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首页> 外文期刊>International Journal of Fluid Machinery and Systems >Improved prediction of Pump Turbine Dynamic Behavior using a Thoma number dependent Hill Chart and Site Measurements
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Improved prediction of Pump Turbine Dynamic Behavior using a Thoma number dependent Hill Chart and Site Measurements

机译:使用Thoma数相关的Hill图表和站点测量来改进泵水轮机动态行为的预测

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Water hammer phenomena are important issues for the design and the operation of hydro power plants. Especially, if several reversible pump-turbines are coupled hydraulically there may be strong unit interactions. The precise prediction of all relevant transients is challenging. Regarding a recent pump-storage project, dynamic measurements motivate an improved turbine modeling approach making use of a Thoma number dependency. The proposed method is validated for several transient scenarios and turns out to improve correlation between measurement and simulation results significantly. Starting from simple scenarios, this allows better prediction of more complex transients. By applying a fully automated simulation procedure broad operating ranges of the highly nonlinear system can be covered providing a consistent insight into the plant dynamics. This finally allows the optimization of the closing strategy and hence the overall power plant performance.
机译:水锤现象是水力发电厂设计和运行的重要问题。特别是,如果将多个可逆式水泵水轮机液压连接,则可能会产生强烈的单元相互作用。对所有相关瞬态的精确预测具有挑战性。关于最近的泵存储项目,动态测量利用Thoma数依赖性激励了改进的涡轮建模方法。所提出的方法在几种瞬态情况下得到了验证,结果证明可以显着改善测量结果与仿真结果之间的相关性。从简单的场景开始,这可以更好地预测更复杂的瞬态。通过应用全自动仿真程序,可以覆盖高度非线性系统的广泛操作范围,从而对工厂动态提供一致的见解。最终,这可以优化关闭策略,从而优化发电厂的整体性能。

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