a multi parametric criteria for tidal energy converters siting in marine and fluvial environments

Abstract Marine renewable energy deployment involves site resource assessment as strategic support for installation and optimization. This part of the design needs to be based on best available measurement technologies and deployment methods, minimizing the investments. The siting and design of a ki...

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Published in:Energy Procedia
Main Authors: G.Lo Zupone, S. Massaro, S. Barbarelli, R. Sulpizio
Format: Article in Journal/Newspaper
Language:English
Published: 2018
Subjects:
Online Access:https://www.openaccessrepository.it/record/35146
https://doi.org/10.1016/j.egypro.2017.12.052
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spelling ftopenaccessrep:oai:zenodo.org:35146 2023-05-15T18:28:34+02:00 a multi parametric criteria for tidal energy converters siting in marine and fluvial environments G.Lo Zupone S. Massaro S. Barbarelli R. Sulpizio 2018-01-31 https://www.openaccessrepository.it/record/35146 https://doi.org/10.1016/j.egypro.2017.12.052 eng eng url:https://www.openaccessrepository.it/communities/itmirror https://www.openaccessrepository.it/record/35146 doi:10.1016/j.egypro.2017.12.052 info:eu-repo/semantics/openAccess https://creativecommons.org/licenses/by-nc-nd/4.0/ CC-BY-NC-ND General Energy info:eu-repo/semantics/article publication-article 2018 ftopenaccessrep https://doi.org/10.1016/j.egypro.2017.12.052 2022-11-23T06:45:30Z Abstract Marine renewable energy deployment involves site resource assessment as strategic support for installation and optimization. This part of the design needs to be based on best available measurement technologies and deployment methods, minimizing the investments. The siting and design of a kinetic energy converter (like a Tidal Energy Converter ones) require characterization of the variability of the flow velocity acting on the energy capture area in space and time, in order to assess the hydrodynamic forces, to design the structural loading and power capacity of the TEC, helping investment decisions and project financing. In this work, a site assessment procedures for emplacement of TEC machines are shown, comparing sites with different hydrogeological characteristics using the same design approach. In order to define the best conditions for siting, three case studies have been carried out, two for sea and last for river installation. The strait of Messina (Italy), a marine channel with an amphidromic point for the tides, has its minimum depth at 72 m, between Ganzirri and Punta Pezzo, deepening to 1000 m to the North East and down to 2000 m to the South. The Cook Inlet (Alaska), a large subarctic estuary in South-central Alaska which extends about 250 km from Anchorage bay to the Pacific Ocean. Tidally dominated currents control the hydrographic regime, meanwhile water levels and currents are influenced by tides coming from the Gulf of Alaska, which are significantly amplified as approaching Anchorage bay. The Pearl River Estuary and its adjacent coastal waters (China) have a length of about 70 km, a width of about 15 km and an average depth of about 4.8 m, but it has a depth of more than 20 m in its eastern part. Article in Journal/Newspaper Subarctic Alaska Istituto Nazionale di Fisica Nucleare (INFN): Open Access Repository Anchorage Gulf of Alaska Pacific Anchorage Bay ENVELOPE(-36.817,-36.817,-54.117,-54.117) Energy Procedia 142 328 336
institution Open Polar
collection Istituto Nazionale di Fisica Nucleare (INFN): Open Access Repository
op_collection_id ftopenaccessrep
language English
topic General Energy
spellingShingle General Energy
G.Lo Zupone
S. Massaro
S. Barbarelli
R. Sulpizio
a multi parametric criteria for tidal energy converters siting in marine and fluvial environments
topic_facet General Energy
description Abstract Marine renewable energy deployment involves site resource assessment as strategic support for installation and optimization. This part of the design needs to be based on best available measurement technologies and deployment methods, minimizing the investments. The siting and design of a kinetic energy converter (like a Tidal Energy Converter ones) require characterization of the variability of the flow velocity acting on the energy capture area in space and time, in order to assess the hydrodynamic forces, to design the structural loading and power capacity of the TEC, helping investment decisions and project financing. In this work, a site assessment procedures for emplacement of TEC machines are shown, comparing sites with different hydrogeological characteristics using the same design approach. In order to define the best conditions for siting, three case studies have been carried out, two for sea and last for river installation. The strait of Messina (Italy), a marine channel with an amphidromic point for the tides, has its minimum depth at 72 m, between Ganzirri and Punta Pezzo, deepening to 1000 m to the North East and down to 2000 m to the South. The Cook Inlet (Alaska), a large subarctic estuary in South-central Alaska which extends about 250 km from Anchorage bay to the Pacific Ocean. Tidally dominated currents control the hydrographic regime, meanwhile water levels and currents are influenced by tides coming from the Gulf of Alaska, which are significantly amplified as approaching Anchorage bay. The Pearl River Estuary and its adjacent coastal waters (China) have a length of about 70 km, a width of about 15 km and an average depth of about 4.8 m, but it has a depth of more than 20 m in its eastern part.
format Article in Journal/Newspaper
author G.Lo Zupone
S. Massaro
S. Barbarelli
R. Sulpizio
author_facet G.Lo Zupone
S. Massaro
S. Barbarelli
R. Sulpizio
author_sort G.Lo Zupone
title a multi parametric criteria for tidal energy converters siting in marine and fluvial environments
title_short a multi parametric criteria for tidal energy converters siting in marine and fluvial environments
title_full a multi parametric criteria for tidal energy converters siting in marine and fluvial environments
title_fullStr a multi parametric criteria for tidal energy converters siting in marine and fluvial environments
title_full_unstemmed a multi parametric criteria for tidal energy converters siting in marine and fluvial environments
title_sort multi parametric criteria for tidal energy converters siting in marine and fluvial environments
publishDate 2018
url https://www.openaccessrepository.it/record/35146
https://doi.org/10.1016/j.egypro.2017.12.052
long_lat ENVELOPE(-36.817,-36.817,-54.117,-54.117)
geographic Anchorage
Gulf of Alaska
Pacific
Anchorage Bay
geographic_facet Anchorage
Gulf of Alaska
Pacific
Anchorage Bay
genre Subarctic
Alaska
genre_facet Subarctic
Alaska
op_relation url:https://www.openaccessrepository.it/communities/itmirror
https://www.openaccessrepository.it/record/35146
doi:10.1016/j.egypro.2017.12.052
op_rights info:eu-repo/semantics/openAccess
https://creativecommons.org/licenses/by-nc-nd/4.0/
op_rightsnorm CC-BY-NC-ND
op_doi https://doi.org/10.1016/j.egypro.2017.12.052
container_title Energy Procedia
container_volume 142
container_start_page 328
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