Publications des scientifiques de l'IRD

van den Ende M. P. A., Ampuero Jean-Paul. (2021). Evaluating seismic beamforming capabilities of distributed acoustic sensing arrays. Solid Earth, 12 (4), 915-934. ISSN 1869-9510.

Titre du document
Evaluating seismic beamforming capabilities of distributed acoustic sensing arrays
Année de publication
2021
Type de document
Article référencé dans le Web of Science WOS:000644258900001
Auteurs
van den Ende M. P. A., Ampuero Jean-Paul
Source
Solid Earth, 2021, 12 (4), 915-934 ISSN 1869-9510
The versatility and cost efficiency of fibre-optic distributed acoustic sensing (DAS) technologies facilitate geophysical monitoring in environments that were previously inaccessible for instrumentation. Moreover, the spatiotemporal data density permitted by DAS naturally appeals to seismic array processing techniques, such as beamforming for source location. However, the measurement principle of DAS is inherently different from that of conventional seismometers, providing measurements of ground strain rather than ground motion, and so the suitability of traditional seismological methods requires in-depth evaluation. In this study, we evaluate the performance of a DAS array in the task of seismic beamforming, in comparison with a co-located nodal seismometer array. We find that, even though the nodal array achieves excellent performance in localising a regional M-L 4.3 earthquake, the DAS array exhibits poor waveform coherence and consequently produces inadequate beamforming results that are dominated by the signatures of shallow scattered waves. We demonstrate that this behaviour is likely inherent to the DAS measurement principle, and so new strategies need to be adopted to tailor array processing techniques to this emerging measurement technology. One strategy demonstrated here is to convert the DAS strain rates to particle velocities by spatial integration using the nodal seismometer recordings as a reference, which dramatically improves waveform coherence and beamforming performance and warrants new types of "hybrid" array design that combine dense DAS arrays with sparse seismometer arrays.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Géophysique interne [066]
Description Géographique
ETATS UNIS ; NEVADA
Localisation
Fonds IRD [F B010081381]
Identifiant IRD
fdi:010081381
Contact