教授
黄远(1982),男,博士,教授,博士生导师,湖南大学土木工程学院建筑工程系主任,湖南省杰出青年基金获得者,权威期刊《建筑结构学报》编委,多次获得湖南省优秀研究生指导教师。目前主持多项政府和企业合作科研项目,研究方向为装配式与模块化结构,钢-混凝土组合结构,机器学习及结构性能。课题组研究经费充足,团队氛围融洽,定期举办研讨会和体育活动,支持学生个性化发展,每年可招收5名硕士研究生,1-2名博士研究生和博士后,欢迎有志青年加入(有任何疑问,请通过邮箱联系:huangy@hnu.edu.cn)。
2004年 湖南大学土木工程专业获工学学士学位(1/527)
2009年 清华大学结构工程专业获工学博士学位(导师:聂建国院士)
2010-2012,湖南大学土木工程学院,师资博士后(导师:易伟建教授)
2013-2018,湖南大学土木工程学院,副教授
2016-2017,美国理海大学,访问学者
2019.1-至今,湖南大学土木工程学院,教授
纵向研究课题
[1]装配式混凝土和组合结构抗震性能,湖南省自然科学基金杰出青年基金项目,2020-2022
[2]新材料高耐久混凝土结构研究,国家自然科学基金重大项目子课题,2019-2023
[3]高效节地立式工业建筑结构体系研究与示范应用之关键构件复杂受力研究,国家重点研发计划子课题,2018~2021.
[4]地震作用下装配整体式混凝土楼盖受力性能和设计方法研究,国家自然科学基金,主持,2015~2018.
[5]近断层地震作用下钢-混凝土组合框架抗震性能研究,国家自然科学基金,主持,2012~2014.
[6]端部加强方钢管柱抗震性能研究,湖南省自然科学基金,主持,2014~2016.
[7]高性能钢管混凝土柱抗震性能研究,中国博士后基金,主持,2011~2012;
[8]复杂受力混凝土结构设计理论与方法研究,国家自然科学基金重点项目,主研,2014~2018;
[9]钢-混凝土组合构件的受力性能与设计方法研究,国家科技支撑计划,主研,2012~2014;
[10]钢筋混凝土板柱结构抗震性能研究,国家自然科学基金,主研,2012~2015;
[11]装配式混凝土结构抗震性能,长沙市建委,主研,2012~2013;
[12]装配整体式混凝土结构技术规程,湖南省建设厅,主研,2012~2013;
发表论文:
[1].Huang Yuan*,Zhang Xiaoli,Lu Huasen,Han Bing,Theoretical Axial and Lateral Stress-Strain Model for Steel Tube-Reinforced Concrete Column.Journal of Structural Engineering,2024,Accepted for Publication.
[2].Huang Yuan*,Xia Wenlin,Hong Zhicheng,Shear behavior of ultra-high performance concrete corbels:Experimental study and modified strut-and-tie model.Engineering Structures,2024.310(118043-1-15)
[3].Han Bing,Huang Yuan*,Shear Test on Concrete Corbels:ACI 318-19 Formulas Evaluation.ACI Structural Journal.2024,121(3):p.3-14.
[4].Huang Yuan*,Lu Huasen,Hong Huanpeng,Zhang Xiaoli,Influence of Confinement Interaction on the Compressive Behavior of Steel Tube–Reinforced Concrete Columns.Journal of Structural Engineering,2024.150(2):p.04023214-1-15.
[5].Liu Yuming,Huang Yuan*,Analytic solution of pull-out failure on bond-slip relationship between deformed rebar and ultra-high-performance concrete.Engineering Structures,2024.305(117682-1-17).
[6].Xu Zhenming,Huang Yuan*,Finite element analysis of progressive collapse resistance of precast concrete frame beam-column substructures with UHPC connections.Journal of Building Engineering,2024.82(108338-1-21).
