A Multi-Factorial Review of Repowering Wind Generation Strategies

Author:

Gil-García Isabel C.ORCID,Fernández-Guillamón AnaORCID,García-Cascales M. SocorroORCID,Molina-García AngelORCID

Abstract

The integration of renewables into power systems is a key transformation for mitigating climate change and reducing fossil-fuel dependence. Among the different resources, wind participation has become crucial in recent decades—both onshore and offshore wind power plants. However, assuming the useful life of the wind turbines at approximately 20 years, different solutions should be discussed to overcome the turbine’s aging problem. In the coming years, some countries within the wind sector will face the decision of partially or totally repowering or dismantling their turbines. This paper reviews different repowering strategies and contributions from a multifactorial perspective. A set of categories is defined by the authors and those multifactorial parameters are then classified according to such categories: technical, economic, environmental, social, and political. From each category, the most relevant factors to be considered for repowering decision-making purposes are identified and discussed. According to the specific literature, more than 90% of the reviewed contributions are focused on onshore wind power plant repowering actions. This percentage is in line with onshore and offshore wind generation units installed in recent decades. The reviewed studies show that Germany has a major number of contributions. Regarding offshore repowering strategies, all contributions propose a multifactorial analysis, in contrast to onshore repowering strategies where only 68% of the authors carry out a multifactorial analysis. The revised repowering methodologies and the categorization of factors can also be used by the repowering market, as a useful tool in the near future.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

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1. Multi-factorial methodology for Wind Power Plant repowering optimization: A Spanish case study;Energy Reports;2024-06

2. Life cycle cost modelling and economic analysis of wind power: A state of art review;Energy Conversion and Management;2023-02

3. Dynamics of Electricity Consumption in the Context of the COVID-19 Pandemic;XV International Scientific Conference “INTERAGROMASH 2022”;2023

4. Assessment of different end-of-life strategies for wind power plants under uncertainty;Energy Conversion and Management;2022-10

5. A Novel Multi-Criteria Decision-Making Method for Wind Power Plant Repowering;2022 IEEE International Conference on Environment and Electrical Engineering and 2022 IEEE Industrial and Commercial Power Systems Europe (EEEIC / I&CPS Europe);2022-06-28

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