葛新峰, 孙洁, 蔡建国, 姜梅, 韩洋, 王金亮, 张雷, 武恩全, 郑源. 超低水头两叶片灯泡贯流式水轮机固液两相流研究[J]. 中国电机工程学报, 2022, 42(4): 1481-1493. DOI: 10.13334/j.0258-8013.pcsee.210198
引用本文: 葛新峰, 孙洁, 蔡建国, 姜梅, 韩洋, 王金亮, 张雷, 武恩全, 郑源. 超低水头两叶片灯泡贯流式水轮机固液两相流研究[J]. 中国电机工程学报, 2022, 42(4): 1481-1493. DOI: 10.13334/j.0258-8013.pcsee.210198
GE Xinfeng, SUN Jie, CAI Jianguo, JIANG Mei, HAN Yang, WANG Jinliang, ZHANG Lei, WU Enquan, ZHENG Yuan. Study on Solid-liquid Two-phase Flow of Extra Low Head Two-blade Bulb Tubular Turbine[J]. Proceedings of the CSEE, 2022, 42(4): 1481-1493. DOI: 10.13334/j.0258-8013.pcsee.210198
Citation: GE Xinfeng, SUN Jie, CAI Jianguo, JIANG Mei, HAN Yang, WANG Jinliang, ZHANG Lei, WU Enquan, ZHENG Yuan. Study on Solid-liquid Two-phase Flow of Extra Low Head Two-blade Bulb Tubular Turbine[J]. Proceedings of the CSEE, 2022, 42(4): 1481-1493. DOI: 10.13334/j.0258-8013.pcsee.210198

超低水头两叶片灯泡贯流式水轮机固液两相流研究

Study on Solid-liquid Two-phase Flow of Extra Low Head Two-blade Bulb Tubular Turbine

  • 摘要: 超低水头贯流式机组无论在电站增容改造方面,还是在超低水头开发方面,都具有巨大潜力。然而,水流中裹挟的泥沙会对机组运行产生不利影响,在汛期尤为严重,研究泥沙磨损问题对于机组的稳定运行具有重要意义。基于CFX平台,使用 k-\epsilon 湍流模型,拉格朗日颗粒跟踪模型和Tabakoff and Grant磨损模型对2.1m超低水头下的两叶片灯泡贯流式水轮机进行了固液两相流数值模拟计算。通过实验验证数模计算的可靠性,对比单相及两相流工况下的涡流特性,探究不同泥沙浓度(Cv=1%~10%)、颗粒直径(D= 0.1~1mm)对过流部件磨损位置、侵蚀率以及流动特性的影响。结论如下:在清水中加入泥沙颗粒后,泥沙颗粒对旋涡有增强作用;导叶凹面,叶片正面进水侧头部、叶片出水边、叶片轮缘,以及转轮室都是比较容易遭受磨损的部位;随着泥沙颗粒浓度、直径的增加,导叶、叶片及转轮室的磨损面积、磨损程度以及最大磨损率都呈上升趋势;相较于导叶,叶片和转轮室的磨损程度更为严重,在汛期运行时要更加注重磨损防护。

     

    Abstract: The ultra-low head bulb tubular turbine units have great potential in both the capacity-increasing of power plants and ultra-low head development. However, the sediment carried in the flow will have a negative impact on the operation of units, especially in the flood season. The study of sediment erosion is of great significance to the stable operation of units. Based on CFX code, k-ε turbulence model, Lagrangian particle tracking model, and Tabakoff and Grant erosion model were used to calculate the solid-liquid two-phase flow of two-blade bulb tubular turbine under 2.1m ultra-low head. In this paper, the reliability of numerical simulation was verified by experiments. The swirl characteristics under single-phase and two-phase flow conditions were compared. The influences of different sediment concentrations and sizes on the erosion location, erosion rate, and flow characteristics of flow passage components were explored. The conclusions are as follows: Compared with the vortex in clear water, the vortex in sediment-laden flow is enhanced. The concave surface of the guide vane, the head of blades inlet edge, the blade outlet edge, the runner rim, and the runner chamber are more vulnerable to sediment erosion. With the increase of silt particle concentration and size, the erosion area, erosion degree, and maximum erosion rate of guide vanes, blades, and runner chamber will also be increased. Compared with guide vanes, the hydro-abrasive erosion of blades and runner chamber is more serious. More attention should be paid to erosion protection during the operation in flood season.

     

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