[7].Liang Rui and Huang Yuan*,Development length and bond behavior of lap-spliced reinforcement in Ultra-high performance concrete beams.Engineering Structures,2023.291(116354,1-12).
[8].Tao Yuxuan,Huang Yuan*,and Yi Weijian,Analytical Investigation on Catenary Action in Unbonded Prestressed Concrete Beam-Column Subassemblages.Journal of Structural Engineering,2023.149(8):p.1-13.
[9].Huang Yuan*and Yu Zhifan,Experimental study of the bonding behavior between coarse aggregate ultra-high performance concrete and steel rebar.Engineering Structures,2023.288(116253):p.1-15.
[10].Chang-Lin Li,Huang Yuan*,and Huan-Peng Hong,Predicting yield strength of cold-formed carbon steel:A review and new approaches.Journal of Constructional Steel Research,2023.206(107926):p.1-9.
[11].Han Bing and Huang Yuan*,Experimental research on compressive strength-size effect and mechanical properties of cement-based grout.Construction and Building Materials,2023.373(130882):p.1-11.
[12].Huang Yuan*,Tao Yuxuan,and Yi Weijian,Progressive collapse behavior of prestressed concrete frames with various tendon profiles.Journal of Building Engineering,2023.72(106631):p.1-18.
[13].Xiao Huaizhao and Huang Yuan*,Detection of grout sleeve defects based on the time domain dimensionless indicators of component signals.Journal of Building Engineering,2023.65(105795):p.1-13.
[14].Huang Yuan*,Zhang Xiaoli,Wang Lizhuan,and Hu Xiaofang,A Simplified Method for Evaluating the Diaphragm Flexibility for Frame-Shear Wall Structure under Earthquake Load.Buildings,2023.13(376).
[15].Huang Yuan*and Wan Anqi,Research on Carbon Emission of Prefabricated Structure in China.Buildings,2023.13(1348).
[16].Huang Yuan*,Liu Yuming,Review of Bond-Slip Behavior between Rebar and UHPC:Analysis of the Proposed Models.Buildings,2023.13(1270).
[17].Yuxuan,Tao,Huang Yuan*,and Yi Weijian,Analytical model for compressive arch action in unbonded prestressed concrete beam-column subassemblages under a column-loss scenario.Engineering Structures,2022.273:p.115090.
[18].Yuxuan,Tao and Huang Yuan*,Numerical investigation on progressive collapse resistance of post-tensioned precast concrete beam-column assemblies under a column-loss scenario.Engineering Structures,2022.251:p.22.
[19].Bing,Han and Huang Yuan*,Experimental study on bond performance between rebar and grout and confinement effects of grouted sleeve connections.Construction and Building Materials,2022.354(2022).
[20].Yuan Huang*,Qiming Wu,Tuo Tang,Seismic performance and design of the fully-assembled precast concrete frame with buckling-restrained braces.Buildings,2022.
[21].Huang*,Yuan,Bing Han,and Wenmeng Yin,Reinforced Concrete Corbels Shear Test:The Triangular‐Truss Method Evaluation.Buildings,2022.12(1619).
[22].Zhenming,Xu,Huang Yuan*,and Liang Rui,Numerical Simulation of Lap-Spliced Ultra-High-Performance Concrete Beam Based on Bond-Slip.Buildings,2022.12(8):p.20.
[23].Rui,Liang,Huang Yuan*,and Xu Zhenming,Experimental and Analytical Investigation of Bond Behavior of Deformed Steel Bar and Ultra-High Performance Concrete.Buildings,2022.12(4):p.21.
[24].Yuan*,Huang,Tao Yuxuan,Yi Weijian,Zhou Yun,and Deng Lu,Numerical investigation on compressive arch action of prestressed concrete beam-column assemblies against progressive collapse.Journal of Building Engineering,2021.44:p.14.
[25].Huang*,Yuan and Bing Han,Experimental study on bond behavior between high-strength grout and deformed steel bars.Construction and Building Materials,2021.301:p.11.
