首页> 外文期刊>Reliability Engineering & System Safety >Safety systems for the oil and gas industrial facilities: Design, maintenance policy choice, and crew scheduling
【24h】

Safety systems for the oil and gas industrial facilities: Design, maintenance policy choice, and crew scheduling

机译:石油和天然气工业设施安全系统:设计,维护政策选择和船员调度

获取原文
获取原文并翻译 | 示例
       

摘要

The technology of oil and gas production is associated with significant hazards. Safety Instrumented Systems (SIS) are designed to ensure proper and safe operations in this sector. This research presents a framework that produces reasonable recommendations (requirements specification) for the SIS design and maintenance with consideration of the three key perspectives relevant to any petroleum engineering project, namely those of facility operators, engineering contractors, and the authorities. The contribution of this research to the area of engineering design is simultaneously addressing the decisions on the SIS design, organization of its maintenance, and employee scheduling for the remotely-located hazardous industrial facilities. These decisions are made based on the choice of maintenance policies incorporated into a Markov model of the system functioning. Another contribution of this research to the reliability modeling area is incorporating diverse redundancy into the modeling and decision-making framework. Thus, this research explores a trade-off between the capital investments into the SIS's design complexity and the operational expenditures associated with system maintenance and expected losses due to potential hazards. The developed multi-objective decision-making framework requires a black-box optimization approach to produce results. This research is relevant to engineering departments and contractors specializing in designing technological solutions for the petroleum sector.
机译:石油和天然气生产技术与显着危害有关。安全仪表系统(SIS)旨在确保本行业的适当和安全的操作。本研究提出了一个框架,为SIS设计和维护提供了合理的建议(需求规范),考虑到与任何石油工程项目相关的三个关键视角,即设施运营商,工程承包商和当局。这项研究对工程设计领域的贡献同时解决了关于SIS设计,维护组织的决定,以及远程危险工业设施的员工调度。这些决定是基于选择在系统运行的Markov模型中的维护策略选择。这项研究对可靠性建模区域的另一个贡献是将不同的冗余纳入建模和决策框架。因此,该研究探讨了资本投资进入SIS的设计复杂性和与系统维护和由于潜在危害相关的预期损失相关的操作支出之间的权衡。开发的多目标决策框架需要一个黑匣子优化方法来产生结果。该研究与专门设计石油部门技术解决方案的工程部门和承包商有关。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号