Preview

Power engineering: research, equipment, technology

Advanced search

CONTROL THE BODY TEMPERATURE OF LED LAMPS AT WORK IN DIFFERENT LIGHTING DEVICES

https://doi.org/10.30724/1998-9903-2017-19-9-10-146-150

Abstract

The temperature of the housing of LED lamps is determined under different conditions of their operation in lighting devices. It is shown that the creation of ventilation holes in the plafond or in the system of its fastening allows to lower the body temperature of LED lamps by 1025% and thereby significantly increase the service life.

About the Authors

Aihaiti Yisihakefu
Kazan State Power Engineering University, Kazan
Russian Federation
engineer of the Department “Industrial Electronics and Lighting technology”


R. H. Tukshaitov
Kazan State Power Engineering University, Kazan
Russian Federation
Dr. Sci. (Biology), professor, Department “Industrial Electronics and Lighting”


References

1. Decree of the Government of the Russian Federation No. 898 of August 28, 2015 "on Amendments to Clause 7 of the Rules for Establishing Energy Efficiency Requirements for Goods, Works and Services in the Conduct of Procurement for Ensuring State and Municipal Needs".

2. Petropavlovsky Yu. Modern LED products of Verbatim. Mutsibishi companies // Semiconductor lighting engineering. 2014. No. 3. P. 60-65.

3. LED and energy-saving lamps "Ekonomika". Modern lighting technology. 2016. No. 5. P. 52.

4. Evdokimov Y.K., Martemianov S. Continuously distributedsensors for steady-state temperatureprofile measurements: main principles and numerical algorithm // International journal of heat and mass transfer. 2004. T. 47. No. 2. P. 329-340.

5. Ashryatov A.A, Kokinov A.M, Mikaeva S.A. Investigation of linear LED lamps // Natural and technical sciences. 2012. No. 6. P. 338-353.

6. Smirnov V., Kondratiev A., Lebedev I., Abalov A. Complex approach to the selection of components for the manufacture of lighting products // Semiconductor lighting engineering. 2014. No. 4. P. 26-29.

7. Kornich A. Overview of the configurations of cooling systems for high-power LED fixtures // Modern lighting technology. No. 16. No. 3. P. 23-28.

8. Maggie Najee. Concepts that extend the life service of the LED driver // Semiconductor lighting. 2017. No. 2. P. 44-47.

9. Tukshaitov R.H., Iskhakov A.R, Aihaiti Yisihakefu, Garipov R.R. About new possibilities of ways to increase the service life of LED lamps // Problems and prospects for the development of domestic lighting, electrical engineering and energy: Sat. Sci. Tr. ХII scientific and technical conference. Saransk: Moscow State University. N.P. Ogareva, 2013. P. 282-284.

10. Pat. 121552 RU, MPK F21S 8/00. Plafon dlya svetodiodnoi lampy / Tukshaitov R.Kh., Markin Yu.S.; zayavl. 25.05.2012, opubl. 27.10.2012. Byul. № 30.

11. Pat. 163832 RU, MPK H01R 33/44. Elektricheskii patron dlya svetodiodnoi lampy / Kurmaev I.Kh., Tukshaitov R.Kh., Garipov R.R., Iskhakov A.F.; zayavl. 27.10.2015, opubl. 10.08.2016. Byul. № 30. Tukshaitov R.H., Aihaiti Yisihakefu, Nigmatullin RM, Garipov R.R. How to ensure the declared service life of LED lamps // Semiconductor lighting equipment 2016. No. 3. V. 41. P. 6-9.


Review

For citations:


Yisihakefu A., Tukshaitov R.H. CONTROL THE BODY TEMPERATURE OF LED LAMPS AT WORK IN DIFFERENT LIGHTING DEVICES. Power engineering: research, equipment, technology. 2017;19(9-10):146-150. (In Russ.) https://doi.org/10.30724/1998-9903-2017-19-9-10-146-150

Views: 384


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1998-9903 (Print)
ISSN 2658-5456 (Online)