[26].Hong HuanPeng,Huang Yuan,Deng Lu,and Bai Yu,Axial capacity of steel tube-reinforced concrete stub columns.Engineering Structures,2019.183:p.523-532.
[27].Dai Yiqing,Huang Yuan,He Xuhui,Hui David,and Bai Yu,Continuous performance assessment of thin-film flexible photovoltaic cells under mechanical loading for building integration.Solar Energy,2019.183:p.96-104.
[28].Luo FuJia,Huang Yuan,He Xuhui,Qi Yujun,and Bai Yu,Development of latticed structures with bolted steel sleeve and plate connection and hollow section GFRP members.Thin-Walled Structures,2019.137:p.106-116.
[29].Luo Fujia,Bai Yu,Hou Jian,and Huang Yuan,Progressive collapse analysis and structural robustness of steel-framed modular buildings.Engineering Failure Analysis,2019.104:p.643-656.
[30].Huang Yuan,Hong Huan-Peng,Huang Deng,and Bai Yu,Displacement ductility of staged construction-steel tube-reinforced concrete columns.Construction and Building Materials,2018.188:p.1137-1148.
[31].Ferdous Wahid,Almutairi Ahmed,Huang Yuan,and Bai Yu,Short-term flexural behaviour of concrete filled pultruded GFRP cellular and tubular sections with pin-eye connections for modular retaining wall construction.Composite Structures,2018.206:p.1-10.
[32].Huang Yuan,Yi Weijian,and Hu Chao,Corroded reinforced concrete beams under low-speed and low-cycle fatigue loads.Construction and Building Materials,2018.186:p.644-651.
[33].Hou Jian,Nie Xin,Zhang Lei,Huang Yuan,and Bai Yu,Ultimate limit design of composite beams with modular GFRP deck and steel girder.Engineering Structures,2018.176:p.337-348.
[34].Huang Yuan,Yi Weijian,Clay J.Naito,and Zhang Rui,Seismic performance of precast concrete frames with debonded reinforcement.Materials and Structures,2018.51:p.47.
[35].Huang Yuan,Zhu Zhenggeng,Clay J.Naito,and Yi Weijian,Tensile behavior of half grouted sleeve connections:Experimental study and analytical modeling.Construction and Building Materials,2017.152(1):p.96-104.
[36].Huang Yuan,Yang Yang,Huang Deng,and Yi Weijian,Element-based stiffness reduction coefficient of steel–concrete composite beams with interface slip.Materials and Structures,2016.
[37].Huang Yuan,Huang Deng,Yang Yang,and Yi Weijian,Element-based effective width for deflection calculation of steel-concrete composite beams.Journal of Constructional Steel Research,2016.121(1):p.163-172.
[38].Huang Yuan,Yi Weijian,and Zhang Rui,Behavior and design modification of RBS moment connections with composite beams.Engineering Structures,2014.59(1):p.39-48.
[39].Nie Jianguo,Fan Jiansheng,Liu Xiaogang,and Huang Yuan,Comparative Study on Steel Plate Shear Walls Used in a High-Rise Building.Journal of Structural Engineering-Asce,2013.139(1):p.85-97.
[40].Huang Yuan,Yi Weijian,and Nie Jianguo,Seismic analysis of CFST frames considering the effect of the floor slab.Steel and Composite Structures,2012.13(4):p.397-408.
[41].Nie Jianguo,Huang Yuan,and Yi Weijian,Seismic behavior of CFRSTC composite frames considering slab effects.Journal of Constructional Steel Research,2012.68(1):p.165-175.
[42].黄远*,夏文琳,洪志诚.超高性能混凝土牛腿受剪性能试验与理论模型研究.建筑结构学报.2024,45(8):p.108-117.
[43].梁芮,黄远*,超高性能混凝土与钢筋劈裂黏结强度试验研究.建筑结构学报,2024,45(6):p.254-261.
