SLIDE 1 IBISPOWER.EU
- Dr. ir. Arch. Alexander Suma
SLIDE 2 Ibis Power Team
- Dr. ir. Arch. Alexander Suma
From: Maastricht CEO Ibis Power BV COO SEB&C (TU/e)
Napels, Italie CTO Ibis Power BV Researcher IRWES (TU/e)
SLIDE 3
The Need
SLIDE 4
The Need
SLIDE 5 LOUVERS FUNNEL TURBINE DIRECT FLOW FAÇADE INTERACTING FLOW LOWER BACK PRESSURE MULTI STOREY BUILDING
Integrated Roof Wind Energy System
SLIDE 6 2/14
Prototype in Meerssen (NL)
3,6x3,6x6,5m
- Wind flow analysis
- Aesthetic experience
- Noise testing
- Constructability
SLIDE 7 V 0
Wind Speed Measurement
140% 125% 100%
18 times more energy than rooftop windmill!
260%
) (
3 2 1
F AV P
V 2 V 1 V 3
Prototype Results
SLIDE 8 Market Comparison
- Acceleration of urban wind flow
- More wind hours (>2200)
- Wind from any direction
- No noise conditions
Wind Turbines (3.6 m/s) IRWES (<3.6 m/s)
SLIDE 9
Elegance Integration Customization
Integrated Roof Wind Energy System The solution!
SLIDE 10
SLIDE 11
12m 12m
Modularity and Customization
SLIDE 12
Segmentation and Positioning
High Rise >15m Dwelllings IRWES PV Urban Wind Mils
SLIDE 13 Ibis Market – Multi Storey Buildings
Netherlands
- 55,000 buildings > 15 m
- ~30% commercial buildings
- Most high rises found in Dutch coastal areas
Europe
- 1/6 of population (500 Million) live in
multi storey buildings North America
- 30,000 high rise buildings (21,000 in USA)
- Height > 80 m
Population Density
SLIDE 14 Rianne Dekker
Management Team
Teo Xaritidis
CTO CEO
Rossella Ferraro Alexander Suma
SLIDE 15
Added Value
Green Building Aesthetically Pleasing Most Efficient Wind Energy System Payback Time ~10 Years No Noise Integration Hybrid Possibilities Building Value Upgrade Small Application Area Low Maintenance
SLIDE 16
Traject
Visit location Talk with window washer Inspect installation rooms Preliminary design Theoretical calculation Estimated cost STEP 1 Design IRWES Incorporate customization Simulations wind flows Energy Calculation Construction Cost STEP 2 Final design Permit Outreach plan Maintenance plan Final time planning STEP 3 Prefab Construction “1 day” Installation Delivery STEP 4
SLIDE 17 University of Miami Invention IRWES 09-2008 WO-Patent application: “Wind Energy System” 19-06-2009 Wind tunnel test and optimization
- Dr. Ferraro Marie Curie Fellowship (EU)
03-2011 PhD graduates UM 12-2010 STW Valorization Grant Phase I 06-2011 TU/e Anniversary Award (Pilot) 09-2011 K-Idea Award, Bergamo, Italy 03-2012 Prototype testing 04-2012 BRAINS Award 06-2012 CFD First Price Herman Wijffels Innovation Award 11-2012 11-2012 Ibis Power BV Creation Ibis Power TU/e TEDx Amsterdam, Innovation Award 11-2012 Ibis Power Office Employees: Rianne and Theo Place Pilot Unit Start sales 01-2013 03-2013 08-2013
SLIDE 18
Traject
Visit location Talk with window washer Inspect installation rooms Preliminary design Theoretical calculation Estimated cost STEP 1 Design IRWES Incorporate customization Simulations wind flows Energy Calculation Construction Cost STEP 2 Final design Permit Outreach plan Maintenance plan Final time planning STEP 3 Prefab Construction “1 day” Installation Delivery STEP 4
SLIDE 19
In Built Environment More Efficient! Not in Built Environment More Power! IRWES Windmill
SLIDE 20