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A Case Study of AI-assisted Creation of a Thermodynamics Model of Precipitation Formation During Rapid Depressurization of a Vented ContainerPrecipitation may form in humid containers undergoing rapid depressurization. This precipitation may be liquid, i.e. fog, if the dewpoint is crossed above the freezing point of water, or direct snow crystallization if the dewpoint is crossed below the freezing point. Accurate modeling of this effect is potentially important for rapidly ascending vented containers in aircraft, spacecraft, and launch vehicles, as well as rapidly depressurizing vacuum chambers. A transient thermodynamics model of precipitation formation during the rapid depressurization of a container was developed in python. The model is written for a generic container and includes an optional water pool and water vapor source. Details of the model and results from several example cases spanning the full capabilities of the model, including a validation case, will be presented. Although the model is not novel, in contrast to prior works, this one was treated as a case study of the assistance of AI Large Language Models (LLMs) to create physical models. Impressions, performance, time, and cost of using AI for this task will be discussed.
Document ID
20260007869
Acquisition Source
Kennedy Space Center
Document Type
Presentation
Authors
Jedediah M Storey
(Kennedy Space Center Merritt Island, United States)
Date Acquired
August 14, 2026
Subject Category
Fluid Mechanics and Thermodynamics
Meeting Information
Meeting: 37th Thermal and Fluids Analysis Workshop (TFAWS)
Location: Huntsville, AL
Country: US
Start Date: August 31, 2026
End Date: September 4, 2026
Sponsors: National Aeronautics and Space Administration
Funding Number(s)
WBS: 725932.08.01.01.13
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Technical Review
Single Expert
Keywords
precipitation
model
venting
LLM
AI
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