Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland

This study used optical remote sensors to identify surface hydrothermal alteration and thermal anomalies in the Sveifluháls-Krýsuvík high-temperature geothermal field. The study area is located in a volcanic fissure swarm in the central part of Reykjanes peninsula, in southwest Iceland. The area is...

Full description

Bibliographic Details
Main Author: Ramírez González, Lucía Magali, 1988-
Other Authors: Háskóli Íslands
Format: Thesis
Language:English
Published: 2018
Subjects:
Online Access:http://hdl.handle.net/1946/29516
_version_ 1821552438963863552
author Ramírez González, Lucía Magali, 1988-
author2 Háskóli Íslands
author_facet Ramírez González, Lucía Magali, 1988-
author_sort Ramírez González, Lucía Magali, 1988-
collection Skemman (Iceland)
description This study used optical remote sensors to identify surface hydrothermal alteration and thermal anomalies in the Sveifluháls-Krýsuvík high-temperature geothermal field. The study area is located in a volcanic fissure swarm in the central part of Reykjanes peninsula, in southwest Iceland. The area is characterized by intensive surface alteration, steam vents, mud pots, and hot springs. Multispectral Landsat and ASTER satellite images were used to identify hydrothermal alteration minerals and thermal anomalies. A hyperspectral image from Hyperion was used for the analysis of absorption features. Spectral analysis from the visible (VIS) to the short wavelength infrared (SWIR) allowed the identification of possible sulfur, iron oxides, and montmorillonite. A time series analysis of thermal anomalies using the nighttime satellite images from 2002 to 2017 detected extinct surface hydrothermal activity southwest of the study area, and a thermal anomaly possibly affected by crustal deformation in the southeast. In Seltún area, thermal infrared (TIR) images acquired by a camera on a drone were taken and compared with ground measurements; the aim was assessing the accuracy of the TIR images regarding the distance between the camera and the ground. The TIR image taken at 30m elevation was used to calculate radiative heat flux; values were in same order of magnitude than the heat flux estimated by using ground temperature measurements. This study provides insights for monitoring natural or induced changes on the surface geothermal activity in other geothermal fields. CONACYT-SENER (the Mexican National Council for Science and Technology – Energy Secretary)
format Thesis
genre Iceland
genre_facet Iceland
geographic Hyperion
Krýsuvík
Reykjanes
Seltún
geographic_facet Hyperion
Krýsuvík
Reykjanes
Seltún
id ftskemman:oai:skemman.is:1946/29516
institution Open Polar
language English
long_lat ENVELOPE(-68.917,-68.917,-72.033,-72.033)
ENVELOPE(-22.052,-22.052,63.897,63.897)
ENVELOPE(-22.250,-22.250,65.467,65.467)
ENVELOPE(-22.052,-22.052,63.896,63.896)
op_collection_id ftskemman
op_relation http://hdl.handle.net/1946/29516
publishDate 2018
record_format openpolar
spelling ftskemman:oai:skemman.is:1946/29516 2025-01-16T22:35:40+00:00 Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland Ramírez González, Lucía Magali, 1988- Háskóli Íslands 2018-01 application/pdf http://hdl.handle.net/1946/29516 en eng http://hdl.handle.net/1946/29516 Jarðfræði Fjarkönnun Jarðhiti Háhitasvæði Rannsóknir Sveifluháls Krýsuvík Reykjanes Thesis Master's 2018 ftskemman 2022-12-11T06:59:37Z This study used optical remote sensors to identify surface hydrothermal alteration and thermal anomalies in the Sveifluháls-Krýsuvík high-temperature geothermal field. The study area is located in a volcanic fissure swarm in the central part of Reykjanes peninsula, in southwest Iceland. The area is characterized by intensive surface alteration, steam vents, mud pots, and hot springs. Multispectral Landsat and ASTER satellite images were used to identify hydrothermal alteration minerals and thermal anomalies. A hyperspectral image from Hyperion was used for the analysis of absorption features. Spectral analysis from the visible (VIS) to the short wavelength infrared (SWIR) allowed the identification of possible sulfur, iron oxides, and montmorillonite. A time series analysis of thermal anomalies using the nighttime satellite images from 2002 to 2017 detected extinct surface hydrothermal activity southwest of the study area, and a thermal anomaly possibly affected by crustal deformation in the southeast. In Seltún area, thermal infrared (TIR) images acquired by a camera on a drone were taken and compared with ground measurements; the aim was assessing the accuracy of the TIR images regarding the distance between the camera and the ground. The TIR image taken at 30m elevation was used to calculate radiative heat flux; values were in same order of magnitude than the heat flux estimated by using ground temperature measurements. This study provides insights for monitoring natural or induced changes on the surface geothermal activity in other geothermal fields. CONACYT-SENER (the Mexican National Council for Science and Technology – Energy Secretary) Thesis Iceland Skemman (Iceland) Hyperion ENVELOPE(-68.917,-68.917,-72.033,-72.033) Krýsuvík ENVELOPE(-22.052,-22.052,63.897,63.897) Reykjanes ENVELOPE(-22.250,-22.250,65.467,65.467) Seltún ENVELOPE(-22.052,-22.052,63.896,63.896)
spellingShingle Jarðfræði
Fjarkönnun
Jarðhiti
Háhitasvæði
Rannsóknir
Sveifluháls
Krýsuvík
Reykjanes
Ramírez González, Lucía Magali, 1988-
Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland
title Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland
title_full Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland
title_fullStr Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland
title_full_unstemmed Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland
title_short Remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at Sveifluháls-Krýsuvík high-temperature geothermal field, SW Iceland
title_sort remote sensing of surface hydrothermal alteration, identification of minerals and thermal anomalies at sveifluháls-krýsuvík high-temperature geothermal field, sw iceland
topic Jarðfræði
Fjarkönnun
Jarðhiti
Háhitasvæði
Rannsóknir
Sveifluháls
Krýsuvík
Reykjanes
topic_facet Jarðfræði
Fjarkönnun
Jarðhiti
Háhitasvæði
Rannsóknir
Sveifluháls
Krýsuvík
Reykjanes
url http://hdl.handle.net/1946/29516