This paper presents the results of the application of an advanced thermodynamic model developed by the authors for the simulation of Organic Rankine Cycles (ORCs). The model allows ORC simulation both for steady and transient analysis. The expander, selected to be a scroll expander, is modeled in detail by decomposing the behavior of the fluid stream into several steps. The energy source is coupled with the system through a plate heat exchanger (PHE), which is modeled using an iterative sub-heat exchanger modeling approach. The considered ORC system uses solar thermal energy for ultralow grade thermal energy recovery. The simulation model is used to investigate the influence of ORC characteristic parameters related to the working medium, ho...
The recurrent rises in energy demand and greenhouse gas emissions (GHGs) appeal for effective usage ...
Micro-combined heat and power generation (micro-CHP) based on the organic Rankine cycle (ORC) is a f...
Combined heat and power (CHP) systems are able to increase the total energy use of primary energy so...
This paper presents the results of the application of an advanced thermodynamic model developed by t...
This paper presents the results of the application of an advanced thermodynamic model developed by t...
This paper presents the results of the application of an advanced thermodynamic model developed by t...
Low-grade heat recovery from solar or geothermal energy may be an eco-friendly resource for electric...
This paper describes fundamental characteristics of a small organic Rankine cycle (ORC) system to be...
Increasing energy-demand and environmental concerns are leading to a growing interest in alternative...
Organic Rankine cycles (ORC) are efficient technologies for waste heat recovery (WHR) at low to mid ...
This paper presents a dynamic simulation model of a novel prototype of a 6 kWe solar power plant. Th...
AbstractIncreasing energy-demand and environmental concerns are leading to a growing interest in alt...
Although the energy consumption pattern has been optimized, the main problem facing by energy revol...
Organic Rankine Cycle (ORC) systems are one of the most suitable technologies to produce electricity...
Organic Rankine Cycle is one of the most efficient, profitable and feasible technology for low-to-me...
The recurrent rises in energy demand and greenhouse gas emissions (GHGs) appeal for effective usage ...
Micro-combined heat and power generation (micro-CHP) based on the organic Rankine cycle (ORC) is a f...
Combined heat and power (CHP) systems are able to increase the total energy use of primary energy so...
This paper presents the results of the application of an advanced thermodynamic model developed by t...
This paper presents the results of the application of an advanced thermodynamic model developed by t...
This paper presents the results of the application of an advanced thermodynamic model developed by t...
Low-grade heat recovery from solar or geothermal energy may be an eco-friendly resource for electric...
This paper describes fundamental characteristics of a small organic Rankine cycle (ORC) system to be...
Increasing energy-demand and environmental concerns are leading to a growing interest in alternative...
Organic Rankine cycles (ORC) are efficient technologies for waste heat recovery (WHR) at low to mid ...
This paper presents a dynamic simulation model of a novel prototype of a 6 kWe solar power plant. Th...
AbstractIncreasing energy-demand and environmental concerns are leading to a growing interest in alt...
Although the energy consumption pattern has been optimized, the main problem facing by energy revol...
Organic Rankine Cycle (ORC) systems are one of the most suitable technologies to produce electricity...
Organic Rankine Cycle is one of the most efficient, profitable and feasible technology for low-to-me...
The recurrent rises in energy demand and greenhouse gas emissions (GHGs) appeal for effective usage ...
Micro-combined heat and power generation (micro-CHP) based on the organic Rankine cycle (ORC) is a f...
Combined heat and power (CHP) systems are able to increase the total energy use of primary energy so...