Calculations of visible radiation in electrodeless HID lamps

Author:

Hamady M1,Lister GG2,Zissis G3

Affiliation:

1. Department of Physics, Faculty of Sciences, Lebanese University, El-Hadath, Beirut, Lebanon

2. Graeme Lister Consulting, Wenham, Massachusetts, USA

3. Université de Toulouse; LAPLACE (Laboratoire Plasma et Conversion d'Energie), Toulouse, France

Abstract

This paper compares the measured photometric properties and power balance of a conventional electroded metal halide lamp containing mercury and thallium iodide with those obtained from a theoretical model for discharges sustained by a microwave electromagnetic field. In the calculations, the discharge is assumed to be in the TM010 mode, sustained by a microwave field of frequency 2.45 GHz. The numerical model used to obtain the power balance in the discharge is based on a solution to the Elenbaas–Heller equation for the gas temperature, and a simple ‘skin depth’ model to describe the penetration of the maintenance electric field in the discharge. A ray tracing method is employed to simulate the radiation transport, to compute the emitted radiation flux, luminous flux, luminous efficacy and the correlated colour temperature. The calculations of the total radiation flux from the discharge as a function of electric power is consistent with previously published calculations, showing that the fraction of electric power converted to radiation increases as electric power increases, provided all other lamp parameters are constant. However, our results indicate that this does not necessarily correspond to an increase in the fraction of electrical power converted to visible radiation.

Publisher

SAGE Publications

Subject

Electrical and Electronic Engineering

Reference21 articles.

1. Eeles DB, Neate A, Odell EC, Preston B, Lidstrom K, Ronnblom W. Magnetron-powered, electrodeless HID light source: Proceedings of the 12th International Symposium on the Science and Technology of Light Sources and the 3rd International Conference on White LEDs and Solid State Lighting, Sheffield, UK, FAST-LS, 2010: 2010, pp. 279–280.

2. Neate AS, Lister GG. Microwave-powered metal halide discharge lighting system: Proceedings of the 13th International Symposium on the Science and Technology of Light Sources, Sheffield, UK, FAST-LS, 2012: 2012, pp. 185–193.

3. Applications of Microwave Discharges to High-Power Light Sources

4. Electrodeless high‐pressure microwave discharges

5. Study of the influence of additive on the radiative properties of a HgTℓI high pressure discharge

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