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CUSTOMER ADAPTED OPTIMIZED MAINTENANCE PLAN FOR GAS TURBINES

机译:客户定制的燃气轮机优化维护计划

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摘要

Maintaining high levels of availability and reliability are essential objectives for many industries, especially those that are subject to high costs due to non-payment as a result of shutdowns of critical systems, e.g. gas turbines. To utilize these systems as effectively as possible, maintenance must be optimized. Though, determining what is optimal is a tough multi-variable task requiring detailed knowledge about components building the system, such as damage mechanisms, TMF/LCF crack initiation and propagation, creep deformation, creep damage, general material deterioration, erosion, oxidation and corrosion. Also, customer specific inputs are essential, e.g. value of the produced entity, fuel prices, unplanned and planned standstill cost. To efficiently funnel this information into a customer adapted, optimized maintenance plan, a probabilistic optimization model is proposed. The model will dynamically calculate the most efficient point in time for a renewal. Further, the model can, as a function of risk willingness, adjust the maintenance plan to any customer's specific demands. This paper describes (ⅰ) the model, (ⅱ) how information is gathered and processed, (ⅲ) how the risk assessment is performed and (ⅳ) how the lifetime prediction is carried out. The optimization itself can be adjusted to aim at: minimizing cost or risk or maximizing availability, performance or reliability. Also, this paper describes how the quantitative selection of critical components included in the optimization is performed.
机译:维持高水平的可用性和可靠性是许多行业的基本目标,尤其是那些由于关键系统关闭而导致的未付款而导致高昂成本的行业。燃气轮机。为了尽可能有效地利用这些系统,必须优化维护。虽然,确定最佳选择是一项艰巨的多变量任务,需要有关构建系统组件的详细知识,例如损坏机理,TMF / LCF裂纹的萌生和传播,蠕变变形,蠕变损坏,一般材料劣化,腐蚀,氧化和腐蚀。此外,客户特定的输入是必不可少的,例如生产实体的价值,燃料价格,计划外和计划停产成本。为了将这些信息有效地汇集到客户适应的优化维护计划中,提出了一种概率优化模型。该模型将动态计算最有效的续订时间点。此外,该模型可以根据风险意愿将维护计划调整为任何客户的特定需求。本文描述(ⅰ)模型,(ⅱ)如何收集和处理信息,(ⅲ)如何进行风险评估,以及(ⅳ)如何进行寿命预测。可以将优化本身调整为以下目标:最小化成本或风险或最大化可用性,性能或可靠性。此外,本文还介绍了如何对优化中包含的关键组件进行定量选择。

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