Effects of shallow-layer reverberation on measurement of teleseismic P-wave travel times for ocean bottom seismograph data 4. Seismology

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Abstract

We conducted synthetic experiments to evaluate the effects of shallow-layer reverberation in oceanic regions on P-wave travel times measured by waveform cross-correlation. Time shift due to waveform distortion by the reverberation was estimated as a function of period. Reverberations in the crystalline crust advance the P-waves by a frequency-independent time shift of about 0.3 s in oceans. Sediment does not affect the time shifts in the mid-ocean regions, but effects as large as -0.8 s or more occur where sediment thickness is greater than 600 m for periods longer than 15 s. The water layer causes time delays (+0.3 s) in the relatively shallow (<3500 m) water region for periods longer than 20 s. The time shift may influence mantle images obtained if the reverberation effects are not accounted for in seismic tomography. We propose a simple method to correct relative P-wave travel times at two sites for shallow-layer reverberation by the cross-convolution of the crustal responses at the two sites. [Figure not available: see fulltext. Caption:.]

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Obayashi, M., Ishihara, Y., & Suetsugu, D. (2017). Effects of shallow-layer reverberation on measurement of teleseismic P-wave travel times for ocean bottom seismograph data 4. Seismology. Earth, Planets and Space, 69(1). https://doi.org/10.1186/s40623-017-0626-2

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