Strong motivation exists within the marine sector to reduce fuel expenses and to comply with ever stricter emission regulations. Heat recovery can address both of these issues. The ORC (organic Rankine cycle), the Kalina cycle and the steam Rankine cycle have received the majority of the focus in the literature. In the present work we compare these cycles in a combined cycle application with a large marine two-stroke diesel engine. We present an evaluation of the efficiency and the environmental impact, safety concerns and practical aspects of each of the cycles. A previously validated numerical engine model is combined with a turbocharger model and bottoming cycle models written in Matlab. Genetic algorithm optimisation results suggest tha...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
In the context of heat recovery for electric power generation, Kalina cycle (a thermodynamic cycle u...
Strong motivation exists within the marine sector to reduce fuel expenses and to comply with ever st...
Strong motivation exists within the marine sector to reduce fuel expenses and to comply with ever st...
Strong motivation exists within the marine sector to reduce fuel expenses and to comply with ever st...
Eighty percent of the growing global merchandise trade is transported by sea. The shipping industry ...
This work is part of a study aiming to achieve high efficiency and low emissions in a marine propuls...
This paper presents a comparison of the conventional dual pressure steam Rankine cycle process and t...
This work is part of a study aiming to achieve high efficiency and low emissions in a marine propuls...
In marine applications powered by internal combustion engines, a considerable amount of the energy c...
In the field of marine engineering, there is a strong motivation to increase the propulsion system e...
In the context of heat recovery for electric power generation, Kalina cycle (a thermodynamic cycle u...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
In the context of heat recovery for electric power generation, Kalina cycle (a thermodynamic cycle u...
Strong motivation exists within the marine sector to reduce fuel expenses and to comply with ever st...
Strong motivation exists within the marine sector to reduce fuel expenses and to comply with ever st...
Strong motivation exists within the marine sector to reduce fuel expenses and to comply with ever st...
Eighty percent of the growing global merchandise trade is transported by sea. The shipping industry ...
This work is part of a study aiming to achieve high efficiency and low emissions in a marine propuls...
This paper presents a comparison of the conventional dual pressure steam Rankine cycle process and t...
This work is part of a study aiming to achieve high efficiency and low emissions in a marine propuls...
In marine applications powered by internal combustion engines, a considerable amount of the energy c...
In the field of marine engineering, there is a strong motivation to increase the propulsion system e...
In the context of heat recovery for electric power generation, Kalina cycle (a thermodynamic cycle u...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
The exhaust heat of energy conversion systems can be usefully recovered by Organic Rankine Cycles (O...
In the context of heat recovery for electric power generation, Kalina cycle (a thermodynamic cycle u...