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Reducing the effect of penstock pressure pulsations on hydro electric plant power system stabilizer signals

机译:减少压力压力脉动对水力发电厂电力系统稳定器信号的影响

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A characteristic trait of Francis turbines operating at low-head is pressure pulsations that occur during certain load levels of the generator. These stem from pressure variations across the turbine due to pulsating flow in the draft tube. This surging action of the water column is related to draft tube geometry and flow rate of water in the penstock. The pressure pulsations cause torque variations on the turbine and corresponding electric power pulsations. If electric power is used as a feedback signal to the power system stabilizer (PSS), then MVAr and terminal voltage pulsations will occur when the generator is operating in the "rough zone". This paper describes field test results for investigating feedforward control from the penstock, draft tube and spiral case pressure to reduce the effects of MW pulsations on PSS output signals. This investigation involved a PSS with generator power as the feedback signal and the PSS tuned for local and inter-area damping.
机译:在低水头运行的弗朗西斯涡轮机的一个典型特征是在发电机的某些负载水平期间发生的压力脉动。这些是由于引流管中的脉动流引起的整个涡轮机压力变化。水柱的激增作用与引流管的几何形状和压力管道中水的流速有关。压力脉动引起涡轮机上的扭矩变化以及相应的电力脉动。如果将电力用作对电源系统稳定器(PSS)的反馈信号,则当发电机在“粗糙区域”中运行时,会产生MVAr和终端电压脉动。本文介绍了现场测试结果,用于研究压力管道,尾水管和螺旋壳体压力对前馈控制的影响,以减少MW脉动对PSS输出信号的影响。这项研究涉及以发电机功率作为反馈信号的PSS,并针对局部和区域间阻尼对PSS进行了调整。

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