Journal Article

·2020

Environmental impact and cost analysis of gas turbine cycles with steam injection and inter-stage turbine reheat

Hasan Kayhan Kayadelen YTU , Yasin Üst YTU , Veysi Başhan YTU

International Journal of Global Warming

Abstract

Inter-stage turbine reheat is an effective gas turbine retrofit which can easily be used with simple and steam injected gas turbines as well. Owing to the uncertainties relating to an efficiency comparison of steam injected and no-injection cycle designs, thermoeconomics and environmental impacts have been considered to evaluate reheat and steam injection which regards pollutant emissions and environmental costs together. Being the complemental of the authors previous studies on steam injected gas turbines, simple, reheat, steam injected (STIG) and reheat steam injected (RHSTIG) gas turbine cycles are compared. Economic feasibility of steam injection as well as inter-stage turbine reheat are discussed according to 2018 plant cost data. Optimal cycle parameters are determined using a new comprehensive cycle model which permits to work with realistic working fluids, simulates the combustion process regarding 14 exhaust species and determines NOx and CO emissions.

Keywords

Combined cycle Steam-electric power station Steam injection Heat recovery steam generator Steam turbine Turbine Gas turbines Combustion Environmental science NOx Pollutant Combustion chamber Stage (stratigraphy) Surface condenser Engineering Waste management Nuclear engineering Process engineering Superheated steam Mechanical engineering Chemistry

Subject Areas

Advanced Aircraft Design and Technologies ·Global and Planetary Change ·Physical Sciences
Vehicle emissions and performance ·Automotive Engineering ·Physical Sciences
Catalytic Processes in Materials Science ·Materials Chemistry ·Physical Sciences