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Selection of Ceiling Fans for the Microclimate System of Livestock Facilities

https://doi.org/10.22314/2073-7599-2025-19-1-69-76

EDN: QLPRYU

Abstract

A literature review revealed that the distribution of air flows and indoor temperatures is influenced by several key factors; including building design; external climatic conditions; internal heat sources; and ventilation system operation. It was demonstrated that livestock buildings exhibit a temperature gradient along the room height; which can reach 6 degrees Celsius or more. An assessment of potential air temperature variations at different heights across various types of livestock facilities was conducted. It has been found that the use of ceiling fans enables a more uniform distribution of air; ensures the standard airflow velocity in the working area; and helps to reduce the concentration of harmful gases and microorganisms in animal zones. (Research purpose) The study aims to develop recommendations for selecting ceiling fans in agricultural premises to equalize air temperature at different heights and ensure uniform distribution of supply air; while maintaining regulated air flow velocity in animal housing areas. (Materials and methods) Various approaches and models for describing the propagation of compact jets and supply air jets from axial ceiling fans were analyzed. (Results and discussion) The range of possible variations in the ceiling fan performance was determined ensuring the normative air velocity in the animal zone; depending on suspension height and blade diameter. General analytical expressions were presented for modeling the propagation of both free and confined compact air jets. Additionally; the behavior of confined compact air jets in buildings with typical height characteristics was analyzed. (Conclusions) The obtained analytical expression defines the relationship between ceiling fan parameters and air flow characteristics; considering the regulated air flow velocity in the working zone. Calculated dependencies and recommendations were provided for determining the optimal number of ceiling fans needed to equalize the air temperature along the room height.

About the Authors

A. V. Kuzmichev
Federal Scientific Agroengineering Center VIM
Russian Federation

Alexey V. Kuzmichev, researcher

Moscow



D. A. Tikhomirov
Federal Scientific Agroengineering Center VIM
Russian Federation

Dmitry A. Tikhomirov, Dr.Sc.(Eng.); corresponding member of the Russian Academy of Sciences; chief researcher

Moscow



A. V. Khimenko
Federal Scientific Agroengineering Center VIM
Russian Federation

Aleksey V. Khimenko, Ph.D.(Eng.); leading researcher

Moscow



References

1. Trunov S.S., Rastimeshin S.А. Energy savings when using ceiling fans in livestock premises. Vestnik VIESH. 2016. Iss. 3(24). 35-37 (In Russian). EDN: WWWVCZ.

2. Khimenko A.V., Tikhomirov D.A., Trunov S.S. et al. Electric heating system with thermal storage units and ceiling fans for cattle-breeding farms. Agriculture. 2022. Vol. 12. Iss. 11. 1753 (In English). DOI: 10.3390/agriculture12111753.

3. Timoshenko V., Petrushko I., Muzyka A. et al. Features of microclimate in the most common types of livestock buildings for cattle dairy cattle in different seasons. Scien­tific Bulletin NUBiP. Series: Production technology and processing of livestock products. 2015. Iss. 205. 388-398 (In Russian). EDN: UMFOVR.

4. Trofimov A.F., Muzyka A.A., Moskaliov A.A.Features of formation of microclimate in livestock buildings depending on design. Proceedings of the National Academy of Sciences of Belarus. Agrarian Series. 2016. Iss. 2. 80-86 (In Russian). EDN: VZUJXB.

5. Leliveld L.M.C., Riva E., Mattachini G. et al. Dairy Cow Behavior is Affected by Period, Time of Day and Housing. Animals. 2022. Vol. 12. Iss. 4. 512 (In English). DOI: 10.3390/ani12040512.

6. Flood C.A.jr, Koon J.L., Trumbull R.D., Brewer R.N.Energy savings with ceiling fans in broiler houses. Applied Engineering in Agriculture. 1998. Vol. 14. Iss. 3. 305-309 (In English). DOI: 10.13031/2013.19382.

7. Kuzmichev A.V., Tikhomirov D.A., Khimenko A.V. Simu­lation of the thermal mode in the piglets’ location area when using an IR irradiation panel. Electrical Engineering and Electrical Equipment in Agriculture. 2023. Vol. 70. Iss. 1(50). 66-74 (In Russian). DOI: 10.22314/2658-4859-2023-70-1-66-74.

8. Kuz’michev A.V., Tikhomirov D.A., Khimenko A.V. Thermal mode of floor power plants in the areas of keeping young piglets. Electrical Engineering and Electrical Equipment in Agriculture. 2021. Vol. 68. Iss. 3(44). 15-20 (In Russian). DOI: 10.22314/2658-4859-2021-68-3-15-20.

9. Tikhomirov D.A., Trunov S.S., Khimenko A.V. Energy-­saving heating system using electric heat accumulators and ceiling fans. Machinery and Equipment for Rural Area. 2022. Iss. 2(296). 34-38 (In Russian). DOI: 10.33267/2072-9642-2022-2-34-38.

10. Timoshenko V.N., Muzyka A.A., Koronets I.N.et al. Mic­roclimate of main technological zones of typical dairy farms and complexes. Modern Achievements and Current Problems of Animal Husbandry. 2023.164-170 (In Russian). EDN: RYATRI.

11. Kirsanov V.V., Dovlatov I.М., Komkov I.V. et al. The modern approaches to livestock premises’ air providing systems parameters. Machinery and Technologies in Livestock. 2022. N4(48). 61-71 (In Russian). DOI: 10.51794/27132064-2022-4-61.

12. Kirsanov V.V., Baisheva R.A.Control and management in a complex biotechnical system of a dairy farm. Agricultu­ral Science Euro-North-East. 2020. Vol. 21. Iss. 5. 625-632 (In Russian). DOI: 10.30766/2072-9081.2020.21.5.625-632.

13. Andreev L.N., Salmina-Olshko K.B., Bikchantaeva R.A. Improving the quality of macro- and microclimate of livestock premises (In Russian). World of Innovation. 2018. Iss. 1-2. 122-127 (In Russian). EDN: URJGWS.

14. Shirobokova T.A., Shuvalova L.A. Energy analysis of the livestock production. Bulletin of Izhevsk State Agricultu­ral Academy. 2020. Iss. 1(61). 72-78 (In Russian). DOI: 10.48012/1817-5457_2020_1_72.

15. Chamberlain A.T. The use of supplementary lighting in dairy cow housing to increase milk production. Livestock. 2018. Vol. 23. Iss. 3. 130-138 (In English). DOI: 10.12968/live.2018.23.3.130.

16. Hempel S., König M., Janke D. et al. Uncertainty in the measurement of indoor temperature and humidity in natu­rally ventilated dairy buildings as influenced by measurement technique and data variability. Biosystems Engineering. Vol. 166. 58-75 (In English). DOI: 10.1016/j.biosystemseng.2017.11.004.


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For citations:


Kuzmichev A.V., Tikhomirov D.A., Khimenko A.V. Selection of Ceiling Fans for the Microclimate System of Livestock Facilities. Agricultural Machinery and Technologies. 2025;19(1):69-76. (In Russ.) https://doi.org/10.22314/2073-7599-2025-19-1-69-76. EDN: QLPRYU

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