This paper presents a mathematical model for the thermo-economic evaluation of an Organic Rankine Cycle (ORC), which recovers exhaust gases from an internal combustion engine (ICE) based cogeneration plant, currently in operation in Turin, Italy. The model is based on a complete set of experimental data of the plant, for both nominal and partial load operation conditions. The main components of the ORC plant have been modelled and a thermo-economic analysis has been carried out for each component. The aim of the paper is to perform a thermo-economic analysis of the system through the Theory of Exergetic Cost, in order to provide a complete diagnosis of the plant, by quantifying the performances of the whole system and its sub-systems, and b...
A comparative exergoeconomic analysis is reported for waste heat recovery from a gas turbine-modular...
Organic Rankine Cycle is one of the most promising solutions for utilisation of waste heat. Even tho...
Combined heat and power (CHP) systems are able to decrease the total energy use of primary energy so...
Low-grade heat sources are abundant on earth but are majorly untapped due to lower thermodynamic eff...
This paper presents a thermo-economic analysis of a simple organic Rankine cycle (SORC) as a waste h...
AbstractThe aim of the paper is the investigation of the energetic performances and the economic fea...
In this paper, the modeling and simulation of a solar and biomass powered organic Rankine cycle (ORC...
The Organic Rankine Cycle (ORC) may be the superior cycle for power generation using low temperature...
: In the past few years a special attention has been paid to the use of renewable energy, but some n...
This manuscript presents an advanced exergo-economic analysis of a waste heat recovery system based ...
Executive Summary This investigation aimed to assess the true technical and environmental potential,...
To improve the efficiency of a diesel internal combustion engine (ICE), the waste heat carried out b...
Objectives: To evaluate the energy and exergy performances of a designed ORC system and to quantify ...
This study is aimed at investigating optimization potentials in a conceptual hybrid solar-biomass or...
The combined thermo-generator and organic rankine cycle (TEG-ORC) used in exhaust heat recovery of i...
A comparative exergoeconomic analysis is reported for waste heat recovery from a gas turbine-modular...
Organic Rankine Cycle is one of the most promising solutions for utilisation of waste heat. Even tho...
Combined heat and power (CHP) systems are able to decrease the total energy use of primary energy so...
Low-grade heat sources are abundant on earth but are majorly untapped due to lower thermodynamic eff...
This paper presents a thermo-economic analysis of a simple organic Rankine cycle (SORC) as a waste h...
AbstractThe aim of the paper is the investigation of the energetic performances and the economic fea...
In this paper, the modeling and simulation of a solar and biomass powered organic Rankine cycle (ORC...
The Organic Rankine Cycle (ORC) may be the superior cycle for power generation using low temperature...
: In the past few years a special attention has been paid to the use of renewable energy, but some n...
This manuscript presents an advanced exergo-economic analysis of a waste heat recovery system based ...
Executive Summary This investigation aimed to assess the true technical and environmental potential,...
To improve the efficiency of a diesel internal combustion engine (ICE), the waste heat carried out b...
Objectives: To evaluate the energy and exergy performances of a designed ORC system and to quantify ...
This study is aimed at investigating optimization potentials in a conceptual hybrid solar-biomass or...
The combined thermo-generator and organic rankine cycle (TEG-ORC) used in exhaust heat recovery of i...
A comparative exergoeconomic analysis is reported for waste heat recovery from a gas turbine-modular...
Organic Rankine Cycle is one of the most promising solutions for utilisation of waste heat. Even tho...
Combined heat and power (CHP) systems are able to decrease the total energy use of primary energy so...