Modeling Volcanic Processes :: the Physics and Mathematics of Volcanism.
An advanced textbook and reference resource examining the physics of volcanic behavior and the state of the art in modeling volcanic processes.
Gespeichert in:
1. Verfasser: | |
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Weitere Verfasser: | , |
Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Cambridge :
Cambridge University Press,
2013.
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Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | An advanced textbook and reference resource examining the physics of volcanic behavior and the state of the art in modeling volcanic processes. |
Beschreibung: | Cellular automata cooling-limited emplacement models. |
Beschreibung: | 1 online resource (450 pages) |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9781139615501 1139615505 9781139624800 1139624806 9781139021562 1139021567 9781139611787 113961178X 9780521895439 052189543X 1139609920 9781139609920 1107254051 9781107254053 1139621084 9781139621083 1107226244 9781107226241 |
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245 | 1 | 0 | |a Modeling Volcanic Processes : |b the Physics and Mathematics of Volcanism. |
260 | |a Cambridge : |b Cambridge University Press, |c 2013. | ||
300 | |a 1 online resource (450 pages) | ||
336 | |a text |b txt |2 rdacontent | ||
337 | |a computer |b c |2 rdamedia | ||
338 | |a online resource |b cr |2 rdacarrier | ||
505 | 0 | |a Cover; Modeling Volcanic Processes; Chapter 1 Introduction; Scope of this book; Content; Acknowledgments; References; Chapter 2 Magma chamber dynamics and thermodynamics; Overview; 2.1 Introduction; 2.2 Heat transfer and magmatic intrusions; 2.2.1 Multiple intrusions and crustal melting efficiency; 2.3 Crustal stresses and magma chambers; 2.4 Magma chamber convection; 2.4.1 Rayleigh-Bénard convection; 2.4.2 Multiphase convection; 2.4.3 Convection and mixing; 2.5 Future directions; 2.6 Summary; 2.7 Notation; Acknowledgments; References; Chapter 3 The dynamics of dike propagation; Overview. | |
505 | 8 | |a 3.1 Introduction3.2 Field observations; 3.2.1 Dike geometry as seen in the field; 3.2.2 Geophysically observed dike injection events; 3.3 Theoretical considerations; 3.3.1 Constant magma and host properties; 3.3.2 Variable magma and host properties; 3.3.3 Questions to resolve: an appeal to experiments; 3.4 Experimental investigations; 3.4.1 Experimental methods; 3.4.2 Steady propagation regime; 3.4.3 Propagation (and arrest) of a constant volume fissure; 3.4.4 Propagation under conditions of variable properties; 3.5 Discussion and perspectives; 3.6 Summary; 3.7 Notation; References. | |
505 | 8 | |a Chapter 4 Dynamics of magma ascent in the volcanic conduitOverview; 4.1 Introduction; 4.1.1 Getting magma to the surface; 4.1.2 The volcanic conduit; 4.2 Volatiles; 4.2.1 Solubility; 4.2.2 Diffusivity; 4.2.3 Pre-eruptive volatile content of magmas; Water; Carbon dioxide; Sulfur; Chlorine and Fluorine; 4.3 Bubbles; 4.3.1 Nucleation; 4.3.2 Growth; Modeling of bubble growth; Viscous limit; Diffusive limit; Solubility limit; 4.3.3 Coalescence; 4.3.4 Breakup; 4.3.5 Bubble mobility; 4.3.6 Bubbles and pressure loss; 4.3.7 Permeable outgassing; 4.4 Crystal nucleation and growth; 4.5 Magma rheology. | |
