Organic Rankine cycles (ORCs) are an established technology to convert waste heat to electricity. Although several commercial implementations exist, there is still considerable potential for thermo-economic optimization. As such, a novel framework for designing optimized ORC systems is proposed based on a multi-objective optimization scheme in combination with financial appraisal in a post-processing step. The suggested methodology provides the flexibility to quickly assess several economic scenarios and this without the need of knowing the complex design procedure. This novel way of optimizing and interpreting results is applied to a waste heat recovery case. Both the transcritical ORC and subcritical ORC are investigated and compared usi...
Ce travail de thèse concerne l’étude de la faisabilité des cycles organiques sous-critiques et super...
Organic Rankine cycles (ORC) are a well proven technology in the waste heat recovery market. The con...
Low-grade heat sources are abundant on earth but are majorly untapped due to lower thermodynamic eff...
Organic Rankine cycles (ORCs) are an established technology to convert waste heat to electricity. Al...
Organic Rankine cycles (ORCs) are an established technology to convert waste heat to electricity. Al...
Organic Rankine cycles (ORC) are considered a mature technology in waste heat recovery applications....
International audienceThe present paper focuses both on the thermodynamic and on the economic optimi...
This work is focused on a case study of a small-scale Organic Rankine Cycle (ORC) adopted for electr...
In industrial processes, a significant amount of waste heat is produced. However, most of the low-gr...
An inclusive component-level technical and economic assessment procedure for the general design and ...
Organic Rankine cycle (ORC) is considered a promising heat-to-power technology to utilize waste heat...
To improve the performances of the Organic Rankine cycle, several advanced cycle designs are propose...
Organic Rankine Cycle (ORC) is a technically feasible way for low temperature waste heat recovery. M...
The organic Rankine cycle (ORC) is considered as one of the most viable technology to recover low-gr...
AbstractTo improve the performances of the Organic Rankine cycle, several advanced cycle designs are...
Ce travail de thèse concerne l’étude de la faisabilité des cycles organiques sous-critiques et super...
Organic Rankine cycles (ORC) are a well proven technology in the waste heat recovery market. The con...
Low-grade heat sources are abundant on earth but are majorly untapped due to lower thermodynamic eff...
Organic Rankine cycles (ORCs) are an established technology to convert waste heat to electricity. Al...
Organic Rankine cycles (ORCs) are an established technology to convert waste heat to electricity. Al...
Organic Rankine cycles (ORC) are considered a mature technology in waste heat recovery applications....
International audienceThe present paper focuses both on the thermodynamic and on the economic optimi...
This work is focused on a case study of a small-scale Organic Rankine Cycle (ORC) adopted for electr...
In industrial processes, a significant amount of waste heat is produced. However, most of the low-gr...
An inclusive component-level technical and economic assessment procedure for the general design and ...
Organic Rankine cycle (ORC) is considered a promising heat-to-power technology to utilize waste heat...
To improve the performances of the Organic Rankine cycle, several advanced cycle designs are propose...
Organic Rankine Cycle (ORC) is a technically feasible way for low temperature waste heat recovery. M...
The organic Rankine cycle (ORC) is considered as one of the most viable technology to recover low-gr...
AbstractTo improve the performances of the Organic Rankine cycle, several advanced cycle designs are...
Ce travail de thèse concerne l’étude de la faisabilité des cycles organiques sous-critiques et super...
Organic Rankine cycles (ORC) are a well proven technology in the waste heat recovery market. The con...
Low-grade heat sources are abundant on earth but are majorly untapped due to lower thermodynamic eff...