Calorimetric stand for research of processes in the refrigeration unit

Objective. The aim of the work is to develop a calorimetric stand that allows simulating the operation of an energy-efficient two-evaporator refrigeration unit of a household refrigerator or freezer.Method. In the course of the work, a calorimetric setup is described that allows conducting experimen...

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Main Authors: Yu. V. Kudrov, L. V. Sumzina, A. V. Maksimov, S. L. Filimonov
Format: Article
Language:Russian
Published: Dagestan State Technical University 2022-08-01
Series:Вестник Дагестанского государственного технического университета: Технические науки
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Online Access:https://vestnik.dgtu.ru/jour/article/view/1077
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author Yu. V. Kudrov
L. V. Sumzina
A. V. Maksimov
S. L. Filimonov
author_facet Yu. V. Kudrov
L. V. Sumzina
A. V. Maksimov
S. L. Filimonov
author_sort Yu. V. Kudrov
collection DOAJ
description Objective. The aim of the work is to develop a calorimetric stand that allows simulating the operation of an energy-efficient two-evaporator refrigeration unit of a household refrigerator or freezer.Method. In the course of the work, a calorimetric setup is described that allows conducting experimental studies to determine the cooling capacity and energy efficiency of a modernized refrigeration unit of a household refrigerator.Result. Currently, new resource-saving circuit solutions for household refrigeration equipment have been developed. The developed solutions make it possible to increase the efficiency of the refrigeration unit, as well as to reduce its energy consumption. Theoretical calculations confirming these indicators have been carried out. To confirm the calculated values, automated experimental studies are required to determine the parameters of the refrigeration unit. The paper proposes a description of an automated calorimetric stand that allows simulating the operation of an energy-efficient dual-evaporator refrigeration unit of a household refrigerator or freezer.Conclusion. The designed calorimetric stand will allow carrying out complex experimental studies to determine the cooling capacity of the modernized refrigeration unit when operating on various refrigerants. The experimental setup also makes it possible to measure the temperature and pressure during the operation of the refrigeration unit, as well as to determine the influence of various factors on its characteristics.
format Article
id doaj-art-ad1da4a392e248eeb65c60ad372e033d
institution DOAJ
issn 2073-6185
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language Russian
publishDate 2022-08-01
publisher Dagestan State Technical University
record_format Article
series Вестник Дагестанского государственного технического университета: Технические науки
spelling doaj-art-ad1da4a392e248eeb65c60ad372e033d2025-08-20T03:01:07ZrusDagestan State Technical UniversityВестник Дагестанского государственного технического университета: Технические науки2073-61852542-095X2022-08-01492182310.21822/2073-6185-2022-49-2-18-23694Calorimetric stand for research of processes in the refrigeration unitYu. V. Kudrov0L. V. Sumzina1A. V. Maksimov2S. L. Filimonov3Russian State University of Tourism and ServiceRussian State University of Tourism and ServiceRussian State University of Tourism and ServiceRussian State University of Tourism and ServiceObjective. The aim of the work is to develop a calorimetric stand that allows simulating the operation of an energy-efficient two-evaporator refrigeration unit of a household refrigerator or freezer.Method. In the course of the work, a calorimetric setup is described that allows conducting experimental studies to determine the cooling capacity and energy efficiency of a modernized refrigeration unit of a household refrigerator.Result. Currently, new resource-saving circuit solutions for household refrigeration equipment have been developed. The developed solutions make it possible to increase the efficiency of the refrigeration unit, as well as to reduce its energy consumption. Theoretical calculations confirming these indicators have been carried out. To confirm the calculated values, automated experimental studies are required to determine the parameters of the refrigeration unit. The paper proposes a description of an automated calorimetric stand that allows simulating the operation of an energy-efficient dual-evaporator refrigeration unit of a household refrigerator or freezer.Conclusion. The designed calorimetric stand will allow carrying out complex experimental studies to determine the cooling capacity of the modernized refrigeration unit when operating on various refrigerants. The experimental setup also makes it possible to measure the temperature and pressure during the operation of the refrigeration unit, as well as to determine the influence of various factors on its characteristics.https://vestnik.dgtu.ru/jour/article/view/1077refrigeration unitcalorimetric standenergy efficiencycooling capacityheat exchangertwo-chamber refrigeratorsteam separator
spellingShingle Yu. V. Kudrov
L. V. Sumzina
A. V. Maksimov
S. L. Filimonov
Calorimetric stand for research of processes in the refrigeration unit
Вестник Дагестанского государственного технического университета: Технические науки
refrigeration unit
calorimetric stand
energy efficiency
cooling capacity
heat exchanger
two-chamber refrigerator
steam separator
title Calorimetric stand for research of processes in the refrigeration unit
title_full Calorimetric stand for research of processes in the refrigeration unit
title_fullStr Calorimetric stand for research of processes in the refrigeration unit
title_full_unstemmed Calorimetric stand for research of processes in the refrigeration unit
title_short Calorimetric stand for research of processes in the refrigeration unit
title_sort calorimetric stand for research of processes in the refrigeration unit
topic refrigeration unit
calorimetric stand
energy efficiency
cooling capacity
heat exchanger
two-chamber refrigerator
steam separator
url https://vestnik.dgtu.ru/jour/article/view/1077
work_keys_str_mv AT yuvkudrov calorimetricstandforresearchofprocessesintherefrigerationunit
AT lvsumzina calorimetricstandforresearchofprocessesintherefrigerationunit
AT avmaksimov calorimetricstandforresearchofprocessesintherefrigerationunit
AT slfilimonov calorimetricstandforresearchofprocessesintherefrigerationunit