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1

Numerical simulations of heat transfer and fluid flow on a personal computer: Incorporating simulation programs on diskette. Elsevier, 1993.

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2

seminar, Eurotherm. Advanced concepts and techniques in thermal modelling: Proceedings of the Eurotherm seminar 36, September 21-23, 1994, Poitiers, France. Edited by Fiebig Martin, Lemonnier Denis, Saulnier Jean-Bernard, and Ecole nationale supérieure de mécanique et d'aérotechnique (Poitiers, France). Laboratoire d'études thermiques. Elsevier, 1996.

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3

Wright, J. L. Measurement and computer simulation of heat transfer in glazing systems. Efficiency and Alternative Energy Technology Branch, Energy, Mines and Resources Canada, 1991.

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4

Analytis, G. Th. Assessment of interfacial shear and wall heat transfer of RELAP5/MOD2/36.02 during reflooding. Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1989.

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5

Pakanen, Jouko. An ARMAX-model approach for estimating static heat flows in buildings: A methods for computerised energy allocation systems. Technical Research Centre of Finland, 2002.

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6

Tuomaala, Pekka. Implementation and evaluation of air flow and heat transfer routines for building simulation tools. VTT, 2002.

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7

Kisilewicz, Tomasz. Wpływ izolacyjnych, dynamicznych i spektralnych właściwości przegród na bilans cieplny budynków energooszcze̜dnych. Wydawn. Politechniki Krakowskiej, 2008.

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8

Christoph, Clauser, ed. Numerical simulation of reactive flow in hot aquifers: SHEMAT and processing SHEMAT. Springer, 2003.

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9

Xu, Kun. Rayleigh-Beńard simulation using gas-kinetic BGK scheme in the incompressible limit. Institute for Computer Applications in Science and Engineering, NASA Langley Research Center, 1998.

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10

Roland, Fortunier, ed. Finite element simulation of heat transfer. ISTE Ltd., 2008.

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11

Chamis, C. C. Coupled multi-disciplinary simulation of composite engine structures in propulsion environment. National Aeronautics and Space Administration, 1992.

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12

Chamis, C. C. Coupled multi-disciplinary simulation of composite engine structures in propulsion environment. National Aeronautics and Space Administration, 1992.

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13

Chamis, C. C. Coupled multi-disciplinary simulation of composite engine structures in propulsion environment. National Aeronautics and Space Administration, 1992.

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14

Process heat transfer: Principles and applications. Elsevier Academic Press, 2007.

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15

A, Thompson Richard. Computer codes for the evaluation of thermodynamic and transport properties for equilibrium air to 30000 K. National Aeronautics and Space Administration, Langley Research Center, 1991.

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16

Piomelli, Ugo. Large-eddy simulation of transitional channel flow. Institute for Computer Applications in Science and Engineering, 1990.

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17

BASIC heat transfer. Butterworths, 1989.

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18

Fang, C. S. Convective heat transfer. Gulf Pub. Co., Book Division, 1985.

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19

Guimaraes, Dayan Adionel. Digital Transmission. Springer, 2010.

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20

Digital transmission lines: Computer modelling and analysis. Oxford University Press, 1998.

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21

E, Launder B., and Reece G. J. 1940-, eds. Computer-aided engineering: Heat transfer and fluid flow. Ellis Horwood, 1985.

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22

Baker, John D. Simulation techniques: The STÆDT program. Wiley, 1997.

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23

Transmission and Driveline Symposium (1992 Detroit, Mich.). Transmission and Driveline Symposium: Components, gears, and CAE. Society of Automotive Engineers, 1992.

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24

American Society of Mechanical Engineers. Winter Meeting. Simulation and numerical methods in heat transfer: Presented at the Winter Annual Meeting of the American Society of Mechanical Engineers, Dallas, Texas, November 25-30, 1990. American Society of Mechanical Engineers, 1990.

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25

Heald, Edward E. Heat transfer: User guide for revision 5.1 : notes and exercises. ANSYS, 1995.

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26

Pruess, K. TOUGH user's guide. Division of Waste Management, Office of Nuclear Material Safety and Safeguards, U.S. Nuclear Regulatory Commission, 1987.

