Outburst flood simulations of various dam failure scenarios from Tsho Rolpa glacial lake, Nepal, 2020
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Identification info
- Metadata Language
- English (en)
- Character set
- utf8
- Dataset Reference Date ()
- 2021-10-07
- Identifier
- doi: / 10.5285/f4292d99-de93-4a28-a821-b2a6a826df4c
- Other citation details
- Chen, H., Liang, Q., Xiao, W. (2021). Outburst flood simulations of various dam failure scenarios from Tsho Rolpa glacial lake, Nepal, 2020. NERC EDS Environmental Information Data Centre 10.5285/f4292d99-de93-4a28-a821-b2a6a826df4c
- GEMET - INSPIRE themes, version 1.0 ()
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- Hydrography
- Keywords
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- Glacial lake outburst floods
- Hydrodynamic flood modelling
- Limitations on Public Access
- otherRestrictions
- Other constraints
- no limitations
- Use constraints
- otherRestrictions
- Use constraints
- otherRestrictions
- Other constraints
- If you reuse this data, you should cite: Chen, H., Liang, Q., Xiao, W. (2021). Outburst flood simulations of various dam failure scenarios from Tsho Rolpa glacial lake, Nepal, 2020. NERC EDS Environmental Information Data Centre https://doi.org/10.5285/f4292d99-de93-4a28-a821-b2a6a826df4c
- Spatial representation type
- grid
- Spatial representation type
- textTable
- Distance
- 30 urn:ogc:def:uom:EPSG::9001
- Topic category
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- Inland waters
))
- Begin date
- 2020-03-31
- End date
- 2020-03-31
- Code
- WGS 84
Distribution Information
- Data format
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Comma-separated values (CSV)
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TIFF
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Comma-separated values (CSV)
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- Resource Locator
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Supporting information
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Supporting information
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- Quality Scope
- dataset
- Other
- dataset
Report
- Dataset Reference Date ()
- 2010-12-08
- Statement
- A commonly used empirical breach model was adopted to represent the dam breach formation process caused by overtopping. The breach was assumed to start from a small channel formed at the dam crest (initial breach) and grows into a trapezoidal shape with a side-slope of 1:1 during the time of failure. The model further assumes an initial breach depth and a final breach depth, which can be quantified and prescribed according to current dam conditions. A fully hydrodynamic model based on the 2-D depth-averaged shallow water equations (SWEs) was adopted to predict the flooding processes driven by the flow out of the breach of the moraine dam.
Metadata
- File identifier
- f4292d99-de93-4a28-a821-b2a6a826df4c XML
- Metadata Language
- English (en)
- Character set
- ISO/IEC 8859-1 (also known as Latin 1)
- Resource type
- dataset
- Hierarchy level name
- dataset
- Metadata Date
- 2021-10-08T10:45:43
- Metadata standard name
- UK GEMINI
- Metadata standard version
- 2.3