Abstract
We demonstrate by theoretical analysis that periodically distributed viaduct piers of high-speed rail result in the Doppler effect in the seismic wavefield of high-speed rail at specific frequencies and analyze the Doppler effect’s influence on the wavefield’s spectrum feature. We further verify our theoretical prediction by using observational data of the high-speed rail seismic wavefield in Rongcheng, Hebei Province, China. We find that the wavefield component with a noticeable Doppler effect vibrates in the propagation direction and only has a unique apparent wave speed, indicating that P-wave is dominant. Furthermore, we propose a speed measurement method based on the Doppler effect and measure the wave speed of the medium along the rail. Measurement results are highly stable and consistent.
Author supplied keywords
Cite
CITATION STYLE
Jiang, Y., Ning, J., Wen, J., & Shi, Y. (2022). Doppler effect in high-speed rail seismic wavefield and its application. Science China Earth Sciences, 65(3), 414–425. https://doi.org/10.1007/s11430-021-9843-0
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.