Strong ground motion from the seismic swarms preceding the 2021 and 2022 volcanic eruptions at Fagradalsfjall, Iceland

Author:

Aguirre Victor Moises Hernandez1ORCID,Rupakhety Rajesh1ORCID,Ólafsson Simon1,Bessason Bjarni1,Erlingsson Sigurður1,Paolucci Roberto2,Smerzini Chiara2

Affiliation:

1. University of Iceland: Haskoli Islands

2. Politecnico di Milano DICA: Politecnico di Milano Dipartimento di Ingegneria Civile e Ambientale

Abstract

Abstract The Geldingadalir and Meradalir eruptions at Mt. Fagradalsfjall in the Reykjanes Peninsula on 19 March 2021 and 3 August 2022, respectively, were preceded by intense volcano-tectonic swarms. Eight earthquakes with M ≥ 5 were recorded by the Icelandic Strong Motion Network. We present an overview of the seismicity in Fagradalsfjall, and salient features of the strong ground motion caused by the swarms in the epicentral area. The largest recorded horizontal Peak Ground Acceleration (PGA) was ~ 0.45g at Grindavík, which is the strongest PGA recorded in Iceland since the MW6.3 2008 Ölfus Earthquake. Recorded waveforms show a rich long-period energy content, with a burst of higher frequencies at the beginning of shaking. This leads to larger response spectral accelerations at long periods that those from typical shallow crustal earthquakes. Moreover, an empirical mixed-effects ground motion model for PGA was calibrated based on the available recordings. The attenuation rate of PGA from this model is similar to that introduced by Lanzano and Luzi (2020) which is based on data from volcanic events in Italy, but the magnitude scaling of our model is much lower. The overall results indicate that scaling and attenuation of ground motion from volcanic events and purely tectonic earthquakes in Iceland are likely very different. This is an important observation because seismic hazard in parts of the Reykjavik area and of the central highlands, where important hydroelectric power plants are located, could potentially be dominated by events of volcanic origin. Therefore, it is important to take these observations into account for seismic hazard and risk assessment in Iceland.

Publisher

Research Square Platform LLC

Reference49 articles.

1. Maximum likelihood estimate of b in the formula log N = a-bM and its confidence limits;Aki K;Bull Earthq Res Inst,1965

2. Empirical ground-motion models for point- and extended-source crustal earthquake scenarios in Europe and the Middle East;Akkar S;Bull Earthq Eng,2014

3. Coseismic stress changes and crustal deformation on the Reykjanes Peninsula due to triggered earthquakes on 17 June 2000;Árnadóttir T;J Geophys Research: Solid Earth,2004

4. The attenuation of seismic intensity in the Etna region and comparison with other Italian volcanic districts;Azzaro R;Ann Geophys,2006

5. Seismicity of the Reykjanes Peninsula 1971–1976;Björnsson S;J Volcanol Geoth Res,2020

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