Abstrakti
Interest in more sustainable energy sources has increased rapidly in the maritime industry, and ambitious goals have been set for decreasing ship emissions. All industry stakeholders have reacted to this with different approaches including the optimisation of ship power plants, the development of new energy-improving sub-systems for existing solutions, or the design of entirely novel power plant concepts employing alternative fuels. This paper assesses the feasibility of different ship energy sources for an icebreaking Arctic research ship. To that end, possible energy sources are assessed based on fuel, infrastructure availability and operational endurance criteria in the operational area of interest. Promising alternatives are analysed further using the evidence-based Strengths, Weaknesses, Opportunities, and Threats (SWOT) method. Then, a more thorough investigation with respect to the required fuel tank space, life cycle cost, and CO2 emissions is implemented. The results demonstrate that marine diesel oil (MDO) is currently still the most convenient solution due to the space, operational range, and endurance limitations, although it is possible to use liquefied natural gas (LNG) and methanol if the ship’s arrangement is radically redesigned, which will also lead to reduced emissions and life cycle costs. The use of liquefied hydrogen as the only energy solution for the considered vessel was excluded from the potential options due to low volumetric energy density, and high life cycle and capital costs. Even if it is used with MDO for the investigated ship, the reduction in CO2 emissions will not be as significant as for LNG and methanol, at a much higher capital and lifecycle cost. The advantage of the proposed approach is that unrealistic al-ternatives are eliminated in a systematic manner before proceeding to detailed techno-economic analysis, facilitating the decision-making and investigation of various options in a more holistic manner.
| Alkuperäiskieli | Englanti |
|---|---|
| Artikkeli | 2337 |
| Sivumäärä | 32 |
| Julkaisu | Journal of Marine Science and Engineering |
| Vuosikerta | 11 |
| Numero | 12 |
| DOI - pysyväislinkit | |
| Tila | Julkaistu - 11 jouluk. 2023 |
| OKM-julkaisutyyppi | A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä |
YK:n kestävän kehityksen tavoitteet
Tämä tuotos 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
Sormenjälki
Sukella tutkimusaiheisiin 'Selecting Appropriate Energy Source Options for an Arctic Research Ship'. Ne muodostavat yhdessä ainutlaatuisen sormenjäljen.Projektit
- 1 Päättynyt
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GYROSCOPE: Scenarios, risks and opportunities of digital solutions in transition towards green and sustainable marine logistics
Valdez Banda, O. (Vastuullinen johtaja), Bojja, D. (Projektin jäsen), Bolbot, V. (Projektin jäsen), Basnet, S. (Projektin jäsen) & Farokhi, R. (Projektin jäsen)
EU The Recovery and Resilience Facility (RRF)
01/01/2023 → 31/12/2025
Projekti: RCF Academy Project targeted call
Lehtileikkeet
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New Marine Science and Engineering Research from Aalto University Outlined (Selecting Appropriate Energy Source Options for an Arctic Research Ship)
21/12/2023
1 kohde/ Medianäkyvyys
Lehdistö/media: Esiintyminen mediassa
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