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首页> 外文期刊>Journal of Quality in Maintenance Engineering >Mechanization of static mechanical systems inspection planning process-The state of the art
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Mechanization of static mechanical systems inspection planning process-The state of the art

机译:静态机械系统检查计划过程的机械化-最新技术

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Purpose - The purpose of this paper is to review the evolution of inspection and maintenance (I&M) practices used for aging and newly built oil and gas (O&G) facilities. It also proposes a framework and an approach for mechanizing inspection planning to perform preventive maintenance (PM) activities, taking technical condition (TC) and relative degradation (RD) into consideration. Design/methodology/approach - The paper systematically collects, categorizes, and analyzes the published literature of both researchers and practitioners. It also utilizes industrial experience that has been accrued and utilized from inspection planning practices for static mechanical equipment on aging O&G production plants. Findings - The paper defines significant issues in I&M of O&G assets related to: different philosophies; stakeholders’ requirements trade-off; dependability and asset deterioration challenges; items interacting with inspection planning mechanization processes and I&M optimization approaches. A framework is identified to mechanize the inspection planning process in order to reduce the effect arising from human involvement, while improving the effective utilization of data from different sources. The suggested approach improves the quality of an inspection program, while minimizing the variability and cost to the engineering contractors as well as to the owners of O&G facilities. Practical implications - The mechanization of inspection planning (MIP) is vital to have inspection programs with uniform quality. The currently employed inspection practices face challenges in maintaining uniform quality from one inspection program to another due to the variability present in the planning process, especially among the different inspection planning engineers. The suggested fuzzy logic-based MIP supports the minimization of the variability and increases the quality of inspection programs. Originality/value - The paper provides a comprehensive review of research contributions and industrial development efforts. These will be useful to the life cycle stakeholders in both academia and industry in understanding the inspection planning problem and solution space within the O&G asset I&M context.
机译:目的-本文的目的是回顾用于老化和新建石油天然气(O&G)设施的检查和维护(I&M)做法的演变。它还提出了一种框架和方法,用于机械化检查计划以执行预防性维护(PM)活动,同时考虑到技术条件(TC)和相对退化(RD)。设计/方法/方法-本文系统地收集,分类和分析研究人员和从业人员的已发表文献。它还利用已从老化的O&G生产工厂的静态机械设备的检查计划实践中积累和利用的行业经验。调查结果-本文定义了O&G资产I&M中的重大问题,涉及以下方面:不同的理念;利益相关者的需求权衡;可靠性和资产恶化的挑战;与检查计划机械化流程和I&M优化方法相互作用的项目。确定了一个框架来机械化检查计划流程,以减少人为干预带来的影响,同时提高对不同来源数据的有效利用。建议的方法可以提高检查程序的质量,同时最大程度地减少工程承包商和O&G设备所有者的差异和成本。实际意义-检查计划(MIP)的机械化对于拥有统一质量的检查程序至关重要。由于计划过程中存在可变性,特别是在不同的检查计划工程师中,当前采用的检查方法在维持一个检查程序到另一个检查程序的统一质量方面面临挑战。建议的基于模糊逻辑的MIP支持最小化变异性并提高检查程序的质量。原创性/价值-本文对研究贡献和产业发展努力进行了全面回顾。这些对于学术界和行业的生命周期利益相关者很有用,有助于他们了解O&G资产I&M上下文中的检查计划问题和解决方案空间。

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