Advances in research on the ballast bed stability on railway bridges

IF 1.7 4区 工程技术 Q3 ENGINEERING, CIVIL
Rong Chen, Hui Peng, Kai Liu, Juzhen Liu, Junfeng Li, Jianxing Liu, Ping Wang
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引用次数: 0

Abstract

The rapid development of high-speed railway bridges in China has brought enormous challenges to the ballast bed stability on the bridge. With the increase in the bridge span, the bridge deformation under the temperature load increases gradually, as well as the stability difference of ballast bed between different regions. Moreover, the track vibration response under high-speed driving conditions is larger, which can easily cause differential settlement, flying ballast, and deterioration of the ballast bed, thereby affecting the bearing capacity and stability of the ballast bed. In view of this, this article summarizes relevant research work on a ballast bed on the bridge from the perspectives of the resistance, deformation, and acceleration response of the ballast bed. In addition, this study discusses the existing measures for improving the ballast bed stability on the bridge, including the optimization of the sleeper and ballast bed structures. Finally, the main issues that need to be addressed to improve the ballast bed stability on the bridge are pointed out, and ideas for future research on ballast beds on bridges with different spans and structures are proposed.
铁路桥梁道碴稳定研究进展
中国高速铁路桥梁的快速发展给桥梁的砟道床稳定性带来了巨大挑战。随着桥梁跨度的增大,桥梁在温度荷载作用下的变形逐渐增大,不同区域间无砟道床的稳定性差异也逐渐增大。此外,高速行驶条件下的轨道振动响应较大,容易造成差异沉降、飞碴和无砟道床劣化,从而影响无砟道床的承载能力和稳定性。有鉴于此,本文从道碴床的阻力、变形和加速度响应等方面总结了桥梁道碴床的相关研究工作。此外,本研究还讨论了改善桥梁压载床稳定性的现有措施,包括优化枕木和压载床结构。最后,指出了改善桥梁砟道床稳定性需要解决的主要问题,并对不同跨度和结构的桥梁砟道床提出了未来研究思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.80
自引率
10.00%
发文量
91
审稿时长
7 months
期刊介绍: The Journal of Rail and Rapid Transit is devoted to engineering in its widest interpretation applicable to rail and rapid transit. The Journal aims to promote sharing of technical knowledge, ideas and experience between engineers and researchers working in the railway field.
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