HIMALDOC 14 records found  1 - 10next  jump to record: Search took 0.00 seconds. 
Year: 2016
Three debris-free glaciers of various areas have been monitored for the last 5 to 8 years in Everest region (Central Himalaya, Nepal) and their annual glacier-wide mass balances (Ba) obtained from the glaciological method strongly differ
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Year: 2016
Approximately 25 % of the glacierized area in the Everest region is covered by debris, yet the surface mass balance of debris-covered portions of these glaciers has not been measured directly
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Year: 2016
We present the updated glaciological mass balance (MB) of Chhota Shigri Glacier, the longest continuous annual MB record in the Hindu-Kush Karakoram Himalaya (HKH) region
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Year: 2016
Debris-covered glaciers occupy more than 1/4 of the total glacierized area in the Everest region of Nepal, yet the surface mass balance of these glaciers has not been measured directly
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Year: 2014
Recent studies revealed that Himalayan glaciers have been shrinking at an accelerated rate since the beginning of the 21st century
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Year: 2014
In this study, we apply a glacier mass balance and ice redistribution model to simulate historical and future glacier change in the Everest region of Nepal
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Year: 2014
In response to climate change, most glaciers are losing mass and hence contribute to sea-level rise
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Year: 2014
Some recent studies revealed that Himalayan glaciers were shrinking at an accelerated rate since the beginning of the 21st century
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Year: 2014
Analysis of the thermal regime of glaciers is crucial for glacier hazard assessment, especially in the context of a changing climate
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HIMALDOC 14 records found  1 - 10next  jump to record: Search took 0.00 seconds. 
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