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Computational Fluid Dynamics based Fault Simulations of a Vertical Axis Wind Turbines

机译:基于计算流体力学的垂直轴风力机故障模拟

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摘要

Due to depleting fossil fuels and a rapid increase in the fuel prices globally, the search for alternative energy sources is becoming more and more significant. One of such energy source is the wind energy which can be harnessed with the use of wind turbines. The fundamental principle of wind turbines is to convert the wind energy into first mechanical and then into electrical form. The relatively simple operation of such turbines has stirred the researchers to come up with innovative designs for global acceptance and to make these turbines commercially viable. Furthermore, the maintenance of wind turbines has long been a topic of interest. Condition based monitoring of wind turbines is essential to maintain continuous operation of wind turbines. The present work focuses on the difference in the outputs of a vertical axis wind turbine (VAWT) under different operational conditions. A Computational Fluid Dynamics (CFD) technique has been used for various blade configurations of a VAWT. The results indicate that there is significant degradation in the performance output of wind turbines as the number of blades broken or missing from the VAWT increases. The study predicts the faults in the blades of VAWTs by monitoring its output.
机译:由于化石燃料的枯竭和全球燃料价格的迅速上涨,寻找替代能源的重要性越来越高。这种能源之一是可以通过使用风力涡轮机来利用的风能。风力涡轮机的基本原理是将风能首先转换为机械形式,然后转换为电气形式。这种涡轮机的相对简单的操作激起了研究人员提出的创新设计,以得到全球认可,并使这些涡轮机具有商业可行性。此外,风力涡轮机的维护长期以来一直是人们关注的话题。对风机进行基于状态的监视对于维持风机的连续运行至关重要。本工作着重于在不同运行条件下垂直轴风力发电机(VAWT)的输出差异。计算流体动力学(CFD)技术已用于VAWT的各种叶片配置。结果表明,随着VAWT损坏或丢失的叶片数量增加,风力涡轮机的性能输出会显着下降。该研究通过监视其输出来预测VAWT叶片的故障。

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