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Ares: A Coupling Methodology for Ablation ModelingTo enable modeling of complex and coupled ablation problems, a multi-physics framework is developed. A methodology for modeling shape change in coupled systems is presented. The approach taken to model gas-surface interactions and translate coupled surface phenomena to physically meaningful boundary conditions in the distinct solvers is discussed. Particular emphasis is placed on the nature of coupled boundary conditions pertaining to surface energy and mass balances as well as surface chemistry modeling. The developed methodology is used to simulate a shear test in arc-jet conditions in order to assess the validity of the coupled approach as well as the implementation of the relevant physical processes.
Document ID
20240000214
Acquisition Source
Ames Research Center
Document Type
Presentation
Authors
Olivia Schroeder
(Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Joseph Schulz
(Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Georgios Bellas-Chatzigeorgis
(Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Prakash Shrestha
(Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Grant Palmer
(Analytical Mechanics Associates (United States) Hampton, Virginia, United States)
Eric Stern
(Ames Research Center Mountain View, United States)
Graham Candler
(University of Minnesota Minneapolis, Minnesota, United States)
Date Acquired
January 5, 2024
Subject Category
Fluid Mechanics and Thermodynamics
Meeting Information
Meeting: AIAA SciTech Forum
Location: Orlando, FL
Country: US
Start Date: January 8, 2024
End Date: January 12, 2024
Sponsors: American Institute of Aeronautics and Astronautics
Funding Number(s)
CONTRACT_GRANT: NNA15BB15C
CONTRACT_GRANT: 80NSSC18K1150
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
NASA Peer Committee
Keywords
EDL
Ablation
Material Response
Coupling
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