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Funded Projects › HORIZON

H2POWRD · Harnessing Hydrogen’s POtential With Rotating Detonation

HORIZONStatus: SIGNED1 October 202430 September 2028EU funding €4,063,536Call HORIZON-MSCA-2023-DN-01

H2POWRD seeks to harness hydrogen's potential with rotating detonation combustion (RDC) integrated with a gas turbine (RDGT). Rotating detonation is a paradigm breaking technology that revolutionizes the thermodynamic process to be significantly more efficient. This efficiency leap also introduces new challenges in the form of unsteady, transonic flow at the turbine inlet and higher heat transfer. Building on insights of a previous ITN (INSPIRE), which underscored the potential benefits of RDC, H2POWRD focuses on efficiently harnessing the unsteady outflow from the combustion of H2 in an RDGT. This project revolves around three primary areas of investigation: (1) delving into the fundamental aspects of the combustion, encompassing reactant injection, mixing, detonation propagation, and heat transfer; (2) optimizing the transition region between the combustor and the turbine to tailor Mach number, pressure, and velocity fluctuations for turbine compatibility; and (3) refining the aerodynamics of rotors and stators to maximize efficiency within relevant design philosophies and Mach number regimes. Employing a comprehensive approach, H2POWRD combines experimental and numerical methods to gain profound insights into both individual component physics and their intricate interactions. The project's outcomes are expected to deepen our understanding of critical scientific questions surrounding the unique features of RDC detonation waves, exhaust flow conditioning for targeted properties, and the design of turbines adept at handling heightened levels of unsteadiness. Beyond scientific inquiry, H2POWRD will showcase the technology's potential and delineate pathways toward realizing higher efficiency and reduced fuel consumption. Moreover, H2POWRD is committed to fostering sustainable innovation in research and in a training program designed to prepare the next generation of researchers with the skills and knowledge needed to navigate the complexities of RDGT technology.

Consortium · 22 organisations

coordinator

TECHNISCHE UNIVERSITAT BERLIN

DE · €521,078

associatedPartner

NUOVO PIGNONE SRL

IT

participant

KUNGLIGA TEKNISKA HOEGSKOLAN

SE · €293,710

participant

UNIVERSITA DEGLI STUDI DI FIRENZE

IT · €259,438

participant

ECOLE NATIONALE SUPERIEURE DE MECANIQUE ET D'AEROTECHNIQUE

FR · €565,387

participant

SAFRAN SA

FR · €282,694

associatedPartner

TRUSTEES OF PURDUE UNIVERSITY

US

associatedPartner

POLITECNICO DI BARI

IT

participant

OFFICE NATIONAL D'ETUDES ET DE RECHERCHES AEROSPATIALES

FR · €282,694

participant

DEUTSCHES ZENTRUM FUR LUFT - UND RAUMFAHRT EV

DE · €260,539

participant

CENTRE EUROPEEN DE RECHERCHE ET DEFORMATION AVANCEE EN CALCUL SCIENTIFIQUE

FR · €282,694

participant

POLITECNICO DI TORINO

IT · €259,438

participant

POLITECNICO DI MILANO

IT · €259,438

associatedPartner

GE AVIO SRL

IT

associatedPartner

TOKAI NATIONAL HIGHER EDUCATION ANDRESEARCH SYSTEM, NATIONAL UNIVERSITY CORPORATION

JP

participant

VON KARMAN INSTITUTE FOR FLUID DYNAMICS

BE · €262,620

associatedPartner

University of Cincinnati

US

participant

UNIVERSITA DEGLI STUDI DI GENOVA

IT · €259,438

associatedPartner

INSTITUT NATIONAL POLYTECHNIQUE DE TOULOUSE

FR

participant

TECHNISCHE UNIVERSITEIT EINDHOVEN

NL · €274,370

associatedPartner

AEDUS SPACE KORLATOLT FELELOSSEGU TARSASAG

HU

associatedPartner

TECHNISCHE UNIVERSITAET DRESDEN

DE

Research fields

View the official record on CORDIS →

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