Developing method of studying mode reliability of electric power systems

A. Bordyug
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Abstract

The article considers the urgent choice of a solution to the problem of reliable operation of power plants in the maneuvering modes. The performance reliability of power units is assessed. There are listed actual methods of studying the reliability of power plants, which are used in the practice of operation and design of power plants, in particular the electrical part in a statistical state. There is proposed a structural-functional method of studying the reliability of power plants, which allows to analyze the cause-and-effect relationships of the structural diagram elements in the stationary and transient modes of operation and obtain a synthesizing assessment of the final result of the power plant operation, taking into account the factors affecting the mode change. The scheme of directed graphs is illustrated: serial and parallel connection of elements, with direct and reverse stochastic connections. Formulas are given for calculating the availability factor (operability of an individual element or a functional circuit), as well as the inoperability factor due to the frequency of failures and remedial repairs. A case of practical application of the structural-functional method studying the reliability of power plants is considered. The elements of the block diagram of the power unit, turbine plant, electrical connections are listed. An algorithm for calculating the reliability of operation of a 250-300 MW power unit in the modes of start-up, shutdown, load control, stationary and emergency shutdown is considered. The logical sequence of operations of the technological process of the power unit is given. It is noted that the calculations were made on a personal computer in an interactive mode, labor costs amounted to about eight hours for an engineer of average qualification. According to the calculations performed, the conclusions were drawn for the power plant operating in the shunting mode as a whole: frequent starts/stops have a negative impact on the performance of power units, therefore, there is recommended a load mode within the allowable limits of power change.
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电力系统模式可靠性研究的发展方法
本文考虑了解决机动性模式下电厂可靠运行问题的迫切选择。对电力机组的性能可靠性进行了评估。在电厂的运行和设计实践中,特别是在统计状态下的电气部分,列举了电厂可靠性研究的实际方法。提出了一种研究电厂可靠性的结构-功能方法,在考虑影响电厂运行模式变化的因素的情况下,分析电厂稳态和暂态运行模式下结构图要素之间的因果关系,对电厂运行的最终结果进行综合评价。说明了有向图的方案:元素的串行和并行连接,具有正、逆随机连接。给出了计算可用性因子(单个元件或功能电路的可操作性)以及由于故障频率和补救维修而导致的不可操作性因子的公式。给出了结构-功能方法在电厂可靠性研究中的应用实例。列出了动力装置、涡轮装置、电气连接的框图要素。研究了250 ~ 300mw机组在启动、停机、负荷控制、静止和紧急停机模式下的运行可靠性计算算法。给出了动力装置工艺流程的逻辑操作顺序。值得注意的是,计算是在个人计算机上以交互方式进行的,人工成本为平均资格的工程师约为8小时。通过计算得出,对于整体运行在并联模式下的电厂,频繁启停会对机组性能产生负面影响,因此建议在允许的功率变化范围内选择一种负荷模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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