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Simulation model of a variable-speed pumped-storage power plant in unstable operating conditions in pumping mode

机译:抽运模式下工况不稳定的变速抽水蓄能电站仿真模型

摘要

This paper presents a dynamic simulation model of a laboratory-scale pumped-storage power plant (PSPP) operating in pumping mode with variable speed. The model considers the dynamic behavior of the conduits by means of an elastic water column approach, and synthetically generates both pressure and torque pulsations that reproduce the operation of the hydraulic machine in its instability region. The pressure and torque pulsations are generated each from a different set of sinusoidal functions. These functions were calibrated from the results of a CFD model, which was in turn validated from experimental data. Simulation model results match the numerical results of the CFD model with reasonable accuracy. The pump-turbine model (the functions used to generate pressure and torque pulsations inclusive) was up-scaled by hydraulic similarity according to the design parameters of a real PSPP and included in a dynamic simulation model of the said PSPP. Preliminary conclusions on the impact of unstable operation conditions on the penstock fatigue were obtained by means of a Monte Carlo simulation-based fatigue analysis.
机译:本文提出了一个实验室规模的抽水蓄能电站(PSPP)的动态仿真模型,该电厂以抽速模式运行。该模型通过弹性水柱方法考虑了导管的动态行为,并综合生成压力脉动和扭矩脉动,从而再现了液压机在其不稳定区域内的运行情况。压力和转矩脉动分别由一组不同的正弦函数产生。这些功能是根据CFD模型的结果进行校准的,而CFD模型的结果则是根据实验数据进行了验证。仿真模型结果与CFD模型的数值结果相匹配,具有合理的准确性。根据实际PSPP的设计参数,通过水力相似性将水轮机模型(包括用于产生压力和转矩脉动的功能)放大,并包括在所述PSPP的动态仿真模型中。通过基于蒙特卡罗模拟的疲劳分析,得出了不稳定运行条件对压力钢管疲劳的影响的初步结论。

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