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Concept Design of a 15 MW TLP-Type Floating Wind Platform for Korean Offshore Installationopen access

Authors
Boo, Sung YounHa, Yoon-JinShelley, Steffen AllanPark, Ji-YongLim, Chang-HyuckKim, Kyong-Hwan
Issue Date
5월-2024
Publisher
MDPI
Keywords
TLP; floating offshore wind turbine; FOWT; tendon; extreme response analysis; concept design; global performance; design criteria
Citation
JOURNAL OF MARINE SCIENCE AND ENGINEERING, v.12, no.5
Journal Title
JOURNAL OF MARINE SCIENCE AND ENGINEERING
Volume
12
Number
5
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/10623
DOI
10.3390/jmse12050796
ISSN
2077-1312
Abstract
Offshore wind farms on the east offshore of Korea to produce multi-GW power from floating wind platforms are being planned. The objectives of the present study are to develop a new TLP-type floating wind platform with a 15 MW turbine for the planned site and to confirm the feasibility of the TLP design under extreme typhoon environments. The concept design of the 15 MW TLP floating platform was completed for installation at a water depth of 137 m. The platform was vertically moored with highly pretensioned wire rope tendons. The platform and tendons were designed to withstand extreme conditions for up to 50 years. Additionally, a platform with an integrated turbine was designed to be wet-towable from the quayside without dedicated vessels to minimize the pre-service cost and risk. An extreme response analysis was conducted to evaluate the platform motion, acceleration, airgap and tendon tension for wave variation, intact and damaged condition of the tendon, environment heading change, and water level variation. The platform design results were validated using the design criteria from the industry standards and recommendations, and the design was verified to comply with the design requirements for the planned sites.
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