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27

Leitner, A. Thrust vector control, heat transfer modeling. Naval Postgraduate School, 1986.

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28

Johnson, Eric E. A software simulator for high frequency radio automatic link establishment. U.S. Dept. of Commerce, National Telecommunications and Information Administration, 1994.

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29

Th, Analytis G., Aksan S. N, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research, Laboratory for Thermal-Hydraulics (Paul Scherrer Institut), and Eidgenössische Technische Hochschule Zürich. Nuclear Engineering Laboratory, eds. A study of the dispersed flow interfacial heat transfer model of RELAP5/MOD2.5 and RELAP5/MOD3. Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1999.

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30

Ju, Y. Sungtaek. Microscale Heat Conduction in Integrated Circuits and Their Constituent Films. Springer US, 1999.

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31

Noda, Taku. Development of a transmission-line model considering the skin and corona effects for power systems transient analysis. Noda, 1996.

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32

IUTAM Symposium on Numerical Simulation of Non-Isothermal Flow of Viscoelastic Liquids (1993 Kerkrade, Netherlands). IUTAM Symposium on Numerical Simulation of Non-Isothermal Flow of Viscoelastic Liquids: Proceedings of an IUTAM symposium held in Kerkrade, the Netherlands, 1-3 November 1993. Kluwer Academic Publishers, 1995.

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33

Bengt, Sundén, and Faghri Mohammad, eds. Computer simulations in compact heat exchangers. Computational Mechanics Publications, 1998.

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34

Sunden, B. Transport Phenomena in Fires (Developments in Heat Transfer) (Developments in Heat Transfer). WIT Press, 2008.

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35

United States. National Aeronautics and Space Administration., ed. Progress towards understanding and predicting convection heat transfer in the turbine gas path. National Aeronautics and Space Administration, 1992.

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36

Advanced Concepts and Techniques in Thermal Modelling. Elsevier Science Ltd, 1996.

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37

Transport phenomena in fires. WIT, 2008.

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38

V, Prasad, Arimilli Rao V, American Society of Mechanical Engineers. Heat Transfer Division., and National Heat Transfer Conference (29th : 1993 : Atlanta, Ga.), eds. Advanced computations in materials processing: Presented at the 29th National Heat Transfer Conference, Atlanta, Georgia, August 8-11, 1993. American Society of Mechanical Engineers, 1993.

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39

RELAP5/MOD3 subcooled boiling model assessment. Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1998.

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40

Center, Lewis Research, and United States. Army Aviation Systems Command., eds. Computer code for predicting coolant flow and heat transfer in turbomachinery. National Aeronautics and Space Administration, Office of Management, Scientific and Technical Information Division, 1990.

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41

Computer simulation for fluid flow, heat and mass transfer, and combustion in reciprocating engines. Hemisphere Pub. Corp., 1989.

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42

Zhang, Qinghua. Modeling, instrumentation and control of vegetable blanching operations. 1992.

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43

Clauser, Christoph. Numerical Simulation of Reactive Flow in Hot Aquifers. Springer, 2014.

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44

Campelo, Hugo. FluSHELL – A Tool for Thermal Modelling and Simulation of Windings for Large Shell-Type Power Transformers. Springer, 2019.

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45

Campelo, Hugo. FluSHELL – A Tool for Thermal Modelling and Simulation of Windings for Large Shell-Type Power Transformers. Springer, 2018.

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46

H, Sanchez-Espinoza V., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research, and Forschungszentrum Karlsruhe, eds. Development and validation of a transition boiling model for the RELAP5/MOD3 reflood simulation. Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 2000.

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47

Ans. Proceedings Nuclear Thermal Hydraulics, 1989 (Order No 2700148). Amer Nuclear Society, 1989.

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48

Ans. Proceedings Nuclear Thermal Hydraulics, 1990 (Order No 2700156). Amer Nuclear Society, 1990.

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49

Fifth proceedings of nuclear thermal hydraulics: 1989 Winter Meeting, November 26-30, 1989, San Francisco, California. The Society, 1989.

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50

American Nuclear Society. Thermal Hydraulics Division., ed. Sixth proceedings of nuclear thermal hydraulics: 1990 Winter Meeting, November 11-16, 1990, Washington, DC. The Society, 1990.

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