首页> 外文会议>14th international conference amp; exhibition on liquefied natural gas (LNG 14) >APPLICATION OF RBM TO HIMEJI LNG RECEIVING TERMINAL AND THE EFFECTIVENESS IN MAINTENANCE COST REDUCTION
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APPLICATION OF RBM TO HIMEJI LNG RECEIVING TERMINAL AND THE EFFECTIVENESS IN MAINTENANCE COST REDUCTION

机译:RBM在HIJIJI LNG接收终端中的应用及其在降低维修成本上的作用

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摘要

This paper describes the Risk-Based Maintenance (RBM) system we developed to significantly reduce maintenance costs at LNG terminals while maintaining their outstanding reliability. Reported as well are applications of the RBM system at Kansai Electric Power's Himeji LNG receiving terminal and its performance in terms of cost reduction. rnRBM is a well-known technique used to optimize inspection standard based on the “significance of risks” associated with component failures. Its application at LNG terminals, however, has been difficult because their complex systems, comprising a variety of components, make detailed risk assessment on all components inefficient and even practically impossible. Therefore, we developed efficient risk assessment procedures optimized to apply RBM on complex systems at large plants. rnExtreme reliability is the most essential consideration at Kansai Electric Power's Himeji LNG terminal because it continuously supplies gas to adjacent fossil power plants (eight units; total capacity: 4 GW) and other customers. However, deregulation of the electric power industry in 2000 has imposed significant cost reduction pressure on electric utilities to stay competitive. Responding to the tectonic plate shift-like changes in the industry, we developed an innovative cost reduction technique based on Risk-Based Maintenance while maintaining equipment reliability. This method performed well at our thermal power plants by reducing maintenance costs to half the previous levels. This success led us to apply the method at Kansai Electric Power's LNG terminal.
机译:本文介绍了我们开发的基于风险的维护(RBM)系统,旨在显着降低LNG终端的维护成本,同时保持其出色的可靠性。据报道,RBM系统在关西电力的姬路液化天然气接收站中的应用及其在降低成本方面的性能。 rnRBM是一种众所周知的技术,用于基于与组件故障相关的“风险显着性”来优化检查标准。但是,由于其复杂的系统(包括各种组件)使对所有组件的详细风险评估效率低下,甚至实际上是不可能的,因此在LNG接收站中应用它一直很困难。因此,我们开发了有效的风险评估程序,该程序经过优化,可将RBM应用于大型工厂的复杂系统。 rn极端可靠性是关西电力姬路LNG接收站最重要的考虑因素,因为它不断向相邻的化石电厂(八台;总容量:4 GW)和其他客户供应天然气。然而,2000年电力行业的放松管制给电力公司施加了巨大的成本降低压力,以保持竞争力。为了应对行业中类似构造板块变化的变化,我们在保持设备可靠性的同时,基于基于风险的维护开发了一种创新的成本降低技术。通过将维护成本降低到以前的一半,该方法在我们的火力发电厂中表现良好。这一成功使我们在关西电力LNG接收站中应用了该方法。

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  • 会议地点 Doha(QA);Doha(QA);Doha(QA);Doha(QA)
  • 作者单位

    Fossil Power Division The Kansai Electric Power Co., Inc. Dai Bldg., Rm.470, 6-32, Nakanoshima 3-chome Kita-ku Osaka 530-6591, Japan. http://www.kepco.co.jp;

    rnFossil Power Division The Kansai Electric Power Co., Inc. Dai Bldg., Rm.470, 6-32, Nakanoshima 3-chome Kita-ku Osaka 530-6591, Japan. http://www.kepco.co.jp;

    rnFossil Power Division The Kansai Electric Power Co., Inc. Dai Bldg., Rm.470, 6-32, Nakanoshima 3-chome Kita-ku Osaka 530-6591, Japan. http://www.kepco.co.jp;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TE626.7;
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