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THE IMPACT OF AGING ON LIFE CYCLE COST: TECHNIQUES FOR ANALYSIS AND OPTIMIZATION

机译:老化对生命周期成本的影响:分析和优化的技术

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Systems, structures and components in a nuclear power plant are undergoing a variety of age-related degradation mechanisms (ARDMs) due to the severe environmental and operational conditions. Incorporating these recognizable, yet highly uncertain effects into a decision making or asset management process in a methodical way clearly requires a risk-based approach. This paper examines the impact of aging in the context of life cycle cost (LCC) analysis. Aging components generally experience higher failure rates which will have a direct influence on expected costs, and hence on overall system risk. The impact of aging can be modelled using the Weibull distribution, however, it must be modified in the context of life cycle cost analysis for consistent comparison of decision making alternatives. The results of this study demonstrate how age-based failure rates can have a significant influence on the net present value, and should therefore not be ignored, particularly for operational planning and asset management decisions related to end-of-life and refurbishment. The benefits of the developed methodology are demonstrated by integrating it with the life cycle planning of the main generator system.
机译:由于严重的环境和操作条件,核电站中的系统,结构和组件正在经历各种与年龄相关的降解机制(ARDMS)。将这些可识别的,但高度不确定的效果以有条理的方式清楚地需要一种基于风险的方法的决策或资产管理过程。本文研究了老化在生命周期成本(LCC)分析的背景下的影响。老化组件通常经历更高的失败率,这将对预期成本进行直接影响,从而对整体系统风险影响。老化的影响可以使用Weibull分布进行建模,然而,必须在生命周期成本分析的背景下进行修改,以实现决策制定替代品的一致比较。本研究的结果表明,基于年龄的失败率如何对净目的价值产生重大影响,因此不应忽视,特别是对于与生活结束和翻新有关的业务规划和资产管理决策。通过将其与主发电机系统的生命周期规划集成来证明开发方法的好处。

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