Vladimir Ondejcik
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Transferium Almere 2.0 - 3. DESIGN WITH THE WIND

Type: graduation project, Grade: 10 (first in hyperbody chair) + Cum Laude
Highlights: CFD simulation, Genetic algorithms, INTEGRATED WIND ENERGY

Most advaced part of graduation project. It was consulted with WIND GROUP of TU Delft. Responsive skin is developed to channel wind energy to turbines, while building body is optimized for maximize energy gain. Fully builing integrated solution without disturbing elements outside is also promoting green energy with free wind driven exterior lightning.

More from Transferium 2.0

1. Dynamic Master Plan Tool
2. Form-Finding for Transferium
3. Design with the wind
4. Prototype - VIDEO

5. Prototype - Photos
6. Presentation - Photos

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Final presentation

Transferium Almere 2.0

Overview of new transferium design between Almere Pampus and IJmeer

Sustainability 1

Generating green energy and low impact green design as main design elements in Transferium project.

Sustainability 2

Generating green energy and low impact green design as main design elements in Transferium project.

CFD simulation

CFD simulations were analysed to create set of design rules for maximizing energy gain from the wind

Analysis

NL REG analysis of CFD simulations.

Wind form optimization

Genetic algorithms were employed for opmimalisation of the geometric form.

Testing

Final form was tested CFD to prove final result.

Responsive Component

Principles of adaptable componet.

Details

Detailed drawings was made of all importand building elements.

Behaviuor

Responsive elemnts behave on large scale patterns.

Second skin

Performative wind driven exterior lightning.

Impression

Night impression of the harbor area and trainstation building.

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design: Vladimir Ondejcik (c)Vladimir Ondecik 2011
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