特征对燃煤电厂可靠性的影响

E. Mnukwa, P. Eboule, J. Pretorius
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摘要

南非的各种战略管理规划都围绕着燃煤发电厂的可靠性展开。这是由于电厂可靠性的挑战性因素,如老化的基础设施、低维护、计划外停电、强制停电和南非不断增长的电力需求。本研究收集数据的方法采用定性和定量两种研究方法。采用定性研究方法,对管理人员、工程师、技术人员、技术员、工匠等技术人员进行德尔菲技术调查,收集信息。采用定量研究的方法,从电力公司的历史故障和故障记录中收集信息。从数据库、工厂故障报告和SAP工厂维护程序中检索历史记录。结果表明,在2021年9月,强制通风装置造成了33.61%的计划外能力损失因子,其次是磨粉装置,能量损失为20.08%。此外,织物过滤装置对非计划能力损失因子的贡献率为16.25%,而工厂控制对能量损失的贡献率为7.74%。结果还表明,维护不善、备件缺乏、缺乏培训和技能短缺是造成工厂故障和故障的一些主要因素。此外,研究还揭示了电力公司采用的纠正维护策略是徒劳的、无效的和不适当的策略
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feature Impacts on Coal Power Plant Reliability
Various strategic management planning in South Africa have revolved around reliability of coal fired power generating plants. This is due to challenging factors of power plant reliability like aging infrastructure, low maintenance, unplanned outages, forced outages and increasing electricity demand in South Africa. The method used in this study to collect data is qualitative and quantitative research methods. Qualitative research method is used to collect information by conducting Delphi technique survey from technical personnel which are Managers, Engineers, Technologists, Technician as well as Artisans. Quantitative research method is utilized to collect information from power utility’s historical plant breakdowns and failure records. Historical records are retrieved from database, plant failure reports and SAP plant maintenance program. Results indicates that forced draught plant contributed 33,61% unplanned capability loss factor for the month of September 2021, followed by the milling plant with 20,08% energy loss. Moreover, fabric filter plant contributed 16,25% to unplanned capability loss factor and mills control contributed 7,74% to energy losses. The results also indicated that poor maintenance, spares unavailability, lack of training and skills shortages are some of the major contributing factors to plant breakdowns and failures. In addition, the study has revealed that corrective maintenance strategy used by the power utility is futile, ineffective, and inappropriate strategy
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