Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Tidal and flow energy"'
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 14, Pp 3206-3219 (2021)
Abstract A plate‐wave energy converter (pWEC) moored in front of a floating stationary breakwater is considered. The pWEC is composed of a submerged flexible plate with piezoelectric layers bonded to both faces of it. Hence the elastic motion of th
Externí odkaz:
https://doaj.org/article/25fa9af172c845f3ae81e86bcf972531
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 14, Pp 3409-3423 (2021)
Abstract In this study, the design requirements for a regional wave energy converter are identified from the analysis of 10 years of spectral data provided by nine buoys located across the Caribbean. It indicated that the average significant wave hei
Externí odkaz:
https://doaj.org/article/241cea8c5abb432fa9d04c4dac9de818
Autor:
Andrei Ermakov, John V. Ringwood
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 14, Pp 3091-3108 (2021)
Abstract This review studies some of the existing ideas which create a fundamentally new direction for wave energy converter (WEC) development, obtaining energy from the elliptical motion of particles in water waves using a rotor. The review focuses
Externí odkaz:
https://doaj.org/article/1718a121a0784b69827e6b97719be95a
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 14, Pp 3472-3484 (2021)
Abstract Based on the concept of cost sharing, an oscillating buoy wave energy converter‐ floating breakwater integrated system is proposed, in which the surge or pitch motion of the front‐pontoon equipped with Power Take‐off (PTO) system is al
Externí odkaz:
https://doaj.org/article/37ccca0159fd47e3acd36f7083c98db8
Autor:
Anna Garcia‐Teruel, Caitlyn E. Clark
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 14, Pp 3255-3268 (2021)
Abstract Recent studies have focused on optimising wave energy converter (WEC) designs, maximising their power performance and techno‐economic feasibility. Reliability has yet to be fully considered in these formulations, despite its impact on cost
Externí odkaz:
https://doaj.org/article/d36f02c108004dc6b9552bfe6e972a0c
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 14, Pp 3341-3353 (2021)
Abstract Climate change “fuelled” by anthropogenic causes has been identified as the greatest threat faced by societies. In this respect, the roadmap to a “greener” generation mix certainly includes a greater heterogeneity in terms of renewab
Externí odkaz:
https://doaj.org/article/ba90922d047b4f16b8d8e0b8bae6ce22
Autor:
Chenhua Ni
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 10, Pp 2228-2236 (2021)
Abstract In order to integrate wave farms into the grid, the power from wave energy converters (WEC) must be forecasted. This study presents a novel data‐driven modelling (DDM) method to predict very short‐term (15 min–4 h) and short‐term (0
Externí odkaz:
https://doaj.org/article/23a9489f0a3543cf9ac783b4790344d0
Autor:
Julio Cezar Souza Vasconcelos, Gauss Moutinho Cordeiro, Edwin Moises Marcos Ortega, João Gabriel Ribeiro
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 2, Pp 452-461 (2021)
Abstract The application of the theory of extreme values has been growing due to increasing interest in extreme natural events. Many articles on extreme values in data modelling consider unimodal data. This work introduces an appropriate regression f
Externí odkaz:
https://doaj.org/article/85422929b4b1402cb040ecc989285cd5
Autor:
Marcos Blanco, Miguel Santos‐Herran, Gustavo Navarro, Jorge Torres, Jorge Najera, Isabel Villaba, Marcos Lafoz, Dionisio Ramírez
Publikováno v:
IET Renewable Power Generation, Vol 15, Iss 3, Pp 548-561 (2021)
Abstract A methodology to automate the sizing of a wave energy converter (WEC) is presented. The preliminary design of WEC geometry is addressed as a mathematical program by means of a meta‐heuristic optimisation, which includes as key aspects the
Externí odkaz:
https://doaj.org/article/9ec60bc75add4429b831265745bac06d
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