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Modeling and Simulation of Hydropower Station Diversion System's characteristic line method by introducing water head to flow feedback

机译:水电站转移系统特征线法的建模与仿真通过引入水头流动反馈

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To solve the damping problem of water hammer wave in the modeling method of water diversion system of hydropower station, this paper introduces the feedback regulation technology from head to flow, that is: A fixed water head is taken out for flow feedback, and the following conclusions are obtained through modeling and simulation. Adjusting the feedback coefficient F of the water head to the flow rate can change the damping characteristic of the system, which can simulate the attenuation process of the water shock wave in the true water diversion pipeline. Even if a small feedback coefficient is introduced, the damping effect of the system is very obvious, but it has little effect on the amplitude of the first water shock wave after the transition process. Therefore, it is feasible and reasonable to introduce water head to flow rate feedback coefficient F in hydraulic turbine diversion system.
机译:为了解决水电站分流系统建模方法中的水锤波的阻尼问题,本文介绍了从头到流动的反馈调节技术,即:固定水头被取出流动反馈,以及以下通过建模和模拟获得结论。将水头的反馈系数F调整到流速的流速可以改变系统的阻尼特性,这可以模拟真正的进水管道中的水冲击波的衰减过程。即使介绍了小的反馈系数,系统的阻尼效果也非常明显,但它对转换过程之后的第一水冲击波的幅度几乎没有影响。因此,将水头引入液压涡轮机导流系统中的流速反馈系数F是可行和合理的。

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