Geospatial Techniques for Hydro-Geomorphic Assessment of the August 2026 Bhote Koshi Mega- flood in Rasuwa District,Nepal

Abstract Himalaya is a highly susceptible region for avalanche and flash floods due to steep topography as well as fragile lithology. The present study aims to investigates the catastrophic meghaflood of Bhote Koshi and Trishuli river of the greater Himalayin region of Rasuwa District of the Nepal. The research aims to assess the sediment source region and valley-floor deposition, and channel dynamics for the landscape transformation.Sentinal-2A satellite imagery, DEM,GIS based investigations are integrated to delineate erosion and deposition zones and evaluate changes in channel morphology and valley-floor configuration.The meghaflood resulted into channel widening,bank erosion, debris accumulation.The research findings highlight the role of hydro-geomorphic processess responsible for channel modification.It also highlights the critical role of hydro-geomorphic thresholds and sediment connectivity in transforming high-mountain river systems during extreme flood events.Geospatial techniques are utilized to assess the channel modification of Bhothe Koshi- Trishuli river

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-30
DOI
https://doi.org/10.5281/zenodo.23014091
Primary Topic
Hydrology and Sediment Transport Processes
Type
article
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article

Geospatial Techniques for Hydro-Geomorphic Assessment of the August 2026 Bhote Koshi Mega- flood in Rasuwa District,Nepal

.M. Jethe, A.B. Wagh, N.S. Padalkar, S.B. Narute
Zenodo (CERN European Organization for Nuclear Research)
Hydrology and Sediment Transport Processes
article

Geospatial Techniques for Hydro-Geomorphic Assessment of the August 2026 Bhote Koshi Mega- flood in Rasuwa District,Nepal

.M. Jethe, A.B. Wagh, N.S. Padalkar, S.B. Narute
article en

Abstract

Abstract Himalaya is a highly susceptible region for avalanche and flash floods due to steep topography as well as fragile lithology. The present study aims to investigates the catastrophic meghaflood of Bhote Koshi and Trishuli river of the greater Himalayin region of Rasuwa District of the Nepal. The research aims to assess the sediment source region and valley-floor deposition, and channel dynamics for the landscape transformation.Sentinal-2A satellite imagery, DEM,GIS based investigations are integrated to delineate erosion and deposition zones and evaluate changes in channel morphology and valley-floor configuration.The meghaflood resulted into channel widening,bank erosion, debris accumulation.The research findings highlight the role of hydro-geomorphic processess responsible for channel modification.It also highlights the critical role of hydro-geomorphic thresholds and sediment connectivity in transforming high-mountain river systems during extreme flood events.Geospatial techniques are utilized to assess the channel modification of Bhothe Koshi- Trishuli river

Zenodo (CERN European Organization for Nuclear Research)
Life in Land
Openalex Percentile: Top 12%
Hydrology and Sediment Transport Processes
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Geospatial Techniques for Hydro-Geomorphic Assessment of the August 2026 Bhote Koshi Mega- flood in Rasuwa District,Nepal — .M. Jethe, A.B. Wagh, et al. · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS