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Design and Optimization of Turbo-expanders for Organic Rankine Cycles
A computational tool for turbine design for ORC applications
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Focusing on energy production and emission reduction, this work explores organic Rankine cycles as a viable solution, particularly for low-temperature and decentralized heat recovery. It presents a computational model to predict axial-flow turbine performance, validated with experimental data. The design process incorporates a genetic algorithm for optimization, achieving an accuracy of ±3%. The simulation tool is applicable across various contexts, including offshore platforms and geothermal sources, underscoring the importance of simulation in turbine design for thermodynamic cycles.
Buchkauf
Design and Optimization of Turbo-expanders for Organic Rankine Cycles, Paolo Gabrielli
- Sprache
- Erscheinungsdatum
- 2014
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- (Paperback)
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- Titel
- Design and Optimization of Turbo-expanders for Organic Rankine Cycles
- Untertitel
- A computational tool for turbine design for ORC applications
- Sprache
- Englisch
- Autor*innen
- Paolo Gabrielli
- Erscheinungsdatum
- 2014
- Einband
- Paperback
- Seitenzahl
- 252
- ISBN13
- 9783639655568
- Kategorie
- Elektrotechnik
- Beschreibung
- Focusing on energy production and emission reduction, this work explores organic Rankine cycles as a viable solution, particularly for low-temperature and decentralized heat recovery. It presents a computational model to predict axial-flow turbine performance, validated with experimental data. The design process incorporates a genetic algorithm for optimization, achieving an accuracy of ±3%. The simulation tool is applicable across various contexts, including offshore platforms and geothermal sources, underscoring the importance of simulation in turbine design for thermodynamic cycles.