Fracture systems of the Northern Volcanic Rift Zone, Iceland: An onshore part of the Mid-Atlantic plate boundary

A. R. Hjartardóttir*, P. Einarsson, S. Magnúsdóttir, Th Björnsdóttir, B. Brandsdóttir

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

43 Citations (Scopus)

Abstract

Few divergent plate boundaries are subaerial. Active rifts in Iceland provide valuable surface information on divergent spreading processes, rifting and faulting. The 200 km long and 50 km wide Northern Volcanic Rift Zone (NVZ) is composed of 7 volcanic systems, each consisting of a central volcano with a transecting fissure swarm. Fractures and postglacial eruptive fissures in the NVZ were analysed using aerial photographs and satellite images to study their characteristics and behaviour. While non-eruptive fractures characterize the distal (c. 40-100 km) parts of the fissure swarms, eruptive fissures are most common at distances less than c. 20-30 km from the central volcano. Fractures within the fissure swarms are generally subparallel, with a N-NNE strike. Irregular orientations are associated with calderas within the central volcanoes Askja and Krafla, and at the junction of the NVZ and the Tjörnes Fracture Zone, where high fracture densities also occur. WNW-orientated fractures at the southern end of the Krafla Fissure Swarm, and the northern end of the Kverkfjö ll Fissure Swarm, exhibit surface expressions of a transform zone. The fissure swarms within the rift zone are mostly seismically and geodetically inactive, becoming highly active during rifting events that occur at time intervals of tens to a few hundred years.

Original languageEnglish
Title of host publicationGeological Society Special Publication
PublisherGeological Society of London
Pages297-314
Number of pages18
Edition1
DOIs
Publication statusPublished - 2016

Publication series

NameGeological Society Special Publication
Number1
Volume420
ISSN (Print)0305-8719

Bibliographical note

Publisher Copyright:
© The Geological Society of London 2016.

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