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Dynamic modeling and simulation

Ghezel-Ayagh, H., Lukas, M. and Junker, S. (2004) Dynamic modeling and simulation of a hybrid fuel cell/gas turbine power plant for control system development, in Proceedings of the Second... [Pg.180]

Schneider R, Noeres C, Kreul LU, Gorak A. Dynamic modeling and simulation of reactive batch distillation. Computers Chem Eng 1999 23 S423-S426. [Pg.372]

Younas, M., Bocquet, S.D. and Sanchez, J. (2008) Extraction of aroma compounds in a HFMC Dynamic modelling and simulation. Journal of Membrane Science, 323, 386. [Pg.537]

Dynamic Modeling and Simulation of the Anaerobic Digestion Process... [Pg.126]

Diinnebier, G., Weirich, I., and Watt, K.-U. (1998) Computationally efficient dynamic modelling and simulation of simulated moving bed chromatographic processes with linear isotherms. Chem. Eng. Sci., 53, 2537-2546. [Pg.511]

Ghashghaee, M. and Karimzadeh, R. Dynamic modeling and simulation of steam cracking furnaces. Chemical engineering technology, 30(7) 835-843, 2007. [Pg.214]

Yi G.Z., Wang D.K., Zhang D.M. 2008. Research on solid gas coupling dynamic model and simulation of coal contain gas. Chinese Journal of geotechnical engineering. 30(10) 1430-1436. [Pg.1103]

A. Gorak, Dynamic Modeling and Simulation of Reactive Batch Distillation, Comp. Chem. Eng., 2001,... [Pg.361]

Some heat flows in connection with entropy production are associated with other thermodynamic variables. Typical single fluxes and forces are summarized above. It may be noted that steady fluxes are considered. Kinetic theory provides theoretical justification of some of these flux force relations (J = LX). Here, L is called phenomenological coefficient. But kinetic theory has limitation in the sense that first approximation to distribution function corresponds to local equilibrium hypothesis. It may be noted that non-equilibrium molecular dynamics (model and simulation) provides justification of these laws for a wide range. Nevertheless, justification has to be provided by experiments (Table 2.1). [Pg.17]

Dunnebier, G., I. Weirich, and K. U. Klatt, Conputationally Efficient Dynamic Modeling and Simulation of Simulated Moving Bed Chromatographic Processes with Linear Isotherms, Chem. Engr. ScL, 53, 2537 (1998). [Pg.877]

Gong J, Luo K, Huang Y. Dynamic modeling and simulation for environmentally benign cleaning and rinsing. Plat Surf Finish 1997 84(11) 63—70. [Pg.247]

D.C. Karnopp, D.L. MargoUs, and R.C. Rosenberg. System Dynamics - Modeling and Simulation of Mechatronic Systems. Whey Fourth edition, 2005. ISBN 0-471-70965-4. [Pg.175]

Kamopp DC, MargoUs DL, Rosenberg RC (2006) System Dynamics Modeling and Simulation of Mechatronic Systems, 4th ed. Wiley, Hoboken, NJ. [Pg.382]

Minegishi S, Thiel D (2000) System dynamics modelling and simulation of particular food supply... [Pg.181]

Wohn M., Bolwin K., Schnumberger W., Fisher M., Neubrand W., and Eigemberger G. (1998) Dynamic modelling and simulation of a polymer membrane fuel cell including mass transport limitations . International Journal of Hydrogen Energy, 23(3), 213-218. [Pg.120]

Barton, P.I. Dynamic modeling and simulation. Department of Chemical Engineering Massachusetts Institute of Technology, Cambridge, MA, 1997. [Pg.611]

Mederos, F.S., Rodriguez, M.A., Ancheyta, J., Arce, E. 2006. Dynamic modeling and simulation of catalytic hydrotreating reactors. Energy Fuels 20(3) 936—945. [Pg.268]

Mederos, F.S. 2010. Dynamic modeling and simulation of a three-phase reactor for hydrotreating of oil fractions, PhD thesis, IMP Postgraduate School, Mexico. [Pg.347]


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