This study investigates the use of an ORC as heat recovery unit in a natural gas pipeline compression station powered by a gas turbine with the aim of increasing the process energy efficiency. A flexible Matlab® suite, able to investigate both subcritical and supercritical cycle, has been developed for the plant sizing and for the part-load simulation. The methodology to compute the system energetic performance is discussed. The ORC configuration that guarantees the maximum power output (7.22 MWe) is identified. The yearly electricity yield (42615.9 MWh) reveals good perspectives of implementing ORC with the aim of reducing the environmental impact of gas compression stations
The present work aims to investigate the potential advantages in using a novel wet and dry configura...
The development of small-scale efficient and low-cost Organic Rankine Cycle (ORC) units using low te...
This paper focuses on the design and the optimization of Organic Rankine Cycle (ORC) for LNG regasif...
This study investigates the use of an ORC as heat recovery unit in a natural gas pipeline compressio...
There is significant interest in the deployment of organic Rankine cycle (ORC) technology for waste-...
The performance of organic Rankine cycle (ORC) systems operating in combined heat and power (CHP) mo...
Nowadays environmental concerns call for a transition towards an economy based on fossil fuels to a ...
Waste heat revalorization creates interesting opportunities to energy intensive industries. In the p...
Abstract Compressed air production is an energy–intensive sector, thus compressor manufacturers are ...
Gas compressor stations represent a huge potential for exhaust heat recovery, currently under-exploi...
An increasing interest is devoted to biogas plants as they might play a key role in the reduction of...
Low-medium temperature heat sources in the range 5 - 50 MWthare made available by many industrial fi...
ORC (organic Rankine cycle) technology is promising in industry for utilizing low-grade ...
Organic Rankine cycle (ORC) engines in waste - heat recovery applications experience variable heat -...
The organic Rankine cycle (ORC) is a promising technology for the conversion of waste heat from indu...
The present work aims to investigate the potential advantages in using a novel wet and dry configura...
The development of small-scale efficient and low-cost Organic Rankine Cycle (ORC) units using low te...
This paper focuses on the design and the optimization of Organic Rankine Cycle (ORC) for LNG regasif...
This study investigates the use of an ORC as heat recovery unit in a natural gas pipeline compressio...
There is significant interest in the deployment of organic Rankine cycle (ORC) technology for waste-...
The performance of organic Rankine cycle (ORC) systems operating in combined heat and power (CHP) mo...
Nowadays environmental concerns call for a transition towards an economy based on fossil fuels to a ...
Waste heat revalorization creates interesting opportunities to energy intensive industries. In the p...
Abstract Compressed air production is an energy–intensive sector, thus compressor manufacturers are ...
Gas compressor stations represent a huge potential for exhaust heat recovery, currently under-exploi...
An increasing interest is devoted to biogas plants as they might play a key role in the reduction of...
Low-medium temperature heat sources in the range 5 - 50 MWthare made available by many industrial fi...
ORC (organic Rankine cycle) technology is promising in industry for utilizing low-grade ...
Organic Rankine cycle (ORC) engines in waste - heat recovery applications experience variable heat -...
The organic Rankine cycle (ORC) is a promising technology for the conversion of waste heat from indu...
The present work aims to investigate the potential advantages in using a novel wet and dry configura...
The development of small-scale efficient and low-cost Organic Rankine Cycle (ORC) units using low te...
This paper focuses on the design and the optimization of Organic Rankine Cycle (ORC) for LNG regasif...