Mauger (2026) Historical and Future Peak Flow Statistics for Washington State, derived from VIC modeling and Dynamically Downscaled CMIP5 Projections
⚠️ Warning: This summary was generated from the abstract only, as the full text was not available.
Identification
- Journal: USGS DOI Tool Production Environment
- Year: 2026
- Date: 2026-09-28
- Authors: Guillaume Mauger
- DOI: 10.5066/p13u2yz2
Research Groups
- University of Washington Department of Civil and Environmental Engineering
- Washington State Department of Ecology
Short Summary
This study provides a dataset of peak flow statistics associated with culvert design for the state of Washington, intended to support climate-resilient culvert design.
Objective
- Investigate the impact of climate change on local runoff peaks in small creeks (less than about 100 km2) and provide data for climate-resilient culvert design
Study Configuration
- Spatial Scale: State of Washington, USA
- Temporal Scale: Long-term projections (climate scenarios)
Methodology and Data
- Models used: Not specified
- Data sources: Not specified (project report mentioned as a reference)
Main Results
- Peak flow statistics for culvert design in the state of Washington, including local runoff projections
Contributions
- Provides data and support for climate-resilient culvert design in small creeks (less than about 100 km2) in the state of Washington
Funding
- Not specified
Citation
@article{Mauger2026Historical,
author = {Mauger, Guillaume},
title = {Historical and Future Peak Flow Statistics for Washington State, derived from VIC modeling and Dynamically Downscaled CMIP5 Projections},
journal = {USGS DOI Tool Production Environment},
year = {2026},
doi = {10.5066/p13u2yz2},
url = {https://doi.org/10.5066/p13u2yz2}
}
Original Source: https://doi.org/10.5066/p13u2yz2