Modeling Volcanic Processes

Höfundur: Sarah A. Fagents (Útgáfa: 1)
Modeling Volcanic Processes

Kaup valmöguleikar

Understanding the physical behavior of volcanoes is key to mitigating the hazards active volcanoes pose to the ever-increasing populations living nearby. The processes involved in volcanic eruptions are driven by a series of interlinked physical phenomena, and to fully understand these, volcanologists must employ various physics subdisciplines. This book provides the first advanced-level, one-stop resource examining the physics of volcanic behavior and reviewing the state-of-the-art in modeling volcanic processes.

Each chapter begins by explaining simple modeling formulations and progresses to present cutting-edge research illustrated by case studies. Individual chapters cover subsurface magmatic processes through to eruption in various environments and conclude with the application of modeling to understanding the other volcanic planets of our Solar System. Providing an accessible and practical text for graduate students of physical volcanology, this book is also an important resource for researchers and professionals in the fields of volcanology, geophysics, geochemistry, petrology and natural hazards.

Nánar um bókina

Útgefandi
Cambridge University Press
ISBN
9781139609920
Print ISBN
9780521895439
Format
ePub
Útgáfa
1
Höfundar
Sarah A. Fagents
Tungumál
English
Útgefið
2021-02-11
Prent takmörkun á líftíma
10
Prent takmörkun
5
Afritunar takmörkun
5

Kaflar

  • Coverpage
  • Modeling Volcanic Processes
  • Title page
  • Copyright page
  • Dedication
  • Contents
  • List of contributors
  • Chapter 1 Introduction
  • Chapter 2 Magma chamber dynamics and thermodynamics
  • Chapter 3 The dynamics of dike propagation
  • Chapter 4 Dynamics of magma ascent in the volcanic conduit
  • Chapter 5 Lava flows
  • Chapter 6 Unsteady explosive activity: strombolian eruptions
  • Chapter 7 Unsteady explosive activity: vulcanian eruptions
  • Chapter 8 Sustained explosive activity: volcanic eruption columns and hawaiian fountains
  • Chapter 9 Modeling tephra sedimentation from volcanic plumes
  • Chapter 10 Pyroclastic density currents
  • Chapter 11 Magma–water interactions
  • Chapter 12 Deep-sea eruptions
  • Chapter 13 Volcano–ice interactions
  • Chapter 14 Modeling lahar behavior and hazards
  • Chapter 15 Introduction to quantitative volcano seismology: fluid-driven sources
  • Chapter 16 Volcano acoustics
  • Chapter 17 Planetary volcanism
  • Index