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Concept of flexible vertical-axis wind turbine with numerical simulation and shape optimization

机译:具有数值模拟和形状优化的柔性垂直轴风力发电机的概念

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摘要

Vertical-axis wind turbines (VAWT) are becoming popular solutions for electric power generation. Among them, Savonius-type VAWTs have low rotational speed, reduced noise and ability to self-start, but their disadvantage is the low energy conversion efficiency. This paper investigates a novel VAWT concept and whether it can provide a higher energy conversion efficiency. The novel concept is a Savonius-type VAWT with flexible blades that change their shape passively due to aerodynamic and blade inertial forces during rotation. An initial design was optimized by a customized shape optimization workflow based on genetic algorithms. The blade design evaluation was performed by CFD model with two-way fluid-structure interaction. The optimization objective was to determine the optimal blade shape, thickness distribution and location of the blade support arms by maximizing the power coefficient and keeping structural stresses below the design limit. The results show that 8% improvement of the power coefficient is possible while keeping the structural stress within the design limit. A detailed performance analysis in the paper shows that there is potential for further optimization considering annual energy production for a selected location. For that purpose, the proposed optimization workflow can serve as a tool for development of future designs. (C) 2018 Elsevier Ltd. All rights reserved.
机译:垂直轴风力涡轮机(VAWT)成为流行的发电解决方案。其中,Savonius型VAWT具有低转速,低噪音和自启动能力,但缺点是能量转换效率低。本文研究了一种新颖的VAWT概念及其是否可以提供更高的能量转换效率。新颖的概念是具有柔性叶片的Savonius型VAWT,该叶片在旋转过程中由于空气动力和叶片惯性力而被动地改变其形状。初始设计通过基于遗传算法的定制形状优化工作流程进行了优化。叶片设计评估是通过具有双向流固耦合的CFD模型进行的。优化目标是通过最大化功率系数并将结构应力保持在设计极限以下,以确定最佳的叶片形状,厚度分布和叶片支撑臂的位置。结果表明,在将结构应力保持在设计极限范围内的同时,可以将功率系数提高8%。本文中详细的性能分析表明,考虑到选定位置的年度能源生产,有可能进行进一步优化。为此,建议的优化工作流程可以用作开发未来设计的工具。 (C)2018 Elsevier Ltd.保留所有权利。

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