电厂汽轮机振动可靠性评估系统的开发及失效预测

IF 0.4 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Moch. Faqih, Nu Rhahida Arini, Hendrik Elvian Gayuh Prasetya
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引用次数: 2

摘要

汽轮机是火力发电厂中最关键的部件。由于它的关键功能,应该维护它,使其能够无故障地运行。本文旨在开发一个应用程序,通过该应用程序可用于分析单次评估中振动的可靠性和同步性。该应用程序有助于确定执行维护的适当时间,从而提供更好的维护策略。本文以某670 MW电站汽轮机为例,对其可靠性和振动进行了分析。采用定性和定量方法对信度进行了分析。利用快速傅立叶变换(FFT)从振动谱中诊断故障症状,进行振动评价。通过比较系统的振动频率和固有频率进行振动同步分析,利用该应用程序可以方便地计算出系统的振动频率。采用GNU Octave软件构建了两种评估算法的程序,使其具有友好的用户界面。从评价结果来看,汽轮机最关键的部件是联轴器、迷宫式密封、轴承、隔膜、汽轮机控制阀和汽轮机截止阀。基于预期可靠性90%的维护间隔可获得最大的可靠性改进。根据振动分析,涡轮轴承未检测到故障症状。此外,振动的主导频率远离固有频率。因此,汽轮机的工况是可以接受的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Development of A Reliability Evaluation Application for Power Plant Steam Turbine Vibrations to Predict Its Failure
A steam turbine is the most critical component in a thermal power plant. Due to its crucial function, it should be maintained to be able to operate without failure. This paper aims to develop an application that can be used to analyze the reliability and synchronization of vibrations in a single evaluation through the application. The application is helpful to decide the proper time the maintenance should be performed in order to provide a better maintenance strategy. In this paper, the application was used to make an ease in evaluating the reliability and vibration of a 670 MW power plant steam turbine. The reliability was analyzed by qualitative and quantitative methods. The vibration evaluation using Fast Fourier Transform (FFT) was done by diagnosing the failure symptoms from vibration spectrum. The analysis of synchronization of vibrations conducted by comparing the vibration frequency and the natural frequency of the system which can be calculated easily using the application. The algorithm program of both evaluations was built using GNU Octave software to make a friendly user interface. From the evaluation result, the most critical components of the steam turbine are coupling, labyrinth seals, bearing, diaphragm, turbine control valve, and turbine stop valve. The maintenance interval based on the expected reliability of 90% produces the highest reliability improvement. Based on the vibration analysis, there is no failure symptoms detected in the turbine bearings. Furthermore, the dominant frequencies of vibration are distant from the natural frequency. Therefore, the steam turbine condition is acceptable to operate.
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来源期刊
EMITTER-International Journal of Engineering Technology
EMITTER-International Journal of Engineering Technology ENGINEERING, ELECTRICAL & ELECTRONIC-
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