In this paper, we investigate the adoption of working-fluid mixtures in ORC systems operating in combined heat and power (CHP) mode, with a power output provided by the expanding working fluid in the ORC turbine and a thermal energy output provided by the cooling water exiting (as a hot-water supply) the ORC condenser. We present a methodology for selecting optimal working-fluids in ORC systems with optimal CHP heat-to-electricity ratio and heat-supply temperature settings to match the seasonal variation in heat demand (temperature and intermittency of the load) of different end-users. A number of representative industrial waste-heat sources are considered by varying the ORC heat-source temperature over the range 150â 330 °C. It is ...
For waste-heat recovery applications, operating an organic Rankine cycle (ORC) with two-phase expans...
Combined heat and power (CHP) systems are able to decrease the total energy use of primary energy so...
The successful commercialisation of organic Rankine cycle (ORC) systems across a range of power outp...
In this paper, we investigate the adoption of working-fluid mixtures in ORC systems operating in com...
Organic Rankine cycle (ORC) power systems are being increasingly deployed for waste heat recovery an...
The performance of organic Rankine cycle (ORC) systems operating in combined heat and power (CHP) mo...
An ORC (organic Rankine cycle) module, designed and built for a specific CHP (combined heat and powe...
The organic Rankine cycle (ORC) is a promising technology for the conversion of waste heat from indu...
Several heat-to-power conversion technologies are being proposed as suitable for waste heat recovery...
Waste energy recovery (WER) is a suitable solution to improve the fuel utilization of Internal Combu...
There is significant interest in the deployment of organic Rankine cycle (ORC) technology for waste-...
The wider adoption of organic Rankine cycle (ORC) technology for power generation or cogeneration fr...
In the large spectrum of organic fluids suitable for Rankine cycles, a fluid that is already wellkno...
Space and water heating represent a significant share of the overall energy consumption in the domes...
In this study, experimental research was conducted to investigate the performance of a small-scale O...
For waste-heat recovery applications, operating an organic Rankine cycle (ORC) with two-phase expans...
Combined heat and power (CHP) systems are able to decrease the total energy use of primary energy so...
The successful commercialisation of organic Rankine cycle (ORC) systems across a range of power outp...
In this paper, we investigate the adoption of working-fluid mixtures in ORC systems operating in com...
Organic Rankine cycle (ORC) power systems are being increasingly deployed for waste heat recovery an...
The performance of organic Rankine cycle (ORC) systems operating in combined heat and power (CHP) mo...
An ORC (organic Rankine cycle) module, designed and built for a specific CHP (combined heat and powe...
The organic Rankine cycle (ORC) is a promising technology for the conversion of waste heat from indu...
Several heat-to-power conversion technologies are being proposed as suitable for waste heat recovery...
Waste energy recovery (WER) is a suitable solution to improve the fuel utilization of Internal Combu...
There is significant interest in the deployment of organic Rankine cycle (ORC) technology for waste-...
The wider adoption of organic Rankine cycle (ORC) technology for power generation or cogeneration fr...
In the large spectrum of organic fluids suitable for Rankine cycles, a fluid that is already wellkno...
Space and water heating represent a significant share of the overall energy consumption in the domes...
In this study, experimental research was conducted to investigate the performance of a small-scale O...
For waste-heat recovery applications, operating an organic Rankine cycle (ORC) with two-phase expans...
Combined heat and power (CHP) systems are able to decrease the total energy use of primary energy so...
The successful commercialisation of organic Rankine cycle (ORC) systems across a range of power outp...