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Study of hydraulic transients in hydropower plants through simulation of nonlinear model of penstock and hydraulic turbine model

机译:通过压力管道非线性模型和水轮机模型的仿真研究水电站水力瞬变

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摘要

Study of hydraulic transients in hydropower plants specifically in hydraulic turbine units, with penstock, spiral case and draft tube-is necessary due to power and frequency oscillations which normally occur in generator units, mainly during load rejections. In turn, this causes large pressure and subpressure oscillations in turbine hydraulic systems and must be evaluated to avoid mechanical failures. In this context, this work analyses discrete hydraulic systems with emphasis on hydraulic parameter analysis. The simulation used was developed based on analog mathematical models of transient phenomenon equations and on a hydro turbine model. The results were obtained by using a nonlinear analog-digital simulation method. Comparisons between results of a theoretical simulation of a literature example using the characteristics method and the results obtained with the present method are presented. Theoretical simulation results obtained from a 360 MW turbine and experimental results are also confronted.
机译:由于在发电机组中通常会发生功率和频率振荡(主要是在甩负荷时),因此有必要研究水力发电厂中的水力瞬变,特别是在水力涡轮机机组中,用压力水管,螺旋壳体和引流管。反过来,这会在涡轮液压系统中引起较大的压力和负压振荡,因此必须对其进行评估以避免机械故障。在这种情况下,这项工作分析了离散液压系统,重点是液压参数分析。使用的仿真是基于瞬态现象方程的模拟数学模型和水轮机模型开发的。通过使用非线性模数仿真方法获得了结果。提出了使用特征方法的文献实例的理论模拟结果与使用本方法获得的结果之间的比较。从360 MW汽轮机获得的理论仿真结果和实验结果也面临着挑战。

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