Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis Turbine

In this paper, the Eulerian–Lagrangian method and Tabakoff erosion model are used to study the solid–liquid two-phase flow in a Francis turbine. Through the analysis of the overall flow pattern, particle flow, particle concentration, and wear in the bladeless area of the unit under different guide v...

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Main Authors: Zhiqiang Jin, Xijie Song, Anfu Zhang, Feng Shao, Zhengwei Wang
Format: Article
Language:English
Published: MDPI AG 2022-10-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/14/20/3268
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author Zhiqiang Jin
Xijie Song
Anfu Zhang
Feng Shao
Zhengwei Wang
author_facet Zhiqiang Jin
Xijie Song
Anfu Zhang
Feng Shao
Zhengwei Wang
author_sort Zhiqiang Jin
collection DOAJ
description In this paper, the Eulerian–Lagrangian method and Tabakoff erosion model are used to study the solid–liquid two-phase flow in a Francis turbine. Through the analysis of the overall flow pattern, particle flow, particle concentration, and wear in the bladeless area of the unit under different guide vane openings, the influence of runner radial gap flow on the surrounding flow field characteristics and wear under different guide vane openings is revealed. The results show that the smaller the opening of the guide vane, the greater the influence on the vortices and flow pattern and the particle distribution in the runner. The overall wear in the hydraulic turbine unit with the optimal opening is the smallest. The long-term wear of the runner inlet and guide vane outlet will cause the loss of local structures, an increase in the radial clearance of the runner, an increase in the clearance leakage, an increase in the vibration of the unit, and a reduction in efficiency. The research results provide a basis for the structural and hydraulic optimization of the Francis turbine.
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spelling doaj.art-9041224f55e2447e95eaa9862cc306e22023-11-24T03:12:37ZengMDPI AGWater2073-44412022-10-011420326810.3390/w14203268Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis TurbineZhiqiang Jin0Xijie Song1Anfu Zhang2Feng Shao3Zhengwei Wang4Xinjiang Xinhua Hydroelectric Investment Technology Co., Ltd., Akesu 843300, ChinaState Key Laboratory of Hydroscience and Engineering, Department of Energy and Power Engineering, Tsinghua University, Beijing 100084, ChinaXinjiang Xinhua Hydroelectric Investment Technology Co., Ltd., Akesu 843300, ChinaXinjiang Xinhua Hydroelectric Investment Technology Co., Ltd., Akesu 843300, ChinaState Key Laboratory of Hydroscience and Engineering, Department of Energy and Power Engineering, Tsinghua University, Beijing 100084, ChinaIn this paper, the Eulerian–Lagrangian method and Tabakoff erosion model are used to study the solid–liquid two-phase flow in a Francis turbine. Through the analysis of the overall flow pattern, particle flow, particle concentration, and wear in the bladeless area of the unit under different guide vane openings, the influence of runner radial gap flow on the surrounding flow field characteristics and wear under different guide vane openings is revealed. The results show that the smaller the opening of the guide vane, the greater the influence on the vortices and flow pattern and the particle distribution in the runner. The overall wear in the hydraulic turbine unit with the optimal opening is the smallest. The long-term wear of the runner inlet and guide vane outlet will cause the loss of local structures, an increase in the radial clearance of the runner, an increase in the clearance leakage, an increase in the vibration of the unit, and a reduction in efficiency. The research results provide a basis for the structural and hydraulic optimization of the Francis turbine.https://www.mdpi.com/2073-4441/14/20/3268Francis turbineguide vane openingsediment erosionclearanceCFD
spellingShingle Zhiqiang Jin
Xijie Song
Anfu Zhang
Feng Shao
Zhengwei Wang
Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis Turbine
Water
Francis turbine
guide vane opening
sediment erosion
clearance
CFD
title Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis Turbine
title_full Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis Turbine
title_fullStr Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis Turbine
title_full_unstemmed Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis Turbine
title_short Prediction for the Influence of Guide Vane Opening on the Radial Clearance Sediment Erosion of Runner in a Francis Turbine
title_sort prediction for the influence of guide vane opening on the radial clearance sediment erosion of runner in a francis turbine
topic Francis turbine
guide vane opening
sediment erosion
clearance
CFD
url https://www.mdpi.com/2073-4441/14/20/3268
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