Multi-use offshore platforms (MUPs) combining renewable energy from the sea, aquaculture and transportation facilities can be considered as a challenging way to boost blue growth and make renewable energy (especially wave energy) environmentally and socio-economically sustainable. MUPs allow sharing the financial and other market/non-market costs of installation and management, locally using the produced energy for different functionalities and optimizing marine spatial planning. The design of these solutions is a complex interdisciplinary challenge, involving scientists and technical experts with different backgrounds. This paper presents a new methodology for the design of a MUP based on technical, environmental, social and economic criteria. The methodology consists of four steps: a pre-screening phase, to assess the feasibility of different maritime uses at the site; a preliminary design of the alternative schemes based on the identified maritime uses; a ranking phase, where the performance of the MUPs is scored by means of expert judgment of the selected criteria; a preliminary design of the selected MUP selected. An example application of this procedure to a site offshore the Western Sardinia coast, Mediterranean Sea, Italy, is provided. In this site the deployment of a MUP consisting of wave energy converters, offshore wind turbines and aquaculture is specifically investigated.

Zanuttigh, B., Angelelli, E., Kortenhaus, A., Koca, K. (2016). A methodology for multi-criteria design of multi-use offshore platforms for marine renewable energy harvesting. RENEWABLE ENERGY, 85, 1271-1289 [10.1016/j.renene.2015.07.080].

A methodology for multi-criteria design of multi-use offshore platforms for marine renewable energy harvesting

ZANUTTIGH, BARBARA;ANGELELLI, ELISA;
2016

Abstract

Multi-use offshore platforms (MUPs) combining renewable energy from the sea, aquaculture and transportation facilities can be considered as a challenging way to boost blue growth and make renewable energy (especially wave energy) environmentally and socio-economically sustainable. MUPs allow sharing the financial and other market/non-market costs of installation and management, locally using the produced energy for different functionalities and optimizing marine spatial planning. The design of these solutions is a complex interdisciplinary challenge, involving scientists and technical experts with different backgrounds. This paper presents a new methodology for the design of a MUP based on technical, environmental, social and economic criteria. The methodology consists of four steps: a pre-screening phase, to assess the feasibility of different maritime uses at the site; a preliminary design of the alternative schemes based on the identified maritime uses; a ranking phase, where the performance of the MUPs is scored by means of expert judgment of the selected criteria; a preliminary design of the selected MUP selected. An example application of this procedure to a site offshore the Western Sardinia coast, Mediterranean Sea, Italy, is provided. In this site the deployment of a MUP consisting of wave energy converters, offshore wind turbines and aquaculture is specifically investigated.
2016
Zanuttigh, B., Angelelli, E., Kortenhaus, A., Koca, K. (2016). A methodology for multi-criteria design of multi-use offshore platforms for marine renewable energy harvesting. RENEWABLE ENERGY, 85, 1271-1289 [10.1016/j.renene.2015.07.080].
Zanuttigh, Barbara; Angelelli, Elisa; Kortenhaus, Andreas; Koca, Kaan
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/515712
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