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Stirling heat pump for high temperature industrial use

Rezultaty

Comm., dissemination & exploitation materials 2

Comm dissemination exploitation materials 2 M30

Manuals/video for safe operations; interim

Manuals/video for safe operations; interim (M12)

Manuals/video for safe operations; final

Manualsvideo for safe operations final M28

Highlift product & project webpages

Highlift product & project webpages (M3)

Comm., dissemination & exploitation materials 1

Comm., dissemination & exploitation materials 1 (M15)

Publikacje

“Prediction of Stirling-cycle-based heat pump performance and environmental footprint using exergy analysis and LCA

Autorzy: Umara Khan, Ron Zevenhoven, Lydia Stougie, Tor-Martin Tveit
Opublikowane w: Proceedings of Ecos 2021 - The 34th International Conference On Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems, 2021
Wydawca: Ecos 2021

Performance improvement of an industrial Stirling engine heat pump

Autorzy: R Zevenhoven, U Khan, C Haikarainen, L Saeed, T-M Tveit, H Saxén
Opublikowane w: ECOS 2020, 33rd International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems, 2020
Wydawca: ECOS2020

Environmental impact of high temperature industrial heat pumps – from a global warming potential (GWP) perspective

Autorzy: T-M Tveit, U Khan, R Zevenhoven
Opublikowane w: Industrial Efficiency 2020 – Decarbonise industry!, Numer No. 4-001-20, 2020, ISBN 978-91-983878-7-2
Wydawca: European Council for an Energy Efficient Economy (eceee)

HighLift – a very high temperature heat pump for industrial use – key results from a Horizon2020 Fast Track to Innovation Project

Autorzy: Tor-Martin Tveit, Stefano Vittor, Ron Zevenhoven
Opublikowane w: 3rd High-Temperature Heat Pump Symposium 2022: Book of Presentations, 2022, Strona(/y) 133-141, ISBN 978-87-7475-697-2
Wydawca: Technical University of Denmark

Environmentally friendly steam generation using VHTHPs at a pharmaceutical research facility

Autorzy: Tor-Martin Tveit, Martin N. Johansson, Ron Zevenhoven
Opublikowane w: 13th IEA Heat Pump Conference, Numer Paper 4, 2021
Wydawca: 13th IEA Heat Pump Conference

Prediction of Stirling-Cycle-Based Heat Pump Performance and Environmental Footprint with Exergy Analysis and LCA

Autorzy: Umara Khan, Ron Zevenhoven, Lydia Stougie, Tor-Martin Tveit
Opublikowane w: Energies, 2021, ISSN 1996-1073
Wydawca: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en14248478

Evaluation of the Environmental Sustainability of a Stirling Cycle-Based Heat Pump Using LCA

Autorzy: Umara Khan, Ron Zevenhoven, Tor-Martin Tveit
Opublikowane w: Energies, Numer 13/17, 2020, Strona(/y) 4469, ISSN 1996-1073
Wydawca: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en13174469

Simulation of pressure imbalance phenomena in a double-acting α-cycle Stirling engine

Autorzy: Carl Haikarainen, Tor-Martin Tveit, Henrik Saxén, Ron Zevenhoven
Opublikowane w: Energy Conversion and Management, Numer 221, 2020, Strona(/y) 113172, ISSN 0196-8904
Wydawca: Pergamon Press Ltd.
DOI: 10.1016/j.enconman.2020.113172

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