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Optimum Maintenance Interval Determination for Field Instrument Devices in Oil and Gas Industries Based on Expected Utility Theory

机译:基于预期效用理论的石油和天然气产业现场仪器装置的最佳维护间隔确定

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摘要

With the increasing demand for complicated control and monitoring systems in chemical process plants based on tremendous improvements in the digital world, the number of devices for monitoring and controlling the plants has risen dramatically. In such huge networks of a myriad of instrument devices, determination of an optimum proactive maintenance interval (PMI) has become vital for enhancing plant safety and reducing maintenance costs. PMI optimization is a matter of considerable benefit variation, process reliability, personnel safety, and environmental concerns. In this paper, a comprehensive formula and a concise formula are developed and applied for obtaining the optimum PMI based on the expected utility theory. The proposed formulas are applicable for determining the most affordable and effective maintenance plan providing the lowest cost and acceptable reliability, availability, and safety in oil and gas industries in terms of an optimal decision-making problem. By considering variable failure rates and components' wear and tear, a comprehensive formula has been developed. Moreover, for constant failure rate and returning to the "as-new" condition after each proactive maintenance, a concise and "easy-to-use" formula has been obtained. Finally, it has been shown through practical implementation of the presented methodology in a typical gas refinery that about 41% benefit is achieved in one year, compared with the previous heuristic maintenance strategy in the same duration.
机译:随着基于数字世界的巨大改进的化学过程工厂对化学过程工厂的复杂控制和监测系统的需求越来越大,用于监测和控制植物的设备数量显着。在这种巨大网络的无数仪器装置的网络中,确定最佳的主动维护间隔(PMI)对提高植物安全性并降低维护成本至关重要。 PMI优化是一个相当益处,工艺可靠性,人员安全和环境问题的问题。在本文中,开发了一种综合公式和简洁的公式,并施加基于预期的实用工具理论获得最佳PMI。拟议的公式适用于确定最实惠且有效的维护计划,在最佳决策问题方面,提供了石油和天然气行业的最低成本和可接受的可靠性,可用性和安全性。通过考虑可变失败率和组件的磨损,已经开发了一个综合公式。此外,对于恒定的故障率并在每个主动维护后返回到“新的”条件,已经获得了简洁和“易于使用”公式。最后,通过在典型的天然气炼油厂中实际实施方法显示,在一年内实现了大约41%的益处,与之前的启发式维修策略相同的持续时间。

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