visible light photocatalytic activity. J. Cent. South Univ. 2017,24(2):276-283. IF=0.562

27.  Shan Chang, Ming Yang*, Yun Sun, Kui Liu. Calculation method of early-age crack width in reinforced concrete bridge through a nonlinear FEA model. KSCE Journal of Civil Engineering. 2019,23(7):3088-3096. IF=2.2

28.  Shan Chang, Ming Yang*, Zhang Chen, Linjie Tian, Xuzhao Lu. Bending behavior of steel ring-web beam. Journal of Constructional Steel Research. 2019,162(11):105742. IF=4.35

29.  田林杰,鞠秀颖,李喆, 常山,杨明*. 基于修正Rayleigh-Ritz法的工字钢梁预弯阶段侧向失稳分析. 东南大学学报(自然科学版). 2019,49(4):679-687. EI

30.  Shan Chang, Ming Yang*, Linjie Tian, Pengfei Yuan. Bending behavior of steel octagon-web beam. Advances in Structural Engineering. 2020,23(12):2694-2708. IF=2.6

31.  Tian Lin-jie,Li Zhe,Yang Ming*,Chang Sahn,Qian Jian-qi. Lateral torsional buckling strength of steel I-beams within preflexed beams in pre-bending stage. Advanced steel construction. 2020,16(1):47-54. IF=1.7

32.  Linjie Tian,Ming Yang*, Shan Chang, Jianqi Qian. Effects of a new method on stress amplitude and fatigue life of orthotropic steel box girder. KSCE Journal of Civil Engineering. 2020,24(6):1858-1867. IF=2.2

33.  田林杰,杨明*,常山,卢尧,谢文涛,钱建奇,李雅琦. 采用支撑杆件提高钢箱梁正交异性板疲劳性能研究. 建筑结构学报. 2021,42(11):97-104. EI

34.  卢尧,鞠秀颖,杨明*,常山,袁鹏飞,田林杰. 单肢转双肢薄壁高墩桥梁的抗震性能. 深圳大学学报理工版. 2020,37(2):151-157. 核心

35.  常山,杨明*,田林杰,袁鹏飞. 正八边形钢板腹梁弯曲性能试验研究. 特种结构. 2020,36(6):1-6. 核心

36.  Ziye Yang, Ming Yang*, Xueliang Rong, Linjie Tian. Theoretical and Numerical Study on Dynamic Characteristics of Composite Trough Girder with Corrugated Steel Webs. J. Bridge Eng. 2021,26(3):04021008. IF=3.6

37.  Ming Yang*, Linjie Tian, Yan Yuan, Ziye Yang. The study on composite trough beam with corrugated steel web wrapped with steel plate: Experiment and bending properties. Journal of Constructional Steel Research. 2021,185(10):106853. IF=4.35

38.  钱建奇,张海龙,杨明*,黄侨,田林杰. 预弯组合梁截面抗弯承载力计算方法的再研究. 哈尔滨工业大学学报. 2022,54(3):65-73. EI

39.  常山,张海龙,杨明*,陈章,芦旭朝. 节段拼装钢结构主梁弯曲性能试验研究. 工业建筑. 2023,53(6):122-128.

40.  Yongming Xiong, Ming Yang*, Yuyang Zhang, Heng Shi, Jiankai Zhao, Yan Yuan. Study on the electromagnetic field aligning steel fibres in UHPC reinforced beams: Effect, mechanism and flexural behavior. Cement and Concrete Composites. 2023,143(10):105251. IF=14.4

41.  Yan Yuan, Ming Yang*, Xiangwen Shang, Yongming Xiong, Yuyang Zhang. Predicting the compressive strength of UHPC with coarse aggregates in the context of machine learning. Case Studies in Construction Materials. 2023,19(12):e02627. IF=6.9

42.  Yongming Xiong, Ming Yang*, Jiankai Zhao, Yan Yuan, Yan Liu, Heng Shi. Transverse isotropic compression behavior of aligned steel fiber UHPC produced by electromagnetic field. Construction and Building Materials. 2024,411(1):134579. IF=8.9

43.  Yongming Xiong, Ming Yang*, Heng Shi, Jiankai Zhao, Yan Yuan, Xiaoyue Guo. Axial compression behavior of concrete-filled prefabricated aligned steel fiber UHPC tubes. Journal of Building Engineering. 2024,89(7):109353. IF=8.1

44.  Yongming Xiong, Ming Yang*, Linjie Tian, Ziye Yang. Forced Vibration Equation and Vehicle–Bridge Coupling Analysis of Composite Trough Girder with Corrugated Steel Webs. KSCE Journal of Civil Engineering. 2024,28(7):2836-2846. IF=2.2

45.  Yongming Xiong, Ming Yang*, Yan Yuan, Yan Liu, Jiankai Zhao, Heng Shi. Anisotropic Behavior in the Flexural Properties of Aligned Steel Fiber UHPC Produced by Electromagnetic Field. Journal of Building Engineering. 2024,94(10):109854. IF=8.1

46.  Yan Yuan, Ming Yang*, Fei Wang, Yuliang Cai, and Wentao Xie. Mechanical Properties of Prestressed Concrete Trough Girder: Full-Scale Experiment and Nonlinear FE Analysis. KSCE Journal of Civil Engineering. 2024,28(12):5728-5740. IF=2.2

47.  Yongming Xiong, Ming Yang*, Yekai Zhou, Ziyu Wang, Yan Yuan, YuYang Zhang. Optimizing Aligned Steel Fiber Distribution in UHPC: Unraveling the Electromagnetic Influence of Steel Reinforcements. Construction and Building Materials. 2024,452(11):139010. IF=8.9

