Monitoring of active layer dynamics at two transects on Svalbard using multi-channel ground-penetrating radar

Fuente: PANGAEA
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Westermann, Sebastian, Wollschläger, Ute, Boike, Julia
Format: Dataset Open Access
Sprache:en
Veröffentlicht: PANGAEA 2010
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1867171360333103104
author Westermann, Sebastian
Wollschläger, Ute
Boike, Julia
author_facet Westermann, Sebastian
Wollschläger, Ute
Boike, Julia
collection Datos científicos de ciencias marinas y ambientales
contents Multi-channel ground-penetrating radar is used to investigate the late-summer evolution of the thaw depth and the average soil water content of the thawed active layer at a high-arctic continuous permafrost site on Svalbard, Norway. Between mid of August and mid of September 2008, five surveys have been conducted over transect lengths of 130 and 175 m each. The maximum thaw depths range from 1.6 m to 2.0 m, so that they are among the deepest thaw depths recorded for Svalbard so far. The thaw depths increase by approximately 0.2 m between mid of August and beginning of September and subsequently remain constant until mid of September. The thaw rates are approximately constant over the entire length of the transects within the measurement accuracy of about 5 to 10 cm. The average volumetric soil water content of the thawed soil varies between 0.18 and 0.27 along the investigated transects. While the measurements do not show significant changes in soil water content over the first four weeks of the study, strong precipitation causes an increase in average soil water content of up to 0.04 during the last week. These values are in good agreement with evapotranspiration and precipitation rates measured in the vicinity of the the study site. While we cannot provide conclusive reasons for the detected spatial variability of the thaw depth at the study site, our measurements show that thaw depth and average soil water content are not directly correlated. The study demonstrates the potential of multi-channel ground-penetrating radar for mapping thaw depth in permafrost areas. The novel non-invasive technique is particularly useful when the thaw depth exceeds 1.5 m, so that it is hardly accessible by manual probing. In addition, multi-channel ground-penetrating radar holds potential for mapping the latent heat content of the active layer and for estimating weekly to monthly averages of the ground heat flux during the thaw period.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_746741
institution PANGAEA
language en
publishDate 2010
publisher PANGAEA
record_format pangaea
spellingShingle Monitoring of active layer dynamics at two transects on Svalbard using multi-channel ground-penetrating radar
Westermann, Sebastian
Wollschläger, Ute
Boike, Julia
AWI_PerDyn; AWIPEV; GPR; Ground-penetrating radar; LH_Transect14; LH_Transect15; NYA_Meteorological_Obs; Ny-Ålesund, Spitsbergen; Permafrost Research (Periglacial Dynamics) @ AWI; T14; T15
Multi-channel ground-penetrating radar is used to investigate the late-summer evolution of the thaw depth and the average soil water content of the thawed active layer at a high-arctic continuous permafrost site on Svalbard, Norway. Between mid of August and mid of September 2008, five surveys have been conducted over transect lengths of 130 and 175 m each. The maximum thaw depths range from 1.6 m to 2.0 m, so that they are among the deepest thaw depths recorded for Svalbard so far. The thaw depths increase by approximately 0.2 m between mid of August and beginning of September and subsequently remain constant until mid of September. The thaw rates are approximately constant over the entire length of the transects within the measurement accuracy of about 5 to 10 cm. The average volumetric soil water content of the thawed soil varies between 0.18 and 0.27 along the investigated transects. While the measurements do not show significant changes in soil water content over the first four weeks of the study, strong precipitation causes an increase in average soil water content of up to 0.04 during the last week. These values are in good agreement with evapotranspiration and precipitation rates measured in the vicinity of the the study site. While we cannot provide conclusive reasons for the detected spatial variability of the thaw depth at the study site, our measurements show that thaw depth and average soil water content are not directly correlated. The study demonstrates the potential of multi-channel ground-penetrating radar for mapping thaw depth in permafrost areas. The novel non-invasive technique is particularly useful when the thaw depth exceeds 1.5 m, so that it is hardly accessible by manual probing. In addition, multi-channel ground-penetrating radar holds potential for mapping the latent heat content of the active layer and for estimating weekly to monthly averages of the ground heat flux during the thaw period.
title Monitoring of active layer dynamics at two transects on Svalbard using multi-channel ground-penetrating radar
topic AWI_PerDyn; AWIPEV; GPR; Ground-penetrating radar; LH_Transect14; LH_Transect15; NYA_Meteorological_Obs; Ny-Ålesund, Spitsbergen; Permafrost Research (Periglacial Dynamics) @ AWI; T14; T15
url https://doi.org/10.1594/PANGAEA.746741