
职 称: 副教授
研究领域: 工程结构消能减震、结构振动控制与减振降噪、海洋土木工程
办公地点: 工程抗震研究中心606-2室
办公电话: 020-86395053
电子邮箱: fangxiaojun@e.gzhu.edu.cn
个人主页:https://www.researchgate.net/profile/Xiaojun-Fang?ev=hdr_xprf
https://scholar.google.com.hk/citations?user=bhpXp-sAAAAJ&hl=zh-CN
个人简介:
房晓俊,男,1993年2月生,工学博士,副教授,硕士生导师。中国土木工程学会会员,主要从事工程结构抗震、减隔震和振动控制方面的研究工作,主持国家自然科学基金项目和广东省海上风电联合基金重点项目(子课题负责人)等5项。在Eng. Struct.、Inter. J. Mech. Sci.、J. Eng. Mech.-ASCE、土木工程学报和建筑结构学报等权威期刊累计公开发表学术期刊论文30余篇,含SCI论文26篇(第一/通讯作者16篇,中科院TOP期刊12篇),申请专利15项(含1项国际专利,授权9项),出版学术专著1部,参编中国工程建设标准化协会标准1部,为Eng. Struct.、Inter. J. Mech. Sci.、建筑结构、工业建筑等多个国内外权威学术期刊审稿人,多次受邀参加国际学术论坛并作报告或主持人。
欢迎加入课题组,一同探索土木工程&地震工程领域研究前沿,集众思,广忠益,守正创新,学有所成!
教育背景:
(1) 2018-09 至 2022-06, 广州大学, 结构工程, 博士(导师:郝洪院士)
(2) 2015-09 至 2018-06, 广州大学, 建筑与土木工程, 硕士(导师:周云教授)
(3) 2011-09 至 2015-06, 广州大学, 土木工程(综合特色试点班), 学士
职业经历:
(1) 2025-03至今, 广州大学工程抗震研究中心, 副教授
(2) 2022-07 至 2025-02, 广州大学工程抗震研究中心, 师资博士后(A类)
(3) 2023-11 至 2024-11, 香港理工大学, 助理研究员/博士后
获奖及荣誉
(1) 2024年中国钢结构协会结构稳定与疲劳分会优秀论文奖
(2) 2023年广东省青年优秀人才国际培养计划博士后
(3) 2023-2024年广州大学优秀博士后(中期、出站两次)
(4) 2022年广州大学优秀毕业博士研究生
(5) 2021年防护工程研究中心党支部优秀党员
(6) 2017-2018学年度广东省优秀大学生(研究生阶段)
(7) 2018年广州大学优秀毕业硕士研究生
(8) 2015年广州大学优秀毕业学士论文(设计)
(9) 2011-2021年国家级、“震泰”、校级奖学金
科研服务
(1) 国家自然科学基金青年基金项目(52308308),2024/1~2026/12,主持
(2) 广东省基础与应用基础研究海上风电联合基金重点项目(2023B1515250002),2023/11~2027/10,子课题负责人
(3) 广东省青年优秀科研人才国际培养计划博士后项目,2023/11~2024/10,主持
(4) 广州市博士后科研启动基金研究项目(62306577),2022/7~2024/6,主持
(5) 广州大学基础创新项目(2019GDJC-D09),2019/11-2021/6,主持
(6) 广州大学学术型研究生赴海外联合培养计划项目,2019/12-2020/11,主持
(7) 广州大学“2+5”平台-重大基础设施抗爆与动力多灾害控制项目,2022/7~,骨干成员
(8) 国家自然科学基金面上项目(52178279),2022/1~2025/12,参与
(9) 国家自然科学基金面上项目(52178279),2021/1~2024/12,参与
研究成果
代表性论著
[1] 房晓俊,《质量调谐式柱中柱系统—设计、优化与分析》, 北京:航空工业出版社,2023
[2] X. Fang, K. Bi, H. Hao, H. Ding, W. Lie, Z Chen, X. Yang. Seismic performance enhancement of shear wall structures using lead viscoelastic coupling beam. Eng. Struct. 2025, 332:120054. (JCR Q1,中科院1区, Top)
[3] X. Fang, K. Bi, T. Pham, H. Hao. Seismic behaviours of rubberized concrete (RuC) columns: bidirectional shaking table test. Eng. Struct. 2025, 332:120060. (JCR Q1,中科院1区, Top)
[4] X. Fang, et al. Seismic response control of shear frame structure using a novel tuned-mass type composite column. Eng. Struct. 2025, 322:119160. (JCR Q1,中科院1区, Top)
[5] X. Fang, et al. Optimization of column-in-column system based on non-conventional TMD concept. Int. J. Mech. Sci. 2024, 279(3):109497. (JCR Q1,中科院1区, Top)
