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Integrating reliability, availability, maintainability and supportability with risk analysis for improved operation of the Afam thermal power-station

机译:将可靠性,可用性,可维护性和可支持性与风险分析相集成,以改善Afam热电站的运行

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摘要

The ability to improve continually is desirable. In recent years, the reliabilities of power plants have become increasingly important issues in most developed and developing countries. Reliability, availability, maintainability and supportability (RAMS), as well as risk analysis, have become big issues in the power industries. Major causes of customer dissatisfaction often result from unexpected failures, which have led to unanticipated costs in the Afam thermal power-station. However, with proper integration of RAMS and risk analysis in each maintenance process in the Afam thermal power-station, the frequency of failures can be reduced and their consequences diminished. Taking experiences from the developed world, an approach for the integration of RAMS and risk analysis can be developed as a guide in maintenance policies for the Afam thermal power station. This paper discusses the applications of failure mode effect analysis, failure mode effect and criticality analysis, feedback information, supportive systems and risk analysis, in order to reduce the frequency of failures and maintenance costs.
机译:期望不断改进的能力。近年来,在大多数发达国家和发展中国家,发电厂的可靠性已成为越来越重要的问题。可靠性,可用性,可维护性和可支持性(RAMS)以及风险分析已成为电力行业的主要问题。客户不满意的主要原因通常是由于意外故障,导致Afam火力发电厂的意外成本。但是,通过在Afam火力发电厂的每个维护过程中正确集成RAMS和进行风险分析,可以减少故障的频率,并减少其后果。借鉴发达国家的经验,可以开发出RAMS和风险分析的集成方法,作为Afam火力发电厂维护政策的指南。本文讨论了故障模式效果分析,故障模式效果和临界度分析,反馈信息,支持系统和风险分析的应用,以减少故障的发生频率和维护成本。

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