Introducing a new system performance function to formulate reliability analysis problems of wind turbines

IF 1.5 Q4 ENERGY & FUELS Wind Engineering Pub Date : 2023-07-12 DOI:10.1177/0309524x231187044
Sorena Artin
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Abstract

Consideration of safety is one of the current requirements to design a new system that is often implemented by defining the system failure probability. Renewable energy systems (RESs) do have the same requirements when it comes to safety and reliability. When designing a wind turbine, as a RES, its reliability is of the highest importance. So, efficient reliability models are required to ensure the turbine is working safely to generate electricity. A new model is introduced in this paper by taking into account the wind speed and the wind angle as two effective factors. These two random variables are reported to follow the Gaussian and Weibull probability distributions, and so are employed to define a limit-state function for the turbines. This limit-state function, which is also called system performance function, will then be used to find out the system failure probability.
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引入新的系统性能函数来制定风电机组可靠性分析问题
考虑安全性是当前设计新系统的要求之一,通常通过定义系统故障概率来实现。可再生能源系统(RESs)在安全性和可靠性方面也有同样的要求。在设计风力发电机时,作为可再生能源,其可靠性是最重要的。因此,需要有效的可靠性模型来确保涡轮机安全工作并发电。本文提出了一个考虑风速和风角两个影响因素的新模型。据报道,这两个随机变量服从高斯和威布尔概率分布,因此用于定义涡轮机的极限状态函数。该极限状态函数也称为系统性能函数,用于求出系统失效概率。
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来源期刊
Wind Engineering
Wind Engineering ENERGY & FUELS-
CiteScore
4.00
自引率
13.30%
发文量
81
期刊介绍: Having been in continuous publication since 1977, Wind Engineering is the oldest and most authoritative English language journal devoted entirely to the technology of wind energy. Under the direction of a distinguished editor and editorial board, Wind Engineering appears bimonthly with fully refereed contributions from active figures in the field, book notices, and summaries of the more interesting papers from other sources. Papers are published in Wind Engineering on: the aerodynamics of rotors and blades; machine subsystems and components; design; test programmes; power generation and transmission; measuring and recording techniques; installations and applications; and economic, environmental and legal aspects.
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