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A Review on Collapse Caldera Modelling                               279


             Bruce, A.I., Keller, G.R., 1993. Upper crustal structure of the Valles Caldera; an interpretation of the
                  gravity anomaly field in the Jemez Mountain volcanic field. EOS Trans. Am. Geophys. Union,
                  74, 549 pp.
             Bruno, P., 2004. Structure and evolution of the Bay of Pozzuoli (Italy) using marine seismic
                  reflection data: implications for collapse of the Campi Flegrei caldera. Bull. Volcanol., 66(4),
                  342–355.
             Burov, E.B., Guillou-Frottier, L., 1999. Thermomechanical behaviour of large ash flow calderas.
                  J. Geophys. Res., 104(B10), 23081–23109.
             Camacho, A.G., Vieira, R., Del Toro, C., 1991. Microgravimetric model of the Las Canadas caldera
                  (Tenerife). J. Volcanol. Geotherm. Res., 47, 75–88.
             Capuano, P., Achauer, U., 2003. Gravity field modeling in the Vesuvius and Campanian area. In:
                  Zollo, A., Bobbio, A., Gasparini, P., Casale, R. and Yeroyanni, M. (Eds), The TOMOVES
                  Project: Looking Inside Mt. Vesuvius. CUEN, Napoli E-book.
             Cardarelli, E., de Nardis, R., 2001. Seismic refraction, isotropic and anisotropic seismic tomography
                  on an ancient monument. Geophys. Prospect., 49(2), 228–240.
             Carle, S.F., 1988. Three-dimensional gravity modeling of the geologic structure of Long Valley
                  caldera. J. Geophys. Res. B, Solid Earth Planets, 93(11), 13,237–13,250.
             Cassano, E., La Torre, P., 1987. Geophysics. In: Rosi, M. and Sbrana, A. (Eds), Phlegrean Fields,
                  Quaderni de la Ricerca Scientifica, Roma, Vol. 114, pp. 103–131.
             Chery, J., Bonneville, A., Villote, J.P., Yuen, D., 1991. Numerical modelling of caldera dynamical
                  behaviour. Geophys. J. Int., 105, 365–379.
             Davy, B., 1993. Seismic reflection profiling of the Taupo caldera, New Zealand. Explor. Geophys.,
                  24(3–4), 443–454.
             Davy, B.W., Caldwell, T.G., 1998. Gravity, magnetic and seismic surveys of the caldera
                  complex, Lake Taupo, North Island, New Zealand. J. Volcanol. Geotherm. Res., 81(1–2),
                  69–89.
             de Lorenzo, S., Gasparini, P., Mongelli, F., Zollo, A., 2001a. Thermal state of the Campi
                  Flegrei caldera inferred from seismic attenuation tomography. J. Geodyn., 32(4–5), 467–486.
             de Lorenzo, S., Zollo, A., Mongelli, F., 2001b. Source parameters and three-dimensional attenuation
                  structure from the inversion of microearthquake pulse width data: Qp imaging and inferences
                  of the thermal state of the Campi Flegrei caldera (southern Italy). J. Geophys. Res. B, Solid
                  Earth Planets, 106(8), 16,265–16,286.
             De Natale, G., Petrazzuoli, S.M., Pingue, F., 1997. The effect of collapse structures on ground
                  deformation in calderas. Geophys. Res. Lett., 24, 1555–1558.
             De Natale, G., Troise, C., Pingue, F., Mastrolorenzo, G., Pappalardo, L., Battaglia, M., Boschi, E.,
                  2006. The Campi Flegrei caldera: unrest mechanisms and hazards. In: Troise, C., De Natale,
                  G.Kilburn, C.R.J. (Eds), Mechanisms of activity and unrest at large calderas. Geological
                  Society, Special Publications, London, Vol. 269, pp. 25–45.
             Druitt, T.H., Sparks, R.S.J., 1984. On the formation of calderas during ignimbrite eruptions. Nature,
                  310, 679–681.
             Finlayson, D.M., Gudmundsson, O., Itikarai, I., Nishimura, Y., Shimamura, H., 2003. Rabaul
                  Volcano, Papua New Guinea: seismic tomographic imaging of an active caldera. J. Volcanol.
                  Geotherm. Res., 124(3–4), 153–171.
             Folch, A., Gottsmann, J., 2006. Faults and ground uplift at active calderas. In: Troise, C., De Natale,
                  G., Kilburn, C.R.J. (Eds), Mechanisms of activity and unrest at large calderas. Geological
                  Society, Special Publications, London, Vol. 269, pp. 109–120.
             Folch, A., Martı ´, J., 2004. Geometrical and mechanical constraints on the formation of ring-fault
                  calderas. Earth Planet. Sci. Lett., 221, 215–225.
             Foulger, G.R., Julian, B.R., Pitt, A.M., Hill, D.P., Malin, P.E., Shalev, E., 2003. Three-dimensional
                  crustal structure of Long Valley caldera, California, and evidence for the migration of CO 2
                  under Mammoth Mountain. J. Geophys. Res. B, Solid Earth Planets, 108(3), 16.
             Francis, P., 2003. Volcanoes. A planetary perspective. Oxford University Press, Oxford, 443 pp.
             Geyer, A., Folch, A., Martı ´, J., 2006. Relationship between caldera collapse and magma chamber
                  withdrawal: an experimental approach. J. Volcanol. Geotherm. Res., 157, 375–386.
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