H2020Doctoral network2015–2019

MIGRATE · Research and training network on MIniaturized Gas flow for Applications with enhanced Thermal Effects

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2015-11-01 → 2019-10-31
EU contribution
€3,815,117
Participants
10
Scheme
MSCA-ITN-ETN

Lines connect the coordinator with its partners.

Results in brief

Research and training network on MIniaturized Gas flow for Applications with enhanced Thermal Effects

"MIGRATE (Miniaturized Gas flow foR Applications with Enhanced Thermal Effects) was a MSCA (ITN) under H2020. A network was created spanning numerical, experimental, theoretical and applied research experts across academia, large scale industry and high-tech SMEs dealing with heat and mass transfer in gas-based microflows. MIGRATE brought together an intersectoral and multidisciplinary collaboration between 11 academic and 5 industrial participants from 10 European countries. 15 Early-Stage Researchers (ESRs) have been trained through projects that covered different aspects of enhanced heat transfer and thermal effects in gas microflows. The main objectives of MIGRATE were: O1: to further improve the structuring of research in Europe in the field of thermal aspects of gas microflows and their applications, and strengthen EU innovation in this field; -> This objective has been met by generation of 15 combined, internationally supervised PhD projects, which led to a bunch of common publications. Around 1/3 of the projects have been set as co-tutelle PhD theses. O2: to resolve scientific problems not sufficiently addressed yet and transfer fundamental knowledge to technological applications at an industrial level, through a multi-disciplinary and innovation-oriented approach; ->This objective has been met for almost all the projects but one, which stayed far behind the expectations. However, the expected level of scientific or technical improvement could not always be fully reached due to, in the majority of the projects, simply time problems. O3: to obtain scientific and technological solutions for actual topics related to process intensification and resource efficiency; ->This objective has been met. Technical solutions for specific measurement problems and extremely efficient gas-to-gas heat transfer have been developed and realized. In many cases the solution stayed at the level of “proof of principle”, but with a very good chance to be continued into a market. This is reflected by 3 patent applications prepared, of which one is already filed within the project. O4: to train PhD students at a pan-EU level and in combination with industrial partners, with the aim of providing both a global overview on problems linked to heat transfer in or with gas microflows, advanced skills in specific domains of this research field and complementary skills related to management of industrial issues; ->This objective has been met. 15 ESR students have been recruited, with planned secondments in academia and industry. 13 out of 15 students have already managed to obtain their PhD or will obtain it within the next few months. 1 ESR already finished his doctoral time before entering (replacement for a drop-out candidate), another ESR has not come far enough to obtain a PhD title.) It was planned to grant 5 co-tutelle PhD titles, of which 4 have been finalised. O5: to address, through training, the "" triple i"" dimension of the fellows’ mobility: interdisciplinary, intersectorial and international. ->This objective has been met. All ESRs have been trained in very different disciplines and sectors of science and industry. Internationality was never questionable."

Data: CORDIS, © European Union

Project objective

Depletion of natural resources combined with the extending footprint of mankind has led to a shift in importance of research and development topics. In the 1970s and 1980s process yield was primarily targeted, but emphasis is now focussed on resource efficiency as a primary objective. Routes for resource efficiency have to be identified and implemented to provide a more environmental and resource-oriented technology in near future. MIGRATE is planned as an ETN, gathering top-level research and development capabilities from academia and industry as well as direct application possibilities with the focus set on thermal aspects of gas flows in microstructured systems. Within MIGRATE, a number of ESR projects will cover different aspects of enhanced heat transfer and thermal effects in gases, spanning from modelling of heat transfer processes and devices, development and characterization of sensors and measurement systems for heat transfer in gas flows as well as thermally driven micro gas separators to micro-scale devices for enhanced and efficient heat recovery in automotive, aeronautics and energy generation. This unique combination of university research, SME and world leading industrial stakeholders will contribute in a significant way to the increase of knowledge about micro scale gas flow heat transfer problems as well as to industrial applications of highly efficient miniaturized devices.A characteristic of MIGRATE is the high degree of applicability and the intense training. About 30% of the beneficiaries are from private sector. Thus, ESR projects will be developed in both directions, fundamental academic knowledge as well as direct application in industrial environment. The training of the ESRs is set in the same way to provide a broad variety of skills, reaching from classical academic research to IPR management and all-day-business in a company, being summarized under the aspect of resource efficiency and environmental-friendly technological approaches.

Original text from CORDIS.

Participants

  • KARLSRUHER INSTITUT FUER TECHNOLOGIE · KarlsruheCoordinatorGermany
  • ALMA MATER STUDIORUM - UNIVERSITA DI BOLOGNA · BolognaItaly
  • IN'AIR SOLUTIONS · StrasbourgFrance
  • INSTITUT NATIONAL DES SCIENCES APPLIQUEES DE TOULOUSE · ToulouseFrance
  • INSTITUTE OF MECHANICS - BAS IMECHBAS · SofiaBulgaria
  • MITIS · HannutBelgium
  • NOKIA IRELAND LIMITED · DublinIreland
  • PANEPISTIMIO THESSALIAS · VOLOSGreece
  • UNIVERSITE D'AIX MARSEILLE · MarseilleFrance
  • UNIVERSITY OF LIMERICK · LimerickIreland

Links

Data: CORDIS, © European Union