SlideShare ist ein Scribd-Unternehmen logo
1 von 6
Downloaden Sie, um offline zu lesen
Modeling and Analysis of Aircraft Spin Produced
by Aerodynamic Asymmetry
M. Goman A. Khramtsovskyy
De Montfort University, Leicester, UK
Y. Patelz
QinetiQ, Bedford, UK
Abstract
This paper presents modellingand dynamic analysis of aircraft spin, which is typical for modern ma-
neuverable aircraft con gurations having a slender body fuselage, low aspect ratio wings and produced
by asymmetrical aerodynamic loads.
The origin of an aerodynamic asymmetry in the rolling and yawing moments at high incidence ight
is directly connected with the onset of asymmetry in the vortical ow, i.e. due to asymmetry in vortex
breakdown points above the wings or due to asymmetrical shedding of vortices from an aircraft slender
nose. In wind tunnel tests the aerodynamic asymmetry at high angles of attack has been observed for
various aircraft models during many years 1]. However, only recently the signi cance of aerodynamic
asymmetry in aircraft dynamics at high angles of attack has been identi ed in ight tests of the Su-
27 and the X-31 aircraft 2, 3] (see Figs.1). Computational prediction of asymmetrical vortical and
separation ow conditions using Naveir-Stokes equations still encounters many di culties 4], however,
simpli ed modeling approaches reveal the bifurcational nature of ow instability leading to the onset of
aerodynamic asymmetry 5]. All this signi es, that the aerodynamic asymmetry plays important role
and should be included in mathematical modeling and departure/spin dynamics predictions.
Signi cant research has been carried out in the development of adequate mathematical modeling
of high angles of attack aerodynamics in the presence of ow separation and vortex breakdown ?,
6, 7]. Based on this research a simple mathematical model for asymmetric aerodynamic moments is
proposed in the formof di erential equations with account of angle ofattack dependence ofaerodynamic
asymmetry magnitude and the time lag e ects from internal vortical ow dynamics.
The aircraft spin dynamics is analyzed using proposed mathematical model for aerodynamic asym-
metry and application of qualitative and bifurcation analysis methods 10, 11, 12, 13, 14]. The analysis
starts with the simple balance moment equations allowing to identify all possible equilibrium spin
modes for di erent altitudes and control surfaces de ections, to estimate the critical level of aerody-
namic asymmetry leading to onset of equilibrium spin 8, 9] (see Fig.2). These initial estimates are
used later for accurate calculation of equilibrium spin parameters and stability dynamic analysis for all
identi ed spin modes using the 8th-order motion equations. For locally oscillatory unstable spin modes
special analysis is performed for a search of possible steady oscillatory spin modes (Fig.3).
When the aerodynamic asymmetry exceeds some critical level an aircraft can have unrecoverable
at spin modes due to the lack of control authority of traditional aerodynamic control surfaces at high
incidence. The unrecoverable at spin modes with rotation produced by asymmetrical yaw moment
are identical to the deep stall regimes at high angles of attack, which are unrecoverable due to insu -
cient margin of aerodynamic pitch-down control (see Fig.4). Conditions leading to unrecoverable spin
Professor, Faculty of Computing Science and Engineering, e-mail: mgoman@dmu.ac.uk
yVisiting Research Fellow, Faculty of Computing Sciences and Engineering, e-mail: sspchram@online.ru
zPrincipal Scientist, Future Systems Technology Division, e-mail ypatel@qinetiq.com
Copyright c 2003 by British Crown. Published by the American Institute of Aeronautics and Astronautics, Inc.,
with permission.
1
modes will be analyzed and results demonstrating the e ect of thrust vectoring control and/or anti-spin
parachute will be also presented.
Special attention is given to the pitch-rocking control used for aircraft spin recovery at the presence
