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Helicopter Flight Dynamics Chapter 1:  Introduction
Instructor ,[object Object],[object Object],[object Object],[object Object]
Time and Place ,[object Object],[object Object]
Prerequisites ,[object Object],[object Object],[object Object],[object Object],[object Object]
Syllabus ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Requirements ,[object Object],[object Object],[object Object]
Grade ,[object Object],[object Object]
Textbook ,[object Object]
Useful References ,[object Object],[object Object],[object Object],[object Object]
Introduction ,[object Object],[object Object],[object Object],[object Object],[object Object]
Definition of Helicopter Flight Dynamics The subject of studying external forces applied on helicopter as well as motions and controls External Forces:  Only those changing flight path such as    aerodynamic, inertial and gravity forces. Motions:  Accelerations(angular acceleration), velocities and    position Controls:  Pilot controls from cockpit, augment stability and    control Flight qualities:  Specification and flight quality assessment
Characteristics of Helicopter Flight Example: from hover to forward flight Pilot Push forward Apply Long.  cyclic pitch Rotor disc tilt forward Adjustment Apply Collective  pitch control Paddle control Tail rotor Apply lateral  Cyclic control  Rotor disc tilt side
Characteristics of Helicopter Flight ,[object Object],[object Object],[object Object],[object Object],[object Object]
Scope of Helicopter Flight Dynamics Pilot Cockpit  controls Aerodynamic surfaces (rotor, tail rotor) Change aerodynamic Forces and moments Gust  disturbance External force disturbance SCAS Helicopter motions Flight quality specification Flight quality assessment
Methodologies ,[object Object],[object Object],[object Object],[object Object]
Objectives ,[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],Rotor Hinge System
Teetering or See-Saw Rotor
Underslung Teetering Rotor
Articulated Rotor
Hingeless Rotor
Coordinate System ,[object Object],[object Object],[object Object],[object Object]
Gravity Axes ,[object Object],[object Object],[object Object],[object Object],[object Object]
Body Axes ,[object Object],[object Object],[object Object],[object Object]
Wind Axes ,[object Object],[object Object],[object Object]
Hub Axes ,[object Object],[object Object],[object Object],[object Object]
Definition of Angles The Euler angles: The orientation of any axes relative to another can be given by three angles, which are the consecutive rotations about three axes in that order to carry one frame along with the other. This is a particular case of  Euler angles . In helicopter flight dynamics, only one sets is commonly used, that for the body axes.   1. A rotation  Ļˆ  about   OY D , carrying the axes to OX 1 YZ 1 , is the  azimuth  angle. 2. A rotation  Ļ…  about OZ 1 , carrying the axes to OXY 2 Z 1 , is the  pitch  angle. 3. A rotation  Ī³  about OX, carrying the axes to OXYZ, is the  bank  angle. Quatemions Z 1 X 1 Y 2
Definition of Angles The Aerodynamic angles : The linear motion  V  of the vehicle relative to the atmosphere can be given either by its three orthogonal components (v x ,v y ,v z ) in the body axes system, or alternatively by the magnitude  V  and two suitable angles. These angles, which are of fundamental importance in determining the aerodynamic forces that act on the vehicle, are defined as: Angle of attack : Sideslip angle :  It will be observed that, in the sense of Euler angles, the aerodynamic angles related the bode axes and wind axes by the rotation sequence ( ļ” , ļ¢ ,0) which carrying the former into the latter  X 1
Transformation  from Gravity Axes to Body Axes A rotation of  Ļˆ: A rotation of  : A rotation of  Ī³: The complete coordinate transformation from gravity axes to body axes is: Z 1 X 1 Y 2
Transformation  from Body Axes to Wind Axes A rotation of  ļ¢ : A rotation of  ļ”   : The complete coordinate transformation from body axes to wind axes is: X 1
Transformation from Body Axes to Hub Axes In order to improve the flight performance and pilot Vision in cruse flight, the rotor shaft always tilts Forward as an angle  ļ¤ .  Thus: In the sense of Euler angles, the rotor shaft tilt angle  related the bode axes and hub axes by the rotation sequence (0, ļ¤ ,0) which carrying the former into the latter
Comparison of Coordinate System in Different Country China and Russia West Country X Z O Y X Z O Y
Comparison of Definition of Parameters in Different Country O O
Comparison of Definition of Parameters in Different Country Meanings Hide force coeff. Side force coeff. Anti torque coeff. Lock Number China and Russia West country Thrust coeff.