[6] X. Fang, et al. An innovative pendulum-type column-in-column (PCIC) system for structural vibration control subjected to seismic ground excitations. Eng. Struct. 2022, 256:113990. (JCR Q1,中科院1区, Top)
[7] X. Fang, et al. Passive vibration control of engineering structures based on an innovative column-in-column (CIC) concept. Eng. Struct. 2021, 242:112599. (JCR Q1,中科院1区, Top)
[8] X. Fang, et al. Experimental study on the cyclic behaviors of an innovative lead-viscoelastic coupling beam damper (LVCBD). J. Build. Eng. 2023, 64: 105596. (JCR Q1,中科院2区, Top)
[9] Y. Cao, Y. Zhou, S Tian, J. Takagi, Z. Li, D. Fang, X. Fang (通讯作者). Performance of novel perforated double-core steel-plate assembled buckling-restrained braces. J. Build. Eng. 2023, 82(246):108326. (JCR Q1,中科院2区, Top)
[10] X. Fang, et al. Seismic behaviors of PCIC piers-supported bridge structures to spatially varying ground motions. Soil Dyn. Earth. Eng. 2023, 164(2): 107594. (JCR Q1,中科院2区)
[11] X. Fang, et al. Behaviours of column-in-column (CIC) system under axial compression: experimental and theoretical studies. J. Construct. Steel Res..2022, 192 (5):107217. (JCR Q1,中科院2区)
[12] X. Fang, et al. Numerical modelling and analysis on axial loading behaviors of composite column-in-column system. Structures. 2023, 58: 1105667. (JCR Q1,中科院2区)
[13] X. Fang, et al. Hysteretic behaviours of a novel lead-viscoelastic coupling beam damper: Numerical analysis and Bouc-Wen based model. Structures. 2023, 57:105178. (JCR Q1,中科院2区)
[14] X. Fang, et al. Free Vibration and Buckling Analysis of Complex Axially Loaded Double-Beam Systems with Generalized Boundary Conditions. J. Eng. Mech. 2023, 149(12): 06023003. (JCR Q1, ASCE权威期刊)
[15] X. Fang, et al. Free and forced vibrations of an undamped double-beam system carrying a tip mass with rotary inertia. J. Eng. Mech. 2022, 148(2): 04021141. (JCR Q1, ASCE权威期刊)
[16] Y. Zhou, Y. Chen, T. Wang, W. Lie, X. Fang (通讯作者), et al. Experimental and Numerical Studies on Seismic Performance of a Novel Lead Viscoelastic Coupling Beam. Structures. 2024, 69:107461. (JCR Q1,中科院2区)
[17] H. Ding, J. Song, X. Fang (通讯作者). On the characteristics of fluid flow field and oscillatory response of tuned liquid multi-column dampers. J. Fluids Struct. 2024, 131:104206 (JCR Q1,中科院2区)
[18] H. Ling, H. Hao, C. Li, K. Bi, X. Fang. Statistical analysis of earthquake ground motion coherency loss and a simplified evaluation method of its effect on structural responses. Soil Dyn. Earth. Eng. 2025, 194:109377. (JCR Q1,中科院2区)
