A Computational Assessment of the Pressure–Flow Rate Relationship Within the Spiral Casing of a Hydraulic Turbine

Safety, profitability, as well as energy and resource efficiency of hydropower plants require, among others, appropriate operation of hydraulic turbines, which involves reliable estimation and monitoring of water flow rate. In this work, computer simulation is used for investigation of water flow through the spiral casing of a hydraulic turbine under real operating conditions. The wall pressure at the pre-defined monitoring points in a radial plane, such as used in the Winter–Kennedy measurement method, is calculated for a range of water flow rates. The choice of the boundary-condition type downstream of the stay vanes and sensitivity to adopted turbulent-flow approach are also investigated. The numerical results agree well with the reference measurements. A relation is established between the computed monitoring pressure difference and the corresponding incoming flow rate. Having measured the static pressure at the given points, it can be used for continuous estimation of the water flow rate in the turbine under actual operating conditions.

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Publication Details

Journal
International Journal of Turbomachinery Propulsion and Power
Published
2026-09-11
DOI
https://doi.org/10.3390/ijtpp11030039
Primary Topic
Cavitation Phenomena in Pumps
Type
article
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article

A Computational Assessment of the Pressure–Flow Rate Relationship Within the Spiral Casing of a Hydraulic Turbine

Safet Isić, Muris Torlak, Adis Bubalo, Ehlimana Kamenica
International Journal of Turbomachinery Propulsion and Power
Cavitation Phenomena in Pumps
article

A Computational Assessment of the Pressure–Flow Rate Relationship Within the Spiral Casing of a Hydraulic Turbine

Safet Isić, Muris Torlak, Adis Bubalo, Ehlimana Kamenica
article en

Abstract

Safety, profitability, as well as energy and resource efficiency of hydropower plants require, among others, appropriate operation of hydraulic turbines, which involves reliable estimation and monitoring of water flow rate. In this work, computer simulation is used for investigation of water flow through the spiral casing of a hydraulic turbine under real operating conditions. The wall pressure at the pre-defined monitoring points in a radial plane, such as used in the Winter–Kennedy measurement method, is calculated for a range of water flow rates. The choice of the boundary-condition type downstream of the stay vanes and sensitivity to adopted turbulent-flow approach are also investigated. The numerical results agree well with the reference measurements. A relation is established between the computed monitoring pressure difference and the corresponding incoming flow rate. Having measured the static pressure at the given points, it can be used for continuous estimation of the water flow rate in the turbine under actual operating conditions.

International Journal of Turbomachinery Propulsion and PowerVol. 11(3)
University of Sarajevo (BA), Dzemal Bijedic University of Mostar (BA)
Decent work and economic growth
Openalex Percentile: Top 19%
Cavitation Phenomena in Pumps
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A Computational Assessment of the Pressure–Flow Rate Relationship Within the Spiral Casing of a Hydraulic Turbine — Safet Isić, Muris Torlak, et al. · International Journal of Turbomachinery Propulsion and Power (2026) | TGRS Research Map | TGRS