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胡钢
2023-05-10 20:08
  • 胡钢
  • 胡钢 - 博士 教授 博导-哈尔滨工业大学(深圳)-土木与环境工程学院-个人资料

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资料介绍

个人简历


胡钢博士,国家特聘青年专家。出生于江西修水,2015年8月毕业于香港科技大学获得土木工程博士学位,并于澳大利亚悉尼大学从事博士后研究。主要采用风洞试验技术、计算流体动力学和人工智能技术进行结构风工程、环境风工程和风能相关的研究。至今共发表SCI国际期刊论文41篇,其中以第一/通讯作者发表论文26篇,JCR一区论文29篇,ESI高被引和热点文章1篇。作为科研骨干已参与 1 项澳大利亚国家基金委项目、多项香港政府研究资助局项目和国家自然科学基金委项目。香港风工程协会秘书兼执行委员,澳大利亚风工程协会会员。入选中组部海外高层次人才青年项目和深圳市海外高层次C类人才。
Dr Gang Hu is a Professor in School of Civil and Environmental Engineering at Harbin Institute of Technology Shenzhen. He obtained his bachelor, MPhil, and PhD degree from Central South University (2009), Harbin Institute of Technology Shenzhen (2011), and Hong Kong University of Science and Technology (2015) respectively. From 2015/09, he joined the CLP Power Wind/Wave Tunnel Facility at HKUST as a research associate, and served as a postdoc fellow at Department of Civil and Environmental Engineering at HKUST from 2016/09 to 2017/11. From 2017/12 to 2019/12, he was employed as a postdoc research associate at the School of Civil Engineering, The University of Sydney. He joined Harbin Institute of Technology Shenzhen in 2019/12. He is an executive committee member and secretary of Hong Kong Wind Engineering Society, a member of Australian Wind Engineering Society. His research interests include structural wind engineering, wind energy, bluff body aerodynamics by using wind tunnel test, CFD, and AI techniques. To date, he has published more than 40 papers in international reputable journals.
教育背景
09/2012-08/2015:(3年)博士学位(土木工程), 土木与环境工程学院, 香港科技大学
09/2009-07/2011:(2年)硕士学位(结构工程), 土木与环境工程学院, 哈尔滨工业大学(深圳)
09/2005-07/2009:(4年)学士学位(土木工程), 土木工程学院, 中南大学
09/2012-08/2015 (3 years): PhD in Civil Engineering, Department of Civil and Environmental Engineering, Hong Kong University of Science and Technology, Hong Kong.
09/2009-07/2011 (2 years): MPhil in Structural Engineering, School of Civil and Environmental Engineering, Harbin Institute of Technology Shenzhen, China.
09/2005-07/2009 (4 years): Bachelor in Civil Engineering, School of Civil Engineering and Architecture, Central South University, Hunan, China.
工作经历
12/2020-至今: 教授,土木与环境工程学院,哈尔滨工业大学(深圳)
12/2019-11/2020:副教授, 土木与环境工程学院,哈尔滨工业大学(深圳)
12/2017-12/2019 (2年):博士后, 土木工程学院, 悉尼大学, 澳大利亚(导师:K.C.S. Kwok教授)
09/2016-11/2017 (14个月):博士后, 土木与环境工程学院, 香港科技大学(导师:K.T. Tse教授)
09/2015-09/2016 (1年):副研究员, 中电风洞实验室, 香港科技大学(导师:K.T. Tse教授和K.C.S. Kwok教授)
12/2020 to present: Professor, School of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen, China
12/2019 to 11/2020: Associate Professor, School of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen, China
12/2017- 12/2019 (2 years): Post-doctoral Research Associate, School of Civil Engineering, The University of Sydney, Sydney, New South Wales 2006, Australia.
10/2016-11/2017 (1 year): Post-doctoral Fellow, Department of Civil and Environmental Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China
09/2015-09/2016 (1 year): Research Associate, CLP Power Wind/Wave Tunnel Facility, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China

