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AGRICULTURE MECHANIZATION AND ELECTRIFICATION

ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS

A.Zh. Sagyndikova* 1 , N.N. Arystanov 2

1 «Kazakh National Agrarian Researkh University» NJSC, Almaty, Kazakhstan; 2 Almaty University of Energy and Communications, Almaty, Kazakhstan

doi.org/10.37884/2-2022/12 pp. 101-110 Admitted 20.04.2022 Published 28.06.2022

Abstract

The article provides an analysis of the use of LED lighting of livestock premises, which can not only be energy efficient, but also help to increase the productivity of farms. Agriculture is the largest consumer of electrical energy in the form of optical radiation. Rational use and saving of electricity in lighting and irradiation installations is of the greatest importance in the overall balance of electricity consumption. The products of lighting and irradiation installations in agriculture are a stream that creates the required illumination for performing visual work, or ultraviolet irradiation for exposure to animals in order to preserve and increase productivity. The costs are capital one-time costs for lighting installations (equipment, installation) and operating costs for the maintenance of lighting and irradiation installations, primarily for the replacement of radiation sources, their cleaning, as well as for electricity payments. Considering that the cost of electricity has increased very much, the issue of reducing the cost of lighting and irradiation is of great relevance. Thus, the task of lighting and irradiation installations is reduced to reducing both direct capital costs and operating costs, i.e. mainly to reducing electricity consumption and are among the most important problems.

illumination, LED lighting of livestock premises, electric energy consumer, optical radiation, cowshed premises taking into account beams and supports, light mode, artificial light, Dialux illumination assessment

01 Introduction

The full text of the article is available for download in PDF format on the right panel.

02 References

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Citation Links

[1]2022. ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS. Izdenister natigeler. 2 (94) (Jun. 2022), 101–110. DOI:https://doi.org/10.37884/2-2022/12.
(1)ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS. Izdenister natigeler 2022, No. 2 (94), 101-110. https://doi.org/10.37884/2-2022/12.
ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS. (2022). Izdenister Natigeler, 2 (94), 101-110. https://doi.org/10.37884/2-2022/12
ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS. Izdenister natigeler, [S. l.], n. 2 (94), p. 101–110, 2022. DOI: 10.37884/2-2022/12. Disponível em: https://kazvetjournal.kaznaru.edu.kz/index.php/research/article/view/108. Acesso em: 15 sep. 2026.
“ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS”. 2022. Izdenister Natigeler, no. 2 (94) (June): 101-10. https://doi.org/10.37884/2-2022/12.
“ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS” (2022) Izdenister natigeler, (2 (94), pp. 101–110. doi:10.37884/2-2022/12.
[1]“ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS”, Izdenister natigeler, no. 2 (94), pp. 101–110, Jun. 2022, doi: 10.37884/2-2022/12.
“ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS”. Izdenister Natigeler, no. 2 (94), June 2022, pp. 101-10, https://doi.org/10.37884/2-2022/12.
“ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS”. Izdenister natigeler, no. 2 (94) (June 28, 2022): 101–110. Accessed September 15, 2026. https://kazvetjournal.kaznaru.edu.kz/index.php/research/article/view/108.
1.ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS. Izdenister natigeler [Internet]. 2022 Jun. 28 [cited 2026 Sep. 15];(2 (94):101-10. Available from: https://kazvetjournal.kaznaru.edu.kz/index.php/research/article/view/108
1.ENERGY-SAVING LIVESTOCK FACILITIES LIGHTING ANALYSIS. Izdenister natigeler. 2022;(2 (94):101-110. doi:10.37884/2-2022/12