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两机一洞抽蓄系统水力短路运行对发电机组压力脉动的影响

陈瑞璘 张晓曦 王陈鹏宇 陈秋华

水利学报2026,Vol.57Issue(3):471-482,12.
水利学报2026,Vol.57Issue(3):471-482,12.DOI:10.3724/j.slxb.20250552

两机一洞抽蓄系统水力短路运行对发电机组压力脉动的影响

Pressure pulsation characteristics of the generating pump-turbine in hydraulic short-circuit mode of a two-unit one-tunnel pumped storage system

陈瑞璘 1张晓曦 1王陈鹏宇 1陈秋华2

作者信息

  • 1. 厦门理工学院环境科学与工程学院,福建厦门 361024
  • 2. 厦门理工学院土木工程与建筑学院,福建厦门 361024
  • 折叠

摘要

Abstract

The hydraulic short-circuit(HSC)mode in Pumped Storage Systems(PSSs)can achieve overall adjust-able input through coordinated control of the output/input of multiple units.However,the system's water flow in this mode deviates from the design conditions,which may induce intense pressure pulsations and threaten the stable opera-tion of the units.To explore the impact of HSC on pressure pulsations within the generating unit,a validated three-dimensional computational fluid dynamics model was employed to simulate the branch pipe and pump-turbine of a prototype two-unit one-tunnel PSS.Using conventional dual-unit generation mode as a control case,comparative analysis reveals that the HSC mode amplifies pressure pulsations,particularly the low-frequency components near the bifurcation,with less impact on high-frequency components or areas further away.The Q-criterion and entropy pro-duction analysis indicate that intensive water impact at the bifurcation under the HSC mode triggers large-scale flow separations and massive vortices.These vortices migrate into the pump-turbine,intensifying energy dissipation and ultimately amplifying pressure pulsations.This study elucidates the amplification mechanism of pressure pulsations in the HSC mode,providing a basis for investigating the risks and the corresponding mitigation strategies of this mode.

关键词

抽水蓄能系统/水力短路模式/水泵水轮机/压力脉动/Q涡识别准则/熵产分析

Key words

pumped storage system/hydraulic short-circuit mode/pump-turbine/pressure pulsation/Q-criterion for vortex identification/entropy production analysis

分类

信息技术与安全科学

引用本文复制引用

陈瑞璘,张晓曦,王陈鹏宇,陈秋华..两机一洞抽蓄系统水力短路运行对发电机组压力脉动的影响[J].水利学报,2026,57(3):471-482,12.

基金项目

福建省自然科学基金项目(2024J011191) (2024J011191)

水利学报

0559-9350

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