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S&T Project Number 1735 Final Report: Stochastic Storm Transposition for Physically-Based Rainfall and Flood Hazard Analyses Science and Technology Program
Reclamation partnered with faculty from the University of Wisconsin-Madison to address a need for improved gridded technologies that support precipitation and flood frequency analyses. Research products developed in this study include a gridded, web-based stochastic storm transposition tool referred to as RainyDay and gridded flood-frequency estimates developed using a stochastic version of WRF-Hydro coupled to RainyDay output. These products were demonstrated within the Big Thompson watershed above Olympus Dam in Colorado.
Complete Metadata
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| accrualPeriodicity | irregular |
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| description | Reclamation partnered with faculty from the University of Wisconsin-Madison to address a need for improved gridded technologies that support precipitation and flood frequency analyses. Research products developed in this study include a gridded, web-based stochastic storm transposition tool referred to as RainyDay and gridded flood-frequency estimates developed using a stochastic version of WRF-Hydro coupled to RainyDay output. These products were demonstrated within the Big Thompson watershed above Olympus Dam in Colorado. |
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|
| identifier | https://datainventory.usbr.gov/rise/item/6273 |
| keyword |
[
"Flood-Frequency Analysis",
"Hydrologic Hazard Analysis",
"Precipitation-Frequency Analysis",
"Stochastic Storm Transposition"
]
|
| landingPage | https://data.usbr.gov/catalog/4422/item/6273 |
| modified | 2020-10-16T21:16:49Z |
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| title | S&T Project Number 1735 Final Report: Stochastic Storm Transposition for Physically-Based Rainfall and Flood Hazard Analyses Science and Technology Program |