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| Funder | European Commission |
|---|---|
| Recipient Organization | Mtu Aero Engines Ag |
| Country | Germany |
| Start Date | Jan 01, 2023 |
| End Date | Dec 31, 2025 |
| Duration | 1,095 days |
| Number of Grantees | 21 |
| Roles | Third Party; Participant; Associated Partner; Coordinator |
| Data Source | European Commission |
| Grant ID | 101102006 |
SWITCH aims to answer the challenge of climate-neutral short-medium range air transport by developing a revolutionary sustainable gas turbine propulsion system – the hybrid Water-Enhanced Turbofan (hybrid WET).
It boosts WET technology with hybridization (Electrical Aircraft Propulsion – EAP) to improve energy efficiency by 25% and reduce climate impact by 75% (using net zero-CO2 sustainable aviation fuel, 50% with conventional Jet-A kerosene) compared to a state-of-the-art engine.
It is the only concept to significantly reduce all three major warming effects on our climate: CO2 through unmatched efficiency, NOx through water injection in the combustor, and contrails through particle removal and water recovery. Local air quality and noise levels around airports are improved through electric taxiing.
The hybrid WET is fully compatible with drop-in SAF and could also be adapted to burn hydrogen.
It addresses all climate-notable market segments: Short-, medium- and long-range.The SWITCH project will meet this challenge with a global consortium, through an unprecedented programmatic effort between airframer, engine and system OEMs, key tier 1 suppliers and leading researchers in combustion and propulsion, leveraging relevant and effective synergies between European and national programs.SWITCH will mature the hybrid WET’s two key innovation concepts by 2025: The WET engine to technology readiness level (TRL) 4 through validation of its key enabling technologies and the EAP system to TRL 5 through flight-ready engine ground demonstration of the full propulsion system.Results from SWITCH will reinforce confidence in the climate reduction potential of the hybrid WET propulsion system and form the technological foundation to achieve TRL 6 by 2030.
This will enable the innovation to enter into the market by 2035 on a new short-medium range aircraft to significantly reduce aviation’s climate impact towards the European Green Deal’s goal of climate neutrality by 2050.
Airbus; Airbus Operations Sas; Aristotelio Panepistimio Thessalonikis; Hs Marston Aerospace Limited; Hamilton Sundstrand Corporation; Mtu Aero Engines Polska Spolka Z Ograniczona Odpowiedzialnoscia; Goodrich Control Systems; Hs Elektronik Systeme Gmbh; Pratt & Whitney Rzeszow Spolka Akcyjna; Deutsches Zentrum Fur Luft - Und Raumfahrt Ev; Pratt & Whitney; Airbus Operations Gmbh; Airbus Operations Sl; Fokker Elmo Bv; Advanced Laboratory On Embedded Systems Srl; Gkn Aerospace Sweden Ab; University of Stuttgart; Goodrich Aerospace Europe Sas; Mtu Aero Engines Ag; Collins Aerospace Ireland, Limited; Chalmers Tekniska Hogskola Ab
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