Stochastic evaluation of turbine-generator shaft fatigue due to system faults and faulty synchronization

S. Aboreshaid, S. Al-Dhalaan
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引用次数: 4

Abstract

In spite of the fact that the nature of the interaction between transmission network disturbances and the turbine-generator shaft system is subject to a relatively large uncertainty, the analysis of turbine-generator shaft torques has been usually performed using a deterministic framework. This paper presents a more realistic probabilistic approach in studying this phenomenon. In this approach, an analytical technique is used to evaluate the maximum turbine-generator shaft torsional torques considering the uncertainties associated with system faults and faulty synchronization. Since the probabilistic nature of the basic initiating factors of events such as the error angle, the generator speed, the fault type, the fault location and line reclosing scheme are independent and mutually exclusive, the conditional probability theorem can be utilized to assess the turbine-generator shaft fatigue. A calculation method is shown for the expected life expenditure ratio and the expected shaft lifetime taking into consideration these factors and using the shaft strength characteristics.
系统故障和同步故障引起的汽轮发电机轴疲劳随机评价
尽管输电网扰动与汽轮发电机轴系之间相互作用的性质具有较大的不确定性,但汽轮发电机轴转矩的分析通常采用确定性框架进行。本文提出了一种更为现实的概率方法来研究这一现象。在此方法中,考虑了系统故障和同步故障的不确定性,采用解析法对汽轮发电机轴的最大扭矩进行了求解。由于误差角、发电机转速、故障类型、故障位置和线路重合闸方案等事件的基本起始因素具有相互独立和互斥的概率性,因此可以利用条件概率定理对汽轮发电机轴疲劳进行评估。给出了考虑这些因素并利用轴强度特性计算预期寿命支出比和预期轴寿命的方法。
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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