Detail publikace
IMPLEMENTATION STUDY OF A PASSIVE SAFETY FEATURE IN THE RESCUE SYSTEMS OF SMALL AIRCRAFTS
HÁJEK, T. GRIM, R. POPELA, R.
Anglický název
IMPLEMENTATION STUDY OF A PASSIVE SAFETY FEATURE IN THE RESCUE SYSTEMS OF SMALL AIRCRAFTS
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
en
Originální abstrakt
Article History: Abstract. The aim of this paper is to evaluate the feasibility of implementation of a passive safety feature in the form of an under-fuselage airbag in the rescue systems of small aircraft. The paper presents a multidisciplinary approach for the viability of the implementation. It presents the development of mathematical model for airbag performance analysis. The model is validated against the experimental data to account for various simplifications. Validated mathematical model is used to design a full-scale airbag for the chosen airplane to perform in the designed range. Weight penalty for increased safety is determined.
Anglický abstrakt
Article History: Abstract. The aim of this paper is to evaluate the feasibility of implementation of a passive safety feature in the form of an under-fuselage airbag in the rescue systems of small aircraft. The paper presents a multidisciplinary approach for the viability of the implementation. It presents the development of mathematical model for airbag performance analysis. The model is validated against the experimental data to account for various simplifications. Validated mathematical model is used to design a full-scale airbag for the chosen airplane to perform in the designed range. Weight penalty for increased safety is determined.
Klíčová slova anglicky
parachute rescue; passive safety; airbag; impact attenuation; experimental validation; ultralight aircraft.
Vydáno
13.10.2023
Nakladatel
VILNIUS GEDIMINAS TECH UNIV
Místo
VILNIUS
ISSN
1648-7788
Ročník
27
Číslo
3
Strany od–do
187–196
Počet stran
10
BIBTEX
@article{BUT187871,
author="Tomáš {Hájek} and Robert {Grim} and Robert {Popela},
title="IMPLEMENTATION STUDY OF A PASSIVE SAFETY FEATURE IN THE RESCUE SYSTEMS OF SMALL AIRCRAFTS",
year="2023",
volume="27",
number="3",
month="October",
pages="187--196",
publisher="VILNIUS GEDIMINAS TECH UNIV",
address="VILNIUS",
issn="1648-7788"
}