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首页> 外文期刊>International Journal of Quality & Reliability Management >Optimization of reliability and maintenance of liquefaction system on FLNG terminals using Markov modelling
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Optimization of reliability and maintenance of liquefaction system on FLNG terminals using Markov modelling

机译:马尔可夫模型优化液化天然气终端液化系统的可靠性和维护

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Purpose - The purpose of this paper is to optimize system redundancy and maintenance intervals of a propane pre-cooled mixed refrigerant (C3MR) liquefaction process on floating liquefied natural gas (FLNG) export platforms. Design/methodology/approach - The reliability modeling is based on the time-dependent Markov approach. Four different system options are studied, with various degree of redundancy. Failures in the liquefaction system usually lead to shutdown the whole LNG production plant The associated shutdown cost is compared with the cost of introducing redundancy and the cost of onboard maintenance. To ensure a high profitability, a model for maintenance optimization is utilized and applied to the main unit of the C3MR liquefaction system to minimize the onboard maintenance cost. Findings - The results indicated that the introduction of a second liquefaction system (as a standby unit) is the best option for liquefaction plant in terms of reliability and cost. This will substantially reduce the unavailability from 14.7 to 2.19 percent of the total operational hours. Based on the presented system configuration, the annual system profit will increase by 180 million USD if the redundancy is implemented on FLNG export ships. The optimum maintenance intervals of major process components are also calculated to minimize the total cost of maintenance. Originality/value - The originality of this paper lies within the context in investigating the reliability of the C3MR liquefaction system on LNG floating export terminals using Markov modeling for the first time.
机译:目的-本文的目的是优化浮动液化天然气(FLNG)出口平台上丙烷预冷混合制冷剂(C3MR)液化过程的系统冗余和维护间隔。设计/方法/方法-可靠性建模基于与时间有关的Markov方法。研究了具有不同程度冗余的四个不同的系统选项。液化系统的故障通常会导致整个LNG生产厂停工。将相关的停工成本与引入冗余的成本和船上维护的成本进行比较。为了确保高盈利能力,使用了用于维护优化的模型,并将其应用于C3MR液化系统的主体,以最大程度地减少车载维护成本。调查结果-结果表明,就可靠性和成本而言,引入第二个液化系统(作为备用装置)是液化工厂的最佳选择。这样可以将不可用时间从总运行时间的14.7%减少到2.19%。根据提出的系统配置,如果在FLNG出口船上实现冗余,年系统利润将增加1.8亿美元。还计算了主要过程组件的最佳维护间隔,以最大程度地减少总维护成本。独创性/价值-本文的独创性在于首次使用马尔可夫模型研究L3浮动出口终端上C3MR液化系统的可靠性。

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