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Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs

ABSTRACT: The enormous inroads made by renewable energy in recent years have been the key to the development of new technologies designed to obtain energy from a range of resources. Hydrokinetic microturbines used to harness kinetic energy from rivers, tidal and marine currents epitomize such develo...

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Autores principales: Álvarez-Álvarez, Eduardo, Rico-Secades, Manuel, Fernández-Jiménez, Aitor, Espina-Valdés, Rodolfo, Corominas, E. L., Calleja-Rodríguez, Antonio J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455786/
https://www.ncbi.nlm.nih.gov/pubmed/32904530
http://dx.doi.org/10.1007/s10098-020-01924-w
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author Álvarez-Álvarez, Eduardo
Rico-Secades, Manuel
Fernández-Jiménez, Aitor
Espina-Valdés, Rodolfo
Corominas, E. L.
Calleja-Rodríguez, Antonio J.
author_facet Álvarez-Álvarez, Eduardo
Rico-Secades, Manuel
Fernández-Jiménez, Aitor
Espina-Valdés, Rodolfo
Corominas, E. L.
Calleja-Rodríguez, Antonio J.
author_sort Álvarez-Álvarez, Eduardo
collection PubMed
description ABSTRACT: The enormous inroads made by renewable energy in recent years have been the key to the development of new technologies designed to obtain energy from a range of resources. Hydrokinetic microturbines used to harness kinetic energy from rivers, tidal and marine currents epitomize such developments. As the reservoir is dispensed with, the water footprint normally associated with conventional hydroelectric generation is minimized. The new prototypes being developed require laboratories with water tunnel infrastructures where they can be accurately reproduced under controlled conditions. However, the construction of a water tunnel demands considerable investment, which prevents many research groups from completing their prototype design work. This paper charts the design of a low-cost hydrodynamic water tunnel at the University of Oviedo, indicating the mechanical and electronic elements as well as the software developments that make up the facility. This construction is a part of a research strategy focused on making the study of new hydrokinetic microturbines designs economically feasible. Moreover, it includes a description of a special software application used to perform the characterization of a hydrokinetic microturbine model in the water tunnel and a demonstration of the scope of the facility in the experimental study of a unit with a Darrieus rotor. GRAPHIC ABSTRACT: [Image: see text]
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spelling pubmed-74557862020-08-31 Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs Álvarez-Álvarez, Eduardo Rico-Secades, Manuel Fernández-Jiménez, Aitor Espina-Valdés, Rodolfo Corominas, E. L. Calleja-Rodríguez, Antonio J. Clean Technol Environ Policy Original Paper ABSTRACT: The enormous inroads made by renewable energy in recent years have been the key to the development of new technologies designed to obtain energy from a range of resources. Hydrokinetic microturbines used to harness kinetic energy from rivers, tidal and marine currents epitomize such developments. As the reservoir is dispensed with, the water footprint normally associated with conventional hydroelectric generation is minimized. The new prototypes being developed require laboratories with water tunnel infrastructures where they can be accurately reproduced under controlled conditions. However, the construction of a water tunnel demands considerable investment, which prevents many research groups from completing their prototype design work. This paper charts the design of a low-cost hydrodynamic water tunnel at the University of Oviedo, indicating the mechanical and electronic elements as well as the software developments that make up the facility. This construction is a part of a research strategy focused on making the study of new hydrokinetic microturbines designs economically feasible. Moreover, it includes a description of a special software application used to perform the characterization of a hydrokinetic microturbine model in the water tunnel and a demonstration of the scope of the facility in the experimental study of a unit with a Darrieus rotor. GRAPHIC ABSTRACT: [Image: see text] Springer Berlin Heidelberg 2020-08-29 2020 /pmc/articles/PMC7455786/ /pubmed/32904530 http://dx.doi.org/10.1007/s10098-020-01924-w Text en © Springer-Verlag GmbH Germany, part of Springer Nature 2020 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Original Paper
Álvarez-Álvarez, Eduardo
Rico-Secades, Manuel
Fernández-Jiménez, Aitor
Espina-Valdés, Rodolfo
Corominas, E. L.
Calleja-Rodríguez, Antonio J.
Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs
title Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs
title_full Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs
title_fullStr Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs
title_full_unstemmed Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs
title_short Hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs
title_sort hydrodynamic water tunnel for characterization of hydrokinetic microturbines designs
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455786/
https://www.ncbi.nlm.nih.gov/pubmed/32904530
http://dx.doi.org/10.1007/s10098-020-01924-w
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