505 | 8 | |a 4.5.1 The effect of dissolved volatiles and temperature4.5.2 The effect of deformation rate; 4.5.3 The effect of crystals; 4.5.4 The effect of bubbles; 4.6 Magma fragmentation; 4.7 Modeling of magma ascent; 4.7.1 Steady homogeneous flow in one dimension; 4.7.2 Steady separated flow in one dimension; 4.7.3 Two-dimensional flow; 4.7.4 Coupling the conduit and the magma chamber; 4.8 What conduit models have taught us; 4.8.1 Subplinian and plinian eruptions; 4.8.2 Strombolian eruptions; 4.8.3 Hawaiian eruptions; 4.8.4 Effusive eruptions; 4.9 Summary; 4.10 Notation; Acknowledgments; References. | |
505 | 8 | |a Chapter 5 Lava flowsOverview; 5.1 Lava flows and lava flow models; 5.2 Lava flow dynamics: fundamental principles and definitions; 5.2.1 Lava flow dynamics: velocity treatments; 5.2.2 Controls on viscosity and yield strength; Viscosity: influence of composition and temperature; Viscosity: influence of crystals and bubbles; Yield strength; 5.3 Lava flow heat budget and cooling; 5.3.1 Crystallinity; 5.4 Type II modeling; 5.4.1 Flow paths; DEM quality; 5.4.2 Type IIa models: volume-limited flow emplacement; 5.4.3 Type IIb models: cooling-limited flow emplacement. | |
500 | |a Cellular automata cooling-limited emplacement models. | ||
520 | |a An advanced textbook and reference resource examining the physics of volcanic behavior and the state of the art in modeling volcanic processes. | ||
588 | 0 | |a Print version record. | |
504 | |a Includes bibliographical references and index. | ||
546 | |a English. | ||
650 | 0 | |a Volcanism |x Mathematical models. | |
650 | 7 | |a SCIENCE |x Earth Sciences |x Mineralogy. |2 bisacsh | |
650 | 7 | |a NATURE |x Earthquakes & Volcanoes. |2 bisacsh | |
650 | 7 | |a SCIENCE |x Earth Sciences |x Seismology & Volcanism. |2 bisacsh | |
650 | 7 | |a Volcanism |x Mathematical models |2 fast | |
650 | 7 | |a Vulkanismus |2 gnd | |
650 | 7 | |a Vulkan |2 gnd |0 http://d-nb.info/gnd/4128339-9 | |
650 | 7 | |a Eruption |2 gnd | |
650 | 7 | |a Vulkanologie |2 gnd | |
650 | 7 | |a Modellierung |2 gnd |0 http://d-nb.info/gnd/4170297-9 | |
655 | 4 | |a Electronic book. | |
700 | 1 | |a Gregg, Tracy K. P. | |
700 | 1 | |a Lopes, Rosaly M. C. | |
758 | |i has work: |a Modeling volcanic processes (Text) |1 https://id.oclc.org/worldcat/entity/E39PCGxdcGmYhd79dp8tmxdKbb |4 https://id.oclc.org/worldcat/ontology/hasWork | ||
776 | 0 | 8 | |i Print version: |a Fagents, Sarah A. |t Modeling Volcanic Processes : The Physics and Mathematics of Volcanism. |d Cambridge : Cambridge University Press, ©2013 |z 9780521895439 |
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn829461948 |
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adam_text | |
any_adam_object | |
author | Fagents, Sarah A. |
author2 | Gregg, Tracy K. P. Lopes, Rosaly M. C. |
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building | Verbundindex |
bvnumber | localFWS |
callnumber-first | Q - Science |
callnumber-label | QE522 |
callnumber-raw | QE522 .M637 2012 |
callnumber-search | QE522 .M637 2012 |
callnumber-sort | QE 3522 M637 42012 |
callnumber-subject | QE - Geology |
collection | ZDB-4-EBA |
