Rapid eruptive transitions from low to high intensity explosions and effusive activity: insights from textural analysis of a small-volume trachytic eruption, Ascension Island, South Atlantic
暂无分享,去创建一个
[1] J. Barclay,et al. Explosive felsic eruptions on ocean islands: A case study from Ascension Island (South Atlantic) , 2021 .
[2] Ben Clarke,et al. Post-caldera eruptions and pyroclastic density current hazard in the Main Ethiopian Rift , 2020 .
[3] Richard J. Brown,et al. Deep and disturbed: conditions for formation and eruption of a mingled rhyolite at Ascension Island, south Atlantic , 2020, Volcanica.
[4] C. Deniel,et al. Multi-stage growth of the trachytic lava dome of the Puy de Dôme (Chaîne des Puys, France). Field, geomorphological and petro-geochemical evidence , 2020 .
[5] R. Constantinescu,et al. Ceboruco hazard map: part I - definition of hazard scenarios based on the eruptive history , 2019, Journal of Applied Volcanology.
[6] R. J. Brown,et al. Lower Crustal Heterogeneity and Fractional Crystallization Control Evolution of Small-volume Magma Batches at Ocean Island Volcanoes (Ascension Island, South Atlantic) , 2019, Journal of Petrology.
[7] T. Reuschlé,et al. The Permeability Evolution of Tuffisites and Implications for Outgassing Through Dense Rhyolitic Magma , 2019, Journal of Geophysical Research: Solid Earth.
[8] M. Manga,et al. Submarine giant pumice: a window into the shallow conduit dynamics of a recent silicic eruption , 2019, Bulletin of Volcanology.
[9] G. Páez,et al. Post-caldera pumice cones of the Payún Matrú caldera, Payenia, Argentina: Morphology and deposits characteristics , 2019, Journal of South American Earth Sciences.
[10] Richard J. Brown,et al. Bridging the gap: 40Ar/39Ar dating of volcanic eruptions from the ‘Age of Discovery’ , 2018, Geology.
[11] P. Marianelli,et al. Volcanology of Ischia (Italy) , 2018, Journal of Maps.
[12] M. Manga,et al. Controls on explosive-effusive volcanic eruption styles , 2018, Nature Communications.
[13] J. Dufek,et al. Eruption dynamics and explosive-effusive transitions during the 1400 cal BP eruption of Opala volcano, Kamchatka, Russia , 2018 .
[14] S. Self,et al. Petrogenesis of the Peralkaline Ignimbrites of Terceira, Azores , 2017 .
[15] P. Withers,et al. How to fragment peralkaline rhyolites: Observations on pumice using combined multi-scale 2D and 3D imaging , 2017 .
[16] J. Sinton,et al. Dynamics of an unusual cone-building trachyte eruption at Pu‘u Wa‘awa‘a, Hualālai volcano, Hawai‘i , 2017, Bulletin of Volcanology.
[17] E. Llewellin,et al. Formation of obsidian pyroclasts by sintering of ash particles in the volcanic conduit , 2017 .
[18] D. Palladino,et al. Probabilistic-numerical assessment of pyroclastic current hazard at Campi Flegrei and Naples city: Multi-VEI scenarios as a tool for “full-scale” risk management , 2016, PloS one.
[19] J. Biggs,et al. The eruptive history and magmatic evolution of Aluto volcano : new insights into silicic peralkaline volcanism in the Ethiopian rift , 2016 .
[20] Richard J. Brown,et al. Origin and evolution of silicic magmas at ocean islands: Perspectives from a zoned fall deposit on Ascension Island, South Atlantic , 2016 .
[21] L. Gurioli,et al. Conduit Dynamics in Transitional Rhyolitic Activity Recorded by Tuffisite Vein Textures from the 2008–2009 Chaitén Eruption , 2016, Front. Earth Sci..
[22] S. Self,et al. Temporal evolution of a post-caldera, mildly peralkaline magmatic system: Furnas volcano, São Miguel, Azores , 2016, Contributions to Mineralogy and Petrology.
[23] R. Duncan,et al. Early volcanic history of the Rabaul area , 2016, Bulletin of Volcanology.
[24] K. Verner,et al. Wendo Koshe Pumice: The latest Holocene silicic explosive eruption product of the Corbetti Volcanic System (Southern Ethiopia) , 2016 .
[25] C. Bonadonna,et al. Complex dynamics of small-moderate volcanic events: the example of the 2011 rhyolitic Cordón Caulle eruption, Chile , 2015, Bulletin of Volcanology.
[26] David M. Pyle,et al. Chapter 13 – Sizes of Volcanic Eruptions , 2015 .
[27] R. Cioni,et al. Plinian and Subplinian Eruptions , 2015 .
[28] C. Schipper,et al. Explosive origin of silicic lava: Textural and δD–H2O evidence for pyroclastic degassing during rhyolite effusion , 2014 .
