Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing Aircraft

Poor lateral-directional stability due to the absence of vertical stabilizer is a great risk to the aircraft with a flying wing layout. In this paper, an unmanned aerial vehicle with this kind of configuration is chosen as the research object. A three-dimensional model of the unmanned aerial vehicl...

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Main Authors: Ya Lin Pan, Jun Huang
Format: Article
Language:English
Published: Departamento de Ciência e Tecnologia Aeroespacial 2019-09-01
Series:Journal of Aerospace Technology and Management
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2175-91462019000100335&lng=en&nrm=iso&tlng=en
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spelling doaj-050b5d68639d4d4b938560d48901830d2020-11-24T21:50:04ZengDepartamento de Ciência e Tecnologia AeroespacialJournal of Aerospace Technology and Management1984-96482175-91462019-09-011113919391910.5028/jatm.v11.1074Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing AircraftYa Lin Pan0Jun Huang1Beihang University Beihang University Poor lateral-directional stability due to the absence of vertical stabilizer is a great risk to the aircraft with a flying wing layout. In this paper, an unmanned aerial vehicle with this kind of configuration is chosen as the research object. A three-dimensional model of the unmanned aerial vehicle is established, and then the sensitivity analysis is performed to obtain the effects of main aerodynamic shape parameters on lateral-directional flying quality. The results show that the roll mode and spiral mode of the aircraft meets the requirements of Level 1 flying quality in MIL-F-8785C. But the Dutch roll mode is generally divergent, which means that the flying quality of the aircraft is unacceptable. Thus it can be seen that the Dutch roll mode is the key to the dynamic stability of the aircraft. Further studies show that increasing the value of the wing aspect ratio or decreasing the values of the dihedral angle and torsion angle is useful for improving the Dutch roll mode. It is valuable to reveal the influence mechanism of aerodynamic shape parameters on lateral-directional flying quality for the design of flying wing aircraft.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2175-91462019000100335&lng=en&nrm=iso&tlng=enDynamic stabilityFlying wingSensitivity analysisDutch roll mode.
collection DOAJ
language English
format Article
sources DOAJ
author Ya Lin Pan
Jun Huang
spellingShingle Ya Lin Pan
Jun Huang
Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing Aircraft
Journal of Aerospace Technology and Management
Dynamic stability
Flying wing
Sensitivity analysis
Dutch roll mode.
author_facet Ya Lin Pan
Jun Huang
author_sort Ya Lin Pan
title Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing Aircraft
title_short Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing Aircraft
title_full Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing Aircraft
title_fullStr Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing Aircraft
title_full_unstemmed Effect of Aerodynamic Configuration Parameters on Lateral-Directional Stability of Double-Swept Flying Wing Aircraft
title_sort effect of aerodynamic configuration parameters on lateral-directional stability of double-swept flying wing aircraft
publisher Departamento de Ciência e Tecnologia Aeroespacial
series Journal of Aerospace Technology and Management
issn 1984-9648
2175-9146
publishDate 2019-09-01
description Poor lateral-directional stability due to the absence of vertical stabilizer is a great risk to the aircraft with a flying wing layout. In this paper, an unmanned aerial vehicle with this kind of configuration is chosen as the research object. A three-dimensional model of the unmanned aerial vehicle is established, and then the sensitivity analysis is performed to obtain the effects of main aerodynamic shape parameters on lateral-directional flying quality. The results show that the roll mode and spiral mode of the aircraft meets the requirements of Level 1 flying quality in MIL-F-8785C. But the Dutch roll mode is generally divergent, which means that the flying quality of the aircraft is unacceptable. Thus it can be seen that the Dutch roll mode is the key to the dynamic stability of the aircraft. Further studies show that increasing the value of the wing aspect ratio or decreasing the values of the dihedral angle and torsion angle is useful for improving the Dutch roll mode. It is valuable to reveal the influence mechanism of aerodynamic shape parameters on lateral-directional flying quality for the design of flying wing aircraft.
topic Dynamic stability
Flying wing
Sensitivity analysis
Dutch roll mode.
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2175-91462019000100335&lng=en&nrm=iso&tlng=en
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