研究领域


土木风工程"高层建筑、高耸结构和大跨度结构的抗风性能评估和风振控制
机器学习和人工智能技术在土木工程中的应用
风洞试验技术和计算流体动力学模拟(CFD)技术的应用和开发
微型压电风能俘获器的优化设计
城市风环境的评估和优化
Wind engineering: Wind effects on wind-sensitive structures such as high-rise structures and long-span structures
Machine learning: Using machine learning and deep learning techniques to address issues in civil engineering and wind engineering
Wind tunnel testing and CFD: Application and development of wind tunnel testing and CFD techniques
Wind energy: Piezoelectric wind energy harvesting and urban wind energy harvesting
Environmental wind engineering: evaluation and optimzation of urban wind environment"

近期论文


[1]. Hu, G., Liu, L., Tao, D., Song, J., Tse, K.T., Kwok, K.C.S., 2020. Deep learning-based investigation of wind pressures on tall building under interference effects. Journal of Wind Engineering and Industrial Aerodynamics, 201, 104138.
[2]. Hu, G., Kwok, K. C. S. (2020). Predicting wind pressures around circular cylinders using machine learning techniques. Journal of Wind Engineering and Industrial Aerodynamics, 198, 104099.
[3]. Chao Li, Jinghan Wang, Hu, G., Lixiao Li, Yiqing Xiao, 2020. RANS simulation of horizontal homogeneous atmospheric boundary layer over rough terrains by an enriched canopy drag model, Journal of Wind Engineering and Industrial Aerodynamics, 206, 104281.
[4]. Cruz Y. Li, Tim K.T. Tse, Hu G., 2020, Dynamic Mode Decomposition on pressure flow field analysis: Flow field reconstruction, accuracy, and practical significance, Journal of Wind Engineering and Industrial Aerodynamics, 205, 104278.
[5]. H.Y. Peng, S.F. Dai, K. Lin, Hu G., H.J. Liu, 2020, Experimental investigation of wind characteristics and wind energy potential over rooftops: Effects of building parameters, Journal of Wind Engineering and Industrial Aerodynamics, 205, 104304.
[6]. K.T. Tse, A.U. Weerasuriya, Hu G., 2020 Integrating topography-modified wind flows into structural and environmental wind engineering applications, Journal of Wind Engineering and Industrial Aerodynamics, 204, 104270.
[7]. Hu, G., Fengxi Liu, Lixiao Li, Chao Li, Yiqing Xiao, and Kwok, K. C. S., 2019, Wind energy harvesting performance of tandem circular cylinders with triangular protrusions, Journal of Fluids and Structures, 91, 102780.
[8]. Hu, G., Junlei Wang, Zhen Su, Guoping Li, Huayi Peng and K.C.S. Kwok, 2019, Performance evaluation of twin piezoelectric wind energy harvesters under mutual interference, Applied Physics Letters, 115, 073901.
[9]. Hu, G., Jie Song, Sina Hassanli, Robert Ong, and Kwok, K. C. S., 2019, The effects of a double-skin fa?ade on the cladding pressure around a tall building. Journal of Wind Engineering and Industrial Aerodynamics. 191, 239-251.
[10]. Weiwei Song, Liang, S., Song, J., Lianghao Zou, Hu, G., 2019. Investigation on wind-induced aero-elastic e?ects of tall buildings by wind tunnel test using a bi-axial forced vibration device. Engineering Structures. 195, 414-424.
[11]. Chao Zhang, Junhong Zhao, Hu, G., Maoling Shi, Xueguan Song, Dacheng Tao, and Wei Wu, 2019. A Data-Driven Framework for Tunnel Geological-Type Prediction Based on TBM Operating Data. IEEE Access. 7, 66703-66713.
