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Feasibility of investment in Blue Growth multiple-use of space and multi-use platform projects; results of a novel assessment approach and case studies

Author

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  • Dalton, Gordon
  • Bardócz, Tamás
  • Blanch, Mike
  • Campbell, David
  • Johnson, Kate
  • Lawrence, Gareth
  • Lilas, Theodore
  • Friis-Madsen, Erik
  • Neumann, Frank
  • Nikitas, Nikitakos
  • Ortega, Saul Torres
  • Pletsas, Dimitris
  • Simal, Pedro Diaz
  • Sørensen, Hans Christian
  • Stefanakou, Afroula
  • Masters, Ian

Abstract

Blue Growth is the creation of economic activity and jobs at sea, while multiple use of space makes efficient use of the available sea area by combining industries. Clearly there are many combinations and many value propositions. However, most technologies to date are considered blue sky concepts, with little robust techno-economic analysis demonstrating profitability.

Suggested Citation

  • Dalton, Gordon & Bardócz, Tamás & Blanch, Mike & Campbell, David & Johnson, Kate & Lawrence, Gareth & Lilas, Theodore & Friis-Madsen, Erik & Neumann, Frank & Nikitas, Nikitakos & Ortega, Saul Torres &, 2019. "Feasibility of investment in Blue Growth multiple-use of space and multi-use platform projects; results of a novel assessment approach and case studies," Renewable and Sustainable Energy Reviews, Elsevier, vol. 107(C), pages 338-359.
  • Handle: RePEc:eee:rensus:v:107:y:2019:i:c:p:338-359
    DOI: 10.1016/j.rser.2019.01.060
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    2. Tucci, Henrricco Nieves Pujol & de Oliveira Neto, Geraldo Cardoso & Rodrigues, Flávio Luiz & Giannetti, Biagio F. & Almeida, Cecília Maria Villa Boas de, 2021. "Six sigma with the blue economy fundamentals to assess the economic and environmental performance in the aircraft refueling process," Renewable and Sustainable Energy Reviews, Elsevier, vol. 150(C).
    3. José Ramos Pires Manso & Rosa M. Martínez Vázquez & Juan Milán García & Jaime de Pablo Valenciano, 2023. "Renewable Energies and Blue Economy: New Trends in Global Research," Energies, MDPI, vol. 16(10), pages 1-15, May.
    4. Stella Sofia Kyvelou & Dimitrios Ierapetritis, 2019. "Discussing and Analyzing “Maritime Cohesion” in MSP, to Achieve Sustainability in the Marine Realm," Sustainability, MDPI, vol. 11(12), pages 1-29, June.
    5. Jianxing Yu & Zhenmian Li & Yang Yu & Shuai Hao & Yiqin Fu & Yupeng Cui & Lixin Xu & Han Wu, 2020. "Design and Performance Assessment of Multi-Use Offshore Tension Leg Platform Equipped with an Embedded Wave Energy Converter System," Energies, MDPI, vol. 13(15), pages 1-21, August.
    6. Kamarlouei, M. & Gaspar, J.F. & Calvario, M. & Hallak, T.S. & Mendes, M.J.G.C. & Thiebaut, F. & Guedes Soares, C., 2022. "Experimental study of wave energy converter arrays adapted to a semi-submersible wind platform," Renewable Energy, Elsevier, vol. 188(C), pages 145-163.
    7. Vanesa Magar & Victor M. Godínez & Markus S. Gross & Manuel López-Mariscal & Anahí Bermúdez-Romero & Julio Candela & Luis Zamudio, 2020. "In-Stream Energy by Tidal and Wind-Driven Currents: An Analysis for the Gulf of California," Energies, MDPI, vol. 13(5), pages 1-16, March.
    8. Fairley, Iain & Lewis, Matthew & Robertson, Bryson & Hemer, Mark & Masters, Ian & Horrillo-Caraballo, Jose & Karunarathna, Harshinie & Reeve, Dominic E., 2020. "A classification system for global wave energy resources based on multivariate clustering," Applied Energy, Elsevier, vol. 262(C).

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