The Analysis of High-Speed Railway Seismic- induced Track Geometric Irregularity
Li, Guolong
Yang, Fei
Gao, Mangmang
Sun, Wentao
Qu, Xiangyu
2025-09-17T07:41:49Z
2025-09-17T07:41:49Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33779
The high-speed railway in China passes through various seismic zones. As the
track geometric irregularity is a critical aspect impacting train operation safety and train-
induced vibration, it is meaningful to investigate the influence of earthquakes on the
seismic-induced track geometric irregularity of high-speed railways. To determine the
impact of earthquakes on track conditions, a complete study was conducted using various
earthquake magnitude levels (3.0 to 7.0), varied limiting train speeds, and different track
structural types (ballasted and ballastless track). The track quality index, long-wave
irregularities, 10 m chord measurement, and vehicle vibration are analysed to suggest the
change of track geometric irregularity and its influence after the earthquake. At the same
time, the vehicle-track analysis model is used to calculate the difference in vehicle
vibration under different seismic-induced track conditions. The vehicle acceleration, the
rate of wheel load reduction, derailment coefficient indicators are investigated. These
results imply that earthquakes have an impact on high-speed railways, causing track
geometric irregularities to shift, which may contribute to increased vibration while trains
are running. Compared to the ballasted track, whose normal speed is 250 km/h, the
ballastless track, whose nominal speed is 350 km/h, was affected by the earthquake less.
According to data, earthquakes have an influence on long waves greater than 1 m. While
small and moderate earthquakes have a minor effect on railway safety, they do have an
effect on train operating comfort because vehicle vibration is amplified as a result of the
seismic-induced track geometric irregularity being worse.
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The Analysis of High-Speed Railway Seismic- induced Track Geometric Irregularity