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Yadong Zhang
Researcher at Southeast University
Publications - 35
Citations - 1069
Yadong Zhang is an academic researcher from Southeast University. The author has contributed to research in topics: Mesoscopic physics & Overpressure. The author has an hindex of 15, co-authored 32 publications receiving 655 citations. Previous affiliations of Yadong Zhang include United States Army Corps of Engineers.
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Behaviour of ultra high performance fibre reinforced concrete columns subjected to blast loading
Juechun Xu,Chengqing Wu,Chengqing Wu,Hengbo Xiang,Yu Su,Yu Su,Zhong-Xian Li,Qin Fang,Hong Hao,Zhongxian Liu,Yadong Zhang,Jun Li,Jun Li +12 more
TL;DR: In this paper, a series of field tests were conducted to investigate the behavior of UHPFRC columns subjected to blast loading, and the results showed that UHP-FCC columns performed superior in blast loading resistance as compared with HSRC columns.
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Effects of gas concentration and venting pressure on overpressure transients during vented explosion of methane-air mixtures
TL;DR: In this article, the authors conducted 29 batches of vented explosion tests in a 12m 3 concrete chamber filled with methane-air mixtures to investigate the effects of methane concentration and venting pressure on the development of overpressure inside the chamber.
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Experimental study of CFDST columns infilled with UHPC under close-range blast loading
Fangrui Zhang,Chengqing Wu,Chengqing Wu,Xiao Ling Zhao,Hengbo Xiang,Zhong Xian Li,Qin Fang,Zhongxian Liu,Yadong Zhang,Amin Heidarpour,Jeffrey A. Packer +10 more
TL;DR: In this paper, an experimental investigation on ultra-high performance concrete infilled double-skin tube columns subjected to close-in blast loading is presented. But, the main test parameters included the explosive charge weight and the magnitude of axial load.
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Experimental and numerical study of unreinforced clay brick masonry walls subjected to vented gas explosions
TL;DR: In this article, a detailed micro model for masonry wall was developed in the finite element software LS_DYNA 971, and intensive numerical simulations were conducted to explore the influences of boundary condition, bonding pattern and thickness of masonry walls on their performances against vented gas explosions.
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Coupling effect of strain rate and specimen size on the compressive properties of coral aggregate concrete: A 3D mesoscopic study
TL;DR: In this paper, a 3D mesoscale modeling approach taking the random characteristics of aggregates is developed for the numerical study of coral aggregate concrete (CAC) for the development and application of CAC.