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Numerical Simulation of Unsteady Turbulent Flow through a Francis Turbine

Numerical Simulation of Unsteady Turbulent Flow through a Francis Turbine
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摘要 This paper introduces the 3D numerical simulation of unsteady turbulent flow in the entire flow passage of a Francis turbine with computational fluid dynamics (CFD) technology. The boundary conditions have been implemented based on the 3D averaged Navier-Stokes equations. The governing equations are discreted on space by the finite volume method and on time step by the finite difference method. The 3D unsteady turbulent flow in an entire Francis turbine model is calculated successfully using the CFX-TASCflow software and RNG k-ε turbulence model. Transient flow fields are simulated in the spiral case, the distributor, the runner, and the draft tube for the optimum operating condition. Meanwhile, the velocity and pressure at any points in the flow fields can be obtained so as to provide the great value on the performance prediction. By means of the numerical simulation in a flow field, it is verified that every component in a Francis turbine model is designed reasonably. The basis for the further researches on hydraulic turbines is also built. This paper introduces the 3D numerical simulation of unsteady turbulent flow in the entire flow passage of a Francis turbine with computational fluid dynamics (CFD) technology. The boundary conditions have been implemented based on the 3D averaged Navier-Stokes equations. The governing equations are discreted on space by the finite volume method and on time step by the finite difference method. The 3D unsteady turbulent flow in an entire Francis turbine model is calculated successfully using the CFX-TASCflow software and RNG k-ε turbulence model. Transient flow fields are simulated in the spiral case, the distributor, the runner, and the draft tube for the optimum operating condition. Meanwhile, the velocity and pressure at any points in the flow fields can be obtained so as to provide the great value on the performance prediction. By means of the numerical simulation in a flow field, it is verified that every component in a Francis turbine model is designed reasonably. The basis for the further researches on hydraulic turbines is also built.
出处 《Wuhan University Journal of Natural Sciences》 CAS 2011年第2期179-184,共6页 武汉大学学报(自然科学英文版)
基金 Supported by the Science Foundation of Yunnan Provincial Science and Technology Department (2009ZC029 M) the Research Founda-tion for Doctors of Kunming University of Science and Technology (2009-023)
关键词 Francis turbine unsteady flow computer simulation TURBULENCE computational fluid dynamics (CFD) Francis turbine unsteady flow computer simulation turbulence computational fluid dynamics (CFD)
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