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5. Eborn J: “On Model Libraries for Thermo-hydraulic Applications”. Doctoral Thesis, Lund University ISRN LUTFD2 / TFRT–1061–SE Lund, 2001 6. Eborn J, Tummescheit H and Åström K.J: “Physical System Modeling with ModelicaTM”, Lund, http://www.control.lth.se/~hubertus/ThermoFluid, 1999 7. Eborn J, Tummescheit H and Wagner F: “ThermoFlow, A Thermo-Hydraulic Library in Modelica, Documentation” http://www.control.lth.se/~hubertus/ThermoFluid, 2000 8. Fox R.W and McDonald A.T: “Introduction to Fluid Mechanics”. Wiley 5th ed. New York, 1998 9. Gordon S, and McBride B.J: “Computer program for calculation of complex chemical equilibrium compositions and applications”, NASA Technical Reports Report Number: NASA-RP-1311 E-8017 NAS 1.61:1311, NASA Lewis Research Center, 1994 10. Gustafsson J.O: “Static and Dynamic Modelling of Gas Turbine in Advanced Cycles”. Licentiate Thesis, Lund University ISRN LUTMDN/TMVK 98/7030-SE Lund, 1998 11. Johansson R: “System Modelling & Identification”. Prentice Hall 1st ed. New Jersey, 1993 12. Malmquist A: “Analysis of a Gas Turbine Driven Hybrid Drive System for Heavy Vehicles”. Doctoral thesis, The Royal Institute of Technology ISSN-1102-0172, Stockholm, 1999 13. Modelica Association: “Modelica TM - A Unified Object-Oriented Language for Physical Systems Modeling, Language Specification and Tutorial” www.modelica.org, 2000 14. Pérez Gómez A.A: “Modelling of a Gas Turbine with ModelicaTM”. Master Thesis, Lund University ISRN LUTFD2/TFRT—5668—SE, Lund, 2001 15. Thomas P: “Simulation of Industrial Processes for Control Engineers”. Butterworth- Heinemann 1st ed. Oxford, 1999 16. Tummescheit H: “Object Oriented Modeling – Design and Implementation of Libraries using Modelica”. Doctoral thesis, to be published, Lund University, 2002 17. Wagner F: “The Free Modelica Editor”. http://www.et.dtu.dk/fme, 2000 18. Wagner W and Kruse A: “Properties of Water and Steam”, IAPWS-IF97. Springer-Verlag, Berlin, 1998 54PDF Image | Modelling of Microturbine Systems
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