Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat Exchanger

The joint processes of bubble boiling and refrigerant movement in heat pump tubes are considered. A coil located on the back side of the photovoltaic panel (PVP) is used as an additional heating surface. A mathematical model of the theoretical determination of the temperature on the front surface of...

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Main Authors: Konstantin Osintsev, Sergei Aliukov, Anton Kovalev, Yaroslav Bolkov, Sulpan Kuskarbekova, Alyona Olinichenko
Format: Article
Language:English
Published: MDPI AG 2023-05-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/16/11/4405
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author Konstantin Osintsev
Sergei Aliukov
Anton Kovalev
Yaroslav Bolkov
Sulpan Kuskarbekova
Alyona Olinichenko
author_facet Konstantin Osintsev
Sergei Aliukov
Anton Kovalev
Yaroslav Bolkov
Sulpan Kuskarbekova
Alyona Olinichenko
author_sort Konstantin Osintsev
collection DOAJ
description The joint processes of bubble boiling and refrigerant movement in heat pump tubes are considered. A coil located on the back side of the photovoltaic panel (PVP) is used as an additional heating surface. A mathematical model of the theoretical determination of the temperature on the front surface of the PVP cooled by freon in the coil from the back side has been created. A feature of the numerical simulation of bubble boiling of refrigerant in a coil was the insufficiently detailed study of the process and the lack of references to the results obtained in earlier work. The authors have clarified the boundary conditions and assumptions for numerical simulation of the bubble boiling process of refrigerant R407C. The results were compared with the theoretically found values, and later used in the design of an energy complex consisting of a heat pump and a photovoltaic panel. The mathematical model of theoretical calculation of the PVP temperature and the methodology for constructing a numerical model of bubble boiling of refrigerant as part of the methodology for designing energy technology complexes based on the authors’ plan to present a unified methodology for energy technology complexes for desalination of seawater based on other types of renewable energy sources.
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spelling doaj.art-354234c87fc24f23910d8429572b61e52023-11-18T07:48:25ZengMDPI AGEnergies1996-10732023-05-011611440510.3390/en16114405Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat ExchangerKonstantin Osintsev0Sergei Aliukov1Anton Kovalev2Yaroslav Bolkov3Sulpan Kuskarbekova4Alyona Olinichenko5Department of Energy and Power Engineering, Institute of Engineering and Technology, South Ural State University, 76 Prospekt Lenina, 454080 Chelyabinsk, RussiaDepartment of Energy and Power Engineering, Institute of Engineering and Technology, South Ural State University, 76 Prospekt Lenina, 454080 Chelyabinsk, RussiