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Volcanic geology and eruption frequency, São Miguel, Azores

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Abstract

Six volcanic zones comprise São Miguel, the largest island in the Azores. All are Quaternary in age except the last, which is partly Pliocene. From west to east the zones are (1) the trachyte stratovolcano of Sete Cidades, (2) a field of alkali-basalt cinder cones and lava flows with minor trachyte, (3) the trachyte stratovolcano of Agua de Pau, (4) a field of alkali-basalt cinder cones and lava flows with minor trachyte and tristanite, (5) the trachyte stratovolcano of Furnas, and (6) the Nordeste shield, which includes the Povoação caldera and consists of alkali basalt, tristanite, and trachyte. New radiocarbon and K-Ar ages augment stratigraphic data obtained during recent geologic mapping of the entire island and provide improved data to interpret eruption frequency. Average dormant intervals for the past approximately 3000 years in the areas active during that time are about 400 years for Sete Cidades, 145 for zone 2, 1150 for Agua de Pau, and 370 for Furnas. However, the average dormant interval at Sete Cidades increased from 400 to about 680 years before each of the past two eruptions, and the interval at Furnas decreased from 370 to about 195 years before each of the past four eruptions. Eruptions in zone 4 occurred about once every 1000 years during latest Pleistocene and early Holocene time; none has occurred for about 3000 years. The Povoação caldera truncates part of the Nordeste shield and probably formed during the middle to late Pleistocene. Calderas formed during latest Pleistocene time at the three younger stratovolcanoes in the sequence: outer Agua de Pau (between 46 and 26.5 ka), Sete Cidades (about 22 ka), inner Agua de Pau (15.2 ka), and Furnas (about 12 ka). Normal faults are common, but many are buried by Holocene trachyte pumice. Most faults trend northwest or west-northwest and are related to the Terceira rift, whose most active segment on São Miguel passes through Sete Cidades and zone 2. A major normal fault displaces Nordeste lavas 150–250 m and may mark the location of an ancestral Terceira rift. Recent seismicity (e.g., in the 1980s) generally has been scattered, but some small earthquake swarms have occurred beneath the north-eastern flank of Agua de Pau.

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References

  • Abdel-Monem AA, Fernandez LA, Boone GM (1975), K-Ar ages from the eastern Azores group (Santa Maria, São Miguel and the Formigas Islands). Lithos 8:247–254

    Google Scholar 

  • Booth B, Croasdale R, Walker GPL (1978) A quantitative study of five thousand years of volcanism on São Miguel, Azores. Phil Trans R Soc London 288:271–319

    Google Scholar 

  • Booth B, Croasdale R, Walker GPL (1983) Volcanic hazard on São Miguel, Azores. Forecasting volcanic events. Elsevier, Amsterdam Oxford New York Tokyo, pp 99–109

    Google Scholar 

  • Dawson PB, da Silva AMR, Iyer HM, Evans JR (1985) Seismic study of the Agua de Pau geothermal prospect. São Miguel, Azores. Geotherm Res Council Trans 9:401–406

    Google Scholar 

  • Esenwein P (1929) Zur petrographie der Azoren. Z Vulkan 12:108–227

    Google Scholar 

  • Fernandez LA (1980) Geology and petrology of the Nordeste volcanic complex, São Miguel, Azores. Geol Soc Am Bull 91:675–680

    Google Scholar 

  • Flower MFJ, Schmincke H-U, Bowman H (1976) Rare earth and other trace elements in historic Azorean lavas. J Volcanol Geotherm Res 1:127–147

    Google Scholar 

  • Gandino A, Guidi M, Merlo C, Mete L, Rossi R, Zan L (1985) Preliminary model of the Ribeira Grande geothermal field (Azores Islands) Geothermics 14:91–105

    Google Scholar 

  • Hawkesworth CJ, Norry MJ, Roddick JC, Vollmer R (1979) 143Nd/144Nd and 87Sr/86Sr ratios from the Azores and their significance in LIL-element enriched mantle. Nature 280:28–31

    Google Scholar 

  • Huang TC, Watkins ND, Wilson L (1979) Deep-sea tephra from the Azores during the past 300000 years: eruptive cloud height and ash volume estimates. Geol Soc Am Bull 90:131–133

    Google Scholar 

  • Jeremine E (1957) Etude microscopique des roches de la region de Furmas (S. Miguel-Açores). Commun Serv Geol Port 38:65–90

    Google Scholar 

  • Krause DC, Watkins ND (1970) North Atlantic crustal genesis in the vicinity of the Azores. Geophys J R Astron Soc 19:261–283

    Google Scholar 

  • Moore RB (1983a) Preliminary geologic map of Furnas Volcano, São Miguel, Azores. US Geol Survey open-file report 83-395

  • Moore RB (1983b) Preliminary geologic map of Sete Cidades Volcano, São Miguel, Azores. US Geol Survey open-file report 83-742

  • Moore RB (1986) Preliminary geologic map of Agua de Pau Volcano, São Miguel, Azores. US Geol Survey open-file report 86-192

  • Moore RB (in press, a) Geologic map of São Miguel, Azores. US Geol Survey Misc Inv Map I-

  • Moore RB (in press, b) Geology of three late Quaternary stratovolcanoes on São Miguel, Azores. US Geol Survey Bull

  • Muecke GK, Ade-Hall JM, Aumento F, MacDonald A, Reynolds PH, Hyndman RD, Quintino J, Opdyke N, Lowrie W (1974) Deep drilling in an active geothermal area in the Azores. Nature 252:281–285

    Google Scholar 

  • Schilling J-G (1975) Azores mantle blob: rare-earth evidence. Earth Planet Sci Lett 25:103–115

    Google Scholar 

  • Schmincke H-U (1973) Magmatic evolution and tectonic regime in the Canary, Madeira, and Azores island groups. Geol Soc Am Bull 84:633–648

    Google Scholar 

  • Schmincke H-U, Weibel, M (1972) Chemical study of rocks from Madeira, Porto Santo, and São Miguel, Terceira (Azores). N JB Miner Abh 117:253–281

    Google Scholar 

  • Searle R (1980) Tectonic pattern of the Azores spreading centre and triple junction Earth Planet Sci Lett 51:415–434

    Google Scholar 

  • Sparks SRJ, Sigurdsson H, Wilson L (1977) Magma mixing: a mechanism for triggering acid explosive eruptions. Nature 267:315–318

    Google Scholar 

  • van Padang MN, Richards AF, Machado F, Bravo T, Baker PE, Le Maitre RW (1967) Catalogue of active volcanoes-Atlantic Ocean. Inter Volcan Assoc pt 21

  • Walker GPL (1984) Downsag calderas, ring faults, caldera sizes, and incremental caldera growth. J Geophys Res 89:8407–8416

    Google Scholar 

  • Walker GPL, Croasdale R (1970) Two Plinian-type eruptions in the Azores. J Geol Soc London 127:17–55

    Google Scholar 

  • Weston FS (1964) List of recorded volcanic eruptions in the Azores with brief reports. Bol Mus Lab Mineral Geol Fac Cien 10:3–18

    Google Scholar 

  • White WM, Schilling J-G, Hart SR (1976) Evidence for the Azores mantle plume from strontium isotope geochemistry of the Central North Atlantic. Nature 263:659–663

    Google Scholar 

  • White WM, Tapia MDM, Schilling J-G (1979) The petrology and geochemistry of the Azores Islands. Contrib Mineral Petrol 69:201–213

    Google Scholar 

  • Zbyszewski G, D'Almeida FM, da Veiga Ferreira O (1958) Carta geologica de Portugal na escala de 1:50000 (São Miguel). Serv Geol de Port, Lisboa

    Google Scholar 

  • Zbyszewski G, Ferreira O da V (1959) Carta geological de Portugal na escala de 1:50000 (São Miguel). Serv Geol de Port Lisboa

    Google Scholar 

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Moore, R.B. Volcanic geology and eruption frequency, São Miguel, Azores. Bull Volcanol 52, 602–614 (1990). https://doi.org/10.1007/BF00301211

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