Projektin tiedot
Description
Electrification is becoming increasingly viable in shipping as a response to the demands for decarbonizing shipping. Small-scale ferries have already been electrified and for short-sea ropax application fully battery electric systems already show competitive total cost of ownership (Korberg et al., 2022).
In addition to contributing to emissions reductions in shipping operations, electrification of ships holds a great potential to radically change the way ships are designed and built (and even opereated). In essence, they would simplify the designs and give rise to more flexible use of space. It is also bound to change the sequence in which equipment are installed on the ship. There are considerable opportunities for establishing dominant designs in this area and establish vessel platforms like the Volkswagens MEB-platform (Modular electric drive matrix). Moreover, such a product platform could be combined with the ships’ digital asset layers, which would provide a powerful competitive advantage by enabling revenue streams over the life-time of the vessel. In essence, what we are witnessing is a technology shift where there is considerable potential for gaining competitive advantage by rapidly rethinking the way ships are designed, built, operated, and maintained and harnessing the productivity improvements and new business opportunities it entails.
Hence: The role of Åbo Akademi University in the project is to develop the design of a business concept that seizes and leverages the opportunities emerging from the technology shift triggered by electrification, especially in terms of a product-software platform for fully electric short-sea shipping
In addition to contributing to emissions reductions in shipping operations, electrification of ships holds a great potential to radically change the way ships are designed and built (and even opereated). In essence, they would simplify the designs and give rise to more flexible use of space. It is also bound to change the sequence in which equipment are installed on the ship. There are considerable opportunities for establishing dominant designs in this area and establish vessel platforms like the Volkswagens MEB-platform (Modular electric drive matrix). Moreover, such a product platform could be combined with the ships’ digital asset layers, which would provide a powerful competitive advantage by enabling revenue streams over the life-time of the vessel. In essence, what we are witnessing is a technology shift where there is considerable potential for gaining competitive advantage by rapidly rethinking the way ships are designed, built, operated, and maintained and harnessing the productivity improvements and new business opportunities it entails.
Hence: The role of Åbo Akademi University in the project is to develop the design of a business concept that seizes and leverages the opportunities emerging from the technology shift triggered by electrification, especially in terms of a product-software platform for fully electric short-sea shipping
| Akronyymi | FuSE |
|---|---|
| Tila | Päättynyt |
| Todellinen alku/loppupvm | 13/04/23 → 13/04/25 |
Rahoitus
- Business Finland
YK:n kestävän kehityksen tavoitteet
Vuonna 2015 YK:n jäsenvaltiot sopivat 17 maailmanlaajuisesta kestävän kehityksen tavoitteesta (Sustainable Development Goal, SDG) poistamaan köyhyyden, suojelemaan planeettaa ja takaamaan vaurauden kaikille. Tämä projekti edistää seuraavia kestävän kehityksen tavoitteita:
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SDG 7 – Edullinen ja puhdas energia
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SDG 9 – Teollisuus, innovaatiot ja infrastruktuuri
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SDG 13 – Ilmastotoimet
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Kestävän kehityksen tavoite 17 – Yhteistyö ja kumppanuus
Tutkimustuotos
- 1 Artikkeli
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A comparative technoeconomic and life cycle assessment of a fully battery-electric ROPAX ferry
Katumwesigye, A., Schwartz, H., Gustafsson, M. & Hellström, M., jouluk. 2025, julkaisussa: Journal of Cleaner Production. 534, 146935, s. 1 23 Sivumäärä, 146935.Tutkimustuotos: Lehtiartikkeli › Artikkeli › Tieteellinen › vertaisarvioitu
Open accessTiedosto3 Sitaatiot (Scopus)38 Lataukset (Pure)