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Development and application of a simulator for offshore wind turbine blades installation

机译:海上风机叶片安装模拟器的开发与应用

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摘要

In an offshore environment, offshore wind energy resources are more available and stable, but the investment cost is much higher than that of onshore wind. The installation cost is a crucial factor of the investment. With the increasing number of planned and approved offshore wind farms, offshore wind turbine installation and relevant operations have received tremendous attention. Therefore, expediting the turbine-structure mating operations through a higher level of automation in offshore wind turbine installations may provide important economic benefits. To achieve a higher automation level and reduce the weather waiting time during the installation of offshore wind turbines, a flexible simulation-verification framework with high fidelity is needed. However, state-of-the-art wind turbine numerical analysis code is neither convenient nor open enough for applications concerning the design and verification of control algorithms. MATLAB/Simulink is among the most widely utilized numerical platforms by control engineers and researchers. This paper describes the development of a modularized blade installation simulation toolbox for the purpose of control design in MATLAB/Simulink. The toolbox can be used to simulate several blade installation configurations, both onshore and offshore. The paper presents the key features and equations of the different modules, exemplified by a single blade installation operation. Code-to-code verification results are presented and discussed with both quasi-steady wind and three-dimensional turbulent wind field.
机译:在离岸环境中,离岸风能资源更加稳定,但投资成本却比陆上风能高得多。安装成本是投资的关键因素。随着计划和批准的海上风电场数量的增加,海上风机的安装和相关操作受到了极大的关注。因此,通过海上风力涡轮机装置中更高水平的自动化来加快涡轮机结构的配合操作可能会带来重要的经济利益。为了实现更高的自动化水平并减少海上风机安装过程中的天气等待时间,需要具有高保真度的灵活的模拟验证框架。然而,对于涉及控制算法的设计和验证的应用,最新的风力涡轮机数值分析代码既不方便也不开放。 MATLAB / Simulink是控制工程师和研究人员使用最广泛的数值平台之一。本文介绍了用于MATLAB / Simulink中控制设计目的的模块化刀片安装仿真工具箱的开发。该工具箱可用于模拟陆上和海上的几种叶片安装配置。本文介绍了不同模块的关键特性和方程式,以单个刀片安装操作为例。给出并讨论了准稳态风和三维湍流风场的码对码验证结果。

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