48.  Ming Yang, Yongming Xiong, Xiangwen Shang, Ziyu Wang, Jiankai Zhao, Yan Liu, Yan Yuan. Effect of steel fibers on the stress–strain behaviour of aligned steel fiber ultra-high performance concrete under uniaxial compression. Journal of Building Engineering. 2024,98(12):111092. IF=8.1

49.  Xiangwen Shang, Ming Yang*, Yongming Xiong, Yan Yuan, Yan Liu, Yekai Zhou, Ziyu Wang. Effect of electromagnetically aligned steel fibers on tensile properties of hybrid steel-macro basalt fiber UHPC. Case Studies in Construction Materials. 2024,21(12):e03989. IF=6.9

50.  Ziyu Wang, Ming Yang*, Tao Ma, Yekai Zhou, Jiankai Zhao, Yongming Xiong, Yan Liu. A Finite Element modeling and analysis method for Ultra-High Performance Concrete. Construction and Building Materials. 2024,456(12):139258. IF=8.9

51.  杨明*,郭晓月,刘志,黄侨,宋恒宇,畅卫杰,林阳子. LNG油罐车火灾下的大跨径悬索桥结构热力响应. 哈尔滨工业大学学报. 2025,57(3):34-45. EI

52.  Yan Yuan, Ming Yang*, Yan Liu, Ziyu Wang, Xiangwen Shang, Peiran Huang. Mechanical performance of prestressed CAUHPC-NC composite beams. Case Studies in Construction Materials.2025,23(12):e05199. IF=6.9

53.  Yan Liu,Ming Yang*,Xiangwen Shang ,Yongming Xiong,Yan Yuan. Elastic torsional mechanical properties of ortho-octagonal steel plate web beam. Advances in Structural Engineering.2026,29(9):17721789. IF=2.46

54.  Yan Liu, Ming Yang*, Xiangwen Shang, Peiran Huang, Ziyu Wang, Shuai Lin. Magnetic field alignment of L-shaped steel fibers improves the anisotropic compressive behavior of ASF-UHPC. Construction and Building Materials.2025,500(11):144249  . IF=8.9

55.  Ming Yang, Yekai Zhou, Ziyu Wang, Yan Liu, Peiran Huang, Shuai Lin . Mechanical performance study on full-field oriented UHPC simply supported beams based on principal tensile stress trajectories. Journal of Building Engineering.2026,120(2):115450. IF=8.1

56.  Shuai Lin , Ming Yang* , Yuyang Zhang , Yan Liu , Yekai Zhou , Ziyu Wang ,Peiran Huang. A novel method for three-dimensional reconstruction and fiber orientation evaluation of ultra-high performance concrete materials. Journal of Building Engineering.2026,125(5):116175. IF=8.1

57.  Yan Liu, Ming Yang*, Xiangwen Shang, Ziyu Wang, Yekai Zhou, Peiran Huang, Shuai Lin . Alignment mechanism of steel fibers in fresh UHPC slurry driven by magnetic field: modeling and experiments. Journal of Building Engineering.2026,128(6):116453. IF=8.1

58.  Yan Liu, Ming Yang*, Xiangwen Shang, Yekai Zhou, Shuai Lin, Ziyu Wang, Peiran Huang. Improvement effect of magnetic field aligned L-shaped steel fibers on the anisotropy of ASF-UHPC flexural behavior. Journal of Building Engineering.2026,129(7):116778. IF=8.1

59.  Yan Liu, Ming Yang*, Yongming Xiong, Xuping Ji, Ziyu Wang, Fangyu Han, Shuai Lin. Experimental and numerical study on the flexural behavior of UHPC–NC composite beams with electromagnetically aligned steel fibers. Structures.2026,90(8):112494. IF=4.9

60.  Ming Yang, Yan Liu, Xuping Ji, Fangyu Han, Peiran Huang,Shuai Lin, Ziyu Wang, Yekai Zhou. Effect of L-shaped fiber arrangement on the uniaxial tensile stress-strain relationship of ultra-high-performance concrete. Case Studies in Construction Materials.2026,25(12):e06337. IF=6.9




荣誉奖项

奖励及荣誉

科研奖励

2010海南省交通科技攻关年奖,一等奖

2012年建设部中国城市规划设计研究院CAUPD杯华夏建设科学技术奖,一等奖

2013年北京市科技进步奖,二等奖

2019年江苏省科学进步奖,三等奖

2023年中国交通运输协会科学技术奖,二等奖

2023年浙江省公路学会2021-2022年度科学技术奖,一等奖

2023年中国公路学会科学技术奖,二等奖



指导学生竞赛获奖

2023第十八届全国大学生交通运输科技大赛,国家级一等奖

2023第八届江苏大学生交通科技大赛,省级一等

2022第四届全国大学生“茅以升公益桥-小桥工程”设计大赛,国家级二等奖

2019第三届全国大学生“茅以升公益桥-小桥工程”设计大赛,国家级一等奖

2017首届全国大学生“茅以升公益桥-小桥工程”设计大赛,国家级三等奖


教授课程

授课

本科:结构设计原理、桥梁组合结构

硕士:高等桥梁结构理论、交通基础设施低碳新材



学术兼职

中国公路学会桥梁和结构工程分会理事会理事

北京茅以升科技教育基金会桥梁委员会委员

南京土木建筑学会理事

招生需求

人才需求

欢迎对桥梁组合结构、桥梁结构设计理论和高性能混凝土材料等方向感兴趣的同学报考硕士和博士研究生。

电话:18115160030