of high aerodynamic asymmetry. The principle and algorithms of rocking control are discussed and
illustrated by examples of numerical simulation (see Fig.5). Transition from rocking control to stabi-
lization phase at low angles of attack is speci ed from the analysis of regions of attraction for critical
and normal ight conditions (Fig.7). The computational means developed for spin dynamics analysis
and recovery control design are also discussed (6).
Figure 1: Aerodynamic asymmetry in wind tunnel and ight tests.
References
1] Beyers, M.E. "Interpretation of Experimental High-Alpha Aerodynamics { Implication for Flight
Prediction", Journal of Aircraft, Vol. 32, Number 2, Pages 247-261, 1995.
2] Aerodynamics, stability and controllability of supersonic aircraft. Edited by G.S.Bushgens, "Nau-
ka*Fizmatlit" publ., 1998, Moscow, (Chapter 8, pp.380).
3] Cobleigh, B.R.,Croom,M.A., Tamrat,B.F."ComparisonofX-31 Flight,Wind-Tunnel,andWater-
Tunnel Yawing Moment Asymmetries at High Angles of Attack", Paper HA-AERO-06, High Alpha
Conference IY - Electronic Workshop, NASA Dryden Flight Research Center, July 12-14, 1994,
URL: http://www.dfrf.nasa.gov/Workshop/HighAlphaIV/highalpha.html
4] R.M.Cummings"ComputationalDi cultiesinHigh Angle ofAttackFlowPrediction", Proceedings
of the Third International Conference on "Nonlinear Problems in Aviation & Aerospace", Vol.1,
2001, Florida (Editor: Seenith Sivasundaram).
5] Goman, M.G., Zaharov, S.B., and A.N. Khrabrov "Aerodynamic hysteresis at vortical ow around
a slender body", Reports of Academy of Science (DAN USSR), Vol.282, No.1, 1985.
6] N.Abramov,M.Goman,A.Khrabrovand K.Kolinko"SimpleWingsUnsteady Aerodynamicsat High
Angles of Attack: Experimental and Modeling Results", Paper N 99-4013, AIAA Atmospheric
Flight Mechanics Conference, August 1999, Portland, OR.
7] N.Abramov, M.Goman, D.Greenwell and A.Khrabrov "Two-Step Linear Regression Method for
Identi cation of High Incidence Unsteady Aerodynamic Model", Paper N 2001-4080, AIAA Atmo-
spheric Flight Mechanics Conference, August 2001, Montreal, Canada.
2
Figure 2: Solutions of approximate spin equations.
Figure 3: Bifurcation diagram: angle of attack steady state solutions for di erent stabilator de ections.
3
Figure 4: Unrecoverable deep stall and at spin regimes.
Figure 5: Pitch rocking control for spin recovery.
4
Figure 6: Computational framework for spin dynamics analysis and design of recovery control.
8] Dolzenko, N.N., "Investigation of equilibrium aircraft spin", TsAGI Proceedings No. 8817, 1968
(in russian).
9] Tischler, M.B., andBarlow, J.B., "DeterminationofSpin andRecovery Characteristics of a General
Aviation Design," Journal of Aircraft, Vol.18, No.4, 1981, pp.238-244.
10] Mehra,R.K., "Bifurcation analysis of aircraft high angle of attack ight dynamics", AIAA N 80-
1599, August 1980.
11] Carroll,J.V., and Mehra,R.,K., "Bifurcation Analysis of Nonlinear Aircraft Dynamics," Journal
Guidance, Navigation, and Control, Vol. 5, No. 5, 1982, pp.529-536.
12] Guicheteau, P., "Bifurcation Theory Applied to the Study of Control Losses on Combat Aircraft,"
La Recherche Aerospatiale, Vol. 2, 1982, pp.61-73.
13] M.Goman, G.Zagainov, and A.Khramtsovsky "Application of Bifurcation Methods to Nonlinear
Flight DynamicsProblems,"Progress inAerospace Sciences 33(1977), pp.539-586,Elsevier Science
Ltd.
14] Goman, M.G., and Khramtsovsky, A.V., "KRIT : Scienti c Package for continuation and bifurca-
tion analysis with aircraft dynamics applications," TsAGI, 1993.
5
0.5 0.6 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 1.5
−1
−0.8
−0.6
−0.4
−0.2
0
0.2
0.4
0.6
0.8
1
δ
e
=0.0, δ
a
=0.0, δ
r
=0.0
Angle of attack α, rad
pitchrateq,rad/s
Pitch rocking control
trajectory
Region of attraction
of flat spin regime
0.5 0.6 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 1.5
−2
−1.5
−1
−0.5
0
0.5
1
1.5
2
2.5
3
δ
e
=0.0, δ
a
=0.0, δ
r
=0.0
Angle of attack α, rad
yawrater,rad/s
Region of attraction
of flat spin regime
Pitch rocking control
trajectory
Figure 7: Regions of attraction for recon guration of pitch rock recovery control.
6