[29] J. Barclay,et al. Pre- and syn-eruptive degassing and crystallisation processes of the 2010 and 2006 eruptions of Merapi volcano, Indonesia , 2014, Contributions to Mineralogy and Petrology.
[30] B. Jicha,et al. 40Ar/39Ar Geochronology of Subaerial Ascension Island and a Re-evaluation of the Temporal Progression of Basaltic to Rhyolitic Volcanism , 2013 .
[31] M. James,et al. Shallow vent architecture during hybrid explosive–effusive activity at Cordón Caulle (Chile, 2011–12): Evidence from direct observations and pyroclast textures , 2013 .
[32] F. Arzilli,et al. Crystallization kinetics of alkali feldspars in cooling and decompression-induced crystallization experiments in trachytic melt , 2013, Contributions to Mineralogy and Petrology.
[33] S. Fagents,et al. Pushing the Volcanic Explosivity Index to its limit and beyond: Constraints from exceptionally weak explosive eruptions at Kīlauea in 2008 , 2013 .
[34] Youxue Zhang,et al. Water diffusion in potassium-rich phonolitic and trachytic melts , 2013 .
[35] P. Moitra,et al. Relating vesicle shapes in pyroclasts to eruption styles , 2013, Bulletin of Volcanology.
[36] D. Dingwell,et al. The rheology of peralkaline rhyolites from Pantelleria Island , 2013 .
[37] B. Houghton,et al. Transitions between fall phases and pyroclastic density currents during the AD 79 eruption at Vesuvius: building a transient conduit model from the textural and volatile record , 2012, Bulletin of Volcanology.
[38] C. Bonadonna,et al. Insights into eruption dynamics from textural analysis: the case of the May, 2008, Chaitén eruption , 2012, Bulletin of Volcanology.
[39] R. Herd,et al. Melting, Differentiation and Degassing at the Pantelleria Volcano, Italy , 2012 .
[40] Y. Miyabuchi. Post-caldera explosive activity inferred from improved 67-30ka tephrostratigraphy at Aso Volcano, Japan , 2011 .
[41] D. Dingwell,et al. The porosity of pyroclasts as an indicator of volcanic explosivity , 2011 .
[42] R. Sulpizio,et al. The Lami pyroclastic succession (Lipari, Aeolian Islands): A clue for unravelling the eruptive dynamics of the Monte Pilato rhyolitic pumice cone , 2011 .
[43] B. Houghton,et al. Diverse patterns of ascent, degassing, and eruption of rhyolite magma during the 1.8 ka Taupo eruption, New Zealand: Evidence from clast vesicularity , 2010 .
[44] Thomas Shea,et al. Textural studies of vesicles in volcanic rocks: An integrated methodology , 2010 .
[45] A. Fowler,et al. McGuinness of vesicular magma A theoretical model of the explosive fragmentation , 2009 .
[46] L. Vezzoli,et al. Modes and times of caldera resurgence: The < 10 ka evolution of Ischia Caldera, Italy, from high-precision archaeomagnetic dating , 2009 .
[47] Roberto Santacroce,et al. Explosive activity and eruption scenarios at Somma-Vesuvius (Italy): Towards a new classification scheme , 2008 .
[48] Willy P Aspinall,et al. The last 5000 years of activity at Sete Cidades volcano (São Miguel Island, Azores): Implications for hazard assessment , 2008 .
[49] D. Dingwell,et al. Viscosity of magmatic liquids: A model , 2008 .
[50] L. Lara,et al. Eruptive history, geochronology, and magmatic evolution of the Puyehue-Cordón Caulle volcanic complex, Chile , 2008 .
[51] P. Landi,et al. Geology and petrochemistry of the recent (<25 ka) silicic volcanism at Pantelleria Island , 2007 .
[52] S. Noguchi,et al. MND(microlite number density) water exsolution rate meter , 2006 .
[53] Atsushi Toramaru,et al. BND (bubble number density) decompression rate meter for explosive volcanic eruptions , 2006 .
[54] A. Stewart,et al. Facies architecture and Late Pliocene – Pleistocene evolution of a felsic volcanic island, Milos, Greece , 2006 .
[55] Provatas,et al. Facies architecture and Late Pliocene – Pleistocene evolution of a felsic volcanic island , Milos , Greece , 2006 .
[56] M. Polacci. Constraining the dynamics of volcanic eruptions by characterization of pumice textures , 2005 .
[57] D. Dingwell,et al. Glass transition temperatures of natural hydrous melts: a relationship with shear viscosity and implications for the welding process , 2005 .
[58] A. Nicholsb,et al. Glass transition temperatures of natural hydrous melts : a relationship with shear viscosity and implications for the welding process , 2005 .
[59] D. Dingwell,et al. The viscosity of trachytes, and comparison with basalts, phonolites, and rhyolites , 2004 .
