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1

Laine, Jouko. Calculation of process response with matrices. Lappeenranta: Lappeenranta University of Technology, 1985.

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2

Oliemans, R. V. A., ed. Computational Fluid Dynamics for the Petrochemical Process Industry. Dordrecht: Springer Netherlands, 1991. http://dx.doi.org/10.1007/978-94-011-3632-7.

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3

A, Oliemans R. V., ed. Computational fluid dynamics for the petrochemical process industry. Dordrecht: Kluwer Academic Publishers, 1991.

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4

W, Bernard John, ed. Computer control strategies for the fluid process industries. Research Triangle Park, N.C: Instrument Society of America, 1990.

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5

Oliemans, R. V. A. Computational Fluid Dynamics for the Petrochemical Process Industry. Dordrecht: Springer Netherlands, 1991.

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6

Whitehouse, Adrian Paul. Heat transfer fluid in an industrial process refrigeration system. Birmingham: University of Birmingham, 1991.

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7

International Symposium on Advances in Fluid Cracking Catalysts. (7th). Fluid catalytic cracking VII: Materials, methods and process innovations. Amsterdam: Elsevier, 2007.

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8

Joint Japan-Poland Symposium on Mining and Experimental Seismology (1999 Kyoto, Japan). Seismogenic process monitoring: Proceedings of a Joint Japan-Poland Symposium on Mining and Experimental Seismology, Kyoto, Japan, November 1999. Lisse [Netherlands]: Balkema, 2002.

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9

Hickin, Edward J. Channel migration at river bends: Theory, process, and engineering applications. Burnaby, B.C: Simon Fraser University, 1985.

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10

Łukasz, Grabowski. The mixture formation process in the gas fuelled engine. Lublin: Politechnika Lubelska, 2010.

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11

Sadeghbeigi, Reza. Fluid catalytic cracking handbook. Houston, Tex: Gulf Pub. Co., 1995.

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12

Flow-induced vibration of power and process plant components: A practical workbook. New York: ASME Press, 2001.

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13

Kalampoukas, G. Process optimization for cleaning manufacturing: Supercritical fluid extraction for B-carotene production. Manchester: UMIST, 1995.

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14

Agency, International Atomic Energy, ed. Integration of tracing with computational fluid dynamics for industrial process investigation: Final report of a co-ordinated research project 2001-2003. Vienna: International Atomic Energy Agency, 2004.

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15

G, Bike Stacy, ed. Fluid mechanics for chemical engineers. Upper Saddle River, N.J: Prentice Hall PTR, 1999.

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16

Fluid catalytic cracking handbook: An expert guide to the practical operation, design, and optimization of FCC units. 3rd ed. Amsterdam: Elsevier/BH, 2012.

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17

Air and Energy Engineering Research Laboratory, ed. Chemically active fluid bed process for sulfur removal during gasification of carbonaceous fuels: Project summary. Research Triangle Park, NC: U.S. Environmental Protection Agency, Air and Energy Engineering Research Laboratory, 1988.

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18

European Fluid Machinery Congress (10th 2008 Amsterdam, Netherlands). Tenth European Fluid Machinery Congress: Advances in the optimisation, design and maintenance of process machinery : Amsterdam, the Netherlands, 21-23 April 2008. Witney: Chandos Pub., 2008.

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19

European Fluid Machinery Congress (10th 2008 Amsterdam, Netherlands). Tenth European Fluid Machinery Congress: Advances in the optimisation, design and maintenance of process machinery : Amsterdam, the Netherlands, 21-23 April 2008. Witney: Chandos Pub., 2008.

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20

European Fluid Machinery Congress (10th 2008 Amsterdam, Netherlands). Tenth European Fluid Machinery Congress: Advances in the optimisation, design and maintenance of process machinery : Amsterdam, the Netherlands, 21-23 April 2008. Witney: Chandos Pub., 2008.

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21

H, Renon, ed. Fluid properties andphase equilibria for chemical process design: Proceedings of the fourth international conference, Helsinger, Denmark, 11-16 May, 1986. Amsterdam: Elsevier, 1987.

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22

Biological process engineering: An analogical approach to fluid flow, heat transfer, and mass transfer applied to biological systems. New York: Wiley, 1999.

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23

H, Renon, and International Conference on Fluid Properties and Phase Equilibria for Chemical Process Design (4th : 1986 : Helsingør, Denmark), eds. Fluid properties and phase equilibria for chemical process design: Proceedings of the fourth international conference, Helsingør, Denmark, 11-16 May 1986. Amsterdam: Elsevier, 1986.

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24

Fluid catalytic cracking handbook: Design, operation, and troubleshooting of FCC facilities. 2nd ed. Houston: Gulf, 2000.

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25

European, Congress on Fluid Machinery for the Oil Petrochemical and Related Industries (9th 2006 The Hague). Ninth European Fluid Machinery Congress: Applying the latest technology to new and existing process equipment, The Hague, The Netherlands 23-26 April 2006. Oxford: Chandos, 2006.

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26

F, Walker James, Trefny Charles J, and NASA Glenn Research Center, eds. Parametric studies of the ejector process within a turbine-based combined-cycle propulsion system. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 1999.