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Helicopter Flight Dynamics Introduction

  • 1. Helicopter Flight Dynamics Chapter 1: Introduction
  • 2.
  • 3.
  • 4.
  • 5.
  • 6.
  • 7.
  • 8.
  • 9.
  • 10.
  • 11. Definition of Helicopter Flight Dynamics The subject of studying external forces applied on helicopter as well as motions and controls External Forces: Only those changing flight path such as aerodynamic, inertial and gravity forces. Motions: Accelerations(angular acceleration), velocities and position Controls: Pilot controls from cockpit, augment stability and control Flight qualities: Specification and flight quality assessment
  • 12. Characteristics of Helicopter Flight Example: from hover to forward flight Pilot Push forward Apply Long. cyclic pitch Rotor disc tilt forward Adjustment Apply Collective pitch control Paddle control Tail rotor Apply lateral Cyclic control Rotor disc tilt side
  • 13.
  • 14. Scope of Helicopter Flight Dynamics Pilot Cockpit controls Aerodynamic surfaces (rotor, tail rotor) Change aerodynamic Forces and moments Gust disturbance External force disturbance SCAS Helicopter motions Flight quality specification Flight quality assessment
  • 15.
  • 16.
  • 17.
  • 22.
  • 23.
  • 24.
  • 25.
  • 26.
  • 27. Definition of Angles The Euler angles: The orientation of any axes relative to another can be given by three angles, which are the consecutive rotations about three axes in that order to carry one frame along with the other. This is a particular case of Euler angles . In helicopter flight dynamics, only one sets is commonly used, that for the body axes. 1. A rotation Ļˆ about OY D , carrying the axes to OX 1 YZ 1 , is the azimuth angle. 2. A rotation Ļ… about OZ 1 , carrying the axes to OXY 2 Z 1 , is the pitch angle. 3. A rotation Ī³ about OX, carrying the axes to OXYZ, is the bank angle. Quatemions Z 1 X 1 Y 2
  • 28. Definition of Angles The Aerodynamic angles : The linear motion V of the vehicle relative to the atmosphere can be given either by its three orthogonal components (v x ,v y ,v z ) in the body axes system, or alternatively by the magnitude V and two suitable angles. These angles, which are of fundamental importance in determining the aerodynamic forces that act on the vehicle, are defined as: Angle of attack : Sideslip angle : It will be observed that, in the sense of Euler angles, the aerodynamic angles related the bode axes and wind axes by the rotation sequence ( ļ” , ļ¢ ,0) which carrying the former into the latter X 1
  • 29. Transformation from Gravity Axes to Body Axes A rotation of Ļˆ: A rotation of : A rotation of Ī³: The complete coordinate transformation from gravity axes to body axes is: Z 1 X 1 Y 2
  • 30. Transformation from Body Axes to Wind Axes A rotation of ļ¢ : A rotation of ļ” : The complete coordinate transformation from body axes to wind axes is: X 1
  • 31. Transformation from Body Axes to Hub Axes In order to improve the flight performance and pilot Vision in cruse flight, the rotor shaft always tilts Forward as an angle ļ¤ . Thus: In the sense of Euler angles, the rotor shaft tilt angle related the bode axes and hub axes by the rotation sequence (0, ļ¤ ,0) which carrying the former into the latter
  • 32. Comparison of Coordinate System in Different Country China and Russia West Country X Z O Y X Z O Y
  • 33. Comparison of Definition of Parameters in Different Country O O
  • 34. Comparison of Definition of Parameters in Different Country Meanings Hide force coeff. Side force coeff. Anti torque coeff. Lock Number China and Russia West country Thrust coeff.