Icing Simulation Framework: A Predictive Approach from Nucleation to Runback

2023-01-1460

06/15/2023

Event
International Conference on Icing of Aircraft, Engines, and Structures
Authors Abstract
Content
This paper provides an overview of the state-of-art multiscale “Icing Simulation Framework” capability developed at Raytheon Technologies Research Center. Specifically, the application of this framework to simulate droplet runback and runback icing will be presented. In summary, this high-fidelity framework tracks the physical mechanisms associated with droplet dynamics, ice nucleation, growth and interaction with the environment (e.g. adhesion, crystal growth, evaporation, sublimation, etc.) across all relevant scales (including nucleation at <10-7m to ~10-6m of coating/environment interaction to 10-2m of the component) which allows a rigorous investigation of how different environmental (e.g. LWC, MVD, pressure, velocity and temperature) and substrate (e.g. coating molecular and macroscopic specifications) characteristics affect the icing behavior.
Meta TagsDetails
DOI
https://doi.org/10.4271/2023-01-1460
Pages
10
Citation
Yazdani, M., Hu, C., and MacDonald, M., "Icing Simulation Framework: A Predictive Approach from Nucleation to Runback," SAE Technical Paper 2023-01-1460, 2023, https://doi.org/10.4271/2023-01-1460.
Additional Details
Publisher
Published
Jun 15, 2023
Product Code
2023-01-1460
Content Type
Technical Paper
Language
English