MYPLANET · Massively Parallel Computations of Combustion and Emission Simulations
FP7 — People (Marie Curie Actions)
- Duration
- 2008-10-01 → 2012-09-30
- EU contribution
- €3,028,986
- Participants
- 8
- Scheme
- MC-ITN
Lines connect the coordinator with its partners. CORDIS does not always give exact coordinates for projects before 2014. These points are placed at city or country level.
Project objective
The MyPlanet collaborative initial training network represents a European initiative to train a new generation of engineers in the field of high performance computing applied to the numerical combustion simulation, energy conversion processes and related atmospheric pollution issues. Indeed, the project is based on the recognised lack on European level of highly skilled engineers that are equally well-trained in both combustion technologies and high-performance computing (HPC) techniques. The project will contribute to the structuring of existing high-quality initial research training capacities in fluid mechanics and the HPC field through combining both public and private (industrial) sectors. The research is motivated by the fact that in today’s industrial society more than 80% of the energy consumed on Earth is produced by burning fossil fuels, i.e. through combustion. It is widely recognised that important technological progress is required in order to optimize these combustion processes in the context of growing pollution, fuel depletion and global Earth warming. The computer simulation of combustion appears as a prerequisite to a better understanding of the underlying physical and chemical processes. The main objective is to develop an ambitious training programme in the field of high-performance computations of reacting flows on massively parallel machines. Through the training actions they will learn both the fundamental physics behind combustion processes as well as software implementation aspects of high-performance computing as a prerequisite to the numerical simulation of reacting flows. Such training is necessary for developing future energy- and carbon-efficient devices based on biofuels. Thanks to the industrial partners involved in the project, the trainees will experience the industrial use of these new simulation tools while industry will obtain a first-hand experience with new methodologies.
Original text from CORDIS.
Participants
- CENTRE EUROPEEN DE RECHERCHE ET DEFORMATION AVANCEE EN CALCUL SCIENTIFIQUE · TOULOUSE CEDEXCoordinatorFrance
- Genias Graphics Gmbh & Co KG · RegenstaufCity levelGermany
- INSTITUT NATIONAL DE RECHERCHE EN INFORMATIQUE ET AUTOMATIQUE · Le Chesnay CedexFrance
- INSTITUT NATIONAL POLYTECHNIQUE DE TOULOUSE · Toulouse Cedex 4France
- TECHNISCHE UNIVERSITAET MUENCHEN · MuenchenGermany
- THE CHANCELLOR MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE · CAMBRIDGEUnited Kingdom
- UNIVERSIDAD CARLOS III DE MADRID · Getafe (Madrid)Spain
- UNIVERSITY OF CYPRUS · NicosiaCyprus
Links
Data: CORDIS, © European Union
