ESAEducationHjemVejr og klimaGlobale forandringerNaturkatastrofer
   
Forandring af kystlinien
Donau-deltaetOlieforurening fra borerig
Skovrydning
Bardia National ParkCongobækkenetKameng-Sonitpur Elephant ReserveKilimanjaroRondoniaShillong og Guwahati
Is
Antarktis 2003Klimaforandringer og gletsjereGletscheres tilbagesmeltning i AlperneGletsjerisens bevægelseGletsjeranalyse ved hjælp af radarbillederMonitorering af gletschere i HimalayaTelemåling af is og sne
Urbanisering
CairoCordobaKathmanduHimalayaKathmandudalenLagos
Vegetation
Annapurna Conservation AreaForsvundet i AndesbjergeneNgorongoro Conservation AreaNiger-indlandsdeltaetSydamerika
 
 
 
 
Article Images
Gletsjernes dynamik
 
Scheme of ice flow from the accumulation to the ablation area
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Scheme of ice flow from the accumulation to the ablation area. Snow that falls on the highest zones of a glacier has the longest and deepest travel path. It emerges again at the lowest point of the glacier tongue and is the oldest ice. Depending on the size and flow-speed of a glacier, the travel time of a snow and ice crystal from the accumulation area to the glacier tongue can take from tens to hundreds of years.

Credits: Andreas Kääb
 
 
ASTER satellite image of 29 May 2002
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ASTER satellite image of 29 May 2002 showing glaciers in the Himalayas, at the border between Bhutan and Tibet (see GoogleEarth file location 1.6). Although this area lies in the subtropics, the glaciers survive. Ice flow transports the ice masses that develop around the cold, snow-rich mountain peaks to the warmer valleys, where it compensates for the intense ice melt.

Credits: NASA/ GSFC/METI/ERSDAC/JAROS, and the US/Japan ASTER science team
 
 
Animation of two ASTER satellite images of the glacier
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Animation of two ASTER satellite images of the glacier in the ASTER image. The images are from spring and late autumn 2001. Do you see the glacier flow?

Credits: NASA/ GSFC/METI/ERSDAC/JAROS, and the US/Japan ASTER science team
 
 
Close-up of animation
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Close-up of animation

Credits: NASA/ GSFC/METI/ERSDAC/JAROS, and the US/Japan ASTER science team
 


Gletsjerisens bevægelse
Indledning
Baggrund
Multitemporal billedkorrelation
Øvelser
Introduktion til øvelserneØvelse 1: Korrelation af gentagne billeder (LEOWorks 3)
Eduspace - Software
LEOWorks 3
Eduspace - Download
ASTER.zipGoogleEarth file
 
 
 
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