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Exploring and Modeling the Magma-Hydrothermal Regime
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This Special Issue comprises 12 papers from authors in 10 countries with new insights on the close coupling between magma as an energy and fluid source with hydrothermal systems for the primary control of magmatic behavior. Data and interpretation are provided on the rise of magma through a hydrothermal system, the relative timing of magmatic and hydrothermal events, the temporal evolution of supercritical aqueous fluids associated with ore formation, the magmatic and meteoric contributions of water to the systems, the big picture for the highly active Krafla Caldera, Iceland, as well as the implications of results from drilling at Krafla concerning the magma–hydrothermal boundary. Some of the more provocative concepts are that magma can intrude a hydrothermal system silently, that coplanar and coeval seismic events signal “magma fracking” beneath active volcanoes, that intrusive accumulations may far outlast volcanism, that arid climate favors formation of large magma chambers, and that even relatively dry rhyolite magma can rapidly convect and so lack a crystallizing mush roof. A shared theme is that hydrothermal and magmatic reservoirs need to be treated as a single system.

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Keywords

  • altération
  • Cathodoluminescence
  • Climate
  • CO2
  • conceptual models
  • contact metamorphism
  • dissolution
  • dome emplacement
  • drilling
  • Ebinokogen Ioyama volcano
  • Erdenet Cu–Mo deposit
  • eruption
  • extensometry
  • fluid inclusion
  • fracking
  • Fracture
  • gas and fluid geochemistry
  • geophysical imaging
  • geothermal activity
  • Geothermal Energy
  • geothermal systems
  • geyser
  • glaciation
  • gliding spectral lines
  • Guadeloupe
  • heat flow
  • heat flux
  • heat transport
  • hydrothermal
  • hydrothermal fluid
  • hydrothermal fluids
  • hydrothermal gas
  • hydrothermal system
  • igneous petrology
  • incremental intrusion
  • incremental pluton emplacement
  • Kamchatka
  • kick upwelling
  • Kirishima volcano group
  • Krafla volcano
  • la soufrière
  • magma
  • magma convection
  • magma energy
  • magmatic hydrothermal eruption
  • magmatic-hydrothermal system
  • magma–hydrothermal
  • Microstructure
  • modeling
  • multigas
  • multiple hydrothermal system
  • Permeability
  • petrochronology
  • phreatic eruption
  • phreatic eruptions
  • porosity
  • precipitation
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • RSAM
  • supercritical fluid
  • tectonics
  • textural coarsening
  • thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general
  • thermometry
  • titanite
  • TOUGH2
  • transient fluid pressure
  • tremor
  • U-Pb dating
  • Uzon
  • volcanic gas
  • Volcanic Unrest
  • volcano monitoring
  • Volcanoes
  • volcanology
  • White Island
  • zircon

Links

DOI: 10.3390/books978-3-03936-637-8

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