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NUMERICAL SIMULATION AND EXPERIMENTAL INVESTIGATION OF THE GUIDE-VANE FLOW AND THE INFLUENCE FROM THE LEAKAGE FLOW
作者姓名:Project  supported  by  the  National  Natural  Science  Foundation  of  China.
作者单位:Institute of water Resources and Hydroelectric Engineering, Xi'an University of Technology, Xi'an 710048, China 
基金项目:ProjectsupportedbytheNationalNaturalScienceFoundationofChina.(GrantNo :5 98790 2 3)
摘    要:1 . INTRODUCTIONItiswellknownthatthedevelopmentofhy draulicturbineisforthebesthydraulicefficiencyandstabilityinoperation .Thestabilityofhy draulicturbineandits performanceofcavitationerosionarecloselyrelatedtothefluidflowintur binecasing ,stayvaneandguide…


NUMERICAL SIMULATION AND EXPERIMENTAL INVESTIGATION OF THE GUIDE-VANE FLOW AND THE INFLUENCE FROM THE LEAKAGE FLOW
Project supported by the National Natural Science Foundation of China..NUMERICAL SIMULATION AND EXPERIMENTAL INVESTIGATION OF THE GUIDE-VANE FLOW AND THE INFLUENCE FROM THE LEAKAGE FLOW[J].Journal of Hydrodynamics,2003,15(1).
Authors:Liao Wei-li  Li Jian-zhong
Affiliation:Grant No:59879023
Abstract:This paper presents numerical and experimental results of the flow in the tip clearance region of the guide vane row in hydraulic turbine. The 3 D Navier Stokes equations were employed to model the flow in end clearance region of guide vane cascade, the Reynolds stress differential model was used for turbulence closure, and the body fitted curvilinear coordinates and the SIMPLE algorithm were adopted. The governing equations were discretized with the non staggered grids by means of the finite volume method. Detailed comparison of hydrodynamical characteristics of guide vane in hydraulic turbine with or without tip gap was made. Special attention was paid to the influence of leakage flow on the main flow and to the movement of tip leakage flow in the end guide vane. The position and strength of the roll vortex on the sides of guide vane in were determined. The numerical solutions agree with the experimental results obtained by particle image velocimetry. The results help to clarify the loss, wear and cavitation erosion between the guide vane and rings, especially for those used in the Yellow River which has a high sediment content
Keywords:leakage flow  guide vane  Reynolds stress differential model  
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