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HASTECS SIGNED

Hybrid Aircraft; academic reSearch on Thermal and Electrical Components and Systems

Total Cost €

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EC-Contrib. €

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Partnership

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Project "HASTECS" data sheet

The following table provides information about the project.

Coordinator
INSTITUT NATIONAL POLYTECHNIQUE DE TOULOUSE 

Organization address
address: ALLEE EMILE MONSO 6
city: TOULOUSE CEDEX 4
postcode: 31029
website: www.inp-toulouse.fr

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country France [FR]
 Project website http://www.laplace.univ-tlse.fr/Projet-HASTECS-vers-l-avion-plus-electrique
 Total cost 1˙499˙825 €
 EC max contribution 1˙499˙825 € (100%)
 Programme 1. H2020-EU.3.4.5.1. (IADP Large Passenger Aircraft)
 Code Call H2020-CS2-CFP02-2015-01
 Funding Scheme CS2-RIA
 Starting year 2016
 Duration (year-month-day) from 2016-09-01   to  2021-08-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    INSTITUT NATIONAL POLYTECHNIQUE DE TOULOUSE FR (TOULOUSE CEDEX 4) coordinator 748˙375.00
2    ECOLE NATIONALE SUPERIEURE DE MECANIQUE ET D'AEROTECHNIQUE FR (FUTUROSCOPE CEDEX) participant 422˙075.00
3    UNIVERSITE PAUL SABATIER TOULOUSE III FR (TOULOUSE CEDEX 9) participant 329˙375.00

Map

 Project objective

The HASTECS project aims at supporting the demonstration of radical aircraft configurations (CS-2/WP1.6) by means of models and tools development that can help the designers in assessing main benefits of architectures and power management of hybrid electric propulsion. The proposed consortium involves all competences to face the huge complexity of this process. All academic researchers will gather their expertise to optimize the overall hybrid power chain, starting with electric and thermal components up to system integration by taking into account main environmental constraints. Assessments will be integrated at the system level and will include design and analysis of main components of the hybrid power chain: electric machines and related cooling, cables, power electronics and related thermal management. This system integration will take into account the main environmental constraints, especially partial discharges due to new high power and ultra-high voltage standards. The HASTECS project proposes to reach aggressive targets with a strong increase of specific powers for the main components; We especially target to double the specific power of electric machines from 5kW/kg for 2025 to 10kW/kg for 2035 while specific powers of converters would evolve from 15kW/kg for 2025 to 25kW/kg for 2035: this expected gap, when installing 4 inverter–motor drives of 1.5MW, will lead to a weight reduction of 1.8 tons, which will offer a significant fuel burn reduction estimated at 3.5% for a short range (~300nm) flight. Additional fuel burn reduction will be obtained thanks to several technological steps as on “auxiliary sources” (batteries, fuel cells, etc) and by optimizing the overall system sizing integrating the power management. Recent assessments estimate that the reduction of total energy provided by both Gas Turbines and auxiliaries (batteries of fuel cells) of the most promising electric hybrid architecture may go beyond 20% for a 300nm regional flight!

 Publications

year authors and title journal last update
List of publications.
2019 Matthieu Pettes-Duler, Bruno Sareni, Xavier Roboam
Analyse de sensibilité d’un système de propulsionhybride électrique pour des futurs aéronefs
published pages: , ISSN: , DOI:
2020-04-15
2019 Flavio Accorinti, Vincent Ayel, Yves Bertin
Steady-state analysis of a Capillary Pumped Loop for Terrestrial Application with methanol and ethanol as working fluids
published pages: 571-583, ISSN: 1290-0729, DOI: 10.1016/j.ijthermalsci.2018.10.036
International Journal of Thermal Sciences 137 2020-04-15
2019 Matthieu Pettes-Duler, Xavier Roboam, Bruno Sareni
Integrated design process and sensitivity analysis of a hybrid electric propulsion system for future aircraft
published pages: , ISSN: , DOI:
2020-04-15
2018 Collin, Philippe and Malec, David and Lefèvre, Yvan
Outil d’aide au design du système d’isolation primaire de machines tournantes basse tension alimentées par onduleur
published pages: , ISSN: , DOI:
2020-04-15
2019 Collin, Philippe; Touhami, Sarah; Malec, David; Lefèvre, Yvan; Llibre, Jean-François
Design of Electric Machine Taking Into Account the Partial Discharges Phenomena for Future Hybrid Propelled Aircrafts
published pages: , ISSN: , DOI:
Proceedings of More Electric Aircraft - MEA 2019 4 2020-04-15
2019 Yvan Lefevre, Sami El-Aabid, Jean-François Llibre, Carole Henaux, Sarah Touhami
Performance assessment tool based on loadability concepts
published pages: 687-694, ISSN: 1383-5416, DOI: 10.3233/jae-171059
International Journal of Applied Electromagnetics and Mechanics 59/2 2019-09-04
2017 Touhami, Sarah; Bertin, Yves; Lefèvre, Yvan; Llibre, Jean-Francois; Henaux, Carole; Fenot, Matthieu
Lumped Parameter Thermal Model of Permanent Magnet Synchronous Machines
published pages: , ISSN: , DOI:
Transactions of IMACS Mathematics and Computers in Simulation (special issue) 1 2019-06-13
2017 Erroui, Najoua; Gateau, Guillaume; Roux, Nicolas
Pré-dimensionnement de convertisseur de très forte puissance pour une application à la propulsion aéronautique hybride
published pages: , ISSN: , DOI:
1 2019-06-13
2018 Mallys Elliazar Banda, David Malec, Jean-Pascal Cambronne
Simulation of Space Charge Impact on Partial Discharge Inception Voltage in Power Busbars Dedicated to Future Hybrid Aircrafts
published pages: 196-212, ISSN: 2153-1285, DOI: 10.4236/cs.2018.911018
Circuits and Systems 09/11 2019-05-22
2018 M. E. Banda, D. Malec, Jean-Pascal Cambronne
Partial discharge risk under space charges generation and transport effects
published pages: , ISSN: , DOI:
2019-05-22

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