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首页> 外文期刊>International Journal of Mining and Geo-Engineering >RAM analysis of earth pressure balance tunnel boring machines: A case study
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RAM analysis of earth pressure balance tunnel boring machines: A case study

机译:土压力平衡隧道掘进机的RAM分析:一个案例研究

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Earth pressure balance tunnel boring machines (EPB-TBMs) are favorably applied in urban tunneling projects. Despite their numerous advantages, considerable delays and high maintenance cost are the main disadvantages these machines suffer from. Reliability, availability, and maintainability (RAM) analysis is a practical technique that uses failure and repair dataset obtained over a reasonable time for dealing with proper machine operation, maintenance scheduling, cost control, and improving the availability and performance of such machines. In the present study, a database of failures and repairs of an EBP-TBM was collected in line 1 of Tabriz subway project over a 26-month interval of machine operation. In order to model the reliability of the TBM, this machine was divided into five distinct subsystems including mechanical, electrical, hydraulic, pneumatic, and water systems in a series configuration. According to trend and serial correlation tests, the renewal processes were applied, for analysis of all subsystems. After calculating the reliability and maintainability functions for all subsystems, it was revealed that the mechanical subsystem with the highest failure frequency has the lowest reliability and maintainability. Similarly, estimating the availability of all subsystems indicated that the mechanical subsystem has a relatively low availability level of 52.6%, while other subsystems have acceptable availability level of 97%. Finally, the overall availability of studied machine was calculated as 48.3%.
机译:土压力平衡隧道掘进机(EPB-TBM)在城市隧道项目中得到了很好的应用。尽管它们具有许多优点,但是大量的延迟和高昂的维护成本是这些机器遭受的主要缺点。可靠性,可用性和可维护性(RAM)分析是一种实用技术,它使用在合理的时间内获得的故障和维修数据集来处理正确的机器操作,维护计划,成本控制以及提高此类机器的可用性和性能。在本研究中,在机器运行26个月的时间里,大不里士地铁项目的1号线收集了EBP-TBM的故障和维修数据库。为了模拟TBM的可靠性,该机器分为五个不同的子系统,包括一系列机械,电气,液压,气动和水系统。根据趋势和序列相关性测试,应用了更新过程,以分析所有子系统。计算所有子系统的可靠性和可维护性函数后,发现故障频率最高的机械子系统的可靠性和可维护性最低。同样,估计所有子系统的可用性表明,机械子系统的可用性级别相对较低,为52.6%,而其他子系统的可用性级别为97%。最终,所研究机器的总体可用性为48.3%。

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