Publications des scientifiques de l'IRD

Yates A. S., Caudron C., Mordret A., Lesage P., Pinel Virginie, Lecocq T., Miller C. A., Lamb O. D., Fournier N. (2024). Seasonal snow cycles and their possible influence on seismic velocity changes and eruptive activity at Ruapehu Volcano, New Zealand. Journal of Geophysical Research : Solid Earth, 129 (12), p. e2024JB029568 [28 p.]. ISSN 2169-9313.

Titre du document
Seasonal snow cycles and their possible influence on seismic velocity changes and eruptive activity at Ruapehu Volcano, New Zealand
Année de publication
2024
Type de document
Article référencé dans le Web of Science WOS:001377038700001
Auteurs
Yates A. S., Caudron C., Mordret A., Lesage P., Pinel Virginie, Lecocq T., Miller C. A., Lamb O. D., Fournier N.
Source
Journal of Geophysical Research : Solid Earth, 2024, 129 (12), p. e2024JB029568 [28 p.] ISSN 2169-9313
Understanding volcanic eruption triggers is critical toward anticipating future activity. While internal magma dynamics typically receive more attention, the influence of external processes remains less understood. In this context, we explore the relationship between seasonal snow cycles and eruptive activity at Ruapehu, New Zealand. This is motivated by apparent seasonality in the eruptive record, where a higher than expected proportion of eruptions (post-1960) occur in spring (including the two previous eruptions of 2006 and 2007). Employing recent advancements in passive seismic interferometry, we compute sub-surface seismic velocity changes between 2005 and 2009 using the cross-wavelet transform approach. Stations on the volcano record a higher velocity in winter, closely correlated with the presence of snow. Inverting for depth suggests these changes occur within the upper 300 m. Notably, we observe that the timing of the previous two eruptions coincides with a period associated with an earlier velocity decrease at approximately 200-300 m depth relative to the surface. Reduced water infiltration (as precipitation falls as snow) is considered a likely control of seasonal velocities, while modeling also points to a contribution from snow-loading. We hypothesize that this latter process may play a role toward explaining seasonality in the eruptive record. Our findings shed light on the complex interactions between volcanoes and external environmental processes, highlighting the need for more focused research in this area. Pursuing this line of inquiry has significant implications toward improved risk and hazard assessments at not just Ruapehu, but also other volcanoes globally that experience seasonal snow cover.
Plan de classement
Sciences du milieu [021] ; Géophysique interne [066]
Description Géographique
NOUVELLE ZELANDE ; RUAPEHU VOLCAN
Localisation
Fonds IRD [F B010092190]
Identifiant IRD
fdi:010092190
Contact