For zeotropic mixtures, the temperature varies during phase change, which is opposed to the isothermal phase change of pure fluids. The use of such mixtures as working fluids in organic Rankine cycle power plants enables a minimization of the mean temperature difference of the heat exchangers, which is beneficial for cycle performance. On the other hand, larger heat transfer surface areas are typically required for evaporation and condensation when zeotropic mixtures are used as working fluids. In order to assess the feasibility of using zeotropic mixtures, it is, therefore, important to consider the additional costs of the heat exchangers. In this study, we aim at evaluating the economic feasibility of zeotropic mixtures compared to pure f...
The use of mixtures in place of pure fluids in Organic Rankine Cycle (ORC) power plants is proposed ...
Compared to pure fluids, zeotropic mixtures have the potential to lower the irreversibilities in low...
Overall, there are numerous sustainable sources of renewable, low-temperature heat, principally sola...
For zeotropic mixtures, the temperature varies during phase change, which is opposed to the isotherm...
For zeotropic mixtures, the temperature varies during phase change, which is opposed to the isotherm...
We present a generic methodology for organic Rankine cycle optimization, where the working fluid is ...
We present a thermo-economic evaluation of binary power plants based on the Organic Rankine Cycle (O...
International audienceThis paper carried out the thermodynamic and economic optimizations of a subcr...
We present a thermo-economic analysis of an Organic Rankine Cycle (ORC) for waste heat recovery. A c...
Among the different renewable sources of energy, solar power could play a primary role in the develo...
To improve the thermal performance of the basic organic Rankine cycle (ORC) several modifications ar...
The selection of the cycle configuration, working fluid and operating parameters is crucial for the ...
The use of binary zeotropic mixtures as working fluids applied to Organic Rankine Cycles (ORCs) is i...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
The organic Rankine cycle is a suitable technology for utilizing low grade heat for electricity prod...
The use of mixtures in place of pure fluids in Organic Rankine Cycle (ORC) power plants is proposed ...
Compared to pure fluids, zeotropic mixtures have the potential to lower the irreversibilities in low...
Overall, there are numerous sustainable sources of renewable, low-temperature heat, principally sola...
For zeotropic mixtures, the temperature varies during phase change, which is opposed to the isotherm...
For zeotropic mixtures, the temperature varies during phase change, which is opposed to the isotherm...
We present a generic methodology for organic Rankine cycle optimization, where the working fluid is ...
We present a thermo-economic evaluation of binary power plants based on the Organic Rankine Cycle (O...
International audienceThis paper carried out the thermodynamic and economic optimizations of a subcr...
We present a thermo-economic analysis of an Organic Rankine Cycle (ORC) for waste heat recovery. A c...
Among the different renewable sources of energy, solar power could play a primary role in the develo...
To improve the thermal performance of the basic organic Rankine cycle (ORC) several modifications ar...
The selection of the cycle configuration, working fluid and operating parameters is crucial for the ...
The use of binary zeotropic mixtures as working fluids applied to Organic Rankine Cycles (ORCs) is i...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
The organic Rankine cycle is a suitable technology for utilizing low grade heat for electricity prod...
The use of mixtures in place of pure fluids in Organic Rankine Cycle (ORC) power plants is proposed ...
Compared to pure fluids, zeotropic mixtures have the potential to lower the irreversibilities in low...
Overall, there are numerous sustainable sources of renewable, low-temperature heat, principally sola...