Intensification of cooling fluid process

A number of sectors in the food industry practice cooling substances of biological origin. This contributes to the maintenance of their biological properties, as well as prevents microflora growth in the product. One of the ways to intensify production processes and maintain the quality of raw mater...

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Main Authors: Anatoliy А. Slavyanskiy, Evgeniy V. Semenov, Boris S. Babakin, Natalya N. Lebedeva
Format: Article
Language:English
Published: Kemerovo State University 2020-04-01
Series:Foods and Raw Materials
Subjects:
Online Access:http://jfrm.ru/files/archive/15/21.pdf
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spelling doaj-06f328d42aa64a0cbd8c7781956874a02020-11-25T02:03:06ZengKemerovo State UniversityFoods and Raw Materials2308-40572310-95992020-04-018117117610.21603/2308-4057-2020-1-171-176Intensification of cooling fluid processAnatoliy А. Slavyanskiy0Evgeniy V. Semenov1Boris S. Babakin2Natalya N. Lebedeva3K.G. Razumovsky Moscow State University of technologies and management (the First Cossack University)K.G. Razumovsky Moscow State University of technologies and management (the First Cossack University)Moscow State University of Food ProductionK.G. Razumovsky Moscow State University of technologies and management (the First Cossack University)A number of sectors in the food industry practice cooling substances of biological origin. This contributes to the maintenance of their biological properties, as well as prevents microflora growth in the product. One of the ways to intensify production processes and maintain the quality of raw materials and finished products is their accelerated cooling with the help of low-energy cooling equipment. The use of physical bodies cooled to low temperatures is a promising way to accelerate liquid cooling. We used balls with frozen eutectic solution. In our research, the problem of cooling a liquid system is formulated and solved within the framework of classical linear boundary value problem for the equation of a stationary convective heat transfer. In the area of the actual values of the process parameters on the study object, the solution obtained is used as the basis for numerical experiment on the modelling of the cooling liquid flow with the cooling agent system, namely balls filled with eutectic solution. By calculation, the efficiency of the proposed method for cooling liquid was justified based on such factors as temperature, the number of balls in a two-phase liquid system, and the duration of low-temperature treatment. The presented results of the numerical experiment complied with real heat transfer processes during liquid cooling.http://jfrm.ru/files/archive/15/21.pdflow-temperature treatmentcoolingliquid systemheat transfereutectic solution
collection DOAJ
language English
format Article
sources DOAJ
author Anatoliy А. Slavyanskiy
Evgeniy V. Semenov
Boris S. Babakin
Natalya N. Lebedeva
spellingShingle Anatoliy А. Slavyanskiy
Evgeniy V. Semenov
Boris S. Babakin
Natalya N. Lebedeva
Intensification of cooling fluid process
Foods and Raw Materials
low-temperature treatment
cooling
liquid system
heat transfer
eutectic solution
author_facet Anatoliy А. Slavyanskiy
Evgeniy V. Semenov
Boris S. Babakin
Natalya N. Lebedeva
author_sort Anatoliy А. Slavyanskiy
title Intensification of cooling fluid process
title_short Intensification of cooling fluid process
title_full Intensification of cooling fluid process
title_fullStr Intensification of cooling fluid process
title_full_unstemmed Intensification of cooling fluid process
title_sort intensification of cooling fluid process
publisher Kemerovo State University
series Foods and Raw Materials
issn 2308-4057
2310-9599
publishDate 2020-04-01
description A number of sectors in the food industry practice cooling substances of biological origin. This contributes to the maintenance of their biological properties, as well as prevents microflora growth in the product. One of the ways to intensify production processes and maintain the quality of raw materials and finished products is their accelerated cooling with the help of low-energy cooling equipment. The use of physical bodies cooled to low temperatures is a promising way to accelerate liquid cooling. We used balls with frozen eutectic solution. In our research, the problem of cooling a liquid system is formulated and solved within the framework of classical linear boundary value problem for the equation of a stationary convective heat transfer. In the area of the actual values of the process parameters on the study object, the solution obtained is used as the basis for numerical experiment on the modelling of the cooling liquid flow with the cooling agent system, namely balls filled with eutectic solution. By calculation, the efficiency of the proposed method for cooling liquid was justified based on such factors as temperature, the number of balls in a two-phase liquid system, and the duration of low-temperature treatment. The presented results of the numerical experiment complied with real heat transfer processes during liquid cooling.
topic low-temperature treatment
cooling
liquid system
heat transfer
eutectic solution
url http://jfrm.ru/files/archive/15/21.pdf
work_keys_str_mv AT anatoliyaslavyanskiy intensificationofcoolingfluidprocess
AT evgeniyvsemenov intensificationofcoolingfluidprocess
AT borissbabakin intensificationofcoolingfluidprocess
AT natalyanlebedeva intensificationofcoolingfluidprocess
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