[12]. Cui, D., Hu, G., Ai, Z., Du, Y., Mak, C.M., Kwok, K.C.S., 2019. Particle image velocimetry measurement and CFD simulation of pedestrian level wind environment around U-type street canyon. Build. Environ. 154, 239–251.
[13]. Jie Song, Wei Xu, Hu, G., Shuguo Liang, Jian Tan, 2019, Non-Gaussian properties and their effects on extreme values of wind pressure on the roof of long-span structures. Journal of Wind Engineering and Industrial Aerodynamics. 184, 106-115.
[14]. Hu, G., Tse, K.T., Wei, M., Naseer, R., Abdelke, A., Kwok, K.C.S., 2018, Experimental investigation on the efficiency of circular cylinder-based wind energy harvester with different rod-shaped attachments. Applied Energy 226, 682–689.
[15]. Hu, G., C. Li, K. T. Tse, and K. C. S. Kwok, 2018, Vortex induced vibration of an inclined finite-length square cylinder, European Journal of Mechanics - B/Fluids, 68, 144–152.
[16]. Sina Hassanli, Hu G., David F. Fletcher, Kwok, K.C.S., 2018, Potential Application of Double Skin Fa?ade Incorporating Aerodynamic Modifications for Wind Energy Harvesting, Journal of Wind Engineering and Industrial Aerodynamics. 174, 269-280.
[17]. Song Jie, Tse K.T., Hu G., Liang S, Zou L., 2018, Dynamic properties of wind-excited linked tall buildings considering both intra- and inter-building structural couplings. Journal of Structure Engineering, ASCE. 2018;144(6017007):1-11.
[18]. Chao Li, Yiqing Xiao, You-lin Xu, Yi-xin Peng, Hu, G. and Songye Zhu, 2018, Optimization of Blade Pitch in H-rotor Vertical Axis Wind Turbines through Computational Fluid Dynamics Simulations, Applied Energy, 212, 1107-1125.
[19]. Liang, S., Yang, W., Song, J., Wang, L., Hu, G., 2018. Wind-induced responses of a tall chimney by aeroelastic wind tunnel test using a continuous model. Engineering Structures 176, 871–880.
[20]. Hu, G., K. T. Tse, Z. S. Chen, and Kwok, K.C.S., 2017, Particle Image Velocimetry measurement of flow around an inclined square cylinder, Journal of Wind Engineering and Industrial Aerodynamics. 168, 134-140.
[21]. Hu, G., Sina Hassanli, Kwok, K.C.S., and Tse, K.T., 2017, Wind-induced responses of a tall building with a double-skin fa?ade system. Journal of Wind Engineering and Industrial Aerodynamics. 168, 91–100.
[22]. Hu, G., K.T. Tse, Song Jie, and Liang S.G., 2017, Performance of wind-excited linked building systems considering the link-induced structural coupling. Engineering Structures, 138, 91-104.
[23]. Wei M. H., Hu, G., Li L. X., Liu H. T., 2017, Development and theoretically evaluation of an STF–SF isolator for seismic protection of structures. Meccanica. doi:10.1007/s11012-017-0785-z.
[24]. Sina Hassanli, Hu, G., K. C. S. Kwok, David F. Fletcher, 2017, Utilizing Cavity Flow within Double Skin Fa?ade for Wind Energy Harvesting in Buildings, Journal of Wind Engineering and Industrial Aerodynamics. 167, 114–127.
[25]. Song Jie, Hu, G., Tse, K.T., Li, S.W., Kwok, K.C.S, 2017, Performance of a circular cylinder piezoelectric wind energy harvester fitted with a splitter plate, Applied Physics Letters. 111(22):223903.
[26]. Z. S. Chen, K. T. Tse, Hu, G., and K. C. S. Kwok, 2017, Experimental and theoretical investigation of galloping of transversely inclined slender prisms, Nonlinear Dynamics.
[27]. Wei, M.H., Sun, L., Hu, G., 2017, Dynamic properties of an axially moving sandwich beam with MRF core, Advances in Mechanical Engineering. Vol. 9(2) 1–9.
