Organic Rankine Cycles (ORC) are thermodynamic machines that convert heat, especially at low temperatures (below 120°C in our case), into electricity. Usually this type of thermodynamic cycle uses a pure fluid as working fluid; here our work has also involved the use of a mixture of different fluids. Indeed, a specific type of mixture, the zeotropic mixtures, is expected to increase the performance of ORC cycles. However, few experimental investigations over a complete cycle have been done to confirm this trend.The aim of this thesis is to experimentally study the behavior of a thermodynamic machine with different working fluids (pure or mixtures), and aims at optimizing its performances. This work is also taking place in a general context ...
This thesis concerns the feasibility study of subcritical and supercritical organic Rankine cycles f...
Overall, there are numerous sustainable sources of renewable, low-temperature heat, principally sola...
Organic Rankine cycles (ORC) are becoming a major research area within the field of sustainable ener...
Organic Rankine Cycles (ORC) are thermodynamic machines that convert heat, especially at low tempera...
Les cycles de Rankine à fluides organiques (de l’anglais Organic Rankine Cycle, ORC) sont des machin...
AbstractAir-cooled condensers are widely used for Organic Rankine Cycle (ORC) power plants where coo...
Air-cooled condensers are widely used for Organic Rankine Cycle (ORC) power plants where cooling wat...
The Organic Rankine Cycle (ORC) is a technology used for low-grade thermal energy conversion into el...
The use of binary zeotropic mixtures as working fluids applied to Organic Rankine Cycles (ORCs) is i...
Compared to pure fluids, zeotropic mixtures have the potential to lower the irreversibilities in low...
The selection of the working fluid is an important part of design and optimization of ORC system as ...
In the large spectrum of organic fluids suitable for Rankine cycles, a fluid that is already wellkno...
For zeotropic mixtures, the temperature varies during phase change, which is opposed to the isotherm...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
In this paper, we investigate the adoption of working-fluid mixtures in ORC systems operating in com...
This thesis concerns the feasibility study of subcritical and supercritical organic Rankine cycles f...
Overall, there are numerous sustainable sources of renewable, low-temperature heat, principally sola...
Organic Rankine cycles (ORC) are becoming a major research area within the field of sustainable ener...
Organic Rankine Cycles (ORC) are thermodynamic machines that convert heat, especially at low tempera...
Les cycles de Rankine à fluides organiques (de l’anglais Organic Rankine Cycle, ORC) sont des machin...
AbstractAir-cooled condensers are widely used for Organic Rankine Cycle (ORC) power plants where coo...
Air-cooled condensers are widely used for Organic Rankine Cycle (ORC) power plants where cooling wat...
The Organic Rankine Cycle (ORC) is a technology used for low-grade thermal energy conversion into el...
The use of binary zeotropic mixtures as working fluids applied to Organic Rankine Cycles (ORCs) is i...
Compared to pure fluids, zeotropic mixtures have the potential to lower the irreversibilities in low...
The selection of the working fluid is an important part of design and optimization of ORC system as ...
In the large spectrum of organic fluids suitable for Rankine cycles, a fluid that is already wellkno...
For zeotropic mixtures, the temperature varies during phase change, which is opposed to the isotherm...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
In this paper, we investigate the adoption of working-fluid mixtures in ORC systems operating in com...
This thesis concerns the feasibility study of subcritical and supercritical organic Rankine cycles f...
Overall, there are numerous sustainable sources of renewable, low-temperature heat, principally sola...
Organic Rankine cycles (ORC) are becoming a major research area within the field of sustainable ener...