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Michael Mangold

Prof. Dr.-Ing. habil. Michael Mangold

FB 2 - Technik, Informatik und Wirtschaft, Technische Hochschule Bingen

Berlinstraße 109, 55411 Bingen, Raum: 1-126

  • 06721/409-139
Publikationen
Ergebnisse pro Seite:  10

Grüner, S.; Mangold, M.; Kienle, A.

Dynamics of reaction separation processes in the limit of chemical equilibrium

AIChE Journal. Bd. 52. H. 3. Wiley 2005 S. 1010 - 1026


Mangold, Michael; Krasnyk, Michael; Kienle, Achim et al.

Instabilities in High‐Temperature Fuel Cells Due to Combined Heat and Charge Transport

Sundmacher, Kai; Kienle, Achim; Seidel-Morgenstern, Andreas (Hrsg). Integrated Chemical Processes. Weinheim: Wiley 2005 S. 69 - 84


Krasnyk, Michael; Ginkel, Martin; Mangold, Michael et al.

Numerical analysis of higher-order singularities in complex chemical process models in ProMoT

Computer Aided Chemical Engineering. Bd. 20. Elsevier 2005 S. 223 - 228


Mangold, Michael; Grötsch, Markus; Sheng, Min et al.

State Estimation of a Molten Carbonate Fuel Cell by an Extended Kalman Filter

Meurer, Thomas; Graichen, Knut; Gilles, Ernst Dieter (Hrsg). Control and Observer Design for Nonlinear Finite and Infinite Dimensional Systems. Springer-Verlag 2005 S. 93 - 109 (Lecture Notes in Control and Information Science, Volume 322)


Mangold, Michael; Krasnyk, Mykhaylo; Sundmacher, Kai

Theoretical investigation of steady state multiplicities in solid oxide fuel cells

Journal of Applied Electrochemistry. Bd. 36. H. 3. Springer Science and Business Media LLC 2005 S. 265 - 275


Mangold, M.; Ginkel, M.; Gilles, E.D.

A model library for membrane reactors implemented in the process modelling tool ProMoT

Computers & Chemical Engineering. Bd. 28. H. 3. Elsevier BV 2004 S. 319 - 332


Mangold, M.; Angeles-Palacios, O.; Ginkel, M. et al.

Computer-Aided Modeling of Chemical and Biological Systems:  Methods, Tools, and Applications

Industrial & Engineering Chemistry Research. Bd. 44. H. 8. American Chemical Society (ACS) 2004 S. 2579 - 2591


Mangold, M.; Sheng, M.; Heidebrecht, P. et al.

Development of physical models for the process control of a molten carbonate fuel cell system

Chemical Engineering Science. Bd. 59. H. 22-23. Elsevier BV 2004 S. 4847 - 4852


Mangold, M.; Krasnyk, M.; Sundmacher, K.

Nonlinear analysis of current instabilities in high temperature fuel cells

Chemical Engineering Science. Bd. 59. H. 22-23. Elsevier BV 2004 S. 4869 - 4877


Mangold, M.; Sheng, M.

Nonlinear Model Reduction of a Two‐Dimensional MCFC Model with Internal Reforming

Fuel Cells. Bd. 4. H. 1-2. Wiley 2004 S. 68 - 77