AbstractHigher depletion rate and increasing price of fossil fuels have motivated many researchers to harness energy from the waste heat from internal combustion engines, and thus improve the overall efficiency. Among the waste heat recovery methods, the bottoming Rankine cycle is the most promising. In this technique, the recovered heat is used to produce additional power using turbine. In order to maximise the additional power production, an effective heat exchanger design is necessary. The main focus of the current research was to design heat exchangers which needed to be pancake-shaped to be retrofitted into a vehicle. The heat exchanges chosen were shell and U-tube type. CFD simulations were carried out to optimize the design of the he...
Even in nowadays engines which can reach 45% of efficiency a high amount of energy is released as he...
This paper investigates the waste heat recovery potential of internal combustion engines, using orga...
The aim of this paper is to present a thermodynamic cycle for the production of electrical power in ...
AbstractHigher depletion rate and increasing price of fossil fuels have motivated many researchers t...
Waste heat recovery from exhaust gases of internal combustion engines (ICEs) is an interesting optio...
This article describes a methodology for the optimization of a bottoming cycle as a waste heat recov...
The purpose of this thesis was to design and demonstrate the effectiveness of a new style of heat ex...
Heat recovery heat exchangers for heat-to-power conversion from metallurgical off-gas should have a ...
In thermo-electric power generation an exhaust heat exchanger is used for recovering exhaust heat an...
In automotive IC engines, only 25% of heat energy is utilized to produce power whereas about 75% of ...
Most of the energy in the fuel burned in modern automotive internal combustion engines is lost as wa...
In automotive IC engines, only 25% of heat energy is utilized to produce power whereas about 75% of ...
An important objective in combustion engine research is to develop strategies for recovering waste h...
Increase in energy demand results in shortage of energy. Many effective means were under research to...
This article describes and evaluates an Organic Rankine Cycle (ORC) for waste heat recovery system b...
Even in nowadays engines which can reach 45% of efficiency a high amount of energy is released as he...
This paper investigates the waste heat recovery potential of internal combustion engines, using orga...
The aim of this paper is to present a thermodynamic cycle for the production of electrical power in ...
AbstractHigher depletion rate and increasing price of fossil fuels have motivated many researchers t...
Waste heat recovery from exhaust gases of internal combustion engines (ICEs) is an interesting optio...
This article describes a methodology for the optimization of a bottoming cycle as a waste heat recov...
The purpose of this thesis was to design and demonstrate the effectiveness of a new style of heat ex...
Heat recovery heat exchangers for heat-to-power conversion from metallurgical off-gas should have a ...
In thermo-electric power generation an exhaust heat exchanger is used for recovering exhaust heat an...
In automotive IC engines, only 25% of heat energy is utilized to produce power whereas about 75% of ...
Most of the energy in the fuel burned in modern automotive internal combustion engines is lost as wa...
In automotive IC engines, only 25% of heat energy is utilized to produce power whereas about 75% of ...
An important objective in combustion engine research is to develop strategies for recovering waste h...
Increase in energy demand results in shortage of energy. Many effective means were under research to...
This article describes and evaluates an Organic Rankine Cycle (ORC) for waste heat recovery system b...
Even in nowadays engines which can reach 45% of efficiency a high amount of energy is released as he...
This paper investigates the waste heat recovery potential of internal combustion engines, using orga...
The aim of this paper is to present a thermodynamic cycle for the production of electrical power in ...