Design of Rowen's Model for Heavy Duty Gas Turbine (HDGT)

Authors

  • Dr. S. Ezhil Arasan  Associate Professor, Department of Electrical and Electronics Engineering, PRIST University, Tanjore, Tamil Nadu, India
  • Vijayan. M  P.G Scholar, Power systems, PRIST University, Tanjore, Tamil Nadu, India

DOI:

https://doi.org//10.32628/CSEIT1953141

Keywords:

Dynamic Simulation, Thermodynamic Process, Rowen's Model.

Abstract

In this paper, the parameters of Rowen’s model for heavy duty gas turbines in dynamic studies are estimated by use of available operational and performance data. The transfer function model of heavy duty gas turbine is required for the analysis and development of optimal controllers. The speedtronic controller derived from Rowen’s model has three controller namely, speed, acceleration and temperature. The model with all these controllers is developed with MATLAB/Simulink to study their response and arrive at the simplified model. The speed controller may have isochronous or drooping governor characteristics. The choice of governor characteristics for the simplified model is made from the response of the system simulated for an unit step load disturbance. The equations are to be validated with the response of the system simulated using MATLAB/Simulink.

References

  1. W. I. Rowen, “Simplified mathematical representations of heavy-duty gas turbines”, ASME J. Eng. Power, Vol. 105, pp. 865–869, 1983.
  2. W.I. Rowen, “Simplified Mathematical Representations of Single Shaft Gas Turbines in Mechanical Drive Service”, Turbomachinery International, pp. 26-32., July/August 1992.
  3. Hany Emam Shalan, "Modeling and Control of Gas Turbine in Combined Cycle Power Plant", M.Sc Thesis, Cairo University, Giza, Egypt, End of 2010.
  4. M. R. Bank Tavakoli, B. Vahidi, and W. Gawlik, “An Educational Guide to Extract the Parameters of Heavy Duty Gas Turbines Model in Dynamic Studies Based on Operational Data”, IEEE Trans. Power Syst., Vol. 24, No. 3, August 2009.
  5. Naoto Kakimoto, and Kazuhiro Baba, “Performance of Gas Turbine-Based Plants During Frequency Drops”, IEEE Trans. on Power Syst., Vol. 18, No. 3, August 2003.
  6. Gillian Lalor, Julia Ritchie, Damian Flynn, and Mark J. O’Malley, “The Impact of CombinedCycle Gas Turbine Short-Term Dynamics on Frequency Control”, IEEE Trans. on Power Syst., Vol. 20, No. 3, August 2005.
  7. MATLAB, The Language of Technical Computing, Version 7.6.0.324 (R2008a), SIMULINK, Dynamic system Simulation for Matlab, Version 7.1 (R2008a), 2008.
  8. H. E. M. A. Shalan, M. A. Moustafa Hassan, A. B. G. Bahgat; "Modeling Of Gas Turbines In Combined Cycle Power Plants", Accepted for presentation at ECE-10 CONFERENCE, Organized by MSA, Egypt, Nov. 2010.
  9. H. E. M. A. Shalan, M. A. Moustafa Hassan, A. B. G. Bahgat; " Comparative Study On Modeling Of Gas Turbines In Combined Cycle Power Plants", Accepted for presentation at 14th MEPCON2010 CONFERENCE, Organized by Elec. Power Dept., Cairo University, Egypt, Dec. 2010.
  10. Siemens AG, Power Generation Group, Siemens Gas Turbines Manuals, Model V94.3A (SGT5- 4000F), Windows Turbine-Generator Analysis Systems, "WIN-TS".
  11. B. Vahidi, M. R. Bank Tavakoli, and W. Gawlik, “Determining parameters of turbine’s model using heat balance data of steam power unit for educational purposes,” IEEE Trans. Power Syst., vol. 22, no. 4, pp. 1547–1553, Nov. 2007.
  12. W. C. Reynolds, Thermodynamic Properties in SI. Palo Alto, CA: Stanford Univ., 1979.
  13. Soon Kiat Yee, Jovica V. Milanovic´, and F.Michael Hughes, “Overview and Comparative Analysis of Gas Turbine Models for System Stability Studies” IEEE Trans. Power Syst., Vol. 23, No. 1, February 2008.
  14. P. Kundur, “Power System Stability and Control”. New York: McGraw-Hill, Inc., 1994.
  15. Hoa D. Vu, J. C. Agee, WECC Control Work Group, "WECC Tutorial on Speed Governors", available at (www.wecc.biz), revised June 2002.

Downloads

Published

2019-06-30

Issue

Section

Research Articles

How to Cite

[1]
Dr. S. Ezhil Arasan, Vijayan. M, " Design of Rowen's Model for Heavy Duty Gas Turbine (HDGT), IInternational Journal of Scientific Research in Computer Science, Engineering and Information Technology(IJSRCSEIT), ISSN : 2456-3307, Volume 5, Issue 3, pp.468-472, May-June-2019. Available at doi : https://doi.org/10.32628/CSEIT1953141