2022
DOI: 10.1016/j.apenergy.2022.119341
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Systematic analysis of performance and cost of two floating offshore wind turbines with significant interactions

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Cited by 30 publications
(3 citation statements)
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“…The highly consistent wind velocity and direction will minimize both low-(<5 m/s) and high-peak (>25 m/s) wind cut-out time and improve turbine operating capacities. 37 They further suggest that installing deep-water and floating turbine technologies 38 around Kerguelen could substantially drive the potential wind energy output well above this conservative estimate.…”
Section: Wind Resources In Kerguelenmentioning
confidence: 99%
“…The highly consistent wind velocity and direction will minimize both low-(<5 m/s) and high-peak (>25 m/s) wind cut-out time and improve turbine operating capacities. 37 They further suggest that installing deep-water and floating turbine technologies 38 around Kerguelen could substantially drive the potential wind energy output well above this conservative estimate.…”
Section: Wind Resources In Kerguelenmentioning
confidence: 99%
“…A total of 23 floating wind projects were installed over the world within 5 years; e.g. Yinling Hao demonstration project in Guangdong, China in 2021; WindFloat Atlantic wind farm in Portugal in 2020; and Hywind Tampen floating wind farm planned in Norway by 2022 [5][6][7][8]. However, the floating wind turbines installed in deep ocean experience severe environment than those located near shore or onshore.…”
Section: Introductionmentioning
confidence: 99%
“…One of the most critical components that can fail in a wind turbine are the bearings, blades, and gears. Ofshore wind farms must detect and diagnose faults early if they are to be stopped in case of problems, especially those that have high repair and maintenance costs, especially if they are ofshore [5]. As well as minimizing downtime and defect costs, maintenance activities must be managed efciently.…”
Section: Introductionmentioning
confidence: 99%