This paper presents the effect of operation conditions (compression ratio, turbine inlet temperature, air to fuel ratio and efficiency of compressor and turbine) on the
performance of gas turbine power plant. The computational model was developed utilizing the MATLAB codes. Turbine work found to be decreases as ambient temperature increases as well as the thermal efficiency decreases. It can be seen that the thermal efficiency increases linearly with increases of compression ratio while decreases of ambient temperature. The specific fuel consumption increases with
increases of ambient temperature and lower turbine inlet temperature. The effect of variation of SFC is more significance at higher ambient temperature than lower
temperature. It is observed that the thermal efficiency linearly increases at lower compressor ratio as well as higher turbine inlet temperature until certain value of
compression ratio. The variation of thermal efficiency is more significance at higher compression ratio and lower turbine inlet temperature. Even though at lower turbine
inlet temperature is decrement the thermal efficiency dramatically and the SFC decreases linearly with increases of compression ratio and turbine inlet temperature at
lower range until certain value then increases dramatically for lower turbine inlet temperature.
[1]
Mahmood Farzaneh-Gord,et al.
A new approach for enhancing performance of a gas turbine (case study: Khangiran refinery)
,
2009
.
[2]
Black.
Power Plant Engineering
,
2005
.
[3]
Kumar Naradasu Ravi,et al.
Thermodynamic analysis of heat recovery steam generator in combined cycle power plant
,
2007
.
[4]
F. J. Wang,et al.
Performance improvement for a simple cycle gas turbine GENSET--a retrofitting example
,
2002
.
[5]
Ahmed F. El-Sayed,et al.
Aircraft Propulsion and Gas Turbine Engines
,
2008
.
[6]
Y. Çengel,et al.
Thermodynamics : An Engineering Approach
,
1989
.
[7]
Noam Lior,et al.
Power Generation Analysis for High-Temperature Gas Turbine in Thermodynamic Process
,
2000
.
[8]
Thamir K. Ibrahim,et al.
Thermal Analysis of Open-Cycle Regenerator Gas-Turbine Power-Plant
,
2010
.
[9]
Henry Cohen,et al.
Gas turbine theory
,
1973
.