孙洁, 葛新峰, 蔡建国, 李丽, 赵雷, 张雷, 王金亮, 郑源. 贯流式水轮机固液两相流压力脉动特性分析[J]. 中国电机工程学报, 2021, 41(22): 7692-7701. DOI: 10.13334/j.0258-8013.pcsee.202362
引用本文: 孙洁, 葛新峰, 蔡建国, 李丽, 赵雷, 张雷, 王金亮, 郑源. 贯流式水轮机固液两相流压力脉动特性分析[J]. 中国电机工程学报, 2021, 41(22): 7692-7701. DOI: 10.13334/j.0258-8013.pcsee.202362
SUN Jie, GE Xinfeng, CAI Jianguo, LI Li, ZHAO Lei, ZHANG Lei, WANG Jinliang, ZHENG Yuan. Analysis of Pressure Pulsation Characteristics of Solid-liquid Two-phase Flow in Bulb Turbine[J]. Proceedings of the CSEE, 2021, 41(22): 7692-7701. DOI: 10.13334/j.0258-8013.pcsee.202362
Citation: SUN Jie, GE Xinfeng, CAI Jianguo, LI Li, ZHAO Lei, ZHANG Lei, WANG Jinliang, ZHENG Yuan. Analysis of Pressure Pulsation Characteristics of Solid-liquid Two-phase Flow in Bulb Turbine[J]. Proceedings of the CSEE, 2021, 41(22): 7692-7701. DOI: 10.13334/j.0258-8013.pcsee.202362

贯流式水轮机固液两相流压力脉动特性分析

Analysis of Pressure Pulsation Characteristics of Solid-liquid Two-phase Flow in Bulb Turbine

  • 摘要: 泥沙颗粒的存在会影响灯泡贯流式机组流道内的压力脉动,文中采用Euler模型和RNG k-ε湍流模型对某电站灯泡贯流式机组进行非定常计算,分析泥沙颗粒对压力脉动特性的影响,对比不同泥沙物性参数对压力脉动周期、系数的变化作用,并以导叶和叶片中间截面为例,探究影响湍动能分布的因素。研究表明,压力脉动主要来源于叶片通过频率和尾水低频脉动,叶片通过频率的影响从导叶进口至尾水管处逐渐减弱,而尾水低频脉动的影响从导叶进口至尾水管处逐渐增强。泥沙颗粒的存在,改变了清水条件下压力脉动原有的周期性。在转轮出口和尾水管处,压力脉动系数在时域上会发生剧烈波动,尾水管处尤为严重,在两相流工况(Dp=0.1mm, Cv=1%, ρ=2600kg/m3)下,其压力脉动在时域上的波动范围增大了近10倍。导叶与叶片中间截面处高湍动能区域的主要分布位置受转动环量、水流方向、泥沙颗粒沉降方向和单位体积内泥沙颗粒质量流量的影响。

     

    Abstract: The Euler model and RNG k-ε turbulence model were used to calculate the unsteady numerical value of bulb turbine to study sediment particles' effect on the pressure pulsation in the passage of bulb turbine. The effects of sediment particles on the pressure pulsation characteristics in single-phase and two-phase flow were analyzed. The effects of different sediment physical parameters on the period and coefficient of pressure pulsation were compared. The factors influencing turbulent kinetic energy distribution were explored in the guide vane and blade's middle section. The results show that the pressure pulsation mainly comes from the blade passing frequency and the draft tube low-frequency pulsation. The influence of blade passing frequency is gradually weakened from the guide vane inlet to the draft tube. The influence of the draft tube's low-frequency fluctuation gradually increases from the guide vane's inlet to the draft tube. The sediment-laden flow changes the original periodicity of pressure pulsation under the condition of clear water. At the runner outlet and draft tube, the pressure fluctuation coefficient will fluctuate violently. Under the two-phase flow condition (Dp=0.1mm, Cv=1%, ρ=2600kg/m3), the fluctuation range of the pressure fluctuation coefficient at the draft tube in time-domain increases nearly ten times. The main distribution of high turbulent kinetic energy in the middle section of the guide vane and blade is affected by the rotation circulation, flow direction, sediment settling direction, and sediment mass flow per unit volume.

     

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