Integrated tidal marine turbine for power generation with coastal erosion breakwater

Malaysia experiences predictable tides year round. Areas with the greatest potential are Terengganu and Sarawak waters with average annual power generation between 2.8kW/m to 8.6kW/m. This condition gives excellent opportunity to explore power generation using tidal energy converters by utilization...

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Main Authors: Husain, M. K. A., Zaki, N. I. M., Husin, S. M. C., Mukhlas, N. A., Ahmad, S. Z. A.S., Husain, N. A., Rashidi, A. H. M.
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Published: IAEME Publication 2019
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Online Access:http://eprints.utm.my/id/eprint/88856/
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spelling my.utm.888562020-12-29T04:38:36Z http://eprints.utm.my/id/eprint/88856/ Integrated tidal marine turbine for power generation with coastal erosion breakwater Husain, M. K. A. Zaki, N. I. M. Husin, S. M. C. Mukhlas, N. A. Ahmad, S. Z. A.S. Husain, N. A. Rashidi, A. H. M. T Technology (General) Malaysia experiences predictable tides year round. Areas with the greatest potential are Terengganu and Sarawak waters with average annual power generation between 2.8kW/m to 8.6kW/m. This condition gives excellent opportunity to explore power generation using tidal energy converters by utilization of stand-alone marine facilities such as breakwater with the tidal stream energy. The tidal energy converter is a device that converts the energy in a flow of fluid into mechanical energy by passing the stream through a system of fixed and moving fan like blades. The power output is dependent on its design characteristics, which covers the turbine specification and the met-ocean environmental condition. Hence, this paper focused on the conceptual design of the integrated marine turbine mounted on wave breakwater known as WABCORE. The proposed marine turbine was installed in the breakwater and the generated energy was estimated based on the performance analysis through Finite Element Analysis (FEA) and ANSYS Fluent Computational Fluid Dynamics (Fluent CFD) simulations. It was found that a maximum power output of 30 Watts could be generated by horizontal-axis axial-flow marine turbine with excellent venturi-effect of piping design that provided significant contribution on power generation. IAEME Publication 2019 Article PeerReviewed Husain, M. K. A. and Zaki, N. I. M. and Husin, S. M. C. and Mukhlas, N. A. and Ahmad, S. Z. A.S. and Husain, N. A. and Rashidi, A. H. M. (2019) Integrated tidal marine turbine for power generation with coastal erosion breakwater. International Journal of Civil Engineering and Technology, 10 (28). pp. 1277-1293. ISSN 0976-6308 https://www-scopus-com.ezproxy.utm.my/record/display.uri?eid=2-s2.0-85063560066&origin=resultslist&sort=plf-f&src=s&st1=
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T Technology (General)
spellingShingle T Technology (General)
Husain, M. K. A.
Zaki, N. I. M.
Husin, S. M. C.
Mukhlas, N. A.
Ahmad, S. Z. A.S.
Husain, N. A.
Rashidi, A. H. M.
Integrated tidal marine turbine for power generation with coastal erosion breakwater
description Malaysia experiences predictable tides year round. Areas with the greatest potential are Terengganu and Sarawak waters with average annual power generation between 2.8kW/m to 8.6kW/m. This condition gives excellent opportunity to explore power generation using tidal energy converters by utilization of stand-alone marine facilities such as breakwater with the tidal stream energy. The tidal energy converter is a device that converts the energy in a flow of fluid into mechanical energy by passing the stream through a system of fixed and moving fan like blades. The power output is dependent on its design characteristics, which covers the turbine specification and the met-ocean environmental condition. Hence, this paper focused on the conceptual design of the integrated marine turbine mounted on wave breakwater known as WABCORE. The proposed marine turbine was installed in the breakwater and the generated energy was estimated based on the performance analysis through Finite Element Analysis (FEA) and ANSYS Fluent Computational Fluid Dynamics (Fluent CFD) simulations. It was found that a maximum power output of 30 Watts could be generated by horizontal-axis axial-flow marine turbine with excellent venturi-effect of piping design that provided significant contribution on power generation.
format Article
author Husain, M. K. A.
Zaki, N. I. M.
Husin, S. M. C.
Mukhlas, N. A.
Ahmad, S. Z. A.S.
Husain, N. A.
Rashidi, A. H. M.
author_facet Husain, M. K. A.
Zaki, N. I. M.
Husin, S. M. C.
Mukhlas, N. A.
Ahmad, S. Z. A.S.
Husain, N. A.
Rashidi, A. H. M.
author_sort Husain, M. K. A.
title Integrated tidal marine turbine for power generation with coastal erosion breakwater
title_short Integrated tidal marine turbine for power generation with coastal erosion breakwater
title_full Integrated tidal marine turbine for power generation with coastal erosion breakwater
title_fullStr Integrated tidal marine turbine for power generation with coastal erosion breakwater
title_full_unstemmed Integrated tidal marine turbine for power generation with coastal erosion breakwater
title_sort integrated tidal marine turbine for power generation with coastal erosion breakwater
publisher IAEME Publication
publishDate 2019
url http://eprints.utm.my/id/eprint/88856/
https://www-scopus-com.ezproxy.utm.my/record/display.uri?eid=2-s2.0-85063560066&origin=resultslist&sort=plf-f&src=s&st1=
_version_ 1687393631600640000
score 13.209306