Study on Internal Flow Characteristics and Abrasive Wear of Pelton Turbine in Sand Laden Water

被引:10
|
作者
Huang, Yu [1 ]
Deng, Fangxiong [2 ]
Deng, Huiming [1 ]
Qing, Qiwei [2 ]
Qin, Mengjun [1 ]
Liu, Jitao [1 ]
Yu, Zhishun [1 ]
Pang, Jiayang [3 ]
Liu, Xiaobing [1 ]
机构
[1] Xihua Univ, Key Lab Fluid & Power Machinery, Minist Educ, Chengdu 610039, Peoples R China
[2] CHN Energy Dadu River Geshizha Hydropower Dev Co L, Ganzi 626300, Peoples R China
[3] China Agr Univ, Coll Water Resources & Civil Engn, Beijing 100083, Peoples R China
关键词
sand laden water; pelton turbine; liquid-air-solid three-phase flow; abrasive wear; wear prediction; NUMERICAL-ANALYSIS; EROSION; SIMULATION; BUCKETS; RUNNER; MODEL;
D O I
10.3390/pr11051570
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
When a Pelton turbine operates in sand laden water, the abrasive wear of its overflow components by high-speed jets is serious. Based on the VOF (volume of fluid) multiphase flow model, the SST (shear stress transfer) k-? turbulence model, the particle motion Lagrangian model, the generic wear model, and the SIMPLEC (Semi-Implicit Method for Pressure Linked Equations Consistent) algorithm, the liquid-air-solid three-phase flow in the key overflow components of a Pelton turbine were simulated, the abrasive wear was predicted, and the internal sand-water flow characteristics and the abrasive wear of the overflow components were analyzed. The results show that the trailing edge at the root of the runner bucket, the leading face of the bucket near the root, the notch, and the splitter are severely worn. The abrasive wear of the splitter and the notch is more severe than that of the leading face of the bucket. The wear rate from the splitter to the trailing edge increases first and then decreases. The wear pattern of the needle tip is mainly "dotted", while that of the nozzle opening is "flaky", and the abrasive wear of the nozzle opening is more severe than that of the needle. The predicted results are consistent with the actual conditions at the site of the power station. This study provides a technical method for the prediction of abrasive wear of the Pelton turbine and a technical basis for the operation and maintenance of the power station.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] Study on Sand Wear Testing and Numerical Simulation of a 500 MW Class Pelton Turbine
    Li, Jialing
    Pang, Jiayang
    Qin, Mengjun
    Liu, Xiaobing
    Hua, Hong
    Wu, Baofu
    Zhang, Haiku
    Liu, Jitao
    Yu, Zhishun
    Zeng, Yongzhong
    WATER, 2025, 17 (03)
  • [2] Sediment-laden flow and erosion modeling in a Pelton turbine injector
    Guo, Bao
    Xiao, Yexiang
    Rai, Anant Kumar
    Zhang, Jin
    Liang, Quanwei
    RENEWABLE ENERGY, 2020, 162 : 30 - 42
  • [3] Analysis of Sediment and Water Flow and Erosion Characteristics of Large Pelton Turbine Injector
    Liu, Jitao
    Pang, Jiayang
    Liu, Xiaobing
    Huang, Yu
    Deng, Huiming
    PROCESSES, 2023, 11 (04)
  • [4] Development of a test rig to evaluate abrasive wear on Pelton turbine nozzles. A case study of Chivor Hydropower
    Morales, Andres M. B.
    Pachon, Ivan F.
    Jaime Loboguerrero, U.
    Medina, Jorge A.
    Escobar, Jairo A. G.
    WEAR, 2017, 372 : 208 - 215
  • [5] Hydro-abrasive erosion in Pelton turbine injectors: A numerical study
    Messa, Gianandrea Vittorio
    Mandelli, Simone
    Malavasi, Stefano
    RENEWABLE ENERGY, 2019, 130 : 474 - 488
  • [6] Investigation on unstable flow characteristics and energy dissipation in Pelton turbine
    Fan, Wenrui
    Sun, Longgang
    Guo, Pengcheng
    ENGINEERING APPLICATIONS OF COMPUTATIONAL FLUID MECHANICS, 2024, 18 (01)
  • [7] Numerical simulation of multiphase flow and prediction of sediment wear in a large Pelton turbine
    Qin, Mengjun
    Yu, Zhishun
    Wu, Baofu
    Pang, Jiayang
    Jiang, Dengyun
    Zhang, Haiku
    Liu, Jitao
    Hua, Hong
    Liu, Xiaobing
    ENERGY SCIENCE & ENGINEERING, 2024, 12 (11) : 5031 - 5044
  • [8] Experimental and numerical investigation of hydro-abrasive erosion in the Pelton turbine buckets for multiphase flow
    Khan, Rehan
    Ullah, Sati
    Qahtani, Faez
    Pao, William
    Talha, Tariq
    RENEWABLE ENERGY, 2024, 222
  • [9] Physics of secondary flow phenomenon and erosion characteristics in the injector of a Pelton turbine
    Guo, Tao
    Liu, Si-yuan
    Hu, Xue-jie
    Luo, Zhu-mei
    ENGINEERING APPLICATIONS OF COMPUTATIONAL FLUID MECHANICS, 2025, 19 (01)
  • [10] Laser Doppler Anemometry technique to study the flow field in the nozzle and in the water jet of a Pelton turbine
    Pisaturo, Giuseppe Roberto
    Nicolosi, Francesco Fabio
    Gusmerotti, Daniele
    Righetti, Maurizio
    Renzi, Massimiliano
    XXVI BIENNIAL SYMPOSIUM ON MEASURING TECHNIQUES IN TURBOMACHINERY, MTT2622, 2023, 2511