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水力发电学报

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调压室参数对抽蓄电站引水上平段最小压力的影响

  

  • 出版日期:2026-05-25 发布日期:2026-05-25

Effect of Surge Chamber’s Parameters on Minimum Pressure along the Upper Flat Pipe Segment in Pumped-storage Power Stations

  • Online:2026-05-25 Published:2026-05-25

摘要: 抽水蓄能电站引水上平段最小压力是保证引水系统管道安全和机组运行稳定的重要控制参数。建立融合Sobol全局灵敏度分析的抽水蓄能电站输水发电系统瞬变流分析模型,系统探究是否设置引水调压室,引水调压室流进/流出流量系数、阻抗孔直径和调压室直径对引水上平段控制断面最小压力的影响,并通过Sobol方法对各参数敏感性进行定量分析。研究表明:考虑设置引水调压室,合理优化提升流进/流出流量系数、适当增大阻抗孔直径和调压室直径有利于改善引水上平段最小内水压力,流量变化率是影响引水上平段最小压力的重要因素之一,定量揭示了参数变化对最小压力的独立影响和参数间的交互效应,其中最小压力受阻抗孔直径影响较大,调压室直径和流进/流出流量系数次之,研究成果为引水管道布置参数的定量评估和优化设计提供重要技术支撑。

Abstract: The minimum pressure along the upper flat pipe section of a pumped-storage power station is a critical controlling parameter for ensuring the safety of the water conveyance pipelines and the stable operation of the units. A mathematical model for transient flow analysis of the water conveyance and power generation system in pumped-storage power stations, incorporating Sobol global sensitivity analysis, was established. The study systematically investigated whether to set up an upstream surge chamber, and the effects of the inflow/outflow flow coefficient, throttled orifice diameter, and surge chamber diameter on the minimum pressure at two controlling sections along the upper flat pipe segment. The sensitivity of each parameter was quantitatively analyzed using the Sobol method. The findings indicate that, considering the installation of an upstream surge chamber, appropriately increasing the inflow/outflow coefficient with optimization, throttled orifice diameter, and surge chamber diameter can help mitigate the minimum internal water pressure at the upper flat pipe sections. The flow variation rate is one of the key factors affecting the minimum pressure at the upper flat pipe sections. The study quantitatively reveals the independent effect of parameter changes on the minimum pressure and the interaction effects among parameters, with the minimum pressure most significantly influenced by the throttled orifice diameter, followed by the surge chamber diameter and the inflow/outflow coefficient. The achieved results provide important technical support for the quantitative evaluation and optimization decision-making of water conveyance pipeline layout parameters.

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