Multi-Scale Positioning Control Model of a Novel Fluid Dynamic Drive by Coupling Process and Adapted CFD Models

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Autoren

  • H. C. Möhring
  • H. Kayapinar
  • B. Denkena
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Details

OriginalspracheEnglisch
Seiten (von - bis)92-97
Seitenumfang6
FachzeitschriftProcedia CIRP
Jahrgang2
Ausgabenummer1
PublikationsstatusVeröffentlicht - 19 Juli 2012
Veranstaltung1st CIRP Global Web Conference on Interdisciplinary Research in Production Engineering, CIRPE 2012 -
Dauer: 12 Juni 201213 Juni 2012

Abstract

In this paper multi-scale modeling of a novel fluid dynamic planar positioning system is described and compared with a simplified plant model. The multi-scale model is realized by coupling a mechatronic simulation model implemented in Matlab/Simulink and a transient 2D-CFD model realized with the Finite Element-software Ansys using the Flotran solver. The complex behavior of the fluidic system between two control tasks could be observed. The permission for large movements of the slide is solved using an appropriate remeshing concept.

ASJC Scopus Sachgebiete

Zitieren

Multi-Scale Positioning Control Model of a Novel Fluid Dynamic Drive by Coupling Process and Adapted CFD Models. / Möhring, H. C.; Kayapinar, H.; Denkena, B.
in: Procedia CIRP, Jahrgang 2, Nr. 1, 19.07.2012, S. 92-97.

Publikation: Beitrag in FachzeitschriftKonferenzaufsatz in FachzeitschriftForschungPeer-Review

Möhring HC, Kayapinar H, Denkena B. Multi-Scale Positioning Control Model of a Novel Fluid Dynamic Drive by Coupling Process and Adapted CFD Models. Procedia CIRP. 2012 Jul 19;2(1):92-97. doi: 10.1016/j.procir.2012.05.047
Möhring, H. C. ; Kayapinar, H. ; Denkena, B. / Multi-Scale Positioning Control Model of a Novel Fluid Dynamic Drive by Coupling Process and Adapted CFD Models. in: Procedia CIRP. 2012 ; Jahrgang 2, Nr. 1. S. 92-97.
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abstract = "In this paper multi-scale modeling of a novel fluid dynamic planar positioning system is described and compared with a simplified plant model. The multi-scale model is realized by coupling a mechatronic simulation model implemented in Matlab/Simulink and a transient 2D-CFD model realized with the Finite Element-software Ansys using the Flotran solver. The complex behavior of the fluidic system between two control tasks could be observed. The permission for large movements of the slide is solved using an appropriate remeshing concept.",
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Download

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AU - Möhring, H. C.

AU - Kayapinar, H.

AU - Denkena, B.

N1 - Funding information: The authors thank the German Research Foundation (DFG) for funding this work within the SPP1476.

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KW - Modeling

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