Practical Array Design for Multi-Mode Frequency-Wavenumber Analysis of Surface Waves

Summary Seismic velocity profiles are crucial for exploring subsurface features and monitoring seismicity. The depth sensitivity of seismic surface waves depends on frequency and, therefore, dispersion curves, routinely obtained from frequency-wavenumber methods, are used to invert subsurface velocity structures. However, an optimal, scalable array design concept suitable for various target depths and applications remains under discussion. We propose an array design, optimised for passive seismic surveys, based on circular arrays using only the target depth range as input. Exploiting the impact of the array layout on wavenumber resolution and aliasing, we derive new relations for optimized arrays requiring only the target depth range. The concept accounts for different modes and wave types by considering penetration depth in terms of wavelength. For fundamental-mode Rayleigh waves, the maximum inter-station distance should be at least five times the maximum target depth, and the minimum distance smaller than twice the minimum target depth to avoid aliasing.

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Publication Details

Journal
Geophysical Journal International
Published
2026-09-29
DOI
https://doi.org/10.1093/gji/ggag398
Primary Topic
Seismic Waves and Analysis
Type
article
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Practical Array Design for Multi-Mode Frequency-Wavenumber Analysis of Surface Waves

Geneviève Savard, Claudia Finger, S Kaur, K Löer et al.
Geophysical Journal International
Seismic Waves and Analysis
article

Practical Array Design for Multi-Mode Frequency-Wavenumber Analysis of Surface Waves

Geneviève Savard, Claudia Finger, S Kaur, K Löer, E H Saenger, F Muñoz-Burbano
article en

Abstract

Summary Seismic velocity profiles are crucial for exploring subsurface features and monitoring seismicity. The depth sensitivity of seismic surface waves depends on frequency and, therefore, dispersion curves, routinely obtained from frequency-wavenumber methods, are used to invert subsurface velocity structures. However, an optimal, scalable array design concept suitable for various target depths and applications remains under discussion. We propose an array design, optimised for passive seismic surveys, based on circular arrays using only the target depth range as input. Exploiting the impact of the array layout on wavenumber resolution and aliasing, we derive new relations for optimized arrays requiring only the target depth range. The concept accounts for different modes and wave types by considering penetration depth in terms of wavelength. For fundamental-mode Rayleigh waves, the maximum inter-station distance should be at least five times the maximum target depth, and the minimum distance smaller than twice the minimum target depth to avoid aliasing.

Geophysical Journal International
University of Geneva (CH), Fraunhofer Research Institution for Energy Infrastructures and Geotechnologies IEG (DE), Bochum University of Applied Sciences (DE), Department of Earth Sciences (RU), Ruhr University Bochum (DE), Delft University of Technology (NL)
Openalex Percentile: Top 14%
Seismic Waves and Analysis
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Practical Array Design for Multi-Mode Frequency-Wavenumber Analysis of Surface Waves — Geneviève Savard, Claudia Finger, et al. · Geophysical Journal International (2026) | TGRS Research Map | TGRS