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- W4313372650 abstract "Numerical modeling and simulation, as well as optimization approaches, are required to deal with the significant complexity, workload, and comprehensiveness associated with developing and evaluating design concepts for floating offshore wind turbines. Thus, in this chapter, a numerical model of dynamics, which uses Modelica® as the modeling language, represents the aero-hydro-servo-elastic couplings, and is highly flexible with respect to the modeled wind turbine system and conditions as well as its application options, is developed. To ensure that the multi-physics are correctly implemented, the developed engineering model is verified through code-to-code comparison. Having demonstrated the capability of the developed model to perform fully coupled floating wind turbine system simulations, the complex process of developing engineering systems, which includes sophisticated optimizations and iterative simulations, is further addressed. Thus, a highly flexible and multifunctional simulation and optimization framework is developed, allowing for automated and high-performance management and execution of iterative simulations throughout the wind turbine design process and detailed assessment steps. The structure of this framework enables the application of very advanced optimization tools, allowing addressing of a variety of optimization tasks and multi-objective problems. Additionally, the created framework may be used for automatic simulation execution, which is particularly beneficial when dealing with the numerous simulation scenarios that are part of the design load cases required by standards." @default.
- W4313372650 created "2023-01-06" @default.
- W4313372650 creator A5083148483 @default.
- W4313372650 date "2022-01-01" @default.
- W4313372650 modified "2023-10-16" @default.
- W4313372650 title "Modeling, Automated Simulation, and Optimization" @default.
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- W4313372650 doi "https://doi.org/10.1007/978-3-030-96889-2_4" @default.
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