Weitere ähnliche Inhalte

Was ist angesagt?

NACA 4412 Lab Report Final
NACA 4412 Lab Report FinalNACA 4412 Lab Report Final
NACA 4412 Lab Report FinalGregory Day
 
Naca 2415 finding lift coefficient using cfd, theoretical and javafoil
Naca 2415  finding lift coefficient using cfd, theoretical and javafoilNaca 2415  finding lift coefficient using cfd, theoretical and javafoil
Naca 2415 finding lift coefficient using cfd, theoretical and javafoileSAT Journals
 
Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...
Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...
Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...IJERA Editor
 
Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...
Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...
Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...Project KRIT
 
Aerodynamic Characteristics of Dragonfly Wing Sections
Aerodynamic Characteristics of Dragonfly Wing SectionsAerodynamic Characteristics of Dragonfly Wing Sections
Aerodynamic Characteristics of Dragonfly Wing SectionsPradeep Kannah Purushothaman
 
LARC_Ivan_Figueroa_AB_V4
LARC_Ivan_Figueroa_AB_V4LARC_Ivan_Figueroa_AB_V4
LARC_Ivan_Figueroa_AB_V4Ivan Figueroa
 
IRJET- Design and Optimization of Sailplane for Static and Dynamic Stability
IRJET- Design and Optimization of Sailplane for Static and Dynamic StabilityIRJET- Design and Optimization of Sailplane for Static and Dynamic Stability
IRJET- Design and Optimization of Sailplane for Static and Dynamic StabilityIRJET Journal
 
A comparative flow analysis of naca 6409 and naca 4412 aerofoil
A comparative flow analysis of naca 6409 and naca 4412 aerofoilA comparative flow analysis of naca 6409 and naca 4412 aerofoil
A comparative flow analysis of naca 6409 and naca 4412 aerofoileSAT Publishing House
 
National advisory committee for aeronautics naca.
National advisory committee for aeronautics   naca.National advisory committee for aeronautics   naca.
National advisory committee for aeronautics naca.BillyQuezada
 
Site surveying-Leveling
Site surveying-LevelingSite surveying-Leveling
Site surveying-LevelingShane Ah
 
3 longitudinal static stability 6
3 longitudinal static stability 63 longitudinal static stability 6
3 longitudinal static stability 6Ahmed Chegrani
 
Aerofoil properties & types aerodynamic & structural, applications
Aerofoil properties & types   aerodynamic & structural, applicationsAerofoil properties & types   aerodynamic & structural, applications
Aerofoil properties & types aerodynamic & structural, applicationsvasishta bhargava
 
Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...
Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...
Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...Project KRIT
 
Fluid-Structure Interaction Over an Aircraft Wing
Fluid-Structure Interaction Over an Aircraft WingFluid-Structure Interaction Over an Aircraft Wing
Fluid-Structure Interaction Over an Aircraft WingIJERDJOURNAL
 

Was ist angesagt? (20)

N1303047887
N1303047887N1303047887
N1303047887
 
NACA 4412 Lab Report Final
NACA 4412 Lab Report FinalNACA 4412 Lab Report Final
NACA 4412 Lab Report Final
 
Naca 2415 finding lift coefficient using cfd, theoretical and javafoil
Naca 2415  finding lift coefficient using cfd, theoretical and javafoilNaca 2415  finding lift coefficient using cfd, theoretical and javafoil
Naca 2415 finding lift coefficient using cfd, theoretical and javafoil
 
Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...
Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...
Improving the Hydraulic Efficiency of Centrifugal Pumps through Computational...
 
Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...
Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...
Goman, Khramtsovsky, Kolesnikov (2008 draft) - Evaluation of Aircraft Perform...
 
Aerodynamic Characteristics of Dragonfly Wing Sections
Aerodynamic Characteristics of Dragonfly Wing SectionsAerodynamic Characteristics of Dragonfly Wing Sections
Aerodynamic Characteristics of Dragonfly Wing Sections
 
LARC_Ivan_Figueroa_AB_V4
LARC_Ivan_Figueroa_AB_V4LARC_Ivan_Figueroa_AB_V4
LARC_Ivan_Figueroa_AB_V4
 
Di 00028
Di 00028Di 00028
Di 00028
 
CFD analysis of bio-inspired corrugated airfoils
CFD analysis of bio-inspired corrugated airfoilsCFD analysis of bio-inspired corrugated airfoils
CFD analysis of bio-inspired corrugated airfoils
 
aircraft drag reduction
aircraft drag reductionaircraft drag reduction
aircraft drag reduction
 
IRJET- Design and Optimization of Sailplane for Static and Dynamic Stability
IRJET- Design and Optimization of Sailplane for Static and Dynamic StabilityIRJET- Design and Optimization of Sailplane for Static and Dynamic Stability
IRJET- Design and Optimization of Sailplane for Static and Dynamic Stability
 
A comparative flow analysis of naca 6409 and naca 4412 aerofoil
A comparative flow analysis of naca 6409 and naca 4412 aerofoilA comparative flow analysis of naca 6409 and naca 4412 aerofoil
A comparative flow analysis of naca 6409 and naca 4412 aerofoil
 
National advisory committee for aeronautics naca.
National advisory committee for aeronautics   naca.National advisory committee for aeronautics   naca.
National advisory committee for aeronautics naca.
 
Site surveying-Leveling
Site surveying-LevelingSite surveying-Leveling
Site surveying-Leveling
 
3 longitudinal static stability 6
3 longitudinal static stability 63 longitudinal static stability 6
3 longitudinal static stability 6
 
Aerofoil properties & types aerodynamic & structural, applications
Aerofoil properties & types   aerodynamic & structural, applicationsAerofoil properties & types   aerodynamic & structural, applications
Aerofoil properties & types aerodynamic & structural, applications
 
The naca airfoil series
The naca airfoil seriesThe naca airfoil series
The naca airfoil series
 
Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...
Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...
Гоман, Загайнов, Храмцовский (1997) - Использование бифуркационных методов дл...
 
