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Availability-based reliability-centered maintenance planning for gas transmission pipelines

机译:可用性的可靠性可靠性的燃气传输管道维护计划

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A large portion of natural gas is transferred through transmission pipelines. For these facilities, in the United States, external corrosion has led to more than 1700 failures in the past decades, causing a property damage of approximately $189 M. Such numbers highlight the importance of maintaining such facilities in safe conditions to postpone corrosion failure. Given such criticality, addressing pipeline availability is of high importance from economic consequences perspective for a national economy. However, most of the developed methods merely rely on considering costs, reliability or condition levels as maintenance decision criteria and ignore the importance of continuity of operation and pipeline availability. In this research, a maintenance planning framework is proposed for external corrosion of gas transmission pipelines through an availability-centered reliability-based maintenance planning procedure. This framework is based on the pipeline reliability profile obtained from a Monte Carlo simulation. This simulation is carried on a previously developed failure prediction model for gas transmission pipelines buried in the Great Plains region of the U.S. and considers failure uncertainties. In addition, a discrete event simulation (DES) approach is proposed to assess an availability-cost indicator of different maintenance scheduling alternatives for the case study of a 24-inch gas pipeline. This research reveals that a combination of wrap and replacement maintenance actions at the service life of 30.1 and 40.5 years respectively, is the most effective maintenance alternative in terms of improvement of availability per unit cost for the presented case study. This framework can help pipeline professionals in maintaining such facilities by considering their criticality using an availability-based maintenance scheduling approach. Such method can complement the conventional cost-based industry practices.
机译:通过变速器管道转移大部分天然气。对于这些设施,在美国,过去几十年来,外部腐蚀导致了1700多个故障,造成约189美元的财产损失。这些数字突出了在安全条件下维持这些设施的重要性,以推迟腐蚀失败。鉴于这种关键性,解决管道可用性与国民经济的经济后果的重要性高。然而,大多数开发方法仅依靠将成本,可靠性或条件水平视为维护决策标准,并忽略操作和管道可用性连续性的重要性。在本研究中,提出了一种通过可用性的基于可靠性的维护计划的燃气传输管道外部腐蚀的维护计划框架。该框架基于从蒙特卡罗模拟中获得的管道可靠性曲线。该模拟以先前开发的用于埋在美国大港地区的燃气传输管道的故障预测模型上,并考虑失效的不确定性。另外,提出了一种离散的事件模拟(DES)方法,以评估不同维护调度替代品的可用性 - 成本指标,以便进行24英寸气体管道的案例研究。本研究表明,在30.1和40.5年的使用寿命,包装和更换维护行动的组合是在提高案例研究的每单位费用的改善方面是最有效的维护替代方案。本框架可以帮助管道专业人员在使用可用性的维护调度方法考虑其临界方面维护这些设施。这种方法可以补充传统的基于成本的行业实践。

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