首页> 外文会议>International conference on nuclear engineering;ICONE17 >APPLICATION OF RISK-INFORMED METHODS TO IMPROVE PLANT OPERATION AT KOZLODUY NUCLEAR POWER PLANT
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APPLICATION OF RISK-INFORMED METHODS TO IMPROVE PLANT OPERATION AT KOZLODUY NUCLEAR POWER PLANT

机译:风险强化方法在改善科兹洛迪核电厂的运行中的应用

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Refueling outages at the Kozloduy Nuclear Power Plant (KNPP) Units 5 and 6 are used to perform annual repairs and preventive maintenance activities, piping inspections, and test activities. A refueling outage at KNPP typically requires 60 days and occurs on an annual basis. Testing of safety systems at the KNPP Units 5 and 6 is an extensive exercise that results in multiple actuations of all components during each test and a relatively high number of component actuations each year. This results in equipment wear out issues that can lead to considerable component replacement and/or refurbishment. Numerous piping in-service inspections are conducted in locations where there has been no industry or plant-specific indications or failures, leading to unnecessary personnel exposure. KNPP is interested in using risk-informed (RI) approaches to reduce refueling outage length, piping inspections, testing, and exposure.KNPP is a four-loop Voda-Vodyanoi Energetichesky Reaktor (WER) with a power level of 1000 Mwe. Safety systems consist of three trains. The KNPP at-power probabilistic safety assessment (PSA) model includes internal and external events. It addresses the full range of events leading to core damage frequency (CDF) and includes a simplified level 2 model leading to large early release frequency (LERF).The RI approach, as defined in the U.S. Nuclear Regulatory Commission's (NRC's) risk-informed (RI) Regulatory Guides (RGs) 1.174, 1.177, and 1.178, was used in this program. The specific approach used for risk-informed in-service inspection (RI-ISI) is based on the Pressurized Water Reactor Owner's Group methodology. The overall approach for each of the three applications used a multi-step process which included the following: identification of systems to address; identification of alternatives to current maintenance, inspection, and testing practices; a risk assessment of the proposed alternatives; an assessment of the impact of the changes on deterministic considerations; identification of monitoring requirements; and an assessment of the economic benefits. The RI-ISI program also considered the impact of the changes on personnel exposure. The overall approach made extensive use of data assessments, reliability methods, and risk assessments.The results demonstrated that the proposed changes in maintenance, in-service inspection, and testing programs have a small impact on risk, based on CDF and LERF. In addition, the proposed changes provide significant benefits in terms of reduced outage time, in-service inspections, testing requirements, and personnel exposure. The economic analysis demonstrated that changes to the maintenance program provide the largest benefit followed by the changes to the in-service inspection program and then the changes to the testing program.
机译:Kozloduy核电厂(KNPP)5号和6号机组的加油中断用于进行年度维修和预防性维护活动,管道检查和测试活动。 KNPP的加油中断通常需要60天,并且每年发生一次。在KNPP 5号和6号机组进行的安全系统测试是一项广泛的工作,导致每次测试期间所有组件均被多次致动,并且每年产生相对大量的组件致动。这导致设备磨损,可能导致大量组件更换和/或翻新。在没有行业或工厂特定迹象或故障的地方进行了许多管道在役检查,从而导致不必要的人员暴露。 KNPP有兴趣使用风险告知(RI)方法来减少加油中断时间,管道检查,测试和暴露。 KNPP是功率为1000 Mwe的四回路Voda-Vodyanoi Energetichesky Reaktor(WER)。安全系统由三列火车组成。 KNPP上电概率安全评估(PSA)模型包括内部和外部事件。它解决了导致核心损坏频率(CDF)的所有事件,并包括导致较大的提前释放频率(LERF)的简化的2级模型。 此程序使用了美国核监管委员会(NRC)的风险通报(RI)监管指南(RG)1.174、1.177和1.178中定义的RI方法。进行风险知情的在役检查(RI-ISI)的特定方法是基于压水堆所有者组的方法。这三个应用程序中的每一个的总体方法都采用了一个多步骤的过程,该过程包括以下内容:确定要解决的系统;确定当前维护,检查和测试实践的替代方法;对拟议替代方案的风险评估;对变更对确定性考虑因素的影响的评估;确定监测要求;并评估经济效益。 RI-ISI计划还考虑了变更对人员暴露的影响。总体方法广泛使用了数据评估,可靠性方法和风险评估。 结果表明,基于CDF和LERF,维护,在役检查和测试程序的拟议变更对风险的影响很小。此外,建议的更改在减少中断时间,在役检查,测试要求和人员暴露方面提供了显着的好处。经济分析表明,对维护计划的更改会带来最大的收益,其次是对使用中的检查程序进行更改,然后对测试程序进行更改。

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