Verlagslink: http://stacks.iop.org/0022-3727/48/i=25/a=255501
Verlagslink DOI: 10.1088/0022-3727/48/25/255501
Titel: Numerical Investigation of Symmetry Breaking and Critical Behavior of the Acoustic Streaming Field in High-Intensity Discharge Lamps
Autorenschaft: Baumann, Bernd  
Schwieger, Jörg 
Wolff, Marcus  
Manders, Freddy 
Suijker, Jos 
Erscheinungsdatum: 2015
Zeitschrift oder Schriftenreihe: Journal of physics. D, Applied physics 
Zeitschriftenband: 48
Zeitschriftenausgabe: 25, article number: 255501
Zusammenfassung: 
For energy efficiency and material cost reduction it is preferred to drive high-intensity discharge lamps at frequencies of approximately 300 kHz. However, operating lamps at these high frequencies bears the risk of stimulating acoustic resonances inside the arc tube, which can result in low frequency light flicker and even lamp destruction. The acoustic streaming effect has been identified as the link between high frequency resonances and low frequency flicker. A highly coupled three-dimensional multiphysics model has been set up to calculate the acoustic streaming velocity field inside the arc tube of high-intensity discharge lamps. It has been found that the velocity field suffers a phase transition to an asymmetrical state at a critical acoustic streaming force. In certain respects the system behaves similar to a ferromagnet near the Curie point. It is discussed how the model allows to investigate the light flicker phenomenon. Concerning computer resources the procedure is considerably less demanding than a direct approach with a transient model.
URI: http://hdl.handle.net/20.500.12738/293
Einrichtung: Department Maschinenbau und Produktion 
Fakultät Technik und Informatik 
Dokumenttyp: Zeitschriftenbeitrag
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