洪义(滨海和城市岩土工程研究中心)

发布者:系统管理员发布时间:2015-07-15浏览次数:3459

 

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姓名:
洪义
职称职务:
讲师
联系电话:
13768906685
电子邮箱:
yi_hong@zju.edu.cn
个人简介
洪义,博士,1985年出生,浙江金华人。2007年获西南交通大学土木工程学院学士学位,2012年获香港科技大学土木与环境学院岩土工程专业哲学博士学位。2013-2015年于浙江大学建筑工程学院开展博士后研究,20154月留浙江大学工作。
本人主要研究领域是基础工程(包括深基坑,和桩基础)和隧道工程,旨在揭示城市地铁建造、海上风电开发过程中的关键土-结构相互作用机理。目前的主要研究兴趣为:(1)考虑水力劈裂的承压水基坑突涌破坏机理;(2)地铁隧道开挖对周围环境的影响; (3)海洋基础循环弱化响应.
近五年来,本人主持国家自然科学基金青年项目1项,中国博后基金面上(一等)项目1项(已结题), 在国际岩土权威期刊(如<Geotechnique> <Canadian Geotechnical Journal>, <Journal of Geotechnical and Geoenvironmental Engineering>等)发表SCI论文16篇,其中第一或通讯作者论文14篇,出版英文专著1部(Springer出版社发行), 合作国际会议主题报告(keynote lecture)论文2篇。
本人担任<Journal of Geotechnical and Geoenvironmental Engineering><Soils and Foundations>, <Journal of Zhejiang University - Science A> SCI期刊的审稿人。本人也是浙江大学建工学院本科1403班的班主任。
 
近五年主要学术论文:
[1] Y. Hong, C. W. W. Ng, L. Z. Wang (2015). Initiation and failure mechanism of base instability of excavations in clay triggered by hydraulic uplift. Canadian Geotechnical Journal. 52(5), 599-608. (SCI, EI)
[2] Y. Hong, M.A. Soomro, C. W. W. Ng (2015). Settlement and load transfer mechanism of a pile group due to side-by-side twin tunneling. Computers and Geotechnics. 64, 105-119. (SCI, EI)
[3] C. W. W. Ng, Y. Hong*(通讯作者), M.A. Soomro (2014). Effects of piggyback twin tunnelling on a pile group: three-dimensional centrifuge tests and numerical modelling. Geotechnique. 65(1), 38-51. (SCI, EI)
[4] Y. Hong, M.A. Soomro, C. W. W. Ng, L. Z. Wang, J. J. Yan and B Li (2015). Tunnelling under pile groups and rafts: numerical parametric study on tension effects. Computers and Geotechnics. 68, 54-65. (SCI, EI)
[5] Y. Hong, Ng, C. W. W. (2013). Base stability of multi-propped excavations in soft clay subjected to hydraulic uplift. Canadian Geotechnical Journal. 50(2), 153-164. (SCI, EI)
[6] Y. Hong, J.P. Wang, D.Q. Li, Z.J. Cao, C.W.W. Ng, P. Cui (2015). Statistical and probabilistic analyses of impact pressure and discharge of debris flow from 139 events during 1961 and 2000 at Jiangjia Ravine, China. Engineering Geology. 187, 122-134. (SCI, EI)
[7] C. W. W. Ng, Y. Hong*(通讯作者), Liu, G. B. Liu, T. (2012). Ground deformations and
soil-structure interaction of a multi-propped excavation in Shanghai soft clays.     
Géotechnique. 63(12), 912-1007. (SCI, EI)
[8] Y. Hong, C. W. W. Ng, G. B. Liu, T. Liu (2015). Three-dimensional deformation behaviour of a multi-propped excavation at a "greenfield" site in Shanghai soft clay. Tunnelling and underground space technology. 45, 249-259. (SCI, EI)
[9] Y. Hong, C. W. W. Ng, Y.M. Chen, L.Z. Wang, V. S.Y. Chan (2015). Field study of  downdrag and dragload of bored piles in consolidating ground. Journal of Performance of Constructed Facilities, ASCE. 10.1061/(ASCE)CF.1943-5509.0000790 , 04015050. (SCI, EI)
[10] M.A. Soomro, Y. Hong*(通讯作者), C. W. W. Ng, H. Lu, S. Y. Peng (2015). Load transfer mechanism in pile group due to single tunnel advancement in stiff clay. Tunnelling and underground space technology. 45, 63-72. (SCI, EI)
[11] L.Z. Wang, K.X. Chen, Y. Hong* (通讯作者), C. W.W. Ng (2015). Effect of consolidation   
 
 on responses of a single pile subjected to lateral soil movement. Canadian Geotechnical   
 Journal. 52(6), 769-782. (SCI, EI)
[12] B. Li, Y. Hong* (通讯作者), B. Gao, T. Y. Qi, Z. Z. Wang, J. M. Zhou. Numerical  
 parametric study on stability and deformation of tunnel face reinforced with face bolts.
 Tunnelling and underground space technology. 47, 73-80. (SCI, EI)
[13] L.Z. Wang, B. He, Y. Hong, Z. Guo, L.L., Li (2015). Field tests of the lateral monotonic and cyclic performance of jet-grouting reinforced cast-in-place piles. Journal of Geotechnical and Geo-environmental Engineering, ASCE. 141(5), 06015001. (SCI, EI).
[14] C. W. W. Ng, M.A. Soomro, Y. Hong*(通讯作者) (2014). Three-dimensional centrifuge
 
 modelling of pile group responses to side-by-side twin tunneling. Tunnelling and  
 underground space technology. 43, 350-361. (SCI, EI)
[15] C. W. W. Ng, J. Shi, and Y. Hong (2013). Three-dimensional centrifuge modelling of    
 basement excavation effects on an existing tunnel. Canadian Geotechnical Journal, 50(8):
 8748882013. (SCI, EI)
[16] G. B., Liu, J., Jiang, C. W. W. Ng, Y. Hong* (通讯作者) (2011), Deformation characteristics
 of a 38m deep excavation in soft clay. Canadian Geotechnical Journal. 48(12), 1817-1828.
 (SCI, EI).
[17] Y. Hong and C.W. W. Ng. In-flight centrifuge modelling of multi-stage excavation in
 soft clay with an underlying aquifer, Proceedings of the 14th Asian Region Conference on
 Geotechnical Engineering, 2011.04, Hong Kong. (EI)
[18] C.W. W. Ng, Y. Hong. Centrifuge modelling in geotechnics: research, design andforensic  
 study, Proceeding of Indian Geotechnical Conference, 2012.12, 1-15, Indian, 2012 (keynote
 lecture).
[19] C.W. W. Ng, Y. Hong. Role of geotechnical centrifuge modelling in advancing researchand  
 engineering design, Proceeding of CAMSIG XXI, 2012.09, 17-30, Rosario, Santa  
 Fe, Argentina, 2012 (keynote lecture).
 
学术专著:
Y. Hong, L. Z., Wang (2015). Deformation and failure mechanism of excavation in clay subjected to hydraulic uplift. Springer, ISBN 978-3-662-46506-6, 248 p. (共29万字,本人撰写20万字)
 
主持的科研项目:
[1]国家自然科学基金青年项目(51408540)超深基坑承压水突涌破坏演化机理
    及控制 2015.1-2017.12
[2]博士后基金面上(一等)项目(2013M540494)承压水基坑塑性破坏机理研
    究  2013.9-2015.3  
 

 



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