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Rockfall hazard in the Imja Glacial Lake, eastern Nepal

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AbstractIn Nepal, rockfall related studies are rarely conducted and are limited to the landslide study along with few case studies on rockfall events. Rockfall problems in Nepal are more frequent in the Higher Himalayan region than Midland and Lesser Himalayan regions. In the glaciated valley and glacial lakes, rockfall and associated tsunami like huge wave are a recently initiated research. In this context, a glacial lake of the Himalaya, named as Imja Glacial Lake situated in eastern Nepal has been selected to understand the rockfall problems and their possible consequences. The lake was formed at the end part of the Imja glacier. The northern valley slope of Imja Glacier Lake, i.e. southern slope of the Island Peak has serious problem of rockfall into the lake. Rockfall simulation was performed during this research with field data. Three different Plots were defined for simulation of rockfall. Among them, Plot III seems to be the most hazardous since the detached boulders on the higher elevation can enter into the lake with the maximum velocity of 40 m/s with pre-impact energy more than 3500 kJ. This can develop a surge in the lake water that can break moraine dam. This leads to a serious threat to the downstream communities. Moreover, this research confirms that the rockfall hazard in the higher mountain region of Nepal is critical to creating flash floods due to tsunamis like surge in the lake water and breaching of the dam.
Title: Rockfall hazard in the Imja Glacial Lake, eastern Nepal
Description:
AbstractIn Nepal, rockfall related studies are rarely conducted and are limited to the landslide study along with few case studies on rockfall events.
Rockfall problems in Nepal are more frequent in the Higher Himalayan region than Midland and Lesser Himalayan regions.
In the glaciated valley and glacial lakes, rockfall and associated tsunami like huge wave are a recently initiated research.
In this context, a glacial lake of the Himalaya, named as Imja Glacial Lake situated in eastern Nepal has been selected to understand the rockfall problems and their possible consequences.
The lake was formed at the end part of the Imja glacier.
The northern valley slope of Imja Glacier Lake, i.
e.
southern slope of the Island Peak has serious problem of rockfall into the lake.
Rockfall simulation was performed during this research with field data.
Three different Plots were defined for simulation of rockfall.
Among them, Plot III seems to be the most hazardous since the detached boulders on the higher elevation can enter into the lake with the maximum velocity of 40 m/s with pre-impact energy more than 3500 kJ.
This can develop a surge in the lake water that can break moraine dam.
This leads to a serious threat to the downstream communities.
Moreover, this research confirms that the rockfall hazard in the higher mountain region of Nepal is critical to creating flash floods due to tsunamis like surge in the lake water and breaching of the dam.

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