Fluid-Structure Interaction Over an Aircraft Wing
Fluid-Structure Interaction Over an Aircraft WingFluid-Structure Interaction Over an Aircraft Wing
Fluid-Structure Interaction Over an Aircraft Wing
 
Wason_Mark
Wason_MarkWason_Mark
Wason_Mark
 

Ähnlich wie M.Goman, A.Khramtsovsky, Y.Patel (2003) - Modeling and Analysis of Aircraft Spin Produced by Aerodynamic Asymmetry

Research paper manuscript_paracitics
Research paper manuscript_paraciticsResearch paper manuscript_paracitics
Research paper manuscript_paraciticsUSMAN KHALID
 
Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...
Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...
Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...Project KRIT
 
Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...
Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...
Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...Abhishek Jain
 
Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...
Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...
Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...IRJET Journal
 
IRJET-Subsonic Flow Study and Analysis on Rotating Cylinder Airfoil
IRJET-Subsonic Flow Study and Analysis on Rotating Cylinder AirfoilIRJET-Subsonic Flow Study and Analysis on Rotating Cylinder Airfoil
IRJET-Subsonic Flow Study and Analysis on Rotating Cylinder AirfoilIRJET Journal
 
Visualizing the Flight Test Data and its Simulation
Visualizing the Flight Test Data and its SimulationVisualizing the Flight Test Data and its Simulation
Visualizing the Flight Test Data and its SimulationIRJET Journal
 
Dynamic aerodynamic structural coupling numerical simulation on the flexible ...
Dynamic aerodynamic structural coupling numerical simulation on the flexible ...Dynamic aerodynamic structural coupling numerical simulation on the flexible ...
Dynamic aerodynamic structural coupling numerical simulation on the flexible ...ijmech
 
Aerodynamics Characteristics Of Airplanes At High AOA
Aerodynamics Characteristics Of Airplanes At High AOAAerodynamics Characteristics Of Airplanes At High AOA
Aerodynamics Characteristics Of Airplanes At High AOASandra Long
 
Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)
Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)
Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)Designage Solutions
 
VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...
VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...
VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...IAEME Publication
 
DESIGN CONTROL SYSTEM OF AN AIRCRAFT
DESIGN CONTROL SYSTEM OF AN AIRCRAFTDESIGN CONTROL SYSTEM OF AN AIRCRAFT
DESIGN CONTROL SYSTEM OF AN AIRCRAFTIAEME Publication
 
Determination of Kite forces for ship propulsion
Determination of Kite forces for ship propulsionDetermination of Kite forces for ship propulsion
Determination of Kite forces for ship propulsionGeorge Dadd
 
reseach journal.pdf
reseach journal.pdfreseach journal.pdf
reseach journal.pdfnareshkotra
 
Aerospace Science and Technology 7 (2003) 23–31www.elsevier..docx
Aerospace Science and Technology 7 (2003) 23–31www.elsevier..docxAerospace Science and Technology 7 (2003) 23–31www.elsevier..docx
Aerospace Science and Technology 7 (2003) 23–31www.elsevier..docxgalerussel59292
 
Aircraft Loads 5 Report
Aircraft Loads 5 ReportAircraft Loads 5 Report
Aircraft Loads 5 ReportLee Ramsay
 
Unmanned Airplane Autopilot Tuning
Unmanned Airplane Autopilot TuningUnmanned Airplane Autopilot Tuning
Unmanned Airplane Autopilot TuningIJERA Editor
 
Robust control of aircraft flight in conditions of disturbances
Robust control of aircraft flight in conditions of disturbancesRobust control of aircraft flight in conditions of disturbances
Robust control of aircraft flight in conditions of disturbancesIJECEIAES
 
IRJET- Numerical Analysis of Nose Landing Gear System
IRJET-  	  Numerical Analysis of Nose Landing Gear SystemIRJET-  	  Numerical Analysis of Nose Landing Gear System
IRJET- Numerical Analysis of Nose Landing Gear SystemIRJET Journal
 
M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...
M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...
M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...Project KRIT
 

Ähnlich wie M.Goman, A.Khramtsovsky, Y.Patel (2003) - Modeling and Analysis of Aircraft Spin Produced by Aerodynamic Asymmetry (20)

Research paper manuscript_paracitics
Research paper manuscript_paraciticsResearch paper manuscript_paracitics
Research paper manuscript_paracitics
 
Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...
Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...
Goman, Khramtsovsky, Shapiro (2001) – Aerodynamics Modeling and Dynamics Simu...
 
Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...
Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...
Static Aeroelasticity Analysis of Spinning Rocket for Divergence Speed -- Zeu...
 
Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...
Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...
Determination of Flutter Angle by Resolving Effective Gyroscope Couple to Ret...
 
IRJET-Subsonic Flow Study and Analysis on Rotating Cylinder Airfoil
IRJET-Subsonic Flow Study and Analysis on Rotating Cylinder AirfoilIRJET-Subsonic Flow Study and Analysis on Rotating Cylinder Airfoil
IRJET-Subsonic Flow Study and Analysis on Rotating Cylinder Airfoil
 
Visualizing the Flight Test Data and its Simulation
Visualizing the Flight Test Data and its SimulationVisualizing the Flight Test Data and its Simulation
Visualizing the Flight Test Data and its Simulation
 
Dynamic aerodynamic structural coupling numerical simulation on the flexible ...
Dynamic aerodynamic structural coupling numerical simulation on the flexible ...Dynamic aerodynamic structural coupling numerical simulation on the flexible ...
Dynamic aerodynamic structural coupling numerical simulation on the flexible ...
 
