In this work we present an improved survey method for the evaluation of the thermal stability of working fluids for organic Rankine cycles. The method presented here represents an improvement of a test methodology already used in literature, based on the analysis of temperature and pressure mea- surements of a fluid subjected to increasing thermal stress temperatures. Compared to the already known methodology, the survey technique presented in this work offers a different evaluation of the measured vapor pressure deviations and a different estimation method of the decomposition rates. After the description of the experimental apparatus and of the test methodology, we present and discuss some experimental results of the thermal stability of ...
In the conversion of low temperature heat sources into electricity using an Organic Rankine Cycle sy...
This paper simulates an organic Rankine cycle (ORC) system for selection the suitable working fluid ...
This paper describes the behavior of an Organic Rankine Cycle (ORC) fed by a heat source with adapta...
In this paper we investigate the thermal stability of three representative hydrocarbons used as work...
Each organic fluid is characterized by thermal decomposition above a specific temperature called the...
Serious concerns over the long-term thermal stability of organic working fluids and its effect on sy...
A thermal stability test-rig for organic Rankine cycles working fluids was designed and commissioned...
The object of the study are substances that are used as a working fluid in systems operating on the ...
The working fluid thermal stability is one of the crucial features of an effective organic Rankine c...
The organic Rankine cycle is a promising way for the conversion of low temperature heat to electrici...
Low grade thermal energy from sources such as solar, geothermal and industrial waste heat in the tem...
The object of the study are the organic Rankine cycle. The purpose of research is to evaluate the im...
As natural fluids, several hydrocarbons with excellent thermophysical properties are recognized as a...
The critical temperature (Tcr) is one of the important thermophysical properties of the working flui...
In the conversion of low temperature heat sources into electricity using an Organic Rankine Cycle sy...
This paper simulates an organic Rankine cycle (ORC) system for selection the suitable working fluid ...
This paper describes the behavior of an Organic Rankine Cycle (ORC) fed by a heat source with adapta...
In this paper we investigate the thermal stability of three representative hydrocarbons used as work...
Each organic fluid is characterized by thermal decomposition above a specific temperature called the...
Serious concerns over the long-term thermal stability of organic working fluids and its effect on sy...
A thermal stability test-rig for organic Rankine cycles working fluids was designed and commissioned...
The object of the study are substances that are used as a working fluid in systems operating on the ...
The working fluid thermal stability is one of the crucial features of an effective organic Rankine c...
The organic Rankine cycle is a promising way for the conversion of low temperature heat to electrici...
Low grade thermal energy from sources such as solar, geothermal and industrial waste heat in the tem...
The object of the study are the organic Rankine cycle. The purpose of research is to evaluate the im...
As natural fluids, several hydrocarbons with excellent thermophysical properties are recognized as a...
The critical temperature (Tcr) is one of the important thermophysical properties of the working flui...
In the conversion of low temperature heat sources into electricity using an Organic Rankine Cycle sy...
This paper simulates an organic Rankine cycle (ORC) system for selection the suitable working fluid ...
This paper describes the behavior of an Organic Rankine Cycle (ORC) fed by a heat source with adapta...