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A Study of Evaluation Methods Centered On Reliability for Renewal of Aging Hydropower Plants.

机译:以老化水电厂更新的可靠性为中心的评估方法的研究。

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摘要

Hydropower generation is one of the clean renewable energies which has received great attention in the power industry. Hydropower has been the leading source of renewable energy. It provides more than 86% of all electricity generated by renewable sources worldwide.;Generally, the life span of a hydropower plant is considered as 30 to 50 years. Power plants over 30 years old usually conduct a feasibility study of rehabilitation on their entire facilities including infrastructure. By age 35, the forced outage rate increases by 10 percentage points compared to the previous year. Much longer outages occur in power plants older than 20 years. Consequently, the forced outage rate increases exponentially due to these longer outages. Although these long forced outages are not frequent, their impact is immense.;If reasonable timing of rehabilitation is missed, an abrupt long-term outage could occur and additional unnecessary repairs and inefficiencies would follow. On the contrary, too early replacement might cause the waste of revenue.;The hydropower plants of Korea Water Resources Corporation (hereafter K-water) are utilized for this study. Twenty-four K-water generators comprise the population for quantifying the reliability of each equipment. A facility in a hydropower plant is a repairable system because most failures can be fixed without replacing the entire facility. The fault data of each power plant are collected, within which only forced outage faults are considered as raw data for reliability analyses. The mean cumulative repair functions (MCF) of each facility are determined with the failure data tables, using Nelson's graph method. The power law model, a popular model for a repairable system, can also be obtained to represent representative equipment and system availability. The criterion-based analysis of HydroAmp is used to provide more accurate reliability of each power plant.;Two case studies are presented to enhance the understanding of the availability of each power plant and represent economic evaluations for modernization. Also, equipment in a hydropower plant is categorized into two groups based on their reliability for determining modernization timing and their suitable replacement periods are obtained using simulation.
机译:水力发电是清洁的可再生能源之一,在电力工业中受到了极大的关注。水电一直是可再生能源的主要来源。它提供了全球可再生资源发电量的86%以上;通常,水力发电厂的使用寿命为30至50年。 30岁以上的发电厂通常会对包括基础设施在内的整个设施进行修复的可行性研究。到35岁时,强制中断率比上一年提高了10个百分点。在20年以上的电厂中,停机时间更长。因此,由于这些较长的中断时间,强制中断率呈指数增长。尽管这些长时间的强迫停机并不常见,但其影响却是巨大的。如果错过了合理的恢复时间,则可能会发生突然的长期停机,并且随之而来的是不必要的维修和效率低下。相反,太早更换可能会导致收入浪费。;韩国水利公司的水力发电厂(以下简称K水)被用于这项研究。二十四个钾水发生器包括用于量化每个设备可靠性的总体。水力发电厂的设施是可修复的系统,因为大多数故障可以得到修复,而无需更换整个设施。收集每个发电厂的故障数据,其中仅将强制中断故障视为原始数据,以进行可靠性分析。使用尼尔森图法,通过故障数据表确定每个设施的平均累积维修功能(MCF)。功率定律模型是可修复系统的流行模型,也可以用来代表代表性的设备和系统可用性。 HydroAmp的基于标准的分析可用于提供每个电厂的更准确的可靠性。提出两个案例研究,以增强对每个电厂可用性的理解,并代表现代化的经济评估。另外,根据确定现代化时机的可靠性,将水力发电厂中的设备分为两类,并通过仿真获得合适的更换期。

著录项

  • 作者

    Kwon, Ogeuk.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.;Engineering Industrial.
  • 学位 M.S.
  • 年度 2011
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:23

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