Hydrodynamic induced by an array of wave energy converters. Experimental and numerical analysis
The thesis analyses the hydrodynamic induced by an array of Wave energy Converters (WECs), under an experimental and numerical point of view. WECs can be considered an innovative solution able to contribute to the green energy supply and –at the same time– to protect the rear coastal area under mar...
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ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-66322015-04-01T04:59:03Z Hydrodynamic induced by an array of wave energy converters. Experimental and numerical analysis Angelelli, Elisa <1985> ICAR/01 Idraulica The thesis analyses the hydrodynamic induced by an array of Wave energy Converters (WECs), under an experimental and numerical point of view. WECs can be considered an innovative solution able to contribute to the green energy supply and –at the same time– to protect the rear coastal area under marine spatial planning considerations. This research activity essentially rises due to this combined concept. The WEC under exam is a floating device belonging to the Wave Activated Bodies (WAB) class. Experimental data were performed at Aalborg University in different scales and layouts, and the performance of the models was analysed under a variety of irregular wave attacks. The numerical simulations performed with the codes MIKE 21 BW and ANSYS-AQWA. Experimental results were also used to calibrate the numerical parameters and/or to directly been compared to numerical results, in order to extend the experimental database. Results of the research activity are summarized in terms of device performance and guidelines for a future wave farm installation. The device length should be “tuned” based on the local climate conditions. The wave transmission behind the devices is pretty high, suggesting that the tested layout should be considered as a module of a wave farm installation. Indications on the minimum inter-distance among the devices are provided. Furthermore, a CALM mooring system leads to lower wave transmission and also larger power production than a spread mooring. The two numerical codes have different potentialities. The hydrodynamics around single and multiple devices is obtained with MIKE 21 BW, while wave loads and motions for a single moored device are derived from ANSYS-AQWA. Combining the experimental and numerical it is suggested –for both coastal protection and energy production– to adopt a staggered layout, which will maximise the devices density and minimize the marine space required for the installation. Alma Mater Studiorum - Università di Bologna Zanuttigh, Barbara 2014-05-19 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/6632/ info:eu-repo/semantics/openAccess |
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ICAR/01 Idraulica Angelelli, Elisa <1985> Hydrodynamic induced by an array of wave energy converters. Experimental and numerical analysis |
description |
The thesis analyses the hydrodynamic induced by an array of Wave energy Converters (WECs), under an experimental and numerical point of view. WECs can be considered an innovative solution able to contribute to the green energy supply and –at the same time– to protect the rear coastal area under marine spatial planning considerations. This research activity essentially rises due to this combined concept.
The WEC under exam is a floating device belonging to the Wave Activated Bodies (WAB) class.
Experimental data were performed at Aalborg University in different scales and layouts, and the performance of the models was analysed under a variety of irregular wave attacks.
The numerical simulations performed with the codes MIKE 21 BW and ANSYS-AQWA. Experimental results were also used to calibrate the numerical parameters and/or to directly been compared to numerical results, in order to extend the experimental database.
Results of the research activity are summarized in terms of device performance and guidelines for a future wave farm installation. The device length should be “tuned” based on the local climate conditions. The wave transmission behind the devices is pretty high, suggesting that the tested layout should be considered as a module of a wave farm installation. Indications on the minimum inter-distance among the devices are provided. Furthermore, a CALM mooring system leads to lower wave transmission and also larger power production than a spread mooring. The two numerical codes have different potentialities. The hydrodynamics around single and multiple devices is obtained with MIKE 21 BW, while wave loads and motions for a single moored device are derived from ANSYS-AQWA.
Combining the experimental and numerical it is suggested –for both coastal protection and energy production– to adopt a staggered layout, which will maximise the devices density and minimize the marine space required for the installation.
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author2 |
Zanuttigh, Barbara |
author_facet |
Zanuttigh, Barbara Angelelli, Elisa <1985> |
author |
Angelelli, Elisa <1985> |
author_sort |
Angelelli, Elisa <1985> |
title |
Hydrodynamic induced by an array of wave energy converters.
Experimental and numerical analysis |
title_short |
Hydrodynamic induced by an array of wave energy converters.
Experimental and numerical analysis |
title_full |
Hydrodynamic induced by an array of wave energy converters.
Experimental and numerical analysis |
title_fullStr |
Hydrodynamic induced by an array of wave energy converters.
Experimental and numerical analysis |
title_full_unstemmed |
Hydrodynamic induced by an array of wave energy converters.
Experimental and numerical analysis |
title_sort |
hydrodynamic induced by an array of wave energy converters.
experimental and numerical analysis |
publisher |
Alma Mater Studiorum - Università di Bologna |
publishDate |
2014 |
url |
http://amsdottorato.unibo.it/6632/ |
work_keys_str_mv |
AT angelellielisa1985 hydrodynamicinducedbyanarrayofwaveenergyconvertersexperimentalandnumericalanalysis |
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1716800182058745856 |