[60] A. Rust,et al. Magma degassing buffered by vapor flow through brecciated conduit margins , 2004 .
[61] B. Houghton,et al. Complex proximal deposition during the Plinian eruptions of 1912 at Novarupta, Alaska , 2004 .
[62] B. Eakins,et al. Calculated volumes of individual shield volcanoes at the young end of the Hawaiian Ridge , 2003 .
[63] L. Pioli,et al. The Plinian phase of the Campanian Ignimbrite eruption (Phlegrean Fields, Italy): evidence from density measurements and textural characterization of pumice , 2003 .
[64] A. Whittington,et al. The viscosity of hydrous phonolites and trachytes , 2001 .
[65] Joan Martí,et al. Stratigraphy, structure, and volcanic evolution of the Pico Teide–Pico Viejo formation, Tenerife, Canary Islands , 2000 .
[66] J. Pacheco,et al. Styles of volcanism and volcanic hazards on Furnas volcano, São Miguel, Azores , 1999 .
[67] B. Weaver,et al. Origin of Differentiated Volcanic and Plutonic Rocks from Ascension Island, South Atlantic Ocean , 1998 .
[68] C. Newhall,et al. Fire and mud: eruptions and lahars of Mount Pinatubo, Philippines , 1998 .
[69] K. Cashman,et al. Permeability development in vesiculating magmas: implications for fragmentation , 1996 .
[70] D. Nielson,et al. Geology of ascension Island, South Atlantic Ocean , 1996 .
[71] B. Weaver,et al. Geochemical characteristics of volcanic rocks from ascension island, South Atlantic Ocean , 1996 .
[72] P. Cole,et al. An historic subplinian/phreatomagmatic eruption: the 1630 AD eruption of Furnas volcano, Sa˜o Miguel, Azores , 1995 .
[73] P. Dellino,et al. Fragmentation versus transportation mechanisms in the pyroclastic sequence of Monte Pilato-Rocche Rosse (Lipari, Italy) , 1995 .
[74] W. McDonough,et al. The composition of the Earth , 1995 .
[75] R. Blong. The Rabaul eruption, 1994 , 1994 .
[76] K. Cashman,et al. Physical aspects of magmatic degassing II. Constraints on vesiculation processes from textural studies of eruptive products. In , 1994 .
[77] B. Houghton,et al. Evolution of a Quaternary peralkaline volcano: Mayor Island, New Zealand , 1992 .
[78] G. Orsi,et al. The recent explosive volcanism at Pantelleria , 1991 .
[79] R. Moore. Geologic map of Sao Miguel, Azores , 1991 .
[80] G. Orsi,et al. The Serra della Fastuca Tephra at Pantelleria: Physical parameters for an explosive eruption of peralkaline magma , 1989 .
[81] B. Houghton,et al. A vesicularity index for pyroclastic deposits , 1989 .
[82] Albrecht W. Hofmann,et al. Chemical differentiation of the Earth: the relationship between mantle, continental crust, and oceanic crust , 1988 .
[83] R. Cas,et al. Three types of pyroclastic deposits and their eruption: an introduction , 1988 .
[84] R. Lange,et al. Densities of Na2O-K2O-CaO-MgO-FeO-Fe2O3-Al2O3-TiO2-SiO2 liquids: New measurements and derived partial molar properties , 1987 .
[85] Ray A F Cas,et al. Volcanic successions, modern and ancient : a geological approach to processes, products, and successions , 1987 .
[86] G. Mahood,et al. Geology of the peralkaline volcano at Pantelleria, Strait of Sicily , 1986 .
[87] R. Blong,et al. Rabaul Caldera, Papua New Guinea: Volcanic hazards, surveillance, and eruption contingency planning , 1985 .
[88] C. Harris. The Petrology of Lavas and Associated Plutonic Inclusions of Ascension Island , 1983 .
[89] S. Self,et al. The volcanic explosivity index (VEI) an estimate of explosive magnitude for historical volcanism , 1982 .
[90] C. Nelson,et al. Pyroclastic deposits and volcanic history of Mayor Island , 1981 .
[91] G. Walker,et al. A quantitative study of five thousand years of volcanism on Sao Miguel, Azores , 1978, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[92] R. Sparks,et al. The dynamics of bubble formation and growth in magmas , 1978 .
[93] L. Maitre. The Chemical Variability of some Common Igneous Rocks , 1976 .
[94] L. Civetta,et al. Volcanic history of the Island of Ischia (South Italy) , 1976 .
[95] Y. Katsui,et al. Lateral Fissure Eruptions in the Southern Andes of Chile , 1967 .
[96] B. Mason. Composition of the Earth , 1966, Nature.
[97] P. E. Baker,et al. Oxford Expedition to Ascension Island, 1964 , 1964, Nature.
[98] R. Daly. The Geology of Ascension Island , 1925 .