Aerodynamics Characteristics Of Airplanes At High AOA
Aerodynamics Characteristics Of Airplanes At High AOAAerodynamics Characteristics Of Airplanes At High AOA
Aerodynamics Characteristics Of Airplanes At High AOA
 
Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)
Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)
Flight Dynamics and Numerical Analysis of an Unmanned Aerial Vehicle (UAV)
 
VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...
VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...
VORTEX DYNAMIC INVESTIGATION OF WING SLOTTED GAP OF SAAB JAS GRIPEN C-LIKE FI...
 
DESIGN CONTROL SYSTEM OF AN AIRCRAFT
DESIGN CONTROL SYSTEM OF AN AIRCRAFTDESIGN CONTROL SYSTEM OF AN AIRCRAFT
DESIGN CONTROL SYSTEM OF AN AIRCRAFT
 
Determination of Kite forces for ship propulsion
Determination of Kite forces for ship propulsionDetermination of Kite forces for ship propulsion
Determination of Kite forces for ship propulsion
 
reseach journal.pdf
reseach journal.pdfreseach journal.pdf
reseach journal.pdf
 
Aerospace Science and Technology 7 (2003) 23–31www.elsevier..docx
Aerospace Science and Technology 7 (2003) 23–31www.elsevier..docxAerospace Science and Technology 7 (2003) 23–31www.elsevier..docx
Aerospace Science and Technology 7 (2003) 23–31www.elsevier..docx
 
handytjenathofinal
handytjenathofinalhandytjenathofinal
handytjenathofinal
 
Aircraft Loads 5 Report
Aircraft Loads 5 ReportAircraft Loads 5 Report
Aircraft Loads 5 Report
 
Unmanned Airplane Autopilot Tuning
Unmanned Airplane Autopilot TuningUnmanned Airplane Autopilot Tuning
Unmanned Airplane Autopilot Tuning
 
Robust control of aircraft flight in conditions of disturbances
Robust control of aircraft flight in conditions of disturbancesRobust control of aircraft flight in conditions of disturbances
Robust control of aircraft flight in conditions of disturbances
 
IRJET- Numerical Analysis of Nose Landing Gear System
IRJET-  	  Numerical Analysis of Nose Landing Gear SystemIRJET-  	  Numerical Analysis of Nose Landing Gear System
IRJET- Numerical Analysis of Nose Landing Gear System
 
M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...
M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...
M.G.Goman, A.V.Khramtsovsky (2008) - Computational framework for investigatio...
 

Mehr von Project KRIT

M.G.Goman et al (1994) - PII package: Brief description
M.G.Goman et al (1994) - PII package: Brief descriptionM.G.Goman et al (1994) - PII package: Brief description
M.G.Goman et al (1994) - PII package: Brief descriptionProject KRIT
 
С.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователя
С.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователяС.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователя
С.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователяProject KRIT
 
Matlab Krit Installation Instructions (2009)
Matlab Krit Installation Instructions (2009)Matlab Krit Installation Instructions (2009)
Matlab Krit Installation Instructions (2009)Project KRIT
 
M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...
M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...
M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...Project KRIT
 
Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...
Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...
Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...Project KRIT
 
Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...
Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...
Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...Project KRIT
 
M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...
M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...
M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...Project KRIT
 
M.G.Goman, A.V.Khramtsovsky (1993) - KRIT User Guide
M.G.Goman, A.V.Khramtsovsky (1993) - KRIT User GuideM.G.Goman, A.V.Khramtsovsky (1993) - KRIT User Guide
M.G.Goman, A.V.Khramtsovsky (1993) - KRIT User GuideProject KRIT
 
M.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox usersM.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox usersProject KRIT
 
M.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox usersM.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox usersProject KRIT
 
M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...
M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...
M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...Project KRIT
 
M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...
M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...
M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...Project KRIT
 
Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...
Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...
Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...Project KRIT
 
Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...
Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...
Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...Project KRIT
 
М.Г.Гоман (2000 final) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 final) – Численный анализ нелинейной динамики системМ.Г.Гоман (2000 final) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 final) – Численный анализ нелинейной динамики системProject KRIT
 
М.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики системМ.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики системProject KRIT
 
М.Г.Гоман (2000) – Динамика нелинейных систем и хаос
М.Г.Гоман (2000) – Динамика нелинейных систем и хаосМ.Г.Гоман (2000) – Динамика нелинейных систем и хаос
М.Г.Гоман (2000) – Динамика нелинейных систем и хаосProject KRIT
 
Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...
Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...
Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...Project KRIT
 
Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...
Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...
Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...Project KRIT
 
М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...
М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...
М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...Project KRIT
 

Mehr von Project KRIT (20)

M.G.Goman et al (1994) - PII package: Brief description
M.G.Goman et al (1994) - PII package: Brief descriptionM.G.Goman et al (1994) - PII package: Brief description
M.G.Goman et al (1994) - PII package: Brief description
 
С.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователя
С.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователяС.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователя
С.П.Усольцев, А.В.Храмцовский (1993..2002) - Пакет PII: Руководство пользователя
 
Matlab Krit Installation Instructions (2009)
Matlab Krit Installation Instructions (2009)Matlab Krit Installation Instructions (2009)
Matlab Krit Installation Instructions (2009)
 
M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...
M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...
M.Goman, A.Khramtsovsky (2002) - Qualitative Methods of Analysis for Nonlinea...
 
Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...
Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...
Goman, Khramtsovsky, Kolesnikov (2006) - Computational Framework for Analysis...
 
Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...
Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...
Goman, Khrabrov, Khramtsovsky (2002) - Chaotic dynamics in a simple aeromecha...
 
M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...
M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...
M.Goman, A.Khramtsovsky (2006) - Analysis of Aircraft Nonlinear Dynamics Base...
 
M.G.Goman, A.V.Khramtsovsky (1993) - KRIT User Guide
M.G.Goman, A.V.Khramtsovsky (1993) - KRIT User GuideM.G.Goman, A.V.Khramtsovsky (1993) - KRIT User Guide
M.G.Goman, A.V.Khramtsovsky (1993) - KRIT User Guide
 
M.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox usersM.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1997 draft) - Textbook for KRIT Toolbox users
 
M.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox usersM.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox users
M.G.Goman and A.V.Khramtsovsky (1993) - Textbook for KRIT Toolbox users
 
M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...
M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...
M.Goman and A.Khramtsovsky (1995) - KRIT Scientific Package and its Applicati...
 
M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...
M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...
M.G.Goman, A.V.Khramtsovsky (1997) - Global Stability Analysis of Nonlinear A...
 
Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...
Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...
Гоман, Храбров, Храмцовский (1992) - Математическая модель описания аэродинам...
 
Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...
Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...
Гоман, Храмцовский, Шапиро (2001) - Разработка моделей аэродинамики и моделир...
 
М.Г.Гоман (2000 final) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 final) – Численный анализ нелинейной динамики системМ.Г.Гоман (2000 final) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 final) – Численный анализ нелинейной динамики систем
 
М.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики системМ.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики систем
М.Г.Гоман (2000 проект) – Численный анализ нелинейной динамики систем
 
М.Г.Гоман (2000) – Динамика нелинейных систем и хаос
М.Г.Гоман (2000) – Динамика нелинейных систем и хаосМ.Г.Гоман (2000) – Динамика нелинейных систем и хаос
М.Г.Гоман (2000) – Динамика нелинейных систем и хаос
 
Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...
Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...
Philippe Guicheteau (1998) - Bifurcation theory: a tool for nonlinear flight ...
 
Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...
Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...
Гоман, Загайнов, Суханов (1976) - Исследование динамики маневренного самолета...
 
М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...
М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...
М.Г.Гоман (1986) – Дифференциальный метод продолжения решений систем конечных...
 

Kürzlich hochgeladen

Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdfUnderstanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdfUK Journal
 
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot TakeoffStrategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoffsammart93
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...Martijn de Jong
 
Advantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessAdvantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessPixlogix Infotech
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationRadu Cotescu
 
Developing An App To Navigate The Roads of Brazil
Developing An App To Navigate The Roads of BrazilDeveloping An App To Navigate The Roads of Brazil
Developing An App To Navigate The Roads of BrazilV3cube
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerThousandEyes
 
Workshop - Best of Both Worlds_ Combine KG and Vector search for enhanced R...
Workshop - Best of Both Worlds_ Combine  KG and Vector search for  enhanced R...Workshop - Best of Both Worlds_ Combine  KG and Vector search for  enhanced R...
Workshop - Best of Both Worlds_ Combine KG and Vector search for enhanced R...Neo4j
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)Gabriella Davis
 
GenAI Risks & Security Meetup 01052024.pdf
GenAI Risks & Security Meetup 01052024.pdfGenAI Risks & Security Meetup 01052024.pdf
GenAI Risks & Security Meetup 01052024.pdflior mazor
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfsudhanshuwaghmare1
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationSafe Software
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerThousandEyes
 
Data Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonData Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonAnna Loughnan Colquhoun
 
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, AdobeApidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobeapidays
 
AWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of TerraformAWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of TerraformAndrey Devyatkin
 
GenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationGenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationMichael W. Hawkins
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024Rafal Los
 
Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityPrincipled Technologies
 

Kürzlich hochgeladen (20)

Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdfUnderstanding Discord NSFW Servers A Guide for Responsible Users.pdf
Understanding Discord NSFW Servers A Guide for Responsible Users.pdf
 
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot TakeoffStrategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
Strategize a Smooth Tenant-to-tenant Migration and Copilot Takeoff
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
Advantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your BusinessAdvantages of Hiring UIUX Design Service Providers for Your Business
Advantages of Hiring UIUX Design Service Providers for Your Business
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organization
 