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27

N, Harnby, Institution of Chemical Engineers (Great Britain). Yorkshire Branch., Institution of Chemical Engineers (Great Britain). Fluid Mixing Processes Subject Group., and University of Bradford, eds. Fluid mixing III: A three-day symposium organised by the Yorkshire Branch of the Institution of Chemical Engineers in association with the IChemE's Fluid Mixing Process Group and the University of Bradford and held at the University of Bradford, 8-10 September, 1987. Rugby [England]: The Institution, 1988.

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28

Institution of Mechanical Engineers (Great Britain). Fluid Machinery Committee. and Institution of Mechanical Engineers (Great Britain). Process Industries Division., eds. Process pumps--the state of the art: Papers presented at a seminar organized by the Fluid Machinery Committee of the Power Industries Division, in collaboration with the Process Industries Division of the Institution of Mechanical Engineers, and held at the Institution of Mechanical Engineers on 25 June 1991. London: Mechanical Engineering Publications Limited for the Institution of Mechanical Engineers, 1991.

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29

Institution of Mechanical Engineers (Great Britain), Institution of Mechanical Engineers (Great Britain). Fluid Machinery Committee., and Institution of Mechanical Engineers (Great Britain). Process Industries Division., eds. Process pumps: The state of the art : papers presented at a seminar organized by the Fluid Machinery Committee of the Power Industries Division, in collaboration with the Process Industries Division, of the Institution of Mechanical Engineers, and held at the Institution of Mechanical Engineers on 25 June 1991. London: Published by Mechanical Engineering Publications for the Institution of Mechanical Engineers, 1991.

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30

Ogasawara, H., T. Yanagidani, and M. Ando, eds. Seismogenic Process Monitoring. Routledge, 2017. http://dx.doi.org/10.1201/9780203739990.

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31

Ogasawara. Seismogenic Process Monitoring. Taylor & Francis, 2002.

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32

Sada, Cinzia, Karsten Rebner, and Dominik G. Rabus. Optofluidics: Process Analytical Technology. de Gruyter GmbH, Walter, 2018.

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33

Sada, Cinzia, Karsten Rebner, and Dominik G. Rabus. Optofluidics: Process Analytical Technology. de Gruyter GmbH, Walter, 2018.

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34

Sada, Cinzia, Karsten Rebner, and Dominik G. Rabus. Optofluidics: Process Analytical Technology. de Gruyter GmbH, Walter, 2018.

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35

Goedecke, Ralf. Fluid Process Engineering: Fundamentals, Methods, Applications. Wiley & Sons, Incorporated, John, 2010.

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36

Holland, F., and R. Bragg. Fluid Flow for Chemical and Process Engineers. Elsevier Science & Technology Books, 1995.

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37

Fluid Flow for Chemical and Process Engineers, Second Edition. 2nd ed. Butterworth-Heinemann, 1995.

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38

Schmidt, Jürgen. Process and Plant Safety: Applying Computational Fluid Dynamics. Wiley & Sons, Limited, John, 2012.

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39

Schmidt, Jürgen. Process and Plant Safety: Applying Computational Fluid Dynamics. Wiley & Sons, Incorporated, John, 2012.

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40

Schmidt, Jürgen. Process and Plant Safety: Applying Computational Fluid Dynamics. Wiley & Sons, Incorporated, John, 2012.

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41

Schmidt, Jürgen. Process and Plant Safety: Applying Computational Fluid Dynamics. Wiley & Sons, Incorporated, John, 2012.

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42

Schmidt, Jürgen. Process and Plant Safety: Applying Computational Fluid Dynamics. Wiley & Sons, Limited, John, 2012.

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43

Fluid Catalytic Cracking VII Materials, Methods and Process Innovations. Elsevier, 2007. http://dx.doi.org/10.1016/s0167-2991(07)x8184-9.

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44

Seismogenic Process Monitoring: Proceedings of a Joint Japan-Poland Symposium on Mining and Experimental Seismology, Kyoto, Japan, November 1999. CRC Press LLC, 2017.

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45

Ando, M. Seismogenic Process Monitoring: Proceedings of a Joint Japan-Poland Symposium on Mining and Experimental Seismology, Kyoto, Japan, November 1999. CRC Press LLC, 2017.

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46

Ando, M. Seismogenic Process Monitoring: Proceedings of a Joint Japan-Poland Symposium on Mining and Experimental Seismology, Kyoto, Japan, November 1999. CRC Press LLC, 2017.

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47

Ando, M. Seismogenic Process Monitoring: Proceedings of a Joint Japan-Poland Symposium on Mining and Experimental Seismology, Kyoto, Japan, November 1999. CRC Press LLC, 2017.

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48

Fluid mixture separation technologies for cost reduction and process improvement. Park Ridge, N.J., U.S.A: Noyes Publications, 1986.

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49

Baumann, Hans. Fluid Mechanics of Control Valves: How Valves Control Your Process. ISA, 2019.

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50

Occelli, Mario L. Fluid Catalytic Cracking VII : Vol. VII: Materials, Methods and Process Innovations. Elsevier Science & Technology Books, 2011.

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