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Qualitative Fault Tree Analysis of Blowout Preventer Control System for Real Time Availability Monitoring

机译:用于实时可用性监控的井喷预防控制系统定性故障树分析

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This paper deals with the dynamic availability of a subsea blowout preventer (BOP) with respect to regional and industrial requirements. The study aims to reduce the non-productive time on drilling rigs due to complex propagation of failures within the BOP and BOP control system. In this development, fault tree analysis updated with near real time failure database is implemented into operational decision-making process. First, the system is defined with specifications, boundaries and assumptions. Failure modes of each component are stated. The requirements on the BOP control system are determined with respect to API Standard 53. Fault trees are constructed to address each requirement, and cut sets are produced. For dynamic analysis, a database on BOP state and failure component is created using reports from drilling contractor and operator. Upon detection of a failure, the cut sets are updated. With this application, impact of newly discovered failure in combination with the existing set of failures over BOP availability and compliance is determined in a standardized manner allowing consistent and efficient judgment.
机译:本文涉及海底爆炸防盗(BOP)的动态可用性,相对于区域和工业要求。该研究旨在减少由于BOP和BOP控制系统内的故障传播复杂的钻井钻机上的非生产时间。在此开发中,使用近实时故障数据库更新的故障树分析将实施到操作决策过程中。首先,系统定义了规范,边界和假设。陈述每个组件的失效模式。关于API标准53确定对BOP控制系统的要求。构造故障树以解决每个要求,并产生切割。对于动态分析,使用来自钻井承包商和运营商的报告创建BOP状态和故障组件上的数据库。在检测到失败时,更新切割集。通过这种应用,以标准化的方式确定新发现的失败与现有的失败结合使用过度的失败,以标准化方式确定允许一致和有效的判断。

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