The aim of this study is to evaluate the performance of combined cycle power plants in full and part-load operations in terms of energy, exergy and environment. The environmental analysis is performed using life cycle assessment method. Two different strategies are selected to control the gas turbine under part-load conditions, including Turbine Exhaust Temperature (TET) constant and Turbine Inlet Temperature (TIT) constant modes. Results show that gas turbine has a higher efficiency in TET constant mode. But, combined cycle shows a better efficiency in TIT constant mode. Exergy analysis results show that combustion chamber has the highest rate of exergy destruction, both...
Energy demand is increasing exponentially in the last decade. To meet such demand there is an urgent...
Energy demand is increasing exponentially in the last decade. To meet such demand there is an urgent...
Nowadays the difference between the supply and demand of energy continuously rises. Thus finding new...
The arriving optimum improvement of a thermodynamic system of energy conversion such as a combined c...
This paper presents the energy and exergy analysis for actual data of the triple-pressure combined c...
In this study an exergy analysis of 88.71 MW 13D2 gas turbine (GT) topping cycle is carried out. Exe...
In this study an exergy analysis of 88.71 MW 13D2 gas turbine (GT) topping cycle is carried out. Exe...
Exergy analysis of a 100MW gas turbine power plant that works on theBrayton cycle is presented. The ...
This study is about energy and exergy analysis of gas turbine power plant. Energy analysis is more q...
Efficiency and electrical power output of combined cycle power plants vary according to the ambient ...
Efficiency and electrical power output of combined cycle power plants vary according to the ambient ...
In this paper, a typical combined cycle power generation unit in Iran is simulated by a mathematical...
This paper studies the effect of ambient conditions on the performance of a 285 MW gas turbine unit ...
This paper studies the effect of ambient conditions on the performance of a 285 MW gas turbine unit ...
The strong influence of climate conditions on gas turbine behavior is well known. During the summer ...
Energy demand is increasing exponentially in the last decade. To meet such demand there is an urgent...
Energy demand is increasing exponentially in the last decade. To meet such demand there is an urgent...
Nowadays the difference between the supply and demand of energy continuously rises. Thus finding new...
The arriving optimum improvement of a thermodynamic system of energy conversion such as a combined c...
This paper presents the energy and exergy analysis for actual data of the triple-pressure combined c...
In this study an exergy analysis of 88.71 MW 13D2 gas turbine (GT) topping cycle is carried out. Exe...
In this study an exergy analysis of 88.71 MW 13D2 gas turbine (GT) topping cycle is carried out. Exe...
Exergy analysis of a 100MW gas turbine power plant that works on theBrayton cycle is presented. The ...
This study is about energy and exergy analysis of gas turbine power plant. Energy analysis is more q...
Efficiency and electrical power output of combined cycle power plants vary according to the ambient ...
Efficiency and electrical power output of combined cycle power plants vary according to the ambient ...
In this paper, a typical combined cycle power generation unit in Iran is simulated by a mathematical...
This paper studies the effect of ambient conditions on the performance of a 285 MW gas turbine unit ...
This paper studies the effect of ambient conditions on the performance of a 285 MW gas turbine unit ...
The strong influence of climate conditions on gas turbine behavior is well known. During the summer ...
Energy demand is increasing exponentially in the last decade. To meet such demand there is an urgent...
Energy demand is increasing exponentially in the last decade. To meet such demand there is an urgent...
Nowadays the difference between the supply and demand of energy continuously rises. Thus finding new...