The growing demand for increased vehicle efficiency has led to the introduction of waste heat recovery techniques in vehicle powertrains, with the organic Rankine cycle as the most interesting technique for automotive applications. In order to integrate the design of the waste heat recovery system into the design optimization of the full powertain, a novel modeling approach is suggested for capturing the key dynamics of a waste heat recovery system with low computational effort and number of design parameters, and which is scalable with the individual components of the cycle. The model is compared with a detailed finite volume model for a given organic Rankine cycle. Secondly, the organic Rankine cycle is integrated into a parallel hybrid v...
The demand for more energy efficient passenger cars is steadily increasing due to increasing fuel pr...
Rankine-cycle Waste Heat Recovery (WHR) systems are promising solutions to reduce fuel consumption f...
peer reviewedThe use of Organic Rankine Cycle (ORC) power systems for waste heat recovery on interna...
The growing demand for increased vehicle efficiency has led to the introduction of waste heat recove...
In this study, a methodology for optimal sizing of waste heat recovery (WHR) systems is presented. I...
The largest automakers strive to reduce carbon dioxide emissions to meet regulations by improving en...
The remarkable investments made by manufacturers over the last few decades have contributed to impr...
Energy recovery from exhaust gas waste heat can be regarded as an effective way to improve the energ...
With pressure from strict emission and fuel consumption regulations, researchers are searching for i...
peer reviewedThe use of organic Rankine cycle power systems for waste heat recovery on internal comb...
none5nomixedArsie Ivan, Cricchio Andrea , Pianese Cesare, Ricciardi Vincenzo, De Cesare MatteoArsie ...
This paper presents the modeling and control of a waste heat recovery systemfor a Euro-VI heavy-duty...
The demand for more energy efficient passenger cars is steadily increasing due to increasing fuel pr...
Rankine-cycle Waste Heat Recovery (WHR) systems are promising solutions to reduce fuel consumption f...
peer reviewedThe use of Organic Rankine Cycle (ORC) power systems for waste heat recovery on interna...
The growing demand for increased vehicle efficiency has led to the introduction of waste heat recove...
In this study, a methodology for optimal sizing of waste heat recovery (WHR) systems is presented. I...
The largest automakers strive to reduce carbon dioxide emissions to meet regulations by improving en...
The remarkable investments made by manufacturers over the last few decades have contributed to impr...
Energy recovery from exhaust gas waste heat can be regarded as an effective way to improve the energ...
With pressure from strict emission and fuel consumption regulations, researchers are searching for i...
peer reviewedThe use of organic Rankine cycle power systems for waste heat recovery on internal comb...
none5nomixedArsie Ivan, Cricchio Andrea , Pianese Cesare, Ricciardi Vincenzo, De Cesare MatteoArsie ...
This paper presents the modeling and control of a waste heat recovery systemfor a Euro-VI heavy-duty...
The demand for more energy efficient passenger cars is steadily increasing due to increasing fuel pr...
Rankine-cycle Waste Heat Recovery (WHR) systems are promising solutions to reduce fuel consumption f...
peer reviewedThe use of Organic Rankine Cycle (ORC) power systems for waste heat recovery on interna...