This paper reports the design and evaluation of a 1 kWe Organic Rankine cycle using different working fluids for engine coolant and exhaust recovery from a 6.5 kW small ICE. Six working fluids have been selected to evaluate and compare the performance of the ORC system. The net power output, thermal efficiency, rotational speed of the scroll expander and condenser load of the ORC system have been studied. Results indicated R134a and R125a have better overall performance than other candidates when the designed inlet temperature of the expander is higher than 150 °C. The highest net power and thermal efficiency are respectively 1.2 kW and 13% when R125a is used as the working fluid. R600 and R245fa are desirable to be used when the optimal ro...
Engine waste heat recovery technology especially Organic Rankine cycle (ORC) has been widely studied...
Compressed air production is an energy-intensive sector, thus compressor manufacturers are constantl...
© 2017 The Author(s). It is commonly accepted that waste heat recovery technologies are significant ...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
The performance of organic Rankine cycle (ORC) systems operating in combined heat and power (CHP) mo...
The growing cost for energy production and distribution as well as problems related to environmental...
This paper describes a study of the relative influences of different system design decisions upon th...
Organic Rankine cycle (ORC) engines in waste - heat recovery applications experience variable heat -...
This paper reports the design and investigation of a small scale Organic Rankine cycle using a targe...
This paper reports the design and investigation of a small scale Organic Rankine cycle using a targe...
The organic Rankine cycle (ORC) is a promising technology for the conversion of waste heat from indu...
AbstractThe growing cost for energy production and distribution as well as problems related to envir...
An organic Rankine cycle (ORC) test setup has been constructed to investigate high-temperature waste...
Engine waste heat recovery technology especially Organic Rankine cycle (ORC) has been widely studied...
Compressed air production is an energy-intensive sector, thus compressor manufacturers are constantl...
© 2017 The Author(s). It is commonly accepted that waste heat recovery technologies are significant ...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
The performance of organic Rankine cycle (ORC) systems operating in combined heat and power (CHP) mo...
The growing cost for energy production and distribution as well as problems related to environmental...
This paper describes a study of the relative influences of different system design decisions upon th...
Organic Rankine cycle (ORC) engines in waste - heat recovery applications experience variable heat -...
This paper reports the design and investigation of a small scale Organic Rankine cycle using a targe...
This paper reports the design and investigation of a small scale Organic Rankine cycle using a targe...
The organic Rankine cycle (ORC) is a promising technology for the conversion of waste heat from indu...
AbstractThe growing cost for energy production and distribution as well as problems related to envir...
An organic Rankine cycle (ORC) test setup has been constructed to investigate high-temperature waste...
Engine waste heat recovery technology especially Organic Rankine cycle (ORC) has been widely studied...
Compressed air production is an energy-intensive sector, thus compressor manufacturers are constantl...
© 2017 The Author(s). It is commonly accepted that waste heat recovery technologies are significant ...