This study presents volume and mass changes of seven (five partially debris-covered, two debris-free) glaciers in the upper Langtang catchment in Nepal. We use a digital elevation model (DEM) from 1974 stereo Hexagon satellite data and seven DEMs derived from 2006–2015 stereo or tri-stereo satellite imagery (e.g., SPOT6/7). The availability of multiple independent DEM differences allows the identification of a robust signal and narrowing down of the uncertainty about recent volume changes. The volume changes calculated over several multiyear periods between 2006 and 2015 consistently indicate that glacier thinning has accelerated with respect to the period 1974–2006. We calculate an ensemble-mean elevation change rate of –...
Ice cliffs can act as “hot spots” for melt on debris-covered glaciers and promote local glacier mass...
Mass loss of Himalayan glaciers has wide-ranging consequences such as changing runoff distribution, ...
The mass balance of the majority of Himalayan glaciers is currently negative, and has been for sever...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
Himalayan glaciers are losing mass at rates similar to glaciers elsewhere, but heavily debris-covere...
Himalayan glaciers are losing mass at rates similar to glaciers elsewhere, but heavily debris-covere...
Himalayan glaciers are losing mass at rates similar to glaciers elsewhere, but heavily debris-covere...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
Thick debris cover on glaciers can significantly reduce ice melt. However, several studies have sugg...
Thick debris cover on glaciers can significantly reduce ice melt. However, several studies have sugg...
Thick debris cover on glaciers can significantly reduce ice melt. However, several studies have sugg...
This study assesses changes in glacier area, velocity, and geodetic mass balance for the glaciers in...
Multitemporal space imagery from 1962 (Corona KH-4), 1992 (Landsat TM), 2001 and 2005 (Terra ASTER) ...
Ice cliffs can act as “hot spots” for melt on debris-covered glaciers and promote local glacier mass...
Mass loss of Himalayan glaciers has wide-ranging consequences such as changing runoff distribution, ...
The mass balance of the majority of Himalayan glaciers is currently negative, and has been for sever...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
Himalayan glaciers are losing mass at rates similar to glaciers elsewhere, but heavily debris-covere...
Himalayan glaciers are losing mass at rates similar to glaciers elsewhere, but heavily debris-covere...
Himalayan glaciers are losing mass at rates similar to glaciers elsewhere, but heavily debris-covere...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
This study presents volume and mass changes of seven (five partially debris-covered, two debris-free...
Thick debris cover on glaciers can significantly reduce ice melt. However, several studies have sugg...
Thick debris cover on glaciers can significantly reduce ice melt. However, several studies have sugg...
Thick debris cover on glaciers can significantly reduce ice melt. However, several studies have sugg...
This study assesses changes in glacier area, velocity, and geodetic mass balance for the glaciers in...
Multitemporal space imagery from 1962 (Corona KH-4), 1992 (Landsat TM), 2001 and 2005 (Terra ASTER) ...
Ice cliffs can act as “hot spots” for melt on debris-covered glaciers and promote local glacier mass...
Mass loss of Himalayan glaciers has wide-ranging consequences such as changing runoff distribution, ...
The mass balance of the majority of Himalayan glaciers is currently negative, and has been for sever...