Thermodynamics performance analysis of a Gas Turbine under Variable Ambient Temperatures: A case Study of South Tripoli Power Plant with Cycle Improvement Techniques

Authors

  • Al-Mabrouk Abdeljalil Department of Mechanical and Industrial Engineering, Azzytuna University, Tarhuna, Libya Author
  • Imad Mokhtar Department of Mechanical and Industrial Engineering, Azzytuna University, Tarhuna, Libya Author
  • Abdulrahman Abdo Abdelsalam Department of Mechanical and Industrial Engineering, Azzytuna University, Tarhuna, Libya Author
  • Mohammed Ghaluosh Department of Mechanical and Industrial Engineering, Azzytuna University, Tarhuna, Libya Author
  • Al-Mutasim Billah Department of Mechanical and Industrial Engineering, Azzytuna University, Tarhuna, Libya Author

DOI:

https://doi.org/10.65421/jibas.v2i3.176

Keywords:

South Tripoli Power Plant, Brayton Cycle, ambient air temperature, Regenerator Effectiveness

Abstract

This study investigates the effect of ambient air temperature on the performance of a gas turbine power plant based on real operational data from the South Tripoli Gas Power Plant. The analysis focuses on key performance parameters including net power output, thermal efficiency, and back work ratio under different seasonal conditions. A thermodynamic evaluation of the real cycle was conducted, followed by a comparative analysis with two enhancement techniques: regeneration and the fully improved cycle (intercooling, reheat, and regeneration), while maintaining the same operating conditions to ensure a fair comparison. Concludes that advanced cycle modifications are effective in enhancing gas turbine performance, particularly in hot-climate regions such as Libya.

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Published

2026-08-15

Issue

Section

Articles

How to Cite

Thermodynamics performance analysis of a Gas Turbine under Variable Ambient Temperatures: A case Study of South Tripoli Power Plant with Cycle Improvement Techniques. (2026). Journal of Insights in Basic and Applied Sciences, 2(3), 476-490. https://doi.org/10.65421/jibas.v2i3.176