Doppler effect in high-speed rail seismic wavefield and its application

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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.

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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

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