Thermal performance of CRTS II slab track-bridge structure under extreme temperatures: Numerical simulation

被引:11
|
作者
Zhou, Rui [1 ,2 ,3 ]
Yuan, Wenhao [2 ]
Liu, Weibin [3 ]
Zhu, Xuan [2 ]
Yao, Guowen [1 ]
Li, Feng [2 ]
Zhang, Lihai [4 ]
机构
[1] Chongqing Jiaotong Univ Univ, State Key Lab Mt Bridge & Tunnel Engn, Chongqing 400074, Peoples R China
[2] Shenzhen Univ, Coll Civil & Transportat Engn, Shenzhen 518060, Peoples R China
[3] China Acad Railway Sci Corp Ltd, State Key Lab High Speed Railway Track Technol, Beijing 100085, Peoples R China
[4] Univ Melbourne, Dept Infrastruct Engn, Melbourne, Vic 3010, Australia
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
CRTS II slab track; Extreme temperature; Thermal deformation; Bilinear cohesive zone model; Heat transfer model; MECHANISM; STRESS; DAMAGE;
D O I
10.1016/j.conbuildmat.2023.131147
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Large thermal deformation of CRTS II slab track due to thermal effect is harmful to the operational safety of the high-speed railway. In order to explore the thermal deformation of the CRTS II slab track under extreme ambient temperatures, the parameters of two bilinear cohesive zone models (CZMs) of vertical interlayer and longitudinal slab interlayer are firstly deduced by the splitting and shearing modelling tests, respectively. Secondly, the transient heat transfer models of CRTS II slab track-bridge structure incorporated with two CZMs are verified by our previous thermal experimental results. Finally, thermal responses (e.g. temperature distribution, stress, and displacement) of the track structure are calculated under two extreme high temperatures (i.e.50 & DEG;C and 60 & DEG;C) and two low temperatures (i.e.-20 & DEG;C and -40 & DEG;C), respectively. Results show that the heat transfer model could effectively reflect thermal performance of the CRTS II track-bridge structure under extreme high and low temperatures. The internal temperatures and stresses of the track slab rapidly change in two hours and then have a slow change rate, an obvious mutation is found in the stress and displacement response under extreme high temperatures. Furthermore, the maximum arching displacement change from the ends of the track slab under the 50 & DEG;C to the middle of the track slab under the 60 & DEG;C, while both the maximum warping displacement occur at the ends of the track slab under the -20 & DEG;C and -40 & DEG;C, respectively.
引用
收藏
页数:13
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