TY - JOUR
T1 - Experimental study on dynamic effects of a long-span railway continuous beam bridge
AU - Gou, Hongye
AU - Zhou, Wen
AU - Bao, Yi
AU - Li, Xiaobin
AU - Pu, Qianhui
N1 - Publisher Copyright:
© 2018 by the authors.
PY - 2018/4/26
Y1 - 2018/4/26
N2 - Studies on impact effects of trains on the railway bridge are important for ensuring the reliability of bridge and the safety of train operation. This paper presents an experimental study on the dynamic effects of moving trains on a long-span railway continuous beam bridge. The dynamic responses of the bridge under the moving trains were measured through in-situ testing and finite element analysis. The influences of the moving trains and track irregularity are considered. The investigated influencing factors include the weight and speed of the train and the irregularity of the track on the bridge. The results indicate that the train's speed does not have obvious influence on the impact factor, while train's weight and track irregularity have notable effects on the impact factor. But from the overall development law, with the increase of train speed, the impact factor increases. The impact factors obtained in this study are larger than the values provided by the China bridge design codes, which indicates that the bridge code underestimates the impact effect of the train on the bridge. The design value of the impact factor should be properly improved in the bridge design.
AB - Studies on impact effects of trains on the railway bridge are important for ensuring the reliability of bridge and the safety of train operation. This paper presents an experimental study on the dynamic effects of moving trains on a long-span railway continuous beam bridge. The dynamic responses of the bridge under the moving trains were measured through in-situ testing and finite element analysis. The influences of the moving trains and track irregularity are considered. The investigated influencing factors include the weight and speed of the train and the irregularity of the track on the bridge. The results indicate that the train's speed does not have obvious influence on the impact factor, while train's weight and track irregularity have notable effects on the impact factor. But from the overall development law, with the increase of train speed, the impact factor increases. The impact factors obtained in this study are larger than the values provided by the China bridge design codes, which indicates that the bridge code underestimates the impact effect of the train on the bridge. The design value of the impact factor should be properly improved in the bridge design.
KW - Continuous beam bridge
KW - Dynamic test
KW - Finite element analysis
KW - Impact factor
KW - Railway
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U2 - 10.3390/app8050669
DO - 10.3390/app8050669
M3 - Article
AN - SCOPUS:85046151583
VL - 8
JO - Applied Sciences (Switzerland)
JF - Applied Sciences (Switzerland)
IS - 5
M1 - 669
ER -