Developing An App To Navigate The Roads of Brazil
Developing An App To Navigate The Roads of BrazilDeveloping An App To Navigate The Roads of Brazil
Developing An App To Navigate The Roads of Brazil
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Workshop - Best of Both Worlds_ Combine KG and Vector search for enhanced R...
Workshop - Best of Both Worlds_ Combine  KG and Vector search for  enhanced R...Workshop - Best of Both Worlds_ Combine  KG and Vector search for  enhanced R...
Workshop - Best of Both Worlds_ Combine KG and Vector search for enhanced R...
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)
 
GenAI Risks & Security Meetup 01052024.pdf
GenAI Risks & Security Meetup 01052024.pdfGenAI Risks & Security Meetup 01052024.pdf
GenAI Risks & Security Meetup 01052024.pdf
 
Boost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdfBoost Fertility New Invention Ups Success Rates.pdf
Boost Fertility New Invention Ups Success Rates.pdf
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
 
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law DevelopmentsTrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
TrustArc Webinar - Stay Ahead of US State Data Privacy Law Developments
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Data Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt RobisonData Cloud, More than a CDP by Matt Robison
Data Cloud, More than a CDP by Matt Robison
 
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, AdobeApidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
 
AWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of TerraformAWS Community Day CPH - Three problems of Terraform
AWS Community Day CPH - Three problems of Terraform
 
GenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationGenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day Presentation
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024
 
Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivity
 

M.Goman, A.Khramtsovsky, Y.Patel (2003) - Modeling and Analysis of Aircraft Spin Produced by Aerodynamic Asymmetry

