Journal Article

·2019

Performance simulation of a double-reheat Rankine cycle mercury turbine system based on exergy

Güven Gonca YTU , İbrahim Genç

International Journal of Exergy

Abstract

In this paper, a performance investigation of a Rankine cycle mercury turbine system operating with methane and including two closed feed mercury heaters, one open feed mercury heater and three turbines is comprehensively performed. The most known performance specifications such as ecological coefficient of performance, exergy efficiency, exergy destruction, net power and net power density, and are utilised to examine and optimise the performance of the system. The influences of boiler and condenser temperatures, the first and second reheat stage temperatures, extracted mercury temperature on the performance properties of the system have been comprehensively investigated. Beside the mathematical model investigated in the paper, an artificial neural network (ANN) model is also presented and it is shown that a good approximation is computed with only five parameters.

Keywords

Exergy Rankine cycle Mercury (programming language) Degree Rankine Environmental science Organic Rankine cycle Turbine Computer science Thermodynamics Nuclear engineering Electricity generation Physics Power (physics) Engineering

Subject Areas

Thermodynamic and Exergetic Analyses of Power and Cooling Systems ·Mechanical Engineering ·Physical Sciences
Oil, Gas, and Environmental Issues ·Renewable Energy, Sustainability and the Environment ·Physical Sciences
Combustion and flame dynamics ·Computational Mechanics ·Physical Sciences

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