2008GeologyRequires access

Dike-induced reverse faulting in a graben

Ágúst Guðmundsson, Nadine Friese, Inés Galindo, Sonja L. Philipp

Open publisher page 65 citations

Abstract

Normal-fault slip of the boundary faults of a graben is commonly attributed to dike-induced stresses. Here, however, we report for the first time clear field evidence of a large dike-induced reverse-fault slip on a fault associated with a volcano-tectonic graben. The measured reverse faulting of at least 5 m occurs in the Holocene rift zone of northern Iceland. The reverse slip has apparently occurred on an existing normal fault as a result of over pressure of a nearby 6–13-m-thick 8 ka feeder dike. A numerical model of the dike-fault interaction supports our interpretation. The results indicate that dikes, particularly potential feeder dikes, may cause large reverse slips on nearby normal faults. This conclusion should improve the general understanding of geodetic deformation during volcanic unrest periods and may help forecast dike-fed eruptions.

About this research paper

What this paper is about

Normal-fault slip of the boundary faults of a graben is commonly attributed to dike-induced stresses. Here, however, we report for the first time clear field evidence of a large dike-induced reverse-fault slip on a fault associated with a volcano-tectonic graben. The measured reverse faulting of at least 5 m occurs in the Holocene rift zone of northern Iceland. The reverse slip has apparently occurred on an existing normal fault as a result of over pressure of a nearby 6–13-m-thick 8 ka feeder dike. A numerical model of the dike-fault interaction supports our interpretation. The results indicate that dikes, particularly potential feeder dikes, may cause large reverse slips on nearby normal faults. This conclusion should improve the general understanding of geodetic deformation during volcanic unrest periods and may help forecast dike-fed eruptions.

Why it matters

OpenAlex reports 65 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Normal-fault slip of the boundary faults of a graben is commonly attributed to dike-induced stresses. Here, however, we report for the first time clear field evidence of a large dike-induced reverse-fault slip on a fault associated with a volcano-tectonic graben. The measured reverse faulting of at least 5 m occurs in the Holocene rift zone of northern Iceland. The reverse slip has apparently occurred on an existing normal fault as a result of over pressure of a nearby 6–13-m-thick 8 ka feeder dike. A numerical model of the dike-fault interaction supports our interpretation. The results indicate that dikes, particularly potential feeder dikes, may cause large reverse slips on nearby normal faults. This conclusion should improve the general understanding of geodetic deformation during volcanic unrest periods and may help forecast dike-fed eruptions.

Key concepts: Geology, Dike, Graben, Seismology, Paleontology, Tectonics

Related papers

Back to paper searchBrowse research topicsOriginal source
Dike-induced reverse faulting in a graben — Research Paper | ScholarLens