基于振动分析的风力机组合机械缺陷检测

Q3 Earth and Planetary Sciences
Issam Harida, A. Bouras, Rabah Boudiaf
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引用次数: 0

摘要

风能是由风的动力产生的可再生能源。它经历了最大的扩张,最重要的是,它对环境的影响很小,成本逐渐降低,生产出清洁、有竞争力和经济上可行的能源。为了确保产生的能量的稳定性,许多研究正在努力开发一种基于新的在线诊断技术的可靠维护流程,该技术快速准确,并针对风力涡轮机系统进行了优化。为此,在基于发电机的风电系统上进行了一项实验研究,目的是有助于诊断和预测检测组合机械故障,其中的配置很复杂,因为一个故障可以隐藏另一个故障。为此,必须将每个症状与适当的一种或多种方法相关联,以便明确地强调它,以便在适当的时间检测每个缺陷。因此,人们有兴趣使用更精细的技术来改进检测和分析组合故障的程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibration analysis for the detection of combined mechanical defects of a wind turbine
Wind energy is a source of renewable energy derived from the kinetic force of the wind. It has experienced the greatest expansion due, above all, to its low impact on the environment and the gradual reduction of costs, which produce clean, competitive and economically viable energy. In order to ensure the stability of the energy produced, many studies are working to develop a reliable maintenance process based on new online diagnostic techniques, fast and accurate, optimised for wind turbine systems. For this, an experimental study was carried out on a wind system based on electric generators with the aim of contributing to the diagnosis and predictive detection of combined mechanical faults, where the configuration is complex because one fault can hide another. For this, it is imperative to associate each symptom with the appropriate method or methods in order to highlight it unambiguously to detect each defect at the appropriate time. Hence the interest in using more elaborate techniques in order to improve the procedures for detecting and analysing combined faults.
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来源期刊
Energetika
Energetika Energy-Energy Engineering and Power Technology
CiteScore
2.10
自引率
0.00%
发文量
0
期刊介绍: The journal publishes original scientific, review and problem papers in the following fields: power engineering economics, modelling of energy systems, their management and optimi­zation, target systems, environmental impacts of power engi­neering objects, nuclear energetics, its safety, radioactive waste disposal, renewable power sources, power engineering metro­logy, thermal physics, aerohydrodynamics, plasma technologies, combustion processes, hydrogen energetics, material studies and technologies, hydrology, hydroenergetics. All papers are re­viewed. Information is presented on the defended theses, vari­ous conferences, reviews, etc.
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