[19] Ding H, Ma R, Wang J, Bi K, Fang X, Song J. Using tuned liquid column dampers (TLCDs) for heave motion mitigation of very large floating structures (VLFSs). Ocean Engineering. 2025, 321:120391. (JCR Q1,中科院2区, Top)
[20] J. Song, X. Fang, K. Bi, H. Ding, H Qin. Tuned inerter damper for adjacent bridges vibration control considering nonlinearities. Eng. Struct. 2025, 325: 119504. (JCR Q1,中科院1区, Top)
[21] H. Ding, K. Bi, J. Song, X. Fang. Vertical vibration control of structures with tuned liquid column dampers. Int. J. Mech. Sci. 2024, 279(7-8):109502. (JCR Q1,中科院1区, Top)
[22] H. Zhang, Q. Zhao, Y. Chen, X. Fang, et al. Analytical model for flexural-torsional coupling behavior of prestressed corrugated steel-concrete composite girders. Eng. Struct. 2024, 319: 118817. (JCR Q1,中科院1区, Top)
[23] Z. Chen, Y. Zhou, W. Lie, X. Fang. Macro-modelling method for the in-plane behaviour of the damped masonry infill wall in a frame structure. J. Build. Eng. 2023, 80(1): 108114. (JCR Q1,中科院2区, Top)
[24] H. Ding, J Zhang, J. Song, X. Fang, et al. Event-triggered semi-active TLCD for ground motion-induced vibration control. Smart Mater. Structures. 2024, 33: 085038. (JCR Q1,中科院2区)
[25] Z. Chen, Y. Zhou, G. Zhong, F. Shi, X. Fang. Out-of-plane resistance mechanism and analytical method predicting the out-of-plane performance of Damped Masonry Infill in reinforced concrete frames. Structures. 2024, 69:107287. (JCR Q1,中科院2区)
[26] H. Zhang, Q. Zhao, Y. Chen, X. Fang, et al. Analytical model and design method of corrugated steel-concrete composite girders under torsion. Structures. 2024, 70:107608. (JCR Q1,中科院2区)
[27] Y. Cao, Y. Zhou, J. Takagi, K. Jiang, X. Deng, X. Fang. Experimental and numerical study of buckling-restrained braces configured with out-of-plane eccentricity under cyclic loading. Earth. Eng. & Eng. Vib. 2024, 23(4): 957-971. (JCR Q2,中科院2区)
[28] 房晓俊,李俊熙,周云,等.质量调谐式组合柱轴压力学性能试验与数值模拟研究[J].工业建筑,2025,55(02):177-186.
[29] 房晓俊. 基于轴压刚度等效的“柱中柱”(CIC)系统等代设计方法研究[J]. 广州大学学报(自然科学版), 2023, 22(3):26-32.((入选学校“重大基础设施安全+智慧运维创新枢纽专题”)
[30] 房晓俊,周云,张超.采用铅黏弹性连梁阻尼器的框架-核心筒结构减震分析[J].土木工程学报,2018,51(S2):1-7+13
[31] 房晓俊,周云.复杂受力状态下铅黏弹性连梁阻尼器性能研究[J].建筑结构学报,2018,39(S2):321-327.
[32] 房晓俊,周云.转动摩擦阻尼装置的研究与应用[J].工程抗震与加固改造,2018,40(01):1-7.
[33] 房晓俊,周云.设计参数对铅黏弹性连梁阻尼器力学性能分析[J].沈阳建筑大学学报(自然科学版),2019,35(01):1-11.
[34] 周云,房晓俊,王贤鹏,刘柠.可更换连梁抗震性能研究与应用进展[J].工程抗震与加固改造,2017,39(03):1-10+29.
[35] 周云,梁秋河,房晓俊.相邻结构碰撞研究进展[J].土木工程学报,2019,52(09):12-22+52.