Performance assessment of a small-size ocean wave energy harvester
A lightweight electromechanical device is studied to harvest energy of ocean waves and supply electrical power to small-size ocean observation equipment such as sonobuoys. It is composed of a magnet fixed to the floating housing which follows the motion of the ocean surface and a moving coil connect...
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2019-01-01
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doaj-e5a619b0471f43f19732eac1edd233f92021-02-02T02:19:48ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012830500610.1051/matecconf/201928305006matecconf_fcac2019_05006Performance assessment of a small-size ocean wave energy harvesterSang Yongjie0Dubus Bertrand1Acoustic Science and Technology Laboratory, Harbin Engineering UniversityIEMN UMR8520, Université de Lille, CNRS, Ecole Centrale de Lille, ISEN, Université de ValenciennesA lightweight electromechanical device is studied to harvest energy of ocean waves and supply electrical power to small-size ocean observation equipment such as sonobuoys. It is composed of a magnet fixed to the floating housing which follows the motion of the ocean surface and a moving coil connected to the case via a flexible spring. As the floating housing follows the vertical motion of water surface, a voltage is induced in the coil due to relative velocity between the coil and the magnet, and kinetic energy of the ocean wave is converted into electrical energy. Full bridge rectifying circuit and smoothing capacitor are used to convert AC voltage to constant voltage. Single degree of freedom electromechanical model of the prototype transducer (LGT-4.5 geophone) is developed and simulated with an electrical circuit software to predict energy harvesting performance. Vibration experiments are also performed with a shaker to validate transducer model and quantify output voltage. Parametric analysis is conducted to identify optimal choice of capacitance in terms of maximum stored energy and minimum charging time. This device is simple and small size relative to ocean wavelength compared to classical linear permanent magnetic generator used in offshore power plant. Its power generation per unit weight is compared to larger scale ocean energy converters.https://www.matec-conferences.org/articles/matecconf/pdf/2019/32/matecconf_fcac2019_05006.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sang Yongjie Dubus Bertrand |
spellingShingle |
Sang Yongjie Dubus Bertrand Performance assessment of a small-size ocean wave energy harvester MATEC Web of Conferences |
author_facet |
Sang Yongjie Dubus Bertrand |
author_sort |
Sang Yongjie |
title |
Performance assessment of a small-size ocean wave energy harvester |
title_short |
Performance assessment of a small-size ocean wave energy harvester |
title_full |
Performance assessment of a small-size ocean wave energy harvester |
title_fullStr |
Performance assessment of a small-size ocean wave energy harvester |
title_full_unstemmed |
Performance assessment of a small-size ocean wave energy harvester |
title_sort |
performance assessment of a small-size ocean wave energy harvester |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2019-01-01 |
description |
A lightweight electromechanical device is studied to harvest energy of ocean waves and supply electrical power to small-size ocean observation equipment such as sonobuoys. It is composed of a magnet fixed to the floating housing which follows the motion of the ocean surface and a moving coil connected to the case via a flexible spring. As the floating housing follows the vertical motion of water surface, a voltage is induced in the coil due to relative velocity between the coil and the magnet, and kinetic energy of the ocean wave is converted into electrical energy. Full bridge rectifying circuit and smoothing capacitor are used to convert AC voltage to constant voltage. Single degree of freedom electromechanical model of the prototype transducer (LGT-4.5 geophone) is developed and simulated with an electrical circuit software to predict energy harvesting performance. Vibration experiments are also performed with a shaker to validate transducer model and quantify output voltage. Parametric analysis is conducted to identify optimal choice of capacitance in terms of maximum stored energy and minimum charging time. This device is simple and small size relative to ocean wavelength compared to classical linear permanent magnetic generator used in offshore power plant. Its power generation per unit weight is compared to larger scale ocean energy converters. |
url |
https://www.matec-conferences.org/articles/matecconf/pdf/2019/32/matecconf_fcac2019_05006.pdf |
work_keys_str_mv |
AT sangyongjie performanceassessmentofasmallsizeoceanwaveenergyharvester AT dubusbertrand performanceassessmentofasmallsizeoceanwaveenergyharvester |
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1724310104571904000 |