Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter

Commercial viability of Wave Energy Converters (WEC) depends on addressing not only the energetic effciency, but also in solving the practical issues related to manufacturing methods, access to technology, handling, transportation and installation, operation and maintenance, impact on marine life...

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Main Author: Rodriguez-Macedo, Julio Cesar
Other Authors: Suleman, Afzal
Format: Others
Language:English
en
Published: 2018
Subjects:
Online Access:https://dspace.library.uvic.ca//handle/1828/8957
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spelling ndltd-uvic.ca-oai-dspace.library.uvic.ca-1828-89572018-01-09T17:09:03Z Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter Rodriguez-Macedo, Julio Cesar Suleman, Afzal Wave Energy Converter Oscillating Water Column Ocean tests Wave Flume Test Check-Valve Commercial viability of Wave Energy Converters (WEC) depends on addressing not only the energetic effciency, but also in solving the practical issues related to manufacturing methods, access to technology, handling, transportation and installation, operation and maintenance, impact on marine life and most importantly the cost per kW-h. The UFCAP WEC is one concept which has the potential to facilitate handling, manufacturing, and installation activities as well as to be able to lower the current wave energy cost per kW-h, however its feasibility had not been properly assessed nor proved. It consists of multiple interconnected Oscillating Water Columns (OWC) chambers, it is modular, and simple, with no-moving parts in contact with the water and can use a simpler one-direction turbine which is more economic, and more effcient than self-rectifying turbines used in most of the OWCs devices. Testing of the device to fully assess its feasibility required a low pressure check-valve, and a customized turbine which were developed during the present work. Check-valves are widely used in the industry for medium or high-pressures, but were not available at all for large-flows with low-pressure-differences. A novel check-valve was devised for this application, along with the scaled UFCAP prototypes developed to be tested in a wave-flume and in the ocean to validate UFCAPs concept feasibility, and identify critical design parameters and features such as the conduit/air-chamber ratio. Ocean tests allowed to observe performance at component and assembly levels, learning new failure-modes and stablishing best-practices for future deployments. Testing confirmed the UFCAP WEC is not only an idea, but a concept which works and can generateing electricity at a competitive cost. Graduate 2018-01-08T15:49:00Z 2018-01-08T15:49:00Z 2017 2018-01-08 Thesis https://dspace.library.uvic.ca//handle/1828/8957 J. Rodriguez and A. Suleman, \Apparatus for converting ocean wave energy into mechanical energy." Canadian Intellectual Property O ce. CA 2692188, 2006. J. Rodriguez, The Unidirectional Flow Collective Air Pumps A Novel Wave Energy Converter. Master of applied science thesis, University of Victoria, 2006. J. Rodriguez \Valvula de retencion de baja presion de apertura." Instituto Mexicano de la propiedad Industrial. Solicitud MX/a/2012/001639. Clasificacion F16K17/00 (2006-01); F16K47/00 (2006-01). Ficha SIGA 5254263. English en Available to the World Wide Web application/pdf
collection NDLTD
language English
en
format Others
sources NDLTD
topic Wave Energy Converter
Oscillating Water Column
Ocean tests
Wave Flume Test
Check-Valve
spellingShingle Wave Energy Converter
Oscillating Water Column
Ocean tests
Wave Flume Test
Check-Valve
Rodriguez-Macedo, Julio Cesar
Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter
description Commercial viability of Wave Energy Converters (WEC) depends on addressing not only the energetic effciency, but also in solving the practical issues related to manufacturing methods, access to technology, handling, transportation and installation, operation and maintenance, impact on marine life and most importantly the cost per kW-h. The UFCAP WEC is one concept which has the potential to facilitate handling, manufacturing, and installation activities as well as to be able to lower the current wave energy cost per kW-h, however its feasibility had not been properly assessed nor proved. It consists of multiple interconnected Oscillating Water Columns (OWC) chambers, it is modular, and simple, with no-moving parts in contact with the water and can use a simpler one-direction turbine which is more economic, and more effcient than self-rectifying turbines used in most of the OWCs devices. Testing of the device to fully assess its feasibility required a low pressure check-valve, and a customized turbine which were developed during the present work. Check-valves are widely used in the industry for medium or high-pressures, but were not available at all for large-flows with low-pressure-differences. A novel check-valve was devised for this application, along with the scaled UFCAP prototypes developed to be tested in a wave-flume and in the ocean to validate UFCAPs concept feasibility, and identify critical design parameters and features such as the conduit/air-chamber ratio. Ocean tests allowed to observe performance at component and assembly levels, learning new failure-modes and stablishing best-practices for future deployments. Testing confirmed the UFCAP WEC is not only an idea, but a concept which works and can generateing electricity at a competitive cost. === Graduate
author2 Suleman, Afzal
author_facet Suleman, Afzal
Rodriguez-Macedo, Julio Cesar
author Rodriguez-Macedo, Julio Cesar
author_sort Rodriguez-Macedo, Julio Cesar
title Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter
title_short Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter
title_full Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter
title_fullStr Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter
title_full_unstemmed Design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter
title_sort design and experimental evaluation of a unidirectional flow collective air pumps wave energy converter
publishDate 2018
url https://dspace.library.uvic.ca//handle/1828/8957
work_keys_str_mv AT rodriguezmacedojuliocesar designandexperimentalevaluationofaunidirectionalflowcollectiveairpumpswaveenergyconverter
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