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Original Articles

An Elementary Arc Model of the High Pressure Sodium Lamp

(Laboratory Director)
Pages 131-140 | Published online: 20 Sep 2013

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Read on this site (11)

D.M. Rutan & P.G. Mathews. (1989) Thermal Modeling of High Pressure Sodium Arc Tubes. Journal of the Illuminating Engineering Society 18:1, pages 29-36.
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Philip J. White & Elliot F. Wyner. (1985) High Pressure Sodium Lamps at Increased Loading. Journal of the Illuminating Engineering Society 15:1, pages 95-108.
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R. J. Zollweg. (1983) The Alumina Arc Tube Wall Temperature of High Pressure Sodium Lamps. Journal of the Illuminating Engineering Society 12:4, pages 275-281.
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Katsuya Otani, Kazuo Kawahara, Keiji Watanabe & Michihiro Tsuchihashi. (1982) A High Pressure Sodium Lamp with Improved Color Rendition. Journal of the Illuminating Engineering Society 11:4, pages 231-240.
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T. Ishigami, T. Higashi, A. Inouye & H. Sasaki. (1982) The Effect of Rare Gases on the Luminous Efficacy of Metal Halide Lamps. Journal of the Illuminating Engineering Society 11:3, pages 140-146.
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K. E. Brown, A. G. Chalmers & D. O. Wharmby. (1982) Tin Sodium Halide Lamps in Ceramic Envelopes. Journal of the Illuminating Engineering Society 11:2, pages 106-114.
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Patrick C. Ward. (1982) Analysis of HPS Lamp Voltage Rise. Journal of the Illuminating Engineering Society 11:2, pages 94-97.
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John F. Waymouth & Elliot F. Wyner. (1981) Analysis of Factors Affecting Efficacy of High Pressure Sodium Lamps. Journal of the Illuminating Engineering Society 10:4, pages 237-244.
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R. J. Campbell & W. Kroontje. (1980) Evaporation Studies of the Sintered Aluminum Oxide Discharge Tubes Used in High Pressure Sodium (HPS) Lamps. Journal of the Illuminating Engineering Society 9:4, pages 233-239.
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Elliot F. Wyner. (1979) Electrolysis of Sodium through Alumina Arc Tubes. Journal of the Illuminating Engineering Society 8:3, pages 166-173.
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C. A. J. Jacobs, L. Sprengers & R. L. C. de Vaan. (1978) Arc Voltage Control in Low and High Pressure Sodium Lamps. Journal of the Illuminating Engineering Society 7:2, pages 125-131.
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Articles from other publishers (16)

S-J Park, J D Readle, A J Price, J K Yoon & J G Eden. (2007) Lighting from thin (<1 mm) sheets of microcavity plasma arrays fabricated in Al/Al 2 O 3 /glass structures: planar, mercury-free lamps with radiating areas beyond 200 cm 2 . Journal of Physics D: Applied Physics 40:13, pages 3907-3913.
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Jos Luis Tapia Fabela, Joel Osbaldo Pacheco-Sotelo, Marquidia Pacheco Pacheco, Jorge Samuel Benitez-Read, Rgulo Lopez-Callejas, Georges Zissis & Sounil Bhosle. (2007) Electrical Model for HPS Discharge Based on the Energy-Balance Equation. IEEE Transactions on Plasma Science 35:3, pages 637-643.
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D.h.j. Casteren, J.L. Duarte & M.A.M. Hendrix. (2006) Physics based MATLAB model for ceramic metal halide lamps. Physics based MATLAB model for ceramic metal halide lamps.
L. Cifuentes. (2016) High-pressure discharge lamps: Approaches to modelling. Lighting Research & Technology 23:4, pages 161-165.
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M. J. Jongerius. (1987) Influence of xenon on the self-reversal maxima of the Na-D emission lines in high-pressure sodium lamps. Journal of Applied Physics 62:8, pages 3138-3149.
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H E Lee & L E Cram. (1985) On the theory of radiation-dominated wall-stabilised arcs. Journal of Physics D: Applied Physics 18:8, pages 1561-1573.
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Paul A. Reiser & Elliot F. Wyner. (1985) Use of the peak shifts of the 3 S -3 P sodium resonance lines for the analysis of high-pressure sodium lamps . Journal of Applied Physics 57:5, pages 1623-1631.
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James T. Dakin & Theodore H. RautenbergJr.Jr.. (1984) Frequency dependence of the pulsed high-pressure sodium arc spectrum. Journal of Applied Physics 56:1, pages 118-124.
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Hidezoh Akutsu. (2016) Trends in HPS lamp technology. Lighting Research & Technology 16:2, pages 73-84.
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D O Wharmby. (1984) Energy balance of high-pressure sodium discharges under controlled vapour conditions. Journal of Physics D: Applied Physics 17:2, pages 367-378.
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P L Denbigh, B F Jones & D A J Mottram. (1983) Relationship between efficacy, arc tube temperature and power dissipation in a high-pressure sodium lamp. Journal of Physics D: Applied Physics 16:11, pages 2167-2180.
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Katsuya OTANI. (1983) The convection phenomena in the high pressure sodium lamp. Journal of Light & Visual Environment 7:2, pages 1-6.
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C. L. Chalek & R. E. Kinsinger. (1981) A theoretical investigation of the pulsed high-pressure sodium arc. Journal of Applied Physics 52:2, pages 716-723.
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Hidezoh AKUTSU & Naoki SAITO. (1979) Energy balance of a high-pressure sodium arc tube.. Journal of Light & Visual Environment 3:2, pages 11-17.
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J.E. EBY & R.E. LEVIN. 1979. Applied Optics and Optical Engineering Volume 7. Applied Optics and Optical Engineering Volume 7 1 46 .
Harald L. Witting. (1978) Acoustic resonances in cylindrical high-pressure arc discharges. Journal of Applied Physics 49:5, pages 2680-2683.
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