Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

The AD 1755 Lisbon Earthquake-Tsunami

Seismic source modelling from the analysis of ESI-07 environmental data

Bibliographic Data

ID14976010
AuthorsPablo Gabriel Silva Barroso (0000-0003-1470-292X), Javier Elez (0000-0002-1166-5310), Raúl Pérez-López, Raúl Pérez‐López (0000-0001-6441-2504), Jorge Luis Giner-Robles, Pedro V Gómez-Diego, Elvira Roquero (0000-0002-0334-914X), Miguel Angel Rodríguez-Pascua (0000-0001-5174-119X), Teresa Bardají
Year2023
Volume651
Pages6-24
Publication date2023-03-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueQuaternary International (JOURNAL)
Journal identifiersISSN: 1040-6182 • E-ISSN: 1873-4553
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.quaint.2021.11.006
OpenAlexW3214082248
LanguageEN
Citations received3
References cited64

This work presents a macroseismic analysis of the AD 1755 Lisbon Earthquake-Tsunami event by means of the combination of intensity data derived from the EMS-98 scale and the ESI-07 scale (Environmental damage). About 600 records of secondary earthquake environmental effects (EEEs) for the whole Spain have been used to define intensities, focused on the SW portion of the Iberian Peninsula. The Spanish data have been complemented with 308 EEEs records from Portugal. The analyses indicate maximum intensities of X EMS-ESI along the Atlantic margin of the Iberian Peninsula with 76 records of Tsunami environmental effects (TEEs). An important amplification (VIII – VII) occurred all along the Guadalquivir basin and the adjacent Betic front at epicentral distances of 300–700 km. In these zones 55 records of ground effects (ground cracks, Liquefactions and slope movements) are catalogued. In the rest of the territory of the Peninsula the most widespread effects were hydrogeological changes with 505 records in Spain and 196 in Portugal (total 701 records) covering all the intensity levels. Increase of flow discharges in springs and elevation of water level in wells was the common groundwater response to seismic shacking, especially in SW Iberia. In this zone water elevation in wells was between 5 and 3 m and persistent increases of discharges long-lasting (several days to two months). Persistent discharges on springs were linked in 143 cases to important SW-NE crustal faults (e.g., Alentejo-Plasencia Fault). From the Intensity distribution the historic seismic scenarios are explored by means of the development of empirical ShakeMaps. These consider the three classical seismic sources proposed for this earthquake: Gorringe Bank (G); Marques de Pombal Fault (M) and Atlantic delamination beneath the Gulf of Cadiz (C). However, individually these seismic sources are too small and unable to generate the resulting seismic scenario depicted by the intensity map developed in this work, with onshore seismic accelerations (PGA) up to 0.82 g. These acceleration values and the great amplification experienced throughout the Guadalquivir basin (0.34–0.52 g) are only possible considering a combination of the three seismic sources (GMC Source) probably related to shallow subduction or lithospheric delamination beneath SW Iberia and the Gulf of Cadiz. This will suggest an NNE-SSW offshore rupture length of 350–360 km with an overall rupture area of c. 84,500 km2 resulting in an event magnitude 8.6 Mw calculated from empirical relationships. The results demonstrate the efficacy of these kind of approaches for better identifying and modelling seismic sources for historical events

Archaeology · Elevation (ballistics · Fault (geology · Geography · Geomorphology · Geotechnical engineering · Hydrogeology · Peninsula · Seismology · Structural basin · earthquake and tectonic studies · Geological and Geophysical Studies Worldwide · Geological and Tectonic Studies in Latin America · Geology

  • A numerical methodology for estimating site-specific cascading earthquake and tsunami dynamic loading on critical infrastructure

    Open Access•Cláudia Reis, Andre R Barbosa et al.•International Journal of Disaster…•2024

  • Coastal flooding in Kołobrzeg (Kolberg) area, southern Baltic Sea, in the light of historical and geological data

    Open Access•Andrzej Piotrowski, Fritz Brose et al.•The Holocene•2024

  • Earthquake Geology and Seismic Hazards

    Open Access•Christoph Grützner, Stéphane Baize et al.•Quaternary International•2023

  • Geomarkers of the 218–209 BC Atlantic tsunami in the Roman Lacus Ligustinus (SW Spain)

    Open Access•Joaquín Rodríguez-Vidal, Francisco Ruiz et al.•Quaternary International•2011

  • ESI-07 ShakeMaps for instrumental and historical events in the Betic Cordillera (SE Spain)

    Open Access•P G Silva, J Elez et al.•Quaternary International•2017

  • Constraining pre-instrumental earthquake parameters from slope stability back-analysis

    Open Access•Martín J Rodríguez-Peces, Julián García-Mayordomo et al.•Quaternary International•2011

  • The 1755 Lisbon earthquake and the beginning of closure of the Atlantic

    Open Access•A Ribeiro, L Mendes-Victor et al.•European Review•2006

Unique citing works3
Citations per year1
Citation span2023 - 2024 (2)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 3

Tools

Open DOIOpen Access
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae