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Patterns and processes: Subaerial lava flow morphologies: A review

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46 Scopus citations

Abstract

Most lava flows have been emplaced away from the watchful eyes of volcanologists, so there is a desire to use solidified lava-flow morphologies to reveal important information about the eruption that formed them. Our current understanding of the relationship between solidified basaltic lava morphology and the responsible eruption and emplacement processes is based on decades of fieldwork, laboratory analyses and simulations, and computer models. These studies have vastly improved our understanding of the complex interactions between the solids, liquids, and gases that comprise cooling lava flows. However, the complex interactions (at millimeter and sub-millimeter scales) between the temperature-dependent abundances of the distinct phases that comprise a lava flow and the final morphology remain challenging to model and to predict. Similarly, the complex behavior of an active pahoehoe flow, although almost ubiquitous on Earth, remains difficult to quantitatively model and precisely predict.

Original languageEnglish
Pages (from-to)3-12
Number of pages10
JournalJournal of Volcanology and Geothermal Research
Volume342
DOIs
StatePublished - Aug 15 2017

Keywords

  • a′a
  • Basalt
  • Lava channel
  • Lava flow
  • Lava tube
  • Pahoehoe

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