Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Enhancing Hydrologic Design by Next-Generation Intensity-Duration-Frequency Curves Considering Snowmelt and Climate Nonstationarity

Conference ·
OSTI ID:1523386

Precipitation intensity-duration-frequency (PREC-IDF) curves are a standard tool to derive design floods for hydraulic infrastructure design worldwide. In snow-dominated regions where a large percentage of flood events are caused by snowmelt and rain-on-snow events, precipitation alone can be a poor predictor of flood risk. Meanwhile, anthropogenic climate change is expected to intensify hydrological cycle and alter hydrologic extremes, potentially increasing the likelihood of infrastructure failure in their design life period. To enhance future hydrologic design, we propose the next-generation IDF (NG-IDF) curves with consideration of both snow process and climate nonstationarity. The NG-IDF curves, which characterize the actual water reaching the land surface (melt + rain), use of the concept of “water available for runoff” rather than “rainfall” for hydrologic design. This paper shows that in the mountainous regions of the western United States, the standard PREC-IDF curves without considering snow process can substantially underestimate the input water intensities and the consequent peak design floods (i.e., the PREC-IDF curves may lead to underestimation of peak design flood by as much as 324%). Under a warming climate, we also observe statistically significant declining trends in both snowpack mass and extreme water available for runoff across the mountainous regions of the western United States from 1979 to 2017, confirming the proclamation that “stationarity is dead” and demonstrating the need to develop nonstationary NG-IDF curves for future hydrologic design.

Research Organization:
Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC05-76RL01830
OSTI ID:
1523386
Report Number(s):
PNNL-SA-140569
Country of Publication:
United States
Language:
English

Similar Records

Next-Generation Intensity–Duration–Frequency Curves to Reduce Errors in Peak Flood Design
Journal Article · Mon Jul 01 00:00:00 EDT 2019 · Journal of Hydrologic Engineering · OSTI ID:1530831

Evaluating next-generation intensity–duration–frequency curves for design flood estimates in the snow-dominated western United States
Journal Article · Thu Dec 12 23:00:00 EST 2019 · Hydrological Processes · OSTI ID:1600720

Next-Generation Intensity-Duration-Frequency Curves for Climate-Resilient Infrastructure Design: Advances and Opportunities
Journal Article · Wed Dec 02 23:00:00 EST 2020 · Frontiers in Water · OSTI ID:1755009

Related Subjects