可再生能源发电的可靠性——以海上风电场为例

J. Soszyńska-Budny, M. Chmielewski, Joanna Pioch
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引用次数: 0

摘要

研究背景包括风力发电场在内的可再生能源的可靠性和故障成本或维护成本问题变得越来越重要,特别是随着这些设施的电力供应量增加。本文的目的是评估2010年至2020年欧洲国家风能的发展情况。评估风电场组件的可靠性,确保风电场基础设施在高水平上可用,对电力供应系统的稳定性至关重要。因此,本文以北海某风力发电场为例,对其可靠性进行了评估。分析是根据参与该风电场维护的专家提供的经验数据进行的。可靠性估计函数是该系统用户的重要可靠性指标。例如,在评估的可靠性函数的基础上,可以提高系统的可用性,优化系统的维护成本。研究方法采用数学模型对系统可靠性进行分析。此外,在所建立的可靠性模型中,假设系统组件在其不同的可靠性状态子集中具有具有不同参数的多状态威布尔可靠性函数。新颖性原创性研究与文献回顾。在波兰能源部门转型要求的背景下,考虑到海上风电场装置的可靠性,所提出的方法可用于可再生能源项目的实际实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability of Renewable Power Generation using the Example of Offshore Wind Farms
Abstract Research background The issue of reliability and the cost of failure or maintenance costs of renewable energy sources, including wind farms, is becoming increasingly important, especially as the volume of electricity supply from such installations increases. Purpose The purpose of the paper is to evaluate the development of wind energy in European countries between 2010 and 2020. Evaluating the reliability of wind farm components and ensuring that wind farm infrastructure is available at a high level is crucial to the stability of the electricity supply system. Therefore, the paper presents, as a case study, a reliability estimation of one of the wind farms operating in the North Sea. The analysis is carried out on the basis of empirical data obtained from experts involved in the maintenance of this wind farm. The estimated reliability function is an important reliability indicator for users of this system. On the basis of the evaluated reliability function, for example, the system availability can be improved, and the maintenance costs of the system can be optimised. Research methodology Mathematical modelling was used to analyse system reliability. Further, in the developed reliability models, it was assumed that the system components have the multistate Weibull reliability functions with various parameters in their different reliability state subsets. Novelty Original study with literature review. In the context of the requirements for the transformation of the Polish energy sector, the presented approach can be used in the practical implementation of RES projects, taking into account the reliability of offshore wind farm installations.
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