Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP Members

The paper investigates overview of construction process of a 1 MW class floating photovoltaic (PV) generation structural system fabricated with fiber reinforced polymer (FRP) members. The floating PV generation system consists of unit structures linked by a hinge type connection of which the effect...

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Main Authors: Sun-Hee Kim, Soon-Jong Yoon, Wonchang Choi
Format: Article
Language:English
Published: MDPI AG 2017-08-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/10/8/1142
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spelling doaj-dc829a1714c6426783fa1ab4663356c52020-11-25T00:55:09ZengMDPI AGEnergies1996-10732017-08-01108114210.3390/en10081142en10081142Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP MembersSun-Hee Kim0Soon-Jong Yoon1Wonchang Choi2Department of Architectural Engineering, Gachon University, Seongnam 13120, KoreaDepartment of Civil Engineering, Hongik University, Seoul 04066, KoreaDepartment of Architectural Engineering, Gachon University, Seongnam 13120, KoreaThe paper investigates overview of construction process of a 1 MW class floating photovoltaic (PV) generation structural system fabricated with fiber reinforced polymer (FRP) members. The floating PV generation system consists of unit structures linked by a hinge type connection of which the effect of bending moment between the unit structures, induced by the unstable movement of the water surface, was minimized. Moreover, the unit structures were classified into three types of structures by combining the floating PV generation system and pontoon bridges, which are constructed to install the electrical equipment and a route of movement for workers. The structural safety of the connection system among the unit structures and/or the mooring system is confirmed by referring to the relevant design codes. In addition, structural analysis using the finite element method was performed to ensure the safety of the floating PV generation structure, and commercial viability evaluation was performed based on the construction cost. The FRP member shows superior performance in construction and cost effectiveness in a floating PV generation system.https://www.mdpi.com/1996-1073/10/8/1142floating PV generation structurefiber reinforced polymeric plastic (FRP)pultruded FRPsheet molding compound FRPstructural designmooring system
collection DOAJ
language English
format Article
sources DOAJ
author Sun-Hee Kim
Soon-Jong Yoon
Wonchang Choi
spellingShingle Sun-Hee Kim
Soon-Jong Yoon
Wonchang Choi
Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP Members
Energies
floating PV generation structure
fiber reinforced polymeric plastic (FRP)
pultruded FRP
sheet molding compound FRP
structural design
mooring system
author_facet Sun-Hee Kim
Soon-Jong Yoon
Wonchang Choi
author_sort Sun-Hee Kim
title Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP Members
title_short Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP Members
title_full Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP Members
title_fullStr Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP Members
title_full_unstemmed Design and Construction of 1 MW Class Floating PV Generation Structural System Using FRP Members
title_sort design and construction of 1 mw class floating pv generation structural system using frp members
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2017-08-01
description The paper investigates overview of construction process of a 1 MW class floating photovoltaic (PV) generation structural system fabricated with fiber reinforced polymer (FRP) members. The floating PV generation system consists of unit structures linked by a hinge type connection of which the effect of bending moment between the unit structures, induced by the unstable movement of the water surface, was minimized. Moreover, the unit structures were classified into three types of structures by combining the floating PV generation system and pontoon bridges, which are constructed to install the electrical equipment and a route of movement for workers. The structural safety of the connection system among the unit structures and/or the mooring system is confirmed by referring to the relevant design codes. In addition, structural analysis using the finite element method was performed to ensure the safety of the floating PV generation structure, and commercial viability evaluation was performed based on the construction cost. The FRP member shows superior performance in construction and cost effectiveness in a floating PV generation system.
topic floating PV generation structure
fiber reinforced polymeric plastic (FRP)
pultruded FRP
sheet molding compound FRP
structural design
mooring system
url https://www.mdpi.com/1996-1073/10/8/1142
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AT soonjongyoon designandconstructionof1mwclassfloatingpvgenerationstructuralsystemusingfrpmembers
AT wonchangchoi designandconstructionof1mwclassfloatingpvgenerationstructuralsystemusingfrpmembers
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