THERMCYC -- Advanced thermodynamic cycles utilising low-temperature heat sources

The project aims at solutions for thermal plants, for power generation, heat pumping and cooling by use of low value sources as waste heat and renewable sources at high efficiency. The project will develop the design of both processes and working fluids to achieve significant energy savings.

Project description

Energy sources at a low temperature level are available from a variety of sources ranging from waste heat from ships, industry and refrigeration plants, to renewable energy in the form of biomass, geothermal and solar.

There is significant potential for improving the use of these sources in developing new cycles based on new multi-component fluid mixtures. These improvements will not only increase the efficiency of today's technology, but they will also make it possible to use low-temperature sources which, due to lack of technical feasibility or economy is not used today. This ambitious, interdisciplinary project will lead the way to innovative thermal system for electricity generation, heat pumping and cooling by utilization of low value sources, at efficiencies that surpasses today's level significantly. The project will develop advances in the design of both processes and media so that energy savings of 15% can be achieved. The analysis will include numerical simulation and advanced thermodynamic methods based on energy and exergy analysis and experimental verification of component performance. The development of a systematic approach to the optimization of cycle and the working medium in the given application. The results will provide a scientific basis for choosing the future use of low-temperature resources in Denmark. This may contribute significantly to the development of the future society using no fossil resources, but large amounts of fluctuating renewable energy.

Key figures

Period:
2014 - 2019
Funding year:
2013
Own financial contribution:
8.71 mio. DKK
Grant:
21.50 mio. DKK
Funding rate:
70 %
Project budget:
30.93 mio. DKK

Category

Programme
Innovationsfonden
Technology
Energy efficiency
Project type
Forskning
Case no.
1305-00036B

Participants

Danmarks Tekniske Universitet (DTU) (Main Responsible)
Partners and economy
Partner Subsidy Auto financing
Danmarks Tekniske Universitet (DTU) 8,35 mio. DKK 3,33 mio. DKK
Danmarks Tekniske Universitet (DTU) 5,78 mio. DKK 1,25 mio. DKK
Danish Technological Institute 1,62 mio. DKK 0,19 mio. DKK
VIEGAND & MAAGØE ApS 0,89 mio. DKK 0,56 mio. DKK
A.P. MØLLER - MÆRSK A/S 0,03 mio. DKK 0,40 mio. DKK
Danfoss A/S 0,05 mio. DKK 0,52 mio. DKK
ARLA FOODS AMBA 0,02 mio. DKK 0,32 mio. DKK
Alfa Laval Sweden 0,03 mio. DKK 0,37 mio. DKK
Viking Heat Engines AS 0,03 mio. DKK 0,32 mio. DKK
Technische Universität München 0,62 mio. DKK 0,15 mio. DKK
Aalborg Universitet (Fredrik Bajers Vej) 3,31 mio. DKK 0,43 mio. DKK
Alfa Laval Aalborg A/S 0,03 mio. DKK 0,37 mio. DKK
Delft University of Technology 0,71 mio. DKK 0,13 mio. DKK

Energiforskning.dk - informationportal for danish energytechnology research- og development programs.

Logo innovationsfonden
Logo for EUDP
Logo for elforsk