[28]. Li, S.W., Hu, Z.Z., Chan, P.W., and Hu, G., 2017, A study on the profile of the turbulence length scale in the near-neutral atmospheric boundary for sea (homogeneous) and hilly land (inhomogeneous) fetches. Journal of Wind Engineering and Industrial Aerodynamics. 168, 200-210.
[29]. Zhou Shengtao, Shan Baohua, Xiao Yiqing, Li Chao, Hu, G., Song Xiaoping, Liu Yongqing, Hu Yimin, 2017, Directionality Effects of Aligned Wind and Wave Loads on a Y-Shape Semi-Submersible Floating Wind Turbine under Rated Operational Conditions. Energies 10(12):2097.
[30]. Li C, Zhuang T, Zhou S, Xiao Y. Q., and Hu, G., 2017, Passive Vibration Control of a Semi-Submersible Floating Offshore Wind Turbine, Applied Sciences. 7 1–19.
[31]. Chen, Z.-S, Zhou, J.-T., Hu, G., Li, Y., Ma, H. Yao, G.-W., 2017, A novel movable scaffolding system (MSS) for a long-span curved girder bridge, International Journal of Robotics and Automation, 32, 2, 164-175.
[32]. Hu, G., Tse, K.T., Kwok, K.C.S, Song Jie, and Lyu Yuan. 2016, Aerodynamic modification to a circular cylinder to enhance piezoelectric wind energy harvesting, Applied Physics Letters. 109(19), 193902.
[33]. Hu, G., Tse, K.T., and Kwok, K.C.S. 2016, Enhanced performance of wind energy harvester by aerodynamic treatment of a square prism, Applied Physics Letters. 108(12), 123901.
[34]. Hu, G., Tse, K.T., Kwok, K.C.S., 2016. Aerodynamic mechanisms of galloping of an inclined square cylinder. Journal of Wind Engineering and Industrial Aerodynamics. 148, 6-17.
[35]. Wei, M.H., Hu, G., Jin, L., Lin, K. and Zou, D. 2016, Forced vibration of a shear thickening fluid sandwich beam, Smart Materials and Structures. 25(5), 055041.
[36]. Chen, Z., Zhou, J., Tse, K.T., Hu, G., Li, Y. and Wang, X. 2016, Alignment control for a long span urban rail-transit cable-stayed bridge considering dynamic train loads, Science China Technological Sciences. 59(11), 1759-1770.
[37]. Hu, G., Tse, K.T., Kwok, K.C.S., Chen Z.S., 2015. Pressure measurements on inclined square prisms. Wind and Structures, 21, 383-405.
[38]. Hu, G., Tse, K.T., Kwok, K.C.S. and Zhang, Y., 2015. Large eddy simulation of flow around inclined finite square cylinders, Journal of Wind Engineering and Industrial Aerodynamics. 146, 172-184.
[39]. Hu, G., Tse, K.T. and Kwok, K.C.S., 2015. Galloping of forward and backward inclined slender square cylinders, Journal of Wind Engineering and Industrial Aerodynamics. 142, 232-245.
[40]. Li, Q.S., Hu, G., Yan, Bo-wen, 2014. Investigation of the effects of free-stream turbulence on wind-induced responses of tall building by large eddy simulation. Wind and Structures 18, 599-618.
04/2020-至今, 秘书, 香港风工程协会
03/2018-至今, 会员, 澳大利亚风工程协会
12/2016-至今, 执行委员, 香港风工程协会

04/2020-present, secretary, Hong Kong Wind Engineering Society.
03/2018-present, member, Australia Wind Engineering Society.
12/2016-present, committee member, Hong Kong Wind Engineering Society.
2015-present, peer review for journals such as Journal of Wind Engineering and Industrial Aerodynamics, Engineering Structures, Nonlinear Dynamics, Applied Energy, Building and Environment, Smart Materials and Structures, etc.

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