contents | Cover; Modeling Volcanic Processes; Chapter 1 Introduction; Scope of this book; Content; Acknowledgments; References; Chapter 2 Magma chamber dynamics and thermodynamics; Overview; 2.1 Introduction; 2.2 Heat transfer and magmatic intrusions; 2.2.1 Multiple intrusions and crustal melting efficiency; 2.3 Crustal stresses and magma chambers; 2.4 Magma chamber convection; 2.4.1 Rayleigh-Bénard convection; 2.4.2 Multiphase convection; 2.4.3 Convection and mixing; 2.5 Future directions; 2.6 Summary; 2.7 Notation; Acknowledgments; References; Chapter 3 The dynamics of dike propagation; Overview. 3.1 Introduction3.2 Field observations; 3.2.1 Dike geometry as seen in the field; 3.2.2 Geophysically observed dike injection events; 3.3 Theoretical considerations; 3.3.1 Constant magma and host properties; 3.3.2 Variable magma and host properties; 3.3.3 Questions to resolve: an appeal to experiments; 3.4 Experimental investigations; 3.4.1 Experimental methods; 3.4.2 Steady propagation regime; 3.4.3 Propagation (and arrest) of a constant volume fissure; 3.4.4 Propagation under conditions of variable properties; 3.5 Discussion and perspectives; 3.6 Summary; 3.7 Notation; References. Chapter 4 Dynamics of magma ascent in the volcanic conduitOverview; 4.1 Introduction; 4.1.1 Getting magma to the surface; 4.1.2 The volcanic conduit; 4.2 Volatiles; 4.2.1 Solubility; 4.2.2 Diffusivity; 4.2.3 Pre-eruptive volatile content of magmas; Water; Carbon dioxide; Sulfur; Chlorine and Fluorine; 4.3 Bubbles; 4.3.1 Nucleation; 4.3.2 Growth; Modeling of bubble growth; Viscous limit; Diffusive limit; Solubility limit; 4.3.3 Coalescence; 4.3.4 Breakup; 4.3.5 Bubble mobility; 4.3.6 Bubbles and pressure loss; 4.3.7 Permeable outgassing; 4.4 Crystal nucleation and growth; 4.5 Magma rheology. 4.5.1 The effect of dissolved volatiles and temperature4.5.2 The effect of deformation rate; 4.5.3 The effect of crystals; 4.5.4 The effect of bubbles; 4.6 Magma fragmentation; 4.7 Modeling of magma ascent; 4.7.1 Steady homogeneous flow in one dimension; 4.7.2 Steady separated flow in one dimension; 4.7.3 Two-dimensional flow; 4.7.4 Coupling the conduit and the magma chamber; 4.8 What conduit models have taught us; 4.8.1 Subplinian and plinian eruptions; 4.8.2 Strombolian eruptions; 4.8.3 Hawaiian eruptions; 4.8.4 Effusive eruptions; 4.9 Summary; 4.10 Notation; Acknowledgments; References. Chapter 5 Lava flowsOverview; 5.1 Lava flows and lava flow models; 5.2 Lava flow dynamics: fundamental principles and definitions; 5.2.1 Lava flow dynamics: velocity treatments; 5.2.2 Controls on viscosity and yield strength; Viscosity: influence of composition and temperature; Viscosity: influence of crystals and bubbles; Yield strength; 5.3 Lava flow heat budget and cooling; 5.3.1 Crystallinity; 5.4 Type II modeling; 5.4.1 Flow paths; DEM quality; 5.4.2 Type IIa models: volume-limited flow emplacement; 5.4.3 Type IIb models: cooling-limited flow emplacement. |
ctrlnum | (OCoLC)829461948 |
dewey-full | 551.2101/51 551.210151 551.21015118 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 551 - Geology, hydrology, meteorology |
dewey-raw | 551.2101/51 551.210151 551.21015118 |
dewey-search | 551.2101/51 551.210151 551.21015118 |
dewey-sort | 3551.2101 251 |
dewey-tens | 550 - Earth sciences |
discipline | Geologie / Paläontologie |
format | Electronic eBook |
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"><subfield code="a">1 online resource (450 pages)</subfield></datafield><datafield tag="336" ind1=" " ind2=" "><subfield code="a">text</subfield><subfield code="b">txt</subfield><subfield code="2">rdacontent</subfield></datafield><datafield tag="337" ind1=" " ind2=" "><subfield code="a">computer</subfield><subfield code="b">c</subfield><subfield code="2">rdamedia</subfield></datafield><datafield tag="338" ind1=" " ind2=" "><subfield code="a">online resource</subfield><subfield code="b">cr</subfield><subfield code="2">rdacarrier</subfield></datafield><datafield tag="505" ind1="0" ind2=" "><subfield code="a">Cover; Modeling Volcanic Processes; Chapter 1 Introduction; Scope of this book; Content; Acknowledgments; References; Chapter 2 Magma chamber dynamics and thermodynamics; Overview; 2.1 Introduction; 2.2 Heat transfer and magmatic intrusions; 2.2.1 Multiple intrusions and crustal melting efficiency; 2.3 Crustal stresses and magma chambers; 2.4 Magma chamber convection; 2.4.1 Rayleigh-Bénard convection; 2.4.2 Multiphase convection; 2.4.3 Convection and mixing; 2.5 Future directions; 2.6 Summary; 2.7 Notation; Acknowledgments; References; Chapter 3 The dynamics of dike propagation; Overview.</subfield></datafield><datafield tag="505" ind1="8" ind2=" "><subfield code="a">3.1 Introduction3.2 Field observations; 3.2.1 Dike geometry as seen in the field; 3.2.2 Geophysically observed dike injection events; 3.3 Theoretical considerations; 3.3.1 Constant magma and host properties; 3.3.2 Variable magma and host properties; 3.3.3 Questions to resolve: an appeal to experiments; 3.4 Experimental investigations; 3.4.1 Experimental methods; 3.4.2 Steady propagation regime; 3.4.3 Propagation (and arrest) of a constant volume fissure; 3.4.4 Propagation under conditions of variable properties; 3.5 Discussion and perspectives; 3.6 Summary; 3.7 Notation; References.</subfield></datafield><datafield tag="505" ind1="8" ind2=" "><subfield code="a">Chapter 4 Dynamics of magma ascent in the volcanic conduitOverview; 4.1 Introduction; 4.1.1 Getting magma to the surface; 4.1.2 The volcanic conduit; 4.2 Volatiles; 4.2.1 Solubility; 4.2.2 Diffusivity; 4.2.3 Pre-eruptive volatile content of magmas; Water; Carbon dioxide; Sulfur; Chlorine and Fluorine; 4.3 Bubbles; 4.3.1 Nucleation; 4.3.2 Growth; Modeling of bubble growth; Viscous limit; Diffusive limit; Solubility limit; 4.3.3 Coalescence; 4.3.4 Breakup; 4.3.5 Bubble mobility; 4.3.6 Bubbles and pressure loss; 4.3.7 Permeable outgassing; 4.4 Crystal nucleation and growth; 4.5 Magma rheology.</subfield></datafield><datafield tag="505" ind1="8" ind2=" "><subfield code="a">4.5.1 The effect of dissolved volatiles and temperature4.5.2 The effect of deformation rate; 4.5.3 The effect of crystals; 4.5.4 The effect of bubbles; 4.6 Magma fragmentation; 4.7 Modeling of magma ascent; 4.7.1 Steady homogeneous flow in one dimension; 4.7.2 Steady separated flow in one dimension; 4.7.3 Two-dimensional flow; 4.7.4 Coupling the conduit and the magma chamber; 4.8 What conduit models have taught us; 4.8.1 Subplinian and plinian eruptions; 4.8.2 Strombolian eruptions; 4.8.3 Hawaiian eruptions; 4.8.4 Effusive eruptions; 4.9 Summary; 4.10 Notation; Acknowledgments; References.</subfield></datafield><datafield tag="505" ind1="8" ind2=" "><subfield code="a">Chapter 5 Lava flowsOverview; 5.1 Lava flows and lava flow models; 5.2 Lava flow dynamics: fundamental principles and definitions; 5.2.1 Lava flow dynamics: velocity treatments; 5.2.2 Controls on viscosity and yield strength; Viscosity: influence of composition and temperature; Viscosity: influence of crystals and bubbles; Yield strength; 5.3 Lava flow heat budget and cooling; 5.3.1 Crystallinity; 5.4 Type II modeling; 5.4.1 Flow paths; DEM quality; 5.4.2 Type IIa models: volume-limited flow emplacement; 5.4.3 Type IIb models: cooling-limited flow emplacement.</subfield></datafield><datafield tag="500" ind1=" " ind2=" "><subfield code="a">Cellular automata 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genre | Electronic book. |
genre_facet | Electronic book. |
id | ZDB-4-EBA-ocn829461948 |
illustrated | Not Illustrated |
indexdate | 2024-11-27T13:25:13Z |
institution | BVB |
isbn | 9781139615501 1139615505 9781139624800 1139624806 9781139021562 1139021567 9781139611787 113961178X 9780521895439 052189543X 1139609920 9781139609920 1107254051 9781107254053 1139621084 9781139621083 1107226244 9781107226241 |
language | English |
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physical | 1 online resource (450 pages) |
psigel | ZDB-4-EBA |
publishDate | 2013 |
publishDateSearch | 2013 |
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publisher | Cambridge University Press, |
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spelling | Fagents, Sarah A. Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. Cambridge : Cambridge University Press, 2013. 1 online resource (450 pages) text txt rdacontent computer c rdamedia online resource cr rdacarrier Cover; Modeling Volcanic Processes; Chapter 1 Introduction; Scope of this book; Content; Acknowledgments; References; Chapter 2 Magma chamber dynamics and thermodynamics; Overview; 2.1 Introduction; 2.2 Heat transfer and magmatic intrusions; 2.2.1 Multiple intrusions and crustal melting efficiency; 2.3 Crustal stresses and magma chambers; 2.4 Magma chamber convection; 2.4.1 Rayleigh-Bénard convection; 2.4.2 Multiphase convection; 2.4.3 Convection and mixing; 2.5 Future directions; 2.6 Summary; 2.7 Notation; Acknowledgments; References; Chapter 3 The dynamics of dike propagation; Overview. 3.1 Introduction3.2 Field observations; 3.2.1 Dike geometry as seen in the field; 3.2.2 Geophysically observed dike injection events; 3.3 Theoretical considerations; 3.3.1 Constant magma and host properties; 3.3.2 Variable magma and host properties; 3.3.3 Questions to resolve: an appeal to experiments; 3.4 Experimental investigations; 3.4.1 Experimental methods; 3.4.2 Steady propagation regime; 3.4.3 Propagation (and arrest) of a constant volume fissure; 3.4.4 Propagation under conditions of variable properties; 3.5 Discussion and perspectives; 3.6 Summary; 3.7 Notation; References. Chapter 4 Dynamics of magma ascent in the volcanic conduitOverview; 4.1 Introduction; 4.1.1 Getting magma to the surface; 4.1.2 The volcanic conduit; 4.2 Volatiles; 4.2.1 Solubility; 4.2.2 Diffusivity; 4.2.3 Pre-eruptive volatile content of magmas; Water; Carbon dioxide; Sulfur; Chlorine and Fluorine; 4.3 Bubbles; 4.3.1 Nucleation; 4.3.2 Growth; Modeling of bubble growth; Viscous limit; Diffusive limit; Solubility limit; 4.3.3 Coalescence; 4.3.4 Breakup; 4.3.5 Bubble mobility; 4.3.6 Bubbles and pressure loss; 4.3.7 Permeable outgassing; 4.4 Crystal nucleation and growth; 4.5 Magma rheology. 4.5.1 The effect of dissolved volatiles and temperature4.5.2 The effect of deformation rate; 4.5.3 The effect of crystals; 4.5.4 The effect of bubbles; 4.6 Magma fragmentation; 4.7 Modeling of magma ascent; 4.7.1 Steady homogeneous flow in one dimension; 4.7.2 Steady separated flow in one dimension; 4.7.3 Two-dimensional flow; 4.7.4 Coupling the conduit and the magma chamber; 4.8 What conduit models have taught us; 4.8.1 Subplinian and plinian eruptions; 4.8.2 Strombolian eruptions; 4.8.3 Hawaiian eruptions; 4.8.4 Effusive eruptions; 4.9 Summary; 4.10 Notation; Acknowledgments; References. Chapter 5 Lava flowsOverview; 5.1 Lava flows and lava flow models; 5.2 Lava flow dynamics: fundamental principles and definitions; 5.2.1 Lava flow dynamics: velocity treatments; 5.2.2 Controls on viscosity and yield strength; Viscosity: influence of composition and temperature; Viscosity: influence of crystals and bubbles; Yield strength; 5.3 Lava flow heat budget and cooling; 5.3.1 Crystallinity; 5.4 Type II modeling; 5.4.1 Flow paths; DEM quality; 5.4.2 Type IIa models: volume-limited flow emplacement; 5.4.3 Type IIb models: cooling-limited flow emplacement. Cellular automata cooling-limited emplacement models. An advanced textbook and reference resource examining the physics of volcanic behavior and the state of the art in modeling volcanic processes. Print version record. Includes bibliographical references and index. English. Volcanism Mathematical models. SCIENCE Earth Sciences Mineralogy. bisacsh NATURE Earthquakes & Volcanoes. bisacsh SCIENCE Earth Sciences Seismology & Volcanism. bisacsh Volcanism Mathematical models fast Vulkanismus gnd Vulkan gnd http://d-nb.info/gnd/4128339-9 Eruption gnd Vulkanologie gnd Modellierung gnd http://d-nb.info/gnd/4170297-9 Electronic book. Gregg, Tracy K. P. Lopes, Rosaly M. C. has work: Modeling volcanic processes (Text) https://id.oclc.org/worldcat/entity/E39PCGxdcGmYhd79dp8tmxdKbb https://id.oclc.org/worldcat/ontology/hasWork Print version: Fagents, Sarah A. Modeling Volcanic Processes : The Physics and Mathematics of Volcanism. Cambridge : Cambridge University Press, ©2013 9780521895439 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=508891 Volltext |
spellingShingle | Fagents, Sarah A. Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. Cover; Modeling Volcanic Processes; Chapter 1 Introduction; Scope of this book; Content; Acknowledgments; References; Chapter 2 Magma chamber dynamics and thermodynamics; Overview; 2.1 Introduction; 2.2 Heat transfer and magmatic intrusions; 2.2.1 Multiple intrusions and crustal melting efficiency; 2.3 Crustal stresses and magma chambers; 2.4 Magma chamber convection; 2.4.1 Rayleigh-Bénard convection; 2.4.2 Multiphase convection; 2.4.3 Convection and mixing; 2.5 Future directions; 2.6 Summary; 2.7 Notation; Acknowledgments; References; Chapter 3 The dynamics of dike propagation; Overview. 3.1 Introduction3.2 Field observations; 3.2.1 Dike geometry as seen in the field; 3.2.2 Geophysically observed dike injection events; 3.3 Theoretical considerations; 3.3.1 Constant magma and host properties; 3.3.2 Variable magma and host properties; 3.3.3 Questions to resolve: an appeal to experiments; 3.4 Experimental investigations; 3.4.1 Experimental methods; 3.4.2 Steady propagation regime; 3.4.3 Propagation (and arrest) of a constant volume fissure; 3.4.4 Propagation under conditions of variable properties; 3.5 Discussion and perspectives; 3.6 Summary; 3.7 Notation; References. Chapter 4 Dynamics of magma ascent in the volcanic conduitOverview; 4.1 Introduction; 4.1.1 Getting magma to the surface; 4.1.2 The volcanic conduit; 4.2 Volatiles; 4.2.1 Solubility; 4.2.2 Diffusivity; 4.2.3 Pre-eruptive volatile content of magmas; Water; Carbon dioxide; Sulfur; Chlorine and Fluorine; 4.3 Bubbles; 4.3.1 Nucleation; 4.3.2 Growth; Modeling of bubble growth; Viscous limit; Diffusive limit; Solubility limit; 4.3.3 Coalescence; 4.3.4 Breakup; 4.3.5 Bubble mobility; 4.3.6 Bubbles and pressure loss; 4.3.7 Permeable outgassing; 4.4 Crystal nucleation and growth; 4.5 Magma rheology. 4.5.1 The effect of dissolved volatiles and temperature4.5.2 The effect of deformation rate; 4.5.3 The effect of crystals; 4.5.4 The effect of bubbles; 4.6 Magma fragmentation; 4.7 Modeling of magma ascent; 4.7.1 Steady homogeneous flow in one dimension; 4.7.2 Steady separated flow in one dimension; 4.7.3 Two-dimensional flow; 4.7.4 Coupling the conduit and the magma chamber; 4.8 What conduit models have taught us; 4.8.1 Subplinian and plinian eruptions; 4.8.2 Strombolian eruptions; 4.8.3 Hawaiian eruptions; 4.8.4 Effusive eruptions; 4.9 Summary; 4.10 Notation; Acknowledgments; References. Chapter 5 Lava flowsOverview; 5.1 Lava flows and lava flow models; 5.2 Lava flow dynamics: fundamental principles and definitions; 5.2.1 Lava flow dynamics: velocity treatments; 5.2.2 Controls on viscosity and yield strength; Viscosity: influence of composition and temperature; Viscosity: influence of crystals and bubbles; Yield strength; 5.3 Lava flow heat budget and cooling; 5.3.1 Crystallinity; 5.4 Type II modeling; 5.4.1 Flow paths; DEM quality; 5.4.2 Type IIa models: volume-limited flow emplacement; 5.4.3 Type IIb models: cooling-limited flow emplacement. Volcanism Mathematical models. SCIENCE Earth Sciences Mineralogy. bisacsh NATURE Earthquakes & Volcanoes. bisacsh SCIENCE Earth Sciences Seismology & Volcanism. bisacsh Volcanism Mathematical models fast Vulkanismus gnd Vulkan gnd http://d-nb.info/gnd/4128339-9 Eruption gnd Vulkanologie gnd Modellierung gnd http://d-nb.info/gnd/4170297-9 |
subject_GND | http://d-nb.info/gnd/4128339-9 http://d-nb.info/gnd/4170297-9 |
title | Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. |
title_auth | Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. |
title_exact_search | Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. |
title_full | Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. |
title_fullStr | Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. |
title_full_unstemmed | Modeling Volcanic Processes : the Physics and Mathematics of Volcanism. |
title_short | Modeling Volcanic Processes : |
title_sort | modeling volcanic processes the physics and mathematics of volcanism |
title_sub | the Physics and Mathematics of Volcanism. |
topic | Volcanism Mathematical models. SCIENCE Earth Sciences Mineralogy. bisacsh NATURE Earthquakes & Volcanoes. bisacsh SCIENCE Earth Sciences Seismology & Volcanism. bisacsh Volcanism Mathematical models fast Vulkanismus gnd Vulkan gnd http://d-nb.info/gnd/4128339-9 Eruption gnd Vulkanologie gnd Modellierung gnd http://d-nb.info/gnd/4170297-9 |
topic_facet | Volcanism Mathematical models. SCIENCE Earth Sciences Mineralogy. NATURE Earthquakes & Volcanoes. SCIENCE Earth Sciences Seismology & Volcanism. Volcanism Mathematical models Vulkanismus Vulkan Eruption Vulkanologie Modellierung Electronic book. |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=508891 |
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