Thermal Exchange Modelling on Hydrogen Plasma Reactor WallsA. Michau*, F. Silva, K. Hassouni, A. GicquelLaboratoire d’Ingénierie des Matériaux et des Hautes Pressions, 99 Av J. B. Clément, 93430 Villetaneuse*Corresponding author: 99 Av J. B. Clément, 93430 Villetaneuse, michau@limhp.univ-paris13.fr

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Simulation of the Electromagnetic Stirrers and Brakes Applied in the Metallurgical FieldC. Mapelli11Dipartimento di Meccanica, Politecnico di Milano via La Masa 34, 20156 MILANO (Italy)*Corresponding author: Carlo Mapelli, email address: carlo.mapelli@polimi.it

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Yan-Ming LiEffects of Plasma Rotation and Magnetic Fields on Convection Flows in the Horizontal Burning High Intensity Discharge Lamps

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Stability and Bifurcation of Cathode Arc Attachment in ACOperated High-Intensity Discharge LampsAlan LenefOsram Sylvania71 Cherry Hill Dr., Beverly, MA 01915, alan.lenef@sylvania.com

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Design and Optimisation of a Magnetic-inductive Flow Sensor with Elliptical Cross-SectionJens Krause1, Gerd Stange21FuE Zentrum FH Kiel GmbH, Zentrum für Adaptronik, Schwentinestraße 24, D-24149 Kiel, jens.krause@fh-kiel.de,2FH Kiel, Fachbereich Informatik und Elektrotechnik, Grenzstraße 5, D-24149 Kiel, gerd.stange@fh-kiel.de.

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Sergey Karpov and Igor KrichtafovitchKronos Air Technologies, 15241 90th St. NE, Redmond, Washington 98052Electrohydrodynamic flow modeling using FEMLAB

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Numerical Study of Surface Waves in PlasmaC. Hunyar1*, E. Räuchle1, L. Alberts1, R. Emmerich1, M. Graf1, M. Kaiser1, K.-D. Nauenburg11Fraunhofer-Institut Chemische Technologie (ICT), Dept. of Polymer Engineering/Microwaveand Plasma,*Corresponding author: Fraunhofer ICT, J.-v.-Fraunhofer-Str. 7, D-76327 Pfinztal (Berghausen), Germany,Christian.Hunyar@ict.fraunhofer.de

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Two-fluid modelling of an abnormal low-pressure glow dischargeG.K. Grubert, D. Loffhagen, and D. UhrlandtInstitut für Niedertemperatur-Plasmaphysik, F.-L.-Jahn-Straße 19, 17489 Greifswald,grubert@inp-greifswald.de

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3D Electromagnetic Simulation for Microwave Plasma CouplingO. Geoffroy, H. Rouch*,INOPROTelespace Vercors,118, chemin des Breux,38250 Villard de Lans*herve.rouch@inopro.com

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Microwave plasma modeling with COMSOL MULTIPHYSICSO. Geoffroy*, H. Rouch,INOPROTelespace Vercors - 118, chemin des Breux – F-38250 Villard de Lans* olivier.geoffroy@inopro.com

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Numerical Modeling of a Levitated Liquid in a Cold CrucibleR. Ernst*, C. Garnier , P. Petitpas, C. TrassySIMAP-EPM Laboratory (CNRS) - France*Corresponding author: SIMAP-EPM Laboratory (CNRS), ENSEEG, BP 9538402 Saint Martin d’Hères, France / roland.ernst@grenoble.cnrs.fr

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Charakterisierung einer magnetorheologischen Flüssig-keit für die Innenhochdruck-Umformung von RohrenPaolo Dal Bó1, Andreas Blankl1, Manfred Geiger11Universität Erlangen-Nürnberg, Lehrstuhl für Fertigungstechnologie, Egerlandstr. 11, 91058 Erlangen, Deutschland, p.dalbo@lft.uni-erlangen.de, a.blankl@lft.uni-erlangen.de, m.geiger@lft.uni-erlangen.de,

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Use of COMSOL Multiphysics in the Modeling of Ion SourceExtractionMarco CavenagoLaboratori Nazionali di Legnaro, Istituto Nazionale di Fisica Nucleare (INFN-LNL)viale dell’Universita’ n. 2, I-35020, Legnaro (PD) Italy, cavenago@lnl.infn.it

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Modeling Remote H2 Plasma in Semiconductor Processing ToolJozef Brcka*TEL Technology Center, America, LLC*Corresponding author: 255 Fuller Rd, Albany, NY 12203, jozef.brcka@us.tel.com

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Dipolar Plasma Source Modeling: a First ApproachStéphane Bechu*, Than Vinh Tran, Ana Lacoste, Alexandre Bès, Marius Rayar, Jacques PelletierLaboratoire de Physique Subatomique et de Cosmologie Centre de Recherche Plasma-Matériaux-NanostructuresUniversité J. Fourier Grenoble 1, CNRS/IN2P3/ST2I, INP-Grenoble*Corresponding author: 53 rue de Martyrs, 38026 Grenoble Cedex, Franc...

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Pore Scale Modeling of Colloid Transport in Unsaturated Porous Media with COMSOLM. Ekrem Cakmak1, Yuniati Zevi1, Verónica L. Morales1, Bin Gao1, John L. Nieber2 and Tammo S. Steenhuis*, 11Department of Biological and Environmental Engineering, Cornell University, Ithaca, NY, USA 2Department of Bioproducts and Biosystems Engineering, University of Minnesota, St Paul, MN, USA*Co...

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Modeling Flow Through Foam ChannelsF. Rouyer*, E. Lorenceau and O. PitoisUniversité Paris-est, Laboratoire de Physique des Matériaux Divisés et des Interfaces, UMR CNRS 8108.*Corresponding author: 5 bvd Descartes, 77454 Marne la Vallée Cedex 2, France, rouyer@univ-mlv.fr

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Modeling of Frying and Related Processes Involving Strong Evaporation: A Porous Media ApproachA. Halder*, A. Dhall and A.K. DattaBiological and Environmental Engineering, Cornell University, Ithaca, NY 14853*Corresponding author: 175 Riley Robb Hall, Ithaca, NY-14853, ah333@cornell.edu

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FLUID FLOW in POROUS CERAMIC MULTICHANNEL CROSSFLOW FILTER MODULESG. Breitbach *, S. Alexopoulos, B. Hoffschmidt, FH Aachen, Jülich, Germany*Corresponding author: Ginsterweg 1 D 52428 Juelich Germany, email address: breitbach@fh-aachen.de

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Berechnung von photonischen Kristallen mit Hilfe desComsol-ElektromagnetikmodulsA. von Rhein, S. Greulich-Weber, R. B. WehrspohnDepartment of Physics, University of Paderborn, 33095 Paderborn, Germany

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