Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Experimental and numerical analysis of blade channel vortices in a Francis turbine runner

View through CrossRef
PurposeThe purpose of this paper is to investigate, experimentally and numerically, the pressure pulse characteristics and unsteady flow behavior in a Francis turbine runner for moderate flow heads. The pressure pulses in the runner blade passage were predicted numerically for both moderate and high heads. The calculations were used to partition the turbine operating regions and to clarify the various for the unsteady flow behavior, especially the blade channel vortex in the runner.Design/methodology/approachExperimental and numerical analyses of pressure pulse characteristics at moderate flow heads in a Francis turbine runner were then extended to high heads through numerical modeling with 3D unsteady numerical simulations performed for a number of operating conditions. The unsteady Reynolds‐averaged Navier‐Stokes equations with the k‐ω‐based shear stress transport turbulence model were used to model the unsteady flow within the entire flow passage of a Francis turbine.FindingsThe dominate frequency of the predicted pressure pulses at runner inlet agree with the experimental results in the head cover at moderate flow heads. The influence of the blade passing frequency causes the simulated peak‐to‐peak amplitudes in the runner inlet to be larger than in the head cover. The measured and predicted pressure pulses at different positions along the runner are comparable. At the most unstable operating condition of 0.5a0 guide vane opening, the pressure pulses in the runner blade passage are due to the blade channel vortex and the rotor‐stator interference. The predictions show that the frequency of the blade channel vortex is relatively low and it changes with the operating conditions.Originality/valueThe paper describes a study which experimentally and numerically investigated the pressure pulses characteristics in a Francis turbine runner at moderate flow heads. The pulse characteristics and unsteady flow behavior due to the blade channel vortex in the runner at high heads were investigated numerically, with the turbine operating regions then partitioned to identify safe operating regions.
Title: Experimental and numerical analysis of blade channel vortices in a Francis turbine runner
Description:
PurposeThe purpose of this paper is to investigate, experimentally and numerically, the pressure pulse characteristics and unsteady flow behavior in a Francis turbine runner for moderate flow heads.
The pressure pulses in the runner blade passage were predicted numerically for both moderate and high heads.
The calculations were used to partition the turbine operating regions and to clarify the various for the unsteady flow behavior, especially the blade channel vortex in the runner.
Design/methodology/approachExperimental and numerical analyses of pressure pulse characteristics at moderate flow heads in a Francis turbine runner were then extended to high heads through numerical modeling with 3D unsteady numerical simulations performed for a number of operating conditions.
The unsteady Reynolds‐averaged Navier‐Stokes equations with the k‐ω‐based shear stress transport turbulence model were used to model the unsteady flow within the entire flow passage of a Francis turbine.
FindingsThe dominate frequency of the predicted pressure pulses at runner inlet agree with the experimental results in the head cover at moderate flow heads.
The influence of the blade passing frequency causes the simulated peak‐to‐peak amplitudes in the runner inlet to be larger than in the head cover.
The measured and predicted pressure pulses at different positions along the runner are comparable.
At the most unstable operating condition of 0.
5a0 guide vane opening, the pressure pulses in the runner blade passage are due to the blade channel vortex and the rotor‐stator interference.
The predictions show that the frequency of the blade channel vortex is relatively low and it changes with the operating conditions.
Originality/valueThe paper describes a study which experimentally and numerically investigated the pressure pulses characteristics in a Francis turbine runner at moderate flow heads.
The pulse characteristics and unsteady flow behavior due to the blade channel vortex in the runner at high heads were investigated numerically, with the turbine operating regions then partitioned to identify safe operating regions.

Related Results

Enhancement of Film Cooling Effectiveness Using Dean Vortices
Enhancement of Film Cooling Effectiveness Using Dean Vortices
Abstract Film cooling technology is widely used in gas turbines. Improvement of gas turbine thermal efficiency, specific power and specific thrust can be achieved by...
En skvatmølle i Ljørring
En skvatmølle i Ljørring
A Horizontal Mill at Ljørring, Jutland.Horizontal water-mills have been in use in Jutland since the beginning of the Christian era 2). But the one here described shows so close a c...
Wake Alleviating Devices for Offshore Wind Turbines
Wake Alleviating Devices for Offshore Wind Turbines
The wake behind an offshore wind turbine can persist for several turbine diameters, so decreasing the space between wind turbines in an array leads to strong wake-turbine interacti...
Six-Bucket Sim-Savonius Hybrid Turbine: Experimental Analysis and Performance Evaluation
Six-Bucket Sim-Savonius Hybrid Turbine: Experimental Analysis and Performance Evaluation
The growing awareness and apprehension regarding environmental issues have led to a surge in the demand for energy alternatives that are environmentally sustainable. Wind energy is...
Comprehensive Calculation And Performance Analysis Of Gas Turbine Reversible Power Turbine
Comprehensive Calculation And Performance Analysis Of Gas Turbine Reversible Power Turbine
Gas turbine technology trends to be maturing now, but the problem of which not being able to reverse directly remains resolve. In the field of marine, most ships reverse by adjusta...
Discrete element parameter calibration and wear characteristics analysis of soil-rotary tillage blade in gneiss mountainous area
Discrete element parameter calibration and wear characteristics analysis of soil-rotary tillage blade in gneiss mountainous area
Abstract Aiming at the problems of fast wear and short service life of rotary tillage blade in gneiss mountainous area, and the lack of accurate and reliable discrete eleme...
Improving Flow Circulation in Heat Sinks Using Quadrupole Vortices
Improving Flow Circulation in Heat Sinks Using Quadrupole Vortices
In this paper, we show that improved air circulation above a heat sink is possible using thin winglet-type vortex generators that can be passively retrofitted to an existing unit. ...
Light Manipulation with Reconfigurable Phase-Only Devices
Light Manipulation with Reconfigurable Phase-Only Devices
In the past five decades, light-based technologies based have caused increasing interest due to their applications in various sectors such as medicine, optical communications, and ...

Back to Top