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Life cycle cost analysis of the ventilation system in Stockholm's road tunnels

机译:斯德哥尔摩路隧道通风系统的生命周期成本分析

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摘要

Purpose-The purpose of this paper is to develop a practical economic replacement decision model to identify the economic lifetime of the ventilation system used by Trafikverket in its Stockholm tunnels. Design/methodology/approach-The proposed data-driven optimisation model considers operating and maintenance costs, purchase price and system resale value for a ventilation system consisting of 121 fans. The study identified data quality problems in Trafikverket's MAXIMO database. Findings-It is found that the absolute economic replacement time (ERT) of the ventilation system is 108 months but for a range of 100-120 months, the total cost remains almost constant. Sensitivity and regression analysis showed that the operating cost has the largest impact on the ERT. Originality/value-The results are promising; the company has the possibility of significantly reducing the LCC of the ventilation system by optimising its lifetime. In addition, the proposed model can be used for other systems with repairable components, making it applicable, useful and implementable within Trafikverket more generally.
机译:目的 - 本文的目的是制定实际的经济替代决策模型,以确定特拉菲克卫生间在斯德哥尔摩隧道中使用的通风系统的经济寿命。设计/方法/方法 - 所提出的数据驱动优化模型考虑了由121名粉丝组成的通风系统的运营和维护成本,购买价格和系统转售值。该研究确定了Trafikverket的Maximo数据库中的数据质量问题。结果 - 发现通风系统的绝对经济置换时间(ERT)为108个月,但在100-120个月的范围内,总成本几乎保持不变。敏感性和回归分析表明,运营成本对ERT的影响最大。原创/价值 - 结果是有前途的;本公司通过优化其寿命,有可能大大减少通风系统的LCC。此外,所提出的模型可用于其他具有可修型部件的系统,使其在特拉里卡托运电池内采用适用,有用和可实现。

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