  • 1. Modeling and Analysis of Aircraft Spin Produced by Aerodynamic Asymmetry M. Goman A. Khramtsovskyy De Montfort University, Leicester, UK Y. Patelz QinetiQ, Bedford, UK Abstract This paper presents modellingand dynamic analysis of aircraft spin, which is typical for modern ma- neuverable aircraft con gurations having a slender body fuselage, low aspect ratio wings and produced by asymmetrical aerodynamic loads. The origin of an aerodynamic asymmetry in the rolling and yawing moments at high incidence ight is directly connected with the onset of asymmetry in the vortical ow, i.e. due to asymmetry in vortex breakdown points above the wings or due to asymmetrical shedding of vortices from an aircraft slender nose. In wind tunnel tests the aerodynamic asymmetry at high angles of attack has been observed for various aircraft models during many years 1]. However, only recently the signi cance of aerodynamic asymmetry in aircraft dynamics at high angles of attack has been identi ed in ight tests of the Su- 27 and the X-31 aircraft 2, 3] (see Figs.1). Computational prediction of asymmetrical vortical and separation ow conditions using Naveir-Stokes equations still encounters many di culties 4], however, simpli ed modeling approaches reveal the bifurcational nature of ow instability leading to the onset of aerodynamic asymmetry 5]. All this signi es, that the aerodynamic asymmetry plays important role and should be included in mathematical modeling and departure/spin dynamics predictions. Signi cant research has been carried out in the development of adequate mathematical modeling of high angles of attack aerodynamics in the presence of ow separation and vortex breakdown ?, 6, 7]. Based on this research a simple mathematical model for asymmetric aerodynamic moments is proposed in the formof di erential equations with account of angle ofattack dependence ofaerodynamic asymmetry magnitude and the time lag e ects from internal vortical ow dynamics. The aircraft spin dynamics is analyzed using proposed mathematical model for aerodynamic asym- metry and application of qualitative and bifurcation analysis methods 10, 11, 12, 13, 14]. The analysis starts with the simple balance moment equations allowing to identify all possible equilibrium spin modes for di erent altitudes and control surfaces de ections, to estimate the critical level of aerody- namic asymmetry leading to onset of equilibrium spin 8, 9] (see Fig.2). These initial estimates are used later for accurate calculation of equilibrium spin parameters and stability dynamic analysis for all identi ed spin modes using the 8th-order motion equations. For locally oscillatory unstable spin modes special analysis is performed for a search of possible steady oscillatory spin modes (Fig.3). When the aerodynamic asymmetry exceeds some critical level an aircraft can have unrecoverable at spin modes due to the lack of control authority of traditional aerodynamic control surfaces at high incidence. The unrecoverable at spin modes with rotation produced by asymmetrical yaw moment are identical to the deep stall regimes at high angles of attack, which are unrecoverable due to insu - cient margin of aerodynamic pitch-down control (see Fig.4). Conditions leading to unrecoverable spin Professor, Faculty of Computing Science and Engineering, e-mail: mgoman@dmu.ac.uk yVisiting Research Fellow, Faculty of Computing Sciences and Engineering, e-mail: sspchram@online.ru zPrincipal Scientist, Future Systems Technology Division, e-mail ypatel@qinetiq.com Copyright c 2003 by British Crown. Published by the American Institute of Aeronautics and Astronautics, Inc., with permission. 1
  • 2. modes will be analyzed and results demonstrating the e ect of thrust vectoring control and/or anti-spin parachute will be also presented. Special attention is given to the pitch-rocking control used for aircraft spin recovery at the presence of high aerodynamic asymmetry. The principle and algorithms of rocking control are discussed and illustrated by examples of numerical simulation (see Fig.5). Transition from rocking control to stabi- lization phase at low angles of attack is speci ed from the analysis of regions of attraction for critical and normal ight conditions (Fig.7). The computational means developed for spin dynamics analysis and recovery control design are also discussed (6). Figure 1: Aerodynamic asymmetry in wind tunnel and ight tests. References 1] Beyers, M.E. "Interpretation of Experimental High-Alpha Aerodynamics { Implication for Flight Prediction", Journal of Aircraft, Vol. 32, Number 2, Pages 247-261, 1995. 2] Aerodynamics, stability and controllability of supersonic aircraft. Edited by G.S.Bushgens, "Nau- ka*Fizmatlit" publ., 1998, Moscow, (Chapter 8, pp.380). 3] Cobleigh, B.R.,Croom,M.A., Tamrat,B.F."ComparisonofX-31 Flight,Wind-Tunnel,andWater- Tunnel Yawing Moment Asymmetries at High Angles of Attack", Paper HA-AERO-06, High Alpha Conference IY - Electronic Workshop, NASA Dryden Flight Research Center, July 12-14, 1994, URL: http://www.dfrf.nasa.gov/Workshop/HighAlphaIV/highalpha.html 4] R.M.Cummings"ComputationalDi cultiesinHigh Angle ofAttackFlowPrediction", Proceedings of the Third International Conference on "Nonlinear Problems in Aviation & Aerospace", Vol.1, 2001, Florida (Editor: Seenith Sivasundaram). 5] Goman, M.G., Zaharov, S.B., and A.N. Khrabrov "Aerodynamic hysteresis at vortical ow around a slender body", Reports of Academy of Science (DAN USSR), Vol.282, No.1, 1985. 6] N.Abramov,M.Goman,A.Khrabrovand K.Kolinko"SimpleWingsUnsteady Aerodynamicsat High Angles of Attack: Experimental and Modeling Results", Paper N 99-4013, AIAA Atmospheric Flight Mechanics Conference, August 1999, Portland, OR. 7] N.Abramov, M.Goman, D.Greenwell and A.Khrabrov "Two-Step Linear Regression Method for Identi cation of High Incidence Unsteady Aerodynamic Model", Paper N 2001-4080, AIAA Atmo- spheric Flight Mechanics Conference, August 2001, Montreal, Canada. 2
  • 3. Figure 2: Solutions of approximate spin equations. Figure 3: Bifurcation diagram: angle of attack steady state solutions for di erent stabilator de ections. 3
  • 4. Figure 4: Unrecoverable deep stall and at spin regimes. Figure 5: Pitch rocking control for spin recovery. 4
  • 5. Figure 6: Computational framework for spin dynamics analysis and design of recovery control. 8] Dolzenko, N.N., "Investigation of equilibrium aircraft spin", TsAGI Proceedings No. 8817, 1968 (in russian). 9] Tischler, M.B., andBarlow, J.B., "DeterminationofSpin andRecovery Characteristics of a General Aviation Design," Journal of Aircraft, Vol.18, No.4, 1981, pp.238-244. 10] Mehra,R.K., "Bifurcation analysis of aircraft high angle of attack ight dynamics", AIAA N 80- 1599, August 1980. 11] Carroll,J.V., and Mehra,R.,K., "Bifurcation Analysis of Nonlinear Aircraft Dynamics," Journal Guidance, Navigation, and Control, Vol. 5, No. 5, 1982, pp.529-536. 12] Guicheteau, P., "Bifurcation Theory Applied to the Study of Control Losses on Combat Aircraft," La Recherche Aerospatiale, Vol. 2, 1982, pp.61-73. 13] M.Goman, G.Zagainov, and A.Khramtsovsky "Application of Bifurcation Methods to Nonlinear Flight DynamicsProblems,"Progress inAerospace Sciences 33(1977), pp.539-586,Elsevier Science Ltd. 14] Goman, M.G., and Khramtsovsky, A.V., "KRIT : Scienti c Package for continuation and bifurca- tion analysis with aircraft dynamics applications," TsAGI, 1993. 5
  • 6. 0.5 0.6 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 1.5 −1 −0.8 −0.6 −0.4 −0.2 0 0.2 0.4 0.6 0.8 1 δ e =0.0, δ a =0.0, δ r =0.0 Angle of attack α, rad pitchrateq,rad/s Pitch rocking control trajectory Region of attraction of flat spin regime 0.5 0.6 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 1.5 −2 −1.5 −1 −0.5 0 0.5 1 1.5 2 2.5 3 δ e =0.0, δ a =0.0, δ r =0.0 Angle of attack α, rad yawrater,rad/s Region of attraction of flat spin regime Pitch rocking control trajectory Figure 7: Regions of attraction for recon guration of pitch rock recovery control. 6