Modelling of hydraulic turbine for dynamic studies and performance analysis

Classical ideal lossless representation of the hydraulic turbine has been used widely in the past for governor stability studies. This model is suitable for small perturbations around the initial operating condition, and approximates to the practical turbine characteristics at low frequencies only....

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Published in2007 Australasian universities power engineering : Perth, Australia : 9-12 December 2007 pp. 1 - 6
Main Authors Yin Chin Choo, Muttaqi, K.M., Negnevitsky, M.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.12.2007
Subjects
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ISBN0646494880
9780646494883
DOI10.1109/AUPEC.2007.4548104

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Abstract Classical ideal lossless representation of the hydraulic turbine has been used widely in the past for governor stability studies. This model is suitable for small perturbations around the initial operating condition, and approximates to the practical turbine characteristics at low frequencies only. For satisfactory fast response and stable operation of governor studies, this classical model may not be adequate, rather a more accurate modelling of the turbine-penstock characteristics is desired to capture and depict the essential dynamic performances for wide variety of system analyses. In this paper, a hydraulic turbine model with long penstock is represented where the water hammer effects and friction are taken in consideration. A detailed hydraulic turbine-penstock utilised for governing stability studies is used to analyse the transient response when subject to a load disturbance. Frequency response analysis as well as transient response analysis is performed to evaluate the effects of the detailed modelling of the turbine-penstock to the stability analyses and the dynamic performances.
AbstractList Classical ideal lossless representation of the hydraulic turbine has been used widely in the past for governor stability studies. This model is suitable for small perturbations around the initial operating condition, and approximates to the practical turbine characteristics at low frequencies only. For satisfactory fast response and stable operation of governor studies, this classical model may not be adequate, rather a more accurate modelling of the turbine-penstock characteristics is desired to capture and depict the essential dynamic performances for wide variety of system analyses. In this paper, a hydraulic turbine model with long penstock is represented where the water hammer effects and friction are taken in consideration. A detailed hydraulic turbine-penstock utilised for governing stability studies is used to analyse the transient response when subject to a load disturbance. Frequency response analysis as well as transient response analysis is performed to evaluate the effects of the detailed modelling of the turbine-penstock to the stability analyses and the dynamic performances.
Author Muttaqi, K.M.
Negnevitsky, M.
Yin Chin Choo
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  fullname: Negnevitsky, M.
  organization: Centre for Renewable Energy & Power Syst., Univ. of Tasmania, Hobart, TAS
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Snippet Classical ideal lossless representation of the hydraulic turbine has been used widely in the past for governor stability studies. This model is suitable for...
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SubjectTerms Frequency
Governors
Hydraulic systems
Hydraulic Turbine-Penstock Model
Hydraulic turbines
Performance analysis
Power system dynamics
Power system modeling
Power system reliability
Power system stability
Stability
Stability analysis
Water
Title Modelling of hydraulic turbine for dynamic studies and performance analysis
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