Research of thermoelectric null-thermostat

Objective. The purpose of the study is to develop and study the design of a thermoelectric null-thermostat, characterized by low power consumption, in which high accuracy of temperature stabilization of the reference junctions of differential thermocouples is achieved by placing them directly near t...

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Main Authors: O. V. Evdulov, D. A. Magomedov, R. M. Magomedov, K. A. Shikhabidov
Format: Article
Language:Russian
Published: Dagestan State Technical University 2023-10-01
Series:Вестник Дагестанского государственного технического университета: Технические науки
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Online Access:https://vestnik.dgtu.ru/jour/article/view/1336
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author O. V. Evdulov
D. A. Magomedov
R. M. Magomedov
K. A. Shikhabidov
author_facet O. V. Evdulov
D. A. Magomedov
R. M. Magomedov
K. A. Shikhabidov
author_sort O. V. Evdulov
collection DOAJ
description Objective. The purpose of the study is to develop and study the design of a thermoelectric null-thermostat, characterized by low power consumption, in which high accuracy of temperature stabilization of the reference junctions of differential thermocouples is achieved by placing them directly near the water-ice interface.Method. The study was carried out on an experimental model of a thermoelectric null-thermostat. To study heat transfer processes, visual observation of the movement of the ice-water interface in the null-thermostat chamber was carried out. Temperature values were recorded at the lower and upper bases of the chamber, as well as at the hot and cold junctions of the thermoelectric module (TEM) using thermocouples.Result. The dependences of the change in temperature of the upper and lower base of the working chamber, as well as the phase boundary over time, the duration of time for complete ice penetration on the TEM supply current, and the temperature difference, respectively, between the surface of the cold junction of the TEM and the lower base of the working chamber were obtained , the surface of the hot junction of the thermal module and the upper base of the working chamber.Conclusion. It has been established that the speed of movement of the phase boundary strongly depends on the value of the supply current of the thermoelectric battery, which corresponds to the heat flow at the upper and lower base of the working chamber. As follows from the data presented, the change in temperature of the upper base is more noticeable than the lower one. At a current of 2, 4 and 6 A, the speed of movement of the phase boundary is 0.007 m/h, 0.01 m/h and 0.013 m/h, respectively. In this case, the duration of complete melting of ice, corresponding to the duration of operation of the null thermostat, when the TEM supply current changes from 2 to 7 A, is reduced from 1,91⋅104 s to 1,38⋅104.
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institution Matheson Library
issn 2073-6185
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language Russian
publishDate 2023-10-01
publisher Dagestan State Technical University
record_format Article
series Вестник Дагестанского государственного технического университета: Технические науки
spelling doaj-art-de20a71d5e6c4130b4a2ce6dba2b75bc2025-08-04T13:03:22ZrusDagestan State Technical UniversityВестник Дагестанского государственного технического университета: Технические науки2073-61852542-095X2023-10-0150361310.21822/2073-6185-2023-50-3-6-13801Research of thermoelectric null-thermostatO. V. Evdulov0D. A. Magomedov1R. M. Magomedov2K. A. Shikhabidov3Daghestan State Technical UniversityDaghestan State Technical UniversityDaghestan State Technical UniversityDaghestan State Technical UniversityObjective. The purpose of the study is to develop and study the design of a thermoelectric null-thermostat, characterized by low power consumption, in which high accuracy of temperature stabilization of the reference junctions of differential thermocouples is achieved by placing them directly near the water-ice interface.Method. The study was carried out on an experimental model of a thermoelectric null-thermostat. To study heat transfer processes, visual observation of the movement of the ice-water interface in the null-thermostat chamber was carried out. Temperature values were recorded at the lower and upper bases of the chamber, as well as at the hot and cold junctions of the thermoelectric module (TEM) using thermocouples.Result. The dependences of the change in temperature of the upper and lower base of the working chamber, as well as the phase boundary over time, the duration of time for complete ice penetration on the TEM supply current, and the temperature difference, respectively, between the surface of the cold junction of the TEM and the lower base of the working chamber were obtained , the surface of the hot junction of the thermal module and the upper base of the working chamber.Conclusion. It has been established that the speed of movement of the phase boundary strongly depends on the value of the supply current of the thermoelectric battery, which corresponds to the heat flow at the upper and lower base of the working chamber. As follows from the data presented, the change in temperature of the upper base is more noticeable than the lower one. At a current of 2, 4 and 6 A, the speed of movement of the phase boundary is 0.007 m/h, 0.01 m/h and 0.013 m/h, respectively. In this case, the duration of complete melting of ice, corresponding to the duration of operation of the null thermostat, when the TEM supply current changes from 2 to 7 A, is reduced from 1,91⋅104 s to 1,38⋅104.https://vestnik.dgtu.ru/jour/article/view/1336thermoelectric null thermostatdifferential thermocouplethermoelectric modulephase transition boundaryexperimentmeasurementtemperature
spellingShingle O. V. Evdulov
D. A. Magomedov
R. M. Magomedov
K. A. Shikhabidov
Research of thermoelectric null-thermostat
Вестник Дагестанского государственного технического университета: Технические науки
thermoelectric null thermostat
differential thermocouple
thermoelectric module
phase transition boundary
experiment
measurement
temperature
title Research of thermoelectric null-thermostat
title_full Research of thermoelectric null-thermostat
title_fullStr Research of thermoelectric null-thermostat
title_full_unstemmed Research of thermoelectric null-thermostat
title_short Research of thermoelectric null-thermostat
title_sort research of thermoelectric null thermostat
topic thermoelectric null thermostat
differential thermocouple
thermoelectric module
phase transition boundary
experiment
measurement
temperature
url https://vestnik.dgtu.ru/jour/article/view/1336
work_keys_str_mv AT ovevdulov researchofthermoelectricnullthermostat
AT damagomedov researchofthermoelectricnullthermostat
AT rmmagomedov researchofthermoelectricnullthermostat
AT kashikhabidov researchofthermoelectricnullthermostat