The ground surface temperature is one of the key parameters that determine the thermal regime of permafrost soils in arctic regions. Due to remoteness of most permafrost areas, monitoring of the land surface temperature (LST) through remote sensing is desirable. However, suitable satellite platforms such as MODIS provide spatial resolutions that cannot resolve the considerable small-scale heterogeneity of the surface conditions characteristic for many permafrost areas. This study investigates the spatial variability of summer surface temperatures of high-arctic tundra on Svalbard, Norway. A thermal imaging system mounted on a mast facilitates continuous monitoring of approximately 100 × 100 m of tundra with a wide variability of different s...
With current remote sensing technologies, it is not possible to directly measure the thermal state o...
High-latitude areas are very sensitive to global warming, which has significant impacts on soil temp...
High-latitude areas are very sensitive to global warming, which has significant impacts on soil temp...
The ground surface temperature is one of the key parameters that determine the thermal regime of per...
The accelerated warming of the Arctic climate may alter the local and regional surface energy balanc...
The accelerated warming of the Arctic climate may alter the local and regional surface energy balanc...
The accelerated warming Arctic climate may alter the surface energy balance locally and regionally o...
Thermal remote sensing can quantify climate change in the Arctic, where ground-based measurements co...
The temperature distribution in permafrost soils is affected by a wide variety of parameters, which ...
For most of the cryosphere components such as glaciers, ice sheets, sea ice, and snow satellite moni...
Arctic permafrost may be adversely affected by climate change in a number of ways, so that establish...
Remote sensing offers great potential for detecting changes of the thermal state of permafrost and a...
Independent measurements of radiation, sensible and latent heat fluxes and the ground heat flux are ...
Mountain permafrost modelling in remote, continental mountain ranges (e.g. Russian Altai Mountains) ...
Mountain permafrost modelling in remote, continental mountain ranges (e.g. Russian Altai Mountains) ...
With current remote sensing technologies, it is not possible to directly measure the thermal state o...
High-latitude areas are very sensitive to global warming, which has significant impacts on soil temp...
High-latitude areas are very sensitive to global warming, which has significant impacts on soil temp...
The ground surface temperature is one of the key parameters that determine the thermal regime of per...
The accelerated warming of the Arctic climate may alter the local and regional surface energy balanc...
The accelerated warming of the Arctic climate may alter the local and regional surface energy balanc...
The accelerated warming Arctic climate may alter the surface energy balance locally and regionally o...
Thermal remote sensing can quantify climate change in the Arctic, where ground-based measurements co...
The temperature distribution in permafrost soils is affected by a wide variety of parameters, which ...
For most of the cryosphere components such as glaciers, ice sheets, sea ice, and snow satellite moni...
Arctic permafrost may be adversely affected by climate change in a number of ways, so that establish...
Remote sensing offers great potential for detecting changes of the thermal state of permafrost and a...
Independent measurements of radiation, sensible and latent heat fluxes and the ground heat flux are ...
Mountain permafrost modelling in remote, continental mountain ranges (e.g. Russian Altai Mountains) ...
Mountain permafrost modelling in remote, continental mountain ranges (e.g. Russian Altai Mountains) ...
With current remote sensing technologies, it is not possible to directly measure the thermal state o...
High-latitude areas are very sensitive to global warming, which has significant impacts on soil temp...
High-latitude areas are very sensitive to global warming, which has significant impacts on soil temp...