Publikationen des Instituts für Elektroprozesstechnik

Zeige Ergebnisse 261 - 280 von 783

2014


Spitans S, Baake E, Nacke B, Jakovics A. Coupled 3D simulation of free surface dynamics and liquid metal flow in EM levitation melting furnaces. in Proceedings of the International Scientific Colloquium "Modelling for Electromagnetic Processing": Hannover, September 16 - 19, 2014. Hannover: Institut für Elektroprozesstechnik. 2014. S. 195-202
Steinberg T, Baake E. CO2-freie Produktion von Wasserstoff durch den Einsatz von Flüssigmetall. Elektrowärme international (EWI). 2014;72(2):59-62.
Steunberg T, Baake E. CO2-freie Produktion von Wasserstoff durch den Einsatz von FlüssgmetaII. Elektrowärme international (EWI). 2014;(2):59-62.
Tucs A, Spitans S, Jakovics A, Baake E. Numerical modelling of gas bubble dynamics in liquid metal in applied DC magnetic field. in 9th PAMIR International Conference "Thermo Acoustic and Space Technologies": Riga, Latvia, June 16 - 20, 2014. Inst. of Physics. 2014. S. 266-270

2013


Baake E, Ubbenjans B. Einsparung von Energie und CO2 durch elektrothermische Technologien. Elektrowärme international (EWI). 2013;71(2):91-95.
Baake E, Spitans S, Jakovics A. New technology for electromagnetic levitation melting of metals. in Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova: SGEditoriali. 2013. S. P30
Baake E. Potentials for saving energy in Europe by the use of electrothermal technologies. Heat processing : international magazine for industrial furnaces, heat treatment plants, equipment. 2013;(4):69-74.
Baake E, Jakovics A. Untersuchung und Verbesserung des Betriebsverhaltens von Induktionsrinnenöfen durch Anwendung der Computersimulation. Giesserei : die Zeitschrift für Technik, Innovation und Management. 2013;100(7):42-47.
Di Barba P, Pleshivtseva Y, Rapoport E, Forzan M, Lupi S, Sieni E et al. Multi-objective optimisation of induction heating processes: Methods of the problem solution and examples based on benchmark model. International Journal of Microstructure and Materials Properties. 2013 Okt 8;8(4-5):357-372. doi: 10.1504/IJMMP.2013.057072
Di Barba P, Pleshivtseva Y, Rapaport E, Forzan M, Lupi S, Sieni E et al. Multi-objektive optimization for advanced design of induction through heaters. in Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova: SGEditoriali. 2013. S. 507-514
Di Barba P, Pleshivtseva Y, Rapaport E, Forzan M, Lupi S, Sieni E et al. Numerical simulation and investigation of electromagnetic and thermal dynamics for induction through heaters. in Induction, dielectric and microwaves, conduction & electromagnetic processing : HES-13 : International Conference on Heating by Electromagnetic Sources: Padua, May 21-24, 2013. Padova: SGEditoriali. 2013. S. 507-514
Lahdo R, Seffer O, Springer A, Kaierle S, Overmeyer L, Collmann M et al.. Induction assisted gma-laser hybrid welding of high-strength fine- grain structural steels. 2013. Beitrag in 32nd International Congress on Applications of Lasers and Electro-Optics, ICALEO 2013, Miami, FL, USA / Vereinigte Staaten. doi: 10.2351/1.5062879
Maximenko MY, Pozniak I, Shatunov AN, Pechenkov A, Kichigin V, Maksimov AI. УПРАВЛЕНИЕ ФРОНТОМ КРИСТАЛЛИЗАЦИИ РАСПЛАВА ПРИ НЕПРЕРЫВНО-ПОСЛЕДОВАТЕЛЬНОЙ ЗОННОЙ ПЛАВКЕ В ИНДУКЦИОННОЙ ПЕЧИ С ХОЛОДНЫМ ТИГЛЕМ. Proceedings of Saint Petersburg Electrotechnical University Journal. 2013;2013(3):73-78.
Muratov A, Galunin S, Blinov K, Nikanorov A, Nacke B. Numerical simulation of induction systems for heating by rotation with controlled temperature distribution. in Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova: SGEditoriali. 2013. S. 371-376
Nacke B, Baake E. Elektrothermische Verfahren. in Handbuch industrielle Wärmetechnik: Grundlagen, Berechnungen, Verfahren. 5. [überarb.] Aufl. Aufl. Essen: Vulkan Verlag. 2013. S. 265-330
Nacke B, Niemann B, Schlesselmann D. Heat and mass transfer in inductive skull melting of glasses and oxides. Heat processing : international magazine for industrial furnaces, heat treatment plants, equipment. 2013;11(2):109-114.
Nacke B, Baake E. Institute of Electrotechnology of the Leibniz Universität Hannover (ETP). Heat processing : international magazine for industrial furnaces, heat treatment plants, equipment. 2013;11(2):121-128.
Nacke B, Niemann B, Schlesselmann D. Wärme- und Stofftransport beim induktiven Schmelzen von Gläsern und Oxiden. Elektrowärme international (EWI). 2013;71(1):71-76.
Nikanorov A, Baake E, Brauer H, Weil C. Approaches for numerical simulation of high frequency tube welding process. in Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova: SGEditoriali. 2013. S. 647-654
Pavlovs S, Jakovics A, Bosnyaks D, Nacke B, Baake E. Anomalies of joule heat, thermal and turbulent flow fields in clogging industrial channel induction furnaces. in Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova: SGEditoriali. 2013. S. 29-36