Trends towards distributed power generation and the deregulation of energy markets are increasing the requirement for software tools that optimize power generation plant design and operation. In this context, this paper describes the GTPOM (thermo-economic optimization of whole gas turbine plant) European project, funded in part through the European Commission’s 5th Framework Programme, focusing on the development and demonstration of an original software tool for the thermo-economic analysis and optimization of conventional and advanced energy systems based on gas turbine plant. PSEconomy, the software tool developed during the GTPOM project, provides a thermo-economic optimization capability for advanced and more-conventional energy systems, enabling the complex trade-offs between system performance and installed costs to be determined for different operational duties and market scenarios. Furthermore, the code is capable of determining the potential benefits of innovative cycles or layout modifications to existing plants compared with current plant configurations. The economic assessment is performed through a complete through-life cycle cost analysis, which includes the total capital cost of the plant, the cost of fuel, O&M costs and the expected revenues from the sale of power and heat. The optimization process, carried out with a GA-based algorithm, is able to pursue different objective functions as specified by the User. These include system efficiency, through-life cost of electricity and through-life internal rate of return. Three case studies demonstrating the capabilities of the new tool are presented in this paper, covering a conventional combined cycle system, a biomass plant and a CO2 sequestration gas turbine cycle. The software code is now commercially available and is expected to provide significant advantages in the near and long-term development of energy cycles.
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ASME Turbo Expo 2004: Power for Land, Sea, and Air
June 14–17, 2004
Vienna, Austria
Conference Sponsors:
- International Gas Turbine Institute
ISBN:
0-7918-4172-3
PROCEEDINGS PAPER
GTPOM: Thermo-Economic Optimization of Whole Gas Turbine Plant Available to Purchase
Athanasios Mitakakis,
Athanasios Mitakakis
Alstom Power, Whetstone, Leicestershire, UK
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Mohsen Assadi,
Mohsen Assadi
Lund Institute of Technology, Lund, Sweden
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Bjo¨rn F. Mo¨ller,
Bjo¨rn F. Mo¨ller
Lund Institute of Technology, Lund, Sweden
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Pratyush Sen,
Pratyush Sen
University of Newcastle, Newcastle, UK
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Ian Potts,
Ian Potts
University of Newcastle, Newcastle, UK
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Alberto Traverso,
Alberto Traverso
Universita` di Genova, Genova, Italy
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Leonardo Torbidoni
Leonardo Torbidoni
Universita` di Genova, Genova, Italy
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Richard Knight
Rolls Royce plc, UK
Mitsuru Obana
Rolls Royce plc, UK
Christer von Wowern
Alstom Power
Athanasios Mitakakis
Alstom Power, Whetstone, Leicestershire, UK
Erhard Perz
SimTech, Austria
Mohsen Assadi
Lund Institute of Technology, Lund, Sweden
Bjo¨rn F. Mo¨ller
Lund Institute of Technology, Lund, Sweden
Pratyush Sen
University of Newcastle, Newcastle, UK
Ian Potts
University of Newcastle, Newcastle, UK
Alberto Traverso
Universita` di Genova, Genova, Italy
Leonardo Torbidoni
Universita` di Genova, Genova, Italy
Paper No:
GT2004-54200, pp. 657-664; 8 pages
Published Online:
November 24, 2008
Citation
Knight, R, Obana, M, von Wowern, C, Mitakakis, A, Perz, E, Assadi, M, Mo¨ller, BF, Sen, P, Potts, I, Traverso, A, & Torbidoni, L. "GTPOM: Thermo-Economic Optimization of Whole Gas Turbine Plant." Proceedings of the ASME Turbo Expo 2004: Power for Land, Sea, and Air. Volume 7: Turbo Expo 2004. Vienna, Austria. June 14–17, 2004. pp. 657-664. ASME. https://doi.org/10.1115/GT2004-54200
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