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March 5, 2026Natural hazards and earth system sciences1 citationsOpen Access

Advancing glacial lake hazard and risk assessment in Bhutan through hydrodynamic flood mapping and exposure analysis

SRSonam RinzinSDStuart DunningRCRachel Carr

Key Points

  • This research aims to improve the assessment of glacial lake outburst flood (GLOF) risks by incorporating downstream exposure and vulnerability analysis.
  • Modelled hypothetical GLOF scenarios for glacial lakes larger than 0.05 km2 near glacier termini.
  • Assessed downstream impacts using depth-velocity outputs for exposed elements affected by GLOF.
  • Classified hazard levels for glacial lakes based on exposure and vulnerability data.
  • Over 11,000 people, 2,500 buildings, and significant infrastructure are exposed to GLOF risks.
  • Identified one lake as very high hazard and five as high hazard, previously unrecognized in earlier assessments.
  • Highlighted five local government units (LGUs) with very high GLOF risk that were not previously documented.

Abstract

Abstract. Hazard and risk from glacial lake outburst floods (GLOFs) in Bhutan have traditionally been assessed with limited consideration of the downstream exposure and vulnerability associated with individual lakes. However, exposure and vulnerability are key components of risk, and when explicitly attributed to each lake, can provide a more robust basis for prioritising hazard investigations and mitigation efforts. We modelled hypothetical GLOF scenarios for all glacial lakes with an area greater than 0.05 km2 and located within 1 km of a glacier terminus. We then determined GLOF risk by explicitly accounting for downstream impacts using depth–velocity outputs at each exposed element affected by the simulated GLOF from each lake, as well as the vulnerability of the affected community. Our study shows that approximately > 11 000 people, > 2500 buildings, > 250 km of road, > 400 bridges and ∼ 20 km2 of farmland are exposed to potential GLOF in Bhutan. We classified lake130 (Thorthormi Tsho) as a very high hazard glacial lake in Bhutan, five lakes as high hazard and 22 other lakes as moderate hazard. Among these high hazard glacial lakes, three of them: lake93 (Phudung Tsho), lake251, and lake278 (Wonney Tsho) were not recognised as being high hazard in previous studies. Five downstream local government administrative units (LGUs) were associated with very high GLOF risk, while eight others are associated with high GLOF risk. Five of these very high and high risk LGUs had not been previously documented as being at risk from GLOF. Our study underscores the significance of integrating potential inundation mapping and downstream exposure data to define high hazard glacial lakes. We recommend strengthening and expanding the existing GLOF preparedness and risk mitigation efforts in Bhutan, particularly in the LGUs, as having high GLOF risk identified in this study, to reduce potential future damage and loss.

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Cite This Study

Rinzin et al. (2026) studied this question.

synapsesocial.com/papers/69a91de0d6127c7a504c128dhttps://doi.org/10.5194/nhess-26-1015-2026
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