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Comparison of Rankine Cycles for Micro-CHP Generation Based on Inward Flow Radial Turbine or Scroll Expander
- Source :
- Volume 6: Emerging Technologies: Alternative Energy Systems; Energy Systems: Analysis, Thermodynamics and Sustainability.
- Publication Year :
- 2009
- Publisher :
- ASMEDC, 2009.
-
Abstract
- This contribution aims to analyze micro-CHP units based on Rankine cycles. Two types of expander are considered: a small scale inward flow radial turbine and a volumetric scroll type expander. This latter, should allow to overcome the limitation imposed by a standard steam-turbine that arise when the required shaft-power is very low. Moreover, the scroll expander will also allow to easily treat wet steams, which must be avoided when considering a turbo-expander. The final aim is to deduce which one of the two types of expander is more suitable, with a specified target performance and the availability of a certain hot source. In order to define the thermodynamic expansion process, the analysis uses a one-dimensional model of the radial turbine, previously developed by the authors, and of an estimation of the scroll expander efficiency. Also, the analysis is carried out for different working fluids, such as water, and two organic fluids, cyclohexane and toluene. Through the discussion of the results, for a specified set of constraints (e.g. expander inlet temperature, temperature of condensation, expander geometrical parameters) it is possible to deduce important indications on the most suitable expander for a given cycle layout.Copyright © 2009 by ASME
- Subjects :
- Rankine cycle
Engineering
Radial turbines
Scale (ratio)
Radial turbine
Geometrical parameters
CHP
Flow (psychology)
scroll expander
Scroll
Mechanical engineering
Wet steam
law.invention
Organic fluid
law
Micro-CHP unit
Micro-CHP
Degree Rankine
Working fluid
business.industry
Small scale
Condensation
Process (computing)
Toluene Expansion process
One-dimensional model
Rankine cycles
Inlet temperature
Scroll expander
business
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Volume 6: Emerging Technologies: Alternative Energy Systems; Energy Systems: Analysis, Thermodynamics and Sustainability
- Accession number :
- edsair.doi.dedup.....b0de7a82d05895ac48afb0c11a30ca88
- Full Text :
- https://doi.org/10.1115/imece2009-10444