期刊论文详细信息
Frontiers in Materials
Research on the longitudinal movement and influence of restraint parameters of the long-span suspension bridge’s main girder
Materials
Yuan Jieyi1  Liu Yujing2  Sun Hongbin3 
[1] CCCC Highway Bridges National Engineering Research Centre Co., Ltd., Beijing, China;Jiangsu Expressway Engineering Maintenance Technology Co., Ltd., Nanjing, China;Jiangsu Yangtze River Expressway Management Co., Ltd., Nanjing, China;
关键词: long-span suspension bridge;    longitudinal movement of girder end;    traffic load;    damper;    support;   
DOI  :  10.3389/fmats.2023.1230097
 received in 2023-05-28, accepted in 2023-07-17,  发布年份 2023
来源: Frontiers
PDF
【 摘 要 】

The long-span suspension bridge has suffered from multiple failures of restraints such as supports, dampers, and expansion joints due to excessive accumulated displacement at the girder end. To investigate the main girders’ characteristics in the longitudinal motion of these bridges and the influence of the restraint device on the longitudinal displacement, the motion characteristics were first analyzed based on the measured displacement data of a certain bridge’s main girder; a dynamic finite element model of the bridge’s random traffic flow was then established based on the measured WIM data; combined with the girder end displacement monitoring data, the Euclidean distance was used to verify the correctness and rationality of the proposed model; finally, the model is used to discuss the influence of restraint devices (i.e., viscous dampers and supports) on the main girder in the longitudinal direction. The results show that dynamic loads (such as vehicles and wind) are the principal reasons for huge accumulated travel at the girder end; The viscous damper can effectively control the longitudinal movement; in a certain range, the larger the damping index, the better the control effect of the damper; meanwhile, the friction coefficient of the support also affects the longitudinal motion, but the effect is limited. When the friction coefficient is ≤ 0.03, the girder end’s cumulative displacement gradually decreases with the increasing friction coefficient, and compared to the damping index, the friction coefficient plays a major controlling role in the girder end displacement; when the friction coefficient is >0.03, the damping index plays a major controlling role in the girder end displacement.

【 授权许可】

Unknown   
Copyright © 2023 Hongbin, Jieyi and Yujing.

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附件列表
Files Size Format View
RO202310109494309ZK.pdf 2956KB PDF download
fphar-14-1189241-fx9.tif 30KB Image download
FMATS_fmats-2023-1230097_wc_tfx2.tif 22KB Image download
fphar-14-1189241-fx11.tif 39KB Image download
FMATS_fmats-2023-1230097_wc_tfx4.tif 24KB Image download
fnins-17-1220172-i0007.tif 128KB Image download
fdgth-05-1134490-i001.tif 18KB Image download
FMATS_fmats-2023-1230097_wc_tfx7.tif 24KB Image download
fendo-14-1201198-i001.tif 32KB Image download
FMATS_fmats-2023-1230097_wc_tfx9.tif 21KB Image download
fendo-14-1201198-i003.tif 33KB Image download
FMATS_fmats-2023-1230097_wc_tfx11.tif 27KB Image download
fendo-14-1201198-i006.tif 28KB Image download
FMATS_fmats-2023-1230097_wc_tfx13.tif 24KB Image download
FMATS_fmats-2023-1230097_wc_tfx14.tif 28KB Image download
【 图 表 】

FMATS_fmats-2023-1230097_wc_tfx14.tif

FMATS_fmats-2023-1230097_wc_tfx13.tif

fendo-14-1201198-i006.tif

FMATS_fmats-2023-1230097_wc_tfx11.tif

fendo-14-1201198-i003.tif

FMATS_fmats-2023-1230097_wc_tfx9.tif

fendo-14-1201198-i001.tif

FMATS_fmats-2023-1230097_wc_tfx7.tif

fdgth-05-1134490-i001.tif

fnins-17-1220172-i0007.tif

FMATS_fmats-2023-1230097_wc_tfx4.tif

fphar-14-1189241-fx11.tif

FMATS_fmats-2023-1230097_wc_tfx2.tif

fphar-14-1189241-fx9.tif

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