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首页> 外文期刊>Journal of loss prevention in the process industries >Evaluation of risk and cost using an age-dependent unavailability modelling of test and maintenance for standby components
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Evaluation of risk and cost using an age-dependent unavailability modelling of test and maintenance for standby components

机译:使用针对备用组件的测试和维护的年龄相关的不可用性模型来评估风险和成本

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摘要

The improvement of safety in the process industries is related to assessment and reduction of risk in a cost-effective manner. This paper addresses the trade-off between risk and cost related to standby safety systems. An age-dependent unavailability model that integrates the effects of the test and maintenance (T&M) activities as well as component ageing is developed and represents the basis for calculating risk. The repair "same-as-new" process is considered regarding the T&M activities. Costs are expressed as a function of the selected risk measure. The time-averaged function of the selected risk measure is obtained from probabilistic safety assessment, i.e. the fault tree analysis. This function is further extended with inclusion of additional parameters related to T&M activities as well as ageing parameters related to component ageing. In that sense, a new model of system unavailability, incorporating component ageing and T&M costs, is presented. The testing strategy is also addressed. Sequential and staggered testings are compared. The developed approach is applied on a standard safety system in nuclear power plant although the method is applicable to standby safety systems that are tested and maintained in other industries as well. The results show that the risk-informed surveillance requirements differ from existing ones in technical specifications, which are deterministically based. Moreover, the presented approach achieves a significant reduction in system unavailability over a relatively small increase of total T&M costs.
机译:流程工业中安全性的提高与以经济有效的方式评估和降低风险有关。本文讨论了与备用安全系统相关的风险和成本之间的权衡。建立了一个与年龄相关的不可用性模型,该模型集成了测试和维护(T&M)活动以及组件老化的影响,并代表了计算风险的基础。考虑到T&M活动,修理“与新相同”过程。成本表示为所选风险度量的函数。所选风险度量的时间平均函数是从概率安全评估(即故障树分析)中获得的。通过包含与T&M活动相关的其他参数以及与组件老化相关的老化参数,进一步扩展了此功能。从这个意义上讲,提出了一种新的系统不可用性模型,其中包括组件老化和T&M成本。还讨论了测试策略。比较了顺序测试和交错测试。尽管该方法也适用于在其他行业中经过测试和维护的备用安全系统,但该方法可应用于核电厂的标准安全系统。结果表明,基于风险的监视要求与基于确定性的技术规范中的现有要求不同。此外,所提出的方法通过相对较小的总T&M成本增加,实现了系统可用性的显着降低。

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