Spatially distributed surface temperature is an important, yet difficult to observe, variable for physical glacier melt models. We utilize ground-based thermal infrared imagery to obtain spatially distributed surface temperature data for alpine glaciers. The infrared images are used to investigate thermal microscale processes at the glacier surface, such as the effect of surface cover type and the temperature gradient at the glacier margins on the glacier\u27s temperature dynamics. Infrared images were collected at Cuchillacocha Glacier, Cordillera Blanca, Peru, on 23-25 June 2014. The infrared images were corrected based on ground truth points and local meteorological data. For the control points, the Pearson\u27s correlation coefficient b...
A thermal infrared (TIR) camera is used to remotely sense the foliage temperature in a mountain vall...
Multispectral satellite data represent the primary data source for spaceborne glacier mapping and mo...
Glaciers are sensitive to climatic variation and a particular developing area of investigation is in...
Like alpine glaciers around the planet, the glaciers in the Cordillera Blanca are quickly retreating...
In this paper we used ground-based thermal infrared imaging to investigate the spatial variability o...
A layer of debris cover often accumulates across the surface of glaciers in active mountain ranges w...
A layer of debris cover often accumulates across the surface of glaciers in active mountain ranges w...
Supraglacial debris complicates the energy balance at the glacier-atmosphere interface, making mass ...
Abstract. Remote sensors face challenges in characteriz-ing mountain permafrost and ground thermal c...
The snow-melting zone forms a site of marked physical-hydrological processes. A basic requirement fo...
International audienceAccurate knowledge of temperate glacier mass balance is essential to understan...
Glaciers are sensitive to climatic variation and a particular developing area of investigation is in...
<p>A layer of debris cover often accumulates across the surface of glaciers in active mountain range...
Multispectral satellite data represent the primary data source for spaceborne glacier mapping and mo...
A thermal infrared (TIR) camera is used to remotely sense the foliage temperature in a mountain vall...
Multispectral satellite data represent the primary data source for spaceborne glacier mapping and mo...
Glaciers are sensitive to climatic variation and a particular developing area of investigation is in...
Like alpine glaciers around the planet, the glaciers in the Cordillera Blanca are quickly retreating...
In this paper we used ground-based thermal infrared imaging to investigate the spatial variability o...
A layer of debris cover often accumulates across the surface of glaciers in active mountain ranges w...
A layer of debris cover often accumulates across the surface of glaciers in active mountain ranges w...
Supraglacial debris complicates the energy balance at the glacier-atmosphere interface, making mass ...
Abstract. Remote sensors face challenges in characteriz-ing mountain permafrost and ground thermal c...
The snow-melting zone forms a site of marked physical-hydrological processes. A basic requirement fo...
International audienceAccurate knowledge of temperate glacier mass balance is essential to understan...
Glaciers are sensitive to climatic variation and a particular developing area of investigation is in...
<p>A layer of debris cover often accumulates across the surface of glaciers in active mountain range...
Multispectral satellite data represent the primary data source for spaceborne glacier mapping and mo...
A thermal infrared (TIR) camera is used to remotely sense the foliage temperature in a mountain vall...
Multispectral satellite data represent the primary data source for spaceborne glacier mapping and mo...
Glaciers are sensitive to climatic variation and a particular developing area of investigation is in...