11th Course in Aeronautical Design , Workout smartness in Structures, 12-21 August 2023 Munich-Rome

The course covers  technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes for smart materials and smart structures.

 

  • Smart Morphing Surfaces
  • Advanced morphological approaches
  • Changing Morphs developments
  • Technical applications to all aero parts
  • Smart materials properties
  • Vibration  governance  surface with istantaneous adaptation
  • Energy efficiency on aeronautical smart structures
  • Piezoelectric fibers mixed with composite material
  • Uses of adaptative control surfaces
  • Hypersonic environment
  • Control of advanced space engines
  • Hybrid space engines
I want to thank in particular the friends of the Munich TUM who acted as a filter for the choice of advanced students who are particularly trained in the field of space engines

Pre-registrations for new course in aeronautical design , august 2023, design@alessandrocolace.eu for informations

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10th Course in Aeronautical Design , Workout smartness in Structures, 12-21 August 2022 Munich-Rome

The course covers  technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes for smart materials and smart structures.

 

  • Smart Morphing Surfaces
  • Technical applications to all aero parts
  • New structural Equations (NS 4, EKJ)
  • Smart materials properties
  • Vibration  governance  surface with istantaneous adaptation
  • Energy efficiency on aeronautical smart structures
  • Piezoelectric fibers mixed with composite material
  • Uses of adaptative control surfaces
  • Hypersonic environment
  • Control of advanced space engines
  • Hybrid space engines
I want to thank in particular the friends of the Munich TUM who acted as a filter for the choice of advanced students who are particularly trained in the field of space engines

Lions for LambsLions for LambsLions for Lambs

9th Course in Aeronautical Design , Workout smartness in Structures, 14-21 August 2021 Munich

The course covers  technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes for smart materials and smart structures.

 

  • Smart Morphing Surfaces
  • Technical applications to all aero parts
  • New structural Equations (NS 4, EKJ)
  • Smart materials properties
  • Vibration  governance with surface istantaneous adaptation
  • Energy efficiency on aeronautical smart structures
  • Piezoelectric fibers mixed with composite materials
I want to thank in particular the friends of the Munich TUM who acted as a filter for the choice of advanced students who are particularly trained in the field of trim change surfaces. See you soon

8th Course in Aeronautical Design , Workout smartness in Structures, 14-18 August 2020

The course covers  technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes for smart materials and smart structures.

  • Technical applications to all aero parts
  • New structural Equations (NS 4, EKJ)
  • Smart materials properties
  • Vibration  governance with surface istantaneous adaptation
  • Energy efficiency on aeronautical smart structures
  • Piezoelectric fibers mixed with composite materials
I want to thank in particular the friends of the Munich TUM who acted as a filter for the choice of advanced students who are particularly trained in the field of trim change surfaces. See you soon

The course covers  technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes for smart materials and smart structures.

  • Technical applications to all aero parts
  • New structural Equations (NS 4, EKJ)
  • Smart materials properties
  • Vibration  governance with surface istantaneous adaptation
  • Energy efficiency on aeronautical smart structures
  • Piezoelectric fibers mixed with composite materials
I want to thank in particular the friends of the Munich TUM who acted as a filter for the choice of advanced students who are particularly trained in the field of trim change surfaces. See you soon

7th Course in Aeronautical Design , 12-18 August 2019

 
 
 
 
 
 
 
 
 
 
 
 
 

7th Course in Aeronautical Design , 12-18August 2019

A seven-day aircraft design short course. The course consists of forty 60-minute lectures. The course covers both the analytical and design layout skills required for the initial design of new aircraft , aims to impart training in all areas of aircraft design including design of aircraft fuselage, aircraft wing, aircraft empennage, and composites. In addition, it lets you gain a good understanding of reverse engineering, and knowledge in computational fluid dynamics for aircraft body. 
The course covers first technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes.

  • Technical applications to all aero parts
  • Equations
  • Material properties
  • Heat transfer and thermoaerodynamics
  • Adhesion in aviation
  • Coatings
  • Vibration and its governance
  • Environmental impacts
  • Energy efficiency on aeronautical structures

All support material will be available to the selected candidates.

by Alessandro Colace

6th Course in Aeronautical Design , 3-11 August 2018

 
 
 
 
 
 
 
 
 
 
 
 
 

6th Course in Aeronautical Design , 3-11 August 2018

A seven-day aircraft design short course. The course consists of forty 60-minute lectures. The course covers both the analytical and design layout skills required for the initial design of new aircraft , aims to impart training in all areas of aircraft design including design of aircraft fuselage, aircraft wing, aircraft empennage, and composites. In addition, it lets you gain a good understanding of reverse engineering, and knowledge in computational fluid dynamics for aircraft body. 
The course covers first technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes.

  • Technical applications to all aero parts
  • Equations
  • Material properties
  • Heat transfer and thermoaerodynamics
  • Adhesion in aviation
  • Coatings
  • Vibration and its governance
  • Environmental impacts
  • Energy efficiency on aeronautical structures

All support material will be available to the selected candidates.

2st workshop of Aeroelasticity , 27-28-29 December 2017

This workshop gives you an opportunity to understand  the recent  theories behind the aeroelasticity of aircraft  as part of aircraft design. It makes you innovate by coming up with your own design style.  Interactive lectures session and design sessions helps you design your  aircraft.

 

 

Course Highlights
• Math and Phys backwords
• Learn all the introductory concepts of aeroelasticity
• Introduction to aeroelasticity Design Algorithms


Course Structure
• Introductory Lecture on Aeroelasticity - 2 hours
• Interactive Design Sessions - 2 hours
• Interactive lectures of Design with new Aeroelasticity Algorithms - 8 hours

• News in Aeroelasticity and Aerospace Structures  - 4 hours
• Testing Session -  2+2 hours
• Q&A - 2+2 hour

 


Topics Covered
• Basics of Aeroelasticity
• Aeroelasticity and iterations with different Systems in an Aircraft
• Stability & elasticity of an Aircraft , new developments
• Adaptative surfaces in a  Aircraft , interactions .

GHW’s methods and platform.

 

0 of 50  candidations  remain available

 

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5th Course in Aeronautical Design , 1-8 August 2017

A six-day aircraft design short course. The course consists of forty 60-minute lectures. The course covers both the analytical and design layout skills required for the initial design of new aircraft , aims to impart training in all areas of aircraft design including design of aircraft fuselage, aircraft wing, aircraft empennage, and composites. In addition, it lets you gain a good understanding of reverse engineering, and knowledge in computational fluid dynamics for aircraft body. 
The course covers first technques to capture functional objectives, ideation of initial and  concepts, creating prototypes, and computer testing & design of production processes.

  • Technical applications to all aero parts
  • Equations
  • Material properties
  • Heat transfer and thermoaerodynamics
  • Adhesion in aviation
  • Coatings
  • Vibration and its governance
  • Environmental impacts
  • Energy efficiency on aeronautical structures

All support material will be available to the selected candidates.

 

 

 

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