[44].梁芮,黄远*,高强钢筋与超高性能混凝土黏结性能试验研究.建筑结构学报,2022.43(09):p.294-302.
[45].黄远*,韩冰,高强灌浆料与钢筋黏结滑移试验研究.地震工程与工程振动,2022.42(02):p.52-61.
[46].黄远,尹文萌,易伟建,钢筋混凝土牛腿抗剪承载力设计修正系数研究.湖南大学学报(自然科学版),2021.48(07):p.61-70.
[47].黄远,张帆,易伟建,套筒约束灌浆料与钢筋黏结强度试验研究.湖南大学学报(自然科学版),2020.47(09):p.69-75.
[48].黄远,胡晓芳,易伟建,预应力混凝土框架抗连续倒塌压拱承载力研究湖南大学学报(自然科学版),2020.47(07):p.61-67.
[49].黄远,洪露露,万雄伟,胡晓芳,钢筋混凝土剪力墙塑性铰长度.地震工程与工程振动,2019.39(2):p.79-88.
[50].黄远,易展辉,带耗能角钢无黏结预应力预制剪力墙抗震性能.建筑科学与工程学报,2019.36(3):p.74-82.
[51].黄远,陈桂榕,胡晓芳,装配整体式结构抗连续倒塌受力机制及影响因素分析.建筑科学与工程学报,2019.36(4):p.31-39.
[52].黄远,胡晓芳,万雄伟,洪露露,水平荷载作用下RC剪力墙有效刚度研究.湖南大学学报(自然科学版),2019.46(7):p.11-18.
[53].黄远,黄登,陈桂榕,杨扬,彭勃,钢管混凝土叠合柱抗震性能界限状态研究.地震工程与工程振动,2018.38(2):p.157-167.
[54].黄登,黄远,陈桂榕,杨扬,彭勃,钢管混凝土叠合柱受力性能研究.地震工程与工程振动,2017.37(4):p.129-137.
[55].黄远,朱正庚,郭亚飞,大震下钢框架梁柱节点调和变形机制与设计方法.湖南大学学报(自然科学版),2017.44(7):p.16-22.
[56].杨扬,黄远,易展辉,插筋灌浆连接装配式钢筋混凝土剪力墙抗侧承载力分析.地震工程与工程震动,2016.36(6):p.180-187.
[57].黄登,黄远,陈桂榕,钢管混凝土叠合柱的抗震延性研究.地震工程与工程震动,2016.36(6):p.207-214.
[58].黄远,杨扬,许铭,易伟建,插筋灌浆连接水平拼缝受剪性能试验研究与有限元分析.建筑结构学报,2016.37(3):p.44-50.
[59].黄远,朱正庚,杨扬,易伟建,钢筋半套筒灌浆连接静力试验研究.华南理工大学学报(自然科学版),2016.44(2):p.59-66.
[60].黄远,张锐,朱正庚,许铭,含三明治外墙挂板框架结构抗震性能试验研究.地震工程与工程振动,2016.36(2):p.95-100.
[61].黄远,朱正庚,杨扬,易伟建,端部设肋方钢管混凝土框架柱抗震性能分析.湖南大学学报(自然科学版),2016.43(1):p.89-96.
[62].黄远,张锐,朱正庚,许铭,外墙挂板的混凝土框架结构抗震性能试验研究.湖南大学学报(自然科学版),2015.42(7):p.36-41.
[63].黄远,张锐,朱正庚,易伟建,现浇柱预制梁混凝土框架结构抗震性能试验研究.建筑结构学报,2015.36(1):p.44-50.
[64].黄远,许铭,张锐,全装配式混凝土结构界面软索连接拼缝抗剪性能试验研究.湖南大学学报(自然科学版),2014.41(6):p.22-27.
