Energy and entropy in airbag deployment : the effect of an out-of-position occupant.

Author(s)
Nusholtz, G.S. Wu, J. Wang, D. & Wylie, E.B.
Year
Abstract

Deployment of an airbag or charging of a tank by an inflator-canister system is a highly dynamic process. Quantification of energy storage, energy flux, work done, flow rates, thermodynamic properties, and energy conservation are essential to describe the deployment process. The concepts of available work and entropy production are presented as useful parameters when evaluating airbag aggressivity from tank test results for different types of inflators. This paper presents a computational methodology to simulate a pyro- and a hybrid-inflator-canister-airbag system to predict the force pattern that could occur on an out-of-position (OOP) occupant when the airbag deploys. Comparisons with experimental data have been made in all cases where data were available. These include driver-, passenger-, and side-airbag designs. (A)

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Publication

Library number
C 14896 (In: C 14877) /91 /84 / IRRD E201727
Source

In: Air bag technology 1999 : papers presented at the 1999 SAE International Congress & Exposition, Detroit, Michigan, March 1-4, 1999, SAE Technical Paper 1999-01-1071, p. 161-173, 9 ref.

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