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Dynamic Model for Hydro-Turbine Generator Units Based on a Database Method for Guide Bearings

机译:基于导向轴承数据库方法的水轮发电机组动力学模型

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A suitable dynamic model of rotor system is of great significance not only for supplying knowledge of the fault mechanism, but also for assisting in machine health monitoring research. Many techniques have been developed for properly modeling the radial vibration of large hydro-turbine generator units. However, an applicable dynamic model has not yet been reported in literature due to the complexity of the boundary conditions and exciting forces. In this paper, a finite element (FE) rotor dynamic model of radial vibration taking account of operating conditions is proposed. A brief and practical database method is employed to model the guide bearing. Taking advantage of the method, rotating speed and bearing clearance can be considered in the model. A novel algorithm, which can take account of both transient and steady-state analysis, is proposed to solve the model. Dynamic response for rotor model of 125 MW hydro-turbine generator units in Gezhouba Power Station is simulated. Field data from Optimal Maintenance Information System for Hydro power plants (HOMIS) are analyzed compared with the simulation. Results illustrate the application value of the model in providing knowledge of the fault mechanism and in failure diagnosis.
机译:合适的转子系统动力学模型不仅对提供故障机理的知识具有重要意义,而且对协助机器健康监测研究也具有重要意义。已经开发出许多技术来正确地模拟大型水轮发电机组的径向振动。然而,由于边界条件和激振力的复杂性,尚无文献报道适用的动力学模型。提出了一种考虑工况的径向振动有限元转子动力学模型。采用一种简单实用的数据库方法对导向轴承进行建模。利用该方法,可以在模型中考虑转速和轴承游隙。提出了一种兼顾瞬态和稳态分析的新颖算法来求解该模型。模拟了葛洲坝电站125 MW水轮发电机组转子模型的动力响应。分析了来自水力发电厂最佳维护信息系统(HOMIS)的现场数据,并进行了仿真比较。结果说明了该模型在提供故障机理知识和故障诊断中的应用价值。

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