Consortium

Roles, skills and expertise matrix

EXAELIA brings together a highly complementary consortium, unique expertise and state of the art facilities bridging the gap between research and application. The participants are spread over 13 European countries (Netherlands, France, Germany, Italy, Poland, Romania, Greece, Spain, Austria, Portugal, Sweden, Belgium and UK).

This combination also allows to gather the required key facilities and infrastructures to conduct HPC simulation but most importantly Wind Tunnel Tests, Flight Tests.

All
A/C requirements
Engineering methodologies
Overall A/C Design
Off-the-loop aircraft analysis
Hydrogen system technologies
HAR wing technology
BWB technologies
Engine integration technology
Whole engine design
Detailed engine component analysis
FTB strategy
Overall FTB design
FTB detailed analyses
FTB on-board technologies
FTB operational & ground system design
Flight testing
Ground-based measurement
WT testing
Roadmapping
Digital Twin (DT)
Communication
Dissemination
Management
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A/C requirements
Digital Twin (DT)
Flight testing
FTB detailed analyses
FTB on-board technologies
FTB operational & ground system design
FTB strategy
Ground-based measurement
HAR wing technology
Management
Overall A/C Design
Overall FTB design
Roadmapping
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BWB technologies
HAR wing technology
Off-the-loop aircraft analysis
Cranfield
A/C requirements
BWB technologies
Detailed engine component analysis
Digital Twin (DT)
Engine integration technology
Engineering methodologies
FTB detailed analyses
FTB on-board technologies
FTB strategy
Hydrogen system technologies
Off-the-loop aircraft analysis
Overall A/C Design
Overall FTB design
Roadmapping
Whole engine design
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Digital Twin (DT)
Engine integration technology
FTB detailed analyses
FTB strategy
Overall A/C Design
Overall FTB design
Roadmapping
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A/C requirements
Engineering methodologies
FTB detailed analyses
Roadmapping
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A/C requirements
Engineering methodologies
FTB detailed analyses
HAR wing technology
Roadmapping
EASN-TIS
Dissemination
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BWB technologies
Detailed engine component analysis
Digital Twin (DT)
Engine integration technology
Engineering methodologies
FTB detailed analyses
FTB on-board technologies
Whole engine design
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Detailed engine component analysis
Engine integration technology
Hydrogen system technologies
Overall A/C Design
Roadmapping
Whole engine design
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Detailed engine component analysis
Engine integration technology
Engineering methodologies
Hydrogen system technologies
WT testing
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BWB technologies
Detailed engine component analysis
Engine integration technology
Engineering methodologies
Flight testing
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Engine integration technology
Hydrogen system technologies
Whole engine design
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Detailed engine component analysis
Engine integration technology
Whole engine design
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FTB detailed analyses
FTB on-board technologies
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Off-the-loop aircraft analysis
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Communication
Management
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BWB technologies
Engine integration technology
Engineering methodologies
Flight testing
FTB strategy
Overall A/C Design
Overall FTB design
Roadmapping
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Engine integration technology
Engineering methodologies
FTB detailed analyses
Hydrogen system technologies
Off-the-loop aircraft analysis
Overall A/C Design
Overall FTB design
Roadmapping
Whole engine design
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BWB technologies
FTB detailed analyses
FTB operational & ground system design
FTB strategy
HAR wing technology
Off-the-loop aircraft analysis
Roadmapping
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Engineering methodologies
FTB detailed analyses
HAR wing technology
Overall A/C Design
Overall FTB design
Roadmapping
WT testing
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Flight testing
FTB operational & ground system design
Ground-based measurement
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A/C requirements
BWB technologies
Engineering methodologies
FTB detailed analyses
FTB on-board technologies
FTB operational & ground system design
Ground-based measurement
Overall FTB design
WT testing
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A/C requirements
BWB technologies
Engineering methodologies
FTB detailed analyses
FTB on-board technologies
FTB strategy
Hydrogen system technologies
Off-the-loop aircraft analysis
Roadmapping