[65].黄远,朱正庚,张锐,易伟健,端部栓钉加强方钢管混凝土柱非线性有限元分析.建筑结构学报,2014.35(S2):p.137-144.
[66].许铭,黄远,张锐,水平拼缝预制钢筋混凝土剪力墙抗震性能分析.地震工程与工程振动,2014.34(3):p.95-104.
[67].黄远,易伟建,聂建国,考虑钢梁翼缘断裂的组合框架抗震性能分析.湖南大学学报(自然科学版),2012.39(7):p.1-6.
[68].黄远,聂建国,易伟建,考虑滑移效应的钢-混凝土组合框架梁的刚度研究.工程力学,2012.29(11):p.88-92.
[69].黄远,聂建国,易伟建,钢-混凝土组合框架梁变形计算的有效翼缘宽度.土木工程学报,2012.45(8):p.33-40.
[70].聂建国,黄远,樊健生,考虑楼板组合作用的方钢管混凝土组合框架受力性能试验研究.建筑结构学报,2011.32(3):p.99-108.
[71].黄远,聂建国,陶慕轩,李法雄,考虑楼板组合作用的方钢管混凝土组合框架受力性能有限元分析.建筑结构学报,2011.32(3):p.109-116.
[72].聂建国,黄远,樊健生,钢板剪力墙结构竖向防屈曲简化设计方法.建筑结构,2010.40(4):p.1-4.
[73].聂建国,樊健生,黄远等,钢板剪力墙的试验研究.建筑结构学报,2010.31(9):p.1-8.
[74].聂建国,陶慕轩,黄远,等,钢-混凝土组合结构体系研究新进展.建筑结构学报,2010.31(6):p.71-80.
[75].聂建国,黄远,钢-混凝土组合梁非线性地震反应分析模型.清华大学学报(自然科学版),2009.49(3):p.329-332.
[76].聂建国,黄远,高层建筑组合楼盖面内变形简化分析模型.工业建筑,2008.38(3):p.5-8.
[77].聂建国,黄远,田淑明,樊建生,高层钢板剪力墙结构底部加强层抗震性能分析.地震工程与工程振动,2008.28(6):p.163-171.
主编标准:
[1]《螺栓连接多层全装配式混凝土墙板结构技术规程》T/CECS 809-2021
[2]《超高性能混凝土集成模块建筑技术标准》DBJ 43/T 387-2022
[3]《盒式连接多层全装配式混凝土墙-板结构技术规程》DBJ 43/T 320-2017
[4]《混凝土装配-现浇式剪力墙结构技术规程》DBJ 43/T 301-2015
[5]《混凝土叠合楼盖装配整体式建筑技术规程》DBJ 43/T 301-2013
[1]2001年,湖南大学甲等奖学金,肖春源专项奖学金,湖南大学优秀团员,湖南大学文明大学生
[2]2002年,湖南大学特等奖学金,熊晓鸽专项奖学金,湖南大学三好学生,湖南大学文明大学生
[3]2003年,湖南大学特等奖学金,李薰专项奖学金,湖南大学三好学生,湖南大学优秀团员,湖南大学文明大学生
[4]2004年,湖南大学优秀毕业生,湖南省优秀毕业生,中国土木工程学会优秀毕业生
[5]2005年,清华大学路劲基建三等奖学金
[6]2006年,清华大学土木建管系暑期实践三等奖
[7]2007年,清华大学马杯羽毛球赛男子单打八强
[8]2008年,清华大学学业二等奖学金
[9]2015年,湖南大学工作考核优秀
[10]2017年,湖南省建设行业科学技术创新成果奖一等奖(4/10)
[11]2018年,湖南大学讲课比赛二等奖
[12]2018年,湖南大学优秀硕士生指导教师
[13]2019年,湖南大学工作考核优秀
[14]2022年,湖南省优秀硕士生指导教师
[15]2024年,湖南省优秀硕士生指导教师
湖南大学-国家卓越工程师学院 版权所有
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