Development of a Framework for Wind Turbine Design and Optimization

M. Leimeister, A. Kolios, M. Collu
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引用次数: 14

Abstract

Dimensioning and assessment of a specific wind turbine imply iterative steps for design optimization, as well as load calculations and performance analyses of the system in various environmental conditions. However, due to the complexity of wind turbine systems, fully coupled aero-hydro-servo-elastic codes are indispensable to represent and simulate the non-linear system behavior. To cope with the large number of simulations to be performed during the design process of a wind turbine system, automation of simulation executions and optimization procedures are required. In this paper, such a holistic simulation and optimization framework is presented, by which means iterative simulations within the wind turbine design assessment and development processes can be managed and executed in an automated and high-performance manner. The focus lies on the application to design load case simulations, as well as the realization of automated optimizations. The proper functioning and the high flexibility of the framework tool is shown based on three exemplary optimization tasks.
风力发电机设计与优化框架的开发
特定风力涡轮机的尺寸和评估意味着设计优化的迭代步骤,以及系统在各种环境条件下的负载计算和性能分析。然而,由于风力发电机组系统的复杂性,必须采用完全耦合的气动-液压-伺服-弹性代码来表示和模拟系统的非线性行为。为了应对在风力发电系统设计过程中需要执行的大量仿真,需要实现仿真执行和优化程序的自动化。本文提出了这样一个整体的仿真和优化框架,通过该框架,可以以自动化和高性能的方式管理和执行风力涡轮机设计评估和开发过程中的迭代仿真。重点在于应用程序来设计负载情况模拟,以及实现自动优化。基于三个示例性优化任务,展示了框架工具的正常功能和高度灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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