We present a thermo-economic evaluation of binary power plants based on the Organic Rankine Cycle (ORC) for geothermal power generation. The focus of this study is to analyse if an efficiency increase by using zeotropic mixtures as working fluid overcompensates additional requirements regarding the major power plant components. The optimization approach is compared to systems with pure media. Based on process simulations, heat exchange equipment is designed and cost estimations are performed. For heat source temperatures between 100 and 180 °C selected zeotropic mixtures lead to an increase in second law efficiency of up to 20.6% compared to pure fluids. Especially for temperatures about 160 °C, mixtures like propane/isobutane, isobutane/is...
This paper is focused both on the thermodynamic and economic analysis of an organic Rankine cycle (O...
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 thermo-economic evaluation of binary power plants based on the Organic Rankine Cycle (O...
The use of mixtures in place of pure fluids in Organic Rankine Cycle (ORC) power plants is proposed ...
We present a thermo-economic analysis of an Organic Rankine Cycle (ORC) for waste heat recovery. A c...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
We present a thermo-economic analysis of an Organic Rankine Cycle (ORC) for waste heat recovery. A c...
An exergoeconomic analysis of a geothermal power generation for a low-temperature resource is perfor...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
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...
This paper is focused both on the thermodynamic and economic analysis of an organic Rankine cycle (O...
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 thermo-economic evaluation of binary power plants based on the Organic Rankine Cycle (O...
The use of mixtures in place of pure fluids in Organic Rankine Cycle (ORC) power plants is proposed ...
We present a thermo-economic analysis of an Organic Rankine Cycle (ORC) for waste heat recovery. A c...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
We present a thermo-economic analysis of an Organic Rankine Cycle (ORC) for waste heat recovery. A c...
An exergoeconomic analysis of a geothermal power generation for a low-temperature resource is perfor...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
Globally there are several viable sources of renewable, low-temperature heat (below 130◦C), particul...
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...
This paper is focused both on the thermodynamic and economic analysis of an organic Rankine cycle (O...
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...