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AGRICULTURE MECHANIZATION AND ELECTRIFICATION

TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR

Yerkin Yerzhigitov 1 , Saule Demessova 1 , Nurgul Moldybaeva 1 , Aigul Taldybayeva 1 , Manat Zhussupaliyeva 1

1 Kazakh National Agrarian Research University

doi.org/10.37884/4-2024/45 pp. 433-445 Admitted 04.10.2024 Published 30.12.2024

Abstract

The thermal variety is a technical means that transports thermal energy from a low-potential source to a consumer. It belongs to a promising class of thermal power engineering. The authors hypothesized an increase in the efficiency of the heat pump when a solar collector is connected to it, as well as self-regulation of the compressor by the evaporator. If to this day the heat pump (TN) is mainly offered as a means of air cooling and provides a certain thermal power in winter, now the main focus is on meeting the needs for heat. This was facilitated by the requirements to reduce greenhouse gas emissions, search for alternative environmental solutions that replace traditional heat supply systems, as well as increase the efficiency and reliability of well-known heating systems. Theoretical studies analyze the concepts of joint absorption of direct sunlight and thermal energy from the ambient air generated during the operation of a heat pump on a solar collector, as well as increasing heat transfer from the surface of an arc compressor to reverse heat extraction by an evaporator. The authors concluded that a set of technical solutions - a return to the heating system produced by the compressor and maintaining the temperature regime of the compressor, including cooling the drive electric coils, can increase the thermal characteristics of the solar collector under the action of a direct kun beam and suction of thermal energy together with air and a heat pump.

heat pump, compressor, evaporator, condenser, conversion factor, low-potential heat source,energy saving, energy efficiency, renewable energy.

01 Introduction

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02 References

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Citation Links

[1]2024. TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR. Izdenister natigeler. 4 (104) (Dec. 2024), 433–445. DOI:https://doi.org/10.37884/4-2024/45.
(1)TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR. Izdenister natigeler 2024, No. 4 (104), 433-445. https://doi.org/10.37884/4-2024/45.
TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR. (2024). Izdenister Natigeler, 4 (104), 433-445. https://doi.org/10.37884/4-2024/45
TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR. Izdenister natigeler, [S. l.], n. 4 (104), p. 433–445, 2024. DOI: 10.37884/4-2024/45. Disponível em: https://agrosoil.kaznaru.edu.kz/index.php/research/article/view/721. Acesso em: 15 sep. 2026.
“TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR”. 2024. Izdenister Natigeler, no. 4 (104) (December): 433-45. https://doi.org/10.37884/4-2024/45.
“TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR” (2024) Izdenister natigeler, (4 (104), pp. 433–445. doi:10.37884/4-2024/45.
[1]“TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR”, Izdenister natigeler, no. 4 (104), pp. 433–445, Dec. 2024, doi: 10.37884/4-2024/45.
“TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR”. Izdenister Natigeler, no. 4 (104), Dec. 2024, pp. 433-45, https://doi.org/10.37884/4-2024/45.
“TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR”. Izdenister natigeler, no. 4 (104) (December 30, 2024): 433–445. Accessed September 15, 2026. https://agrosoil.kaznaru.edu.kz/index.php/research/article/view/721.
1.TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR. Izdenister natigeler [Internet]. 2024 Dec. 30 [cited 2026 Sep. 15];(4 (104):433-45. Available from: https://agrosoil.kaznaru.edu.kz/index.php/research/article/view/721
1.TO STUDY THE CHARACTERISTICS OF A HEAT PUMP WITH SELF-COOLING COMPRESSOR. Izdenister natigeler. 2024;(4 (104):433-445. doi:10.37884/4-2024/45