An Experiment-Based Model of Fabric Heat Transfer and Its Inclusion in Air Bag Deployment Simulations

1999-01-0437

03/01/1999

Event
International Congress & Exposition
Authors Abstract
Content
A numerical model is presented that is capable of isolating and quantifying the heat flux from the gas within the bag to the air bag fabric due to internal surface convection during the inflator discharge period of an air bag deployment. The model is also capable of predicting the volume averaged fabric temperatures during the air bag deployment period. Implementation of the model into an air bag deployment code, namely Inflator Simulation Program (ISP), is presented along with the simulation results for typical inflators. The predicted effect of the heat loss from the bag gas to the fabric on the internal bag gas temperature and pressure and the resulting bulk fabric temperature as a function of fabric parameters and the inflator exit gas properties are presented for both permeable and impermeable air bag fabrics.
Meta TagsDetails
DOI
https://doi.org/10.4271/1999-01-0437
Pages
11
Citation
Liter, S., Park, C., Kaviany, M., Wang, J. et al., "An Experiment-Based Model of Fabric Heat Transfer and Its Inclusion in Air Bag Deployment Simulations," SAE Technical Paper 1999-01-0437, 1999, https://doi.org/10.4271/1999-01-0437.
Additional Details
Publisher
Published
Mar 1, 1999
Product Code
1999-01-0437
Content Type
Technical Paper
Language
English