Page 24 - Caldera Volcanism Analysis, Modelling and Response
P. 24
Preface xxiii
Dutton, C.E., 1884. Hawaiian volcanoes. In: Fourth Annual Report, US Geological Survey,
Washington D.C., pp. 75–219.
Folch, A., Martı ´, J., 2004. Geometrical and mechanical constraints on the formation of ring-fault
calderas. Earth Planet. Sci. Lett., 221(1–4), 215–225.
Fouque ´, F., 1879. Santorin et ses eruptions. Masson, Paris, 39, 440 pp.
Gottsmann, J., Carniel, R., Coppo, N., Woller, L., Hautmann, S., Rymer, H., 2007. Oscillations in
hydrothermal systems as a source of periodic unrest at caldera volcanoes: multiparameter
insights from Nisyros, Greece. Geophys. Res. Lett., 34(L07307), doi: 10.1029/2007GL029594.
Gudmundsson, A., 1998. Formation and development of normal-fault calderas and the initiation of
large explosive eruptions. Bull. Volcanol., 60, 160–171.
Gudmundsson, A., Martı ´,J., Turo ´n, E., 1997. Stress fields generating ring faults in volcanoes.
Geophys. Res. Lett., 24, 1559–1562.
Komuro, H., 1987. Experiments on cauldron formation: a polygonal cauldron and ring fractures. J.
Volcanol. Geotherm. Res., 31, 139–149.
Komuro, H., Fujita, Y., Kodama, K., 1984. Numerical and experimental models on the formation
mechanism of collapse basins during the Green Tuff orogenesis of Japan. Bull. Volcanol., 47, 649–666.
Lipman, P.W., 1984. The roots of ash flow calderas in western North America: windows into the tops
of granitic batholiths. J. Geophys. Res., 89(B10), 8801–8841.
Lipman, P.W., 1997. Subsidence of ash-flow calderas: relation to caldera size and magma-chamber
geometry. Bull. Volcanol., 53(3), 198–218.
Lipman, P., 2000. Caldreas. In: Sigurdsson, H., Houghton, B.F., McNutt, S.R., Rymer, H., Stix, J.
(Eds), Encyclopedia of Volcanoes. Academic Press, San Diego, pp. 643–662.
Martı ´, J., Ablay, G.J., Redshaw, L.T., Sparks, R.S.J., 1994. Experimental studies of collapse calderas.
J. Geol. Soc. Lond., 151, 919–929.
Martı ´, J., Folch, A., Macedonio, G., Neri, A., 2000. Pressure evolution during caldera forming
eruptions. Earth Planet. Sci. Lett., 175, 275–287.
Matumoto, T., 1943. The four gigantic caldera volcanoes of Kyushu. Jpn. J. Geol. Geogr., 19, 57.
Nishimura, T., Fehler, M., Baldridge, W.S., Roberts, P., Steck, L., 1997. Heterogeneous structure
around the Jemez volcanic field, New Mexico, USA, as inferred from the envelope inversion
of active-experiment seismic data. Geophys. J. Int., 131(3), 667–681.
Ramberg, H., 1967. Gravity, Deformation and the Earth’s Crust: As Studied by Centrifuged Models.
Academic Press, London, 214 pp.
Ramberg, H., 1981, Gravity, Deformation and the Earth’s Crust in Theory, Experiments and
Geologic Application, 2nd edn. Academic Press, London, 452 pp.
Roche, O., Druitt, T.H., Merle, O., 2000. Experimental study of caldera formation. J. Geophys. Res.,
105(B1), 395–416.
Roche, O., Druitt, T.H., 2001. Onset of caldera collapse during ignimbrite eruptions. Earth Planet.
Sci. Lett., 191(3–4), 191–202.
Rymer, H., Williams-Jones, G., 2000. Volcanic eruption prediction: magma chamber physics from
gravity and deformation measurements. Geophys. Res. Lett., 27(16), 2389–2392.
Self, S., Goff, F., Gardner, J.N., Wright, J.V., Kitte, W.M., 1986. Explosive rhyolitic volcanism in the
Jemez Mountains: vent locations, caldera development and relation to regional structures.
J. Geophys. Res., 91, 1779–1798.
Self, S., Rampino, M.R., Newton, M.S., Wolf, J.A., 1984. Volcanological study of the great Tambora
eruption of 1815. Geology, 12, 659–663.
Smith, R.L., 1960. Ash flows. Geol. Soc. Am. Bull., 71, 795–842.
Smith, R.L., 1979. Ash flow magmatism. Special Papers Geological Society of America, 180: 5–27.
Smith, R.L., Bailey, R.A., 1968. Resurgent cauldrons. Geological Society of America Memories,
116, 613–622.
Sparks, R.S.J., Walker, G.P.L., 1977. The significance of vitric-enriched air-fall ashes associated with
crystal-enriched ignimbrites. J. Volcanol. Geotherm. Res., 2, 329–341.
Tikku, A.A., McAdoo, D.C., Schenewerk, M.S., Willoughby, E.C., 2006. Temporal fluctuations of
microseismic noise in Yellowstone’s Upper Geyser Basin from a continuous gravity observation.
Geophys. Res. Lett., 33(L11306), doi: 10.1029/2006GL026113.