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Modernizing the Gridded Surface Subsurface Hydrologic Analysis Model
  • +2
  • Aaron Byrd,
  • Ahmad Tavakoly,
  • Charles Downer,
  • Naveen Ganesh,
  • Christopher Massey
Aaron Byrd
US Army Engineer Research and Development Center (ERDC)

Corresponding Author:aaronrbyrd@gmail.com

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Ahmad Tavakoly
US Army Engineer Research and Development Center (ERDC)
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Charles Downer
US Army Engineer Research and Development Center (ERDC)
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Naveen Ganesh
US Army Engineer Research and Development Center (ERDC)
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Christopher Massey
U.S. Army Engineer Research and Development Center (ERDC)
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Abstract

The Gridded Surface Subsurface Hydrologic Analysis (GSSHA) model is an integrated system of physics-based hydrologic process models. This approach of using a system of physics-based models allows GSSHA to be a good fit for many watershed management decision support applications, such as understanding changing flood dynamics from urban growth as well as using natural and nature-based solutions, such as wetlands or artificial beaver dams, to ameliorate flooding potential. One of the key roles GSSHA has played is modeling compound coastal storm flooding – extreme rainfall combined with storm surge from tropical systems. Simulating such events requires coupling of overland, riverine, coastal, and weather modeling systems. A challenge facing the USACE modeling community is enabling the programmatic connections between models to reduce manual input errors and increase the throughput in time-sensitive situations. In this talk we will discuss how GSSHA has been modernized to enable programmatic-level access to GSSHA. This allows GSSHA to be used in systems of computational models as well as opens up GSSHA to a wide level of data science integration applications, particularly as a part of the NextGen Framework.
12 Dec 2024Submitted to 2024 AGU Annual Meeting Preprint Collection on ESS Open Archive
18 Dec 2024Published in 2024 AGU Annual Meeting Preprint Collection on ESS Open Archive