4.5 Article

Global growth in offshore wind turbine technology

期刊

CLEAN TECHNOLOGIES AND ENVIRONMENTAL POLICY
卷 24, 期 7, 页码 2215-2227

出版社

SPRINGER
DOI: 10.1007/s10098-022-02314-0

关键词

Offshore wind energy; Nominal capacity and size; Turbine capacity factor; Offshore wind farm; Specific power capacity

资金

  1. Turkish Scientific and Technological Research Council (TUBITAK) [121O406]

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Due to the commissioning of floating wind units, the latest technological developments, and significant growth in the offshore wind power industry, capacity is expected to increase at a faster rate than the past two decades. This study examines the global growth in offshore wind turbine capacity and size over the last twenty years, investigating the effects on cost and efficiency, as well as changes in installation conditions. The study also explores the impact of this growth on wind farm capacity, turbine quantity, and land area requirements.
Due to the commissioning of floating wind units, the latest technological developments, significant growth, and improvements in turbines, developments in offshore wind power capacity are estimated to increase faster than in the last two decades. The total installed offshore wind power capacity, which is currently 35 GW, is predicted to be approximately 382 GW by 2030 and approximately 2002 GW by 2050. For this reason, attempts are proposed to lower levelized cost of electricity (LCOE) for offshore wind power generation more than for other energy sources. In this study firstly, the global growth in the nominal capacity and size of offshore wind turbines over the last twenty years is examined. Then, the effects of this increase in nominal capacity and size on the LCOE, total installation cost (TIC), and turbine capacity factor are investigated. In parallel with this development, the changes in distance to shore and water depth for installation offshore wind power plants are reviewed according to the years. In addition, the effects of this global growth on wind farm capacity, turbine-specific power capacity, number of turbines per GW, and area needed per GW are investigated and discussed in detail. [GRAPHICS] .

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