Maritime cargo vessel
Vessel equipped with Aeroforce wings
Maritime wind propulsion

The future of shipping
is now

Défiler

Environmental
impact

Environmental impact

The shipping industry is a vital component of the world economy. Facing the global climate change challenges, the shipping industry must find new ways to reduce its footprint and emissions while keeping costs under control.

Regulations and
opportunities

Regulations and opportunities

While the European commission and the IMO (International Maritime Organization) are paving the way towards ambitious reductions of emissions by as early as 2030, Aeroforce provides the opportunity to harness the power of a free, clean and widely available source of power.

Propels your fleet
into a new era

Propel your fleet

Wind propulsion, along with digital tools, data gathering and processing, can save 20% to 30% on fuel consumptions and therefore on CO₂ and other GHG emissions, helping the shipping industry to comply with the mandatory regulations (CII, EEXI, EEDI, FUEL EU, IMO).

Transatlantic route New York - Le Havre

Your benefits:

Simulation on a transatlantic route

Multi-purpose bulk carrier

120 m multi-purpose
bulk carrier

4 Aeroforce© wings
(AF300)

  • Wing area: 1,200 m²
  • Average vessel speed: 12 knots
  • Average TWS: 17 knots
  • Average TWA: 113°
Average wing efficiency: 700 kW

Annual savings

(based on 250 days)

Fuel savings 780 tonnes
CO2 emissions reduction 2,422 tonnes

The Aeroforce
value proposition

Fuel savings targets

0%

FOR A RETROFIT VESSEL

0%

FOR A NEW VESSEL

0%

FOR A WIND- POWERED VESSEL

Return on investment in 5 to 7 years

AF
100
AF
180
AF
300
Wing area 100 m² 180 m² 300 m²
Mast height 19 m 28 m 36 m
Upper chord 4 m 5 m 6.2 m
Lower chord 6.6 m 8 m 10.5 m
Equivalent engine power per wing* 600 kW 1080 kW 1748 kW

*Calculated based on an AWS of 35 knots and a TWA of 120°.

Modular wing
adaptable to
your programmes

The integration of Aeroforce wings into the structure of commercial vessels focuses on minimising the impact of the wing propulsion system in terms of space requirements on and below deck, and interference with loading and unloading operations. The retractable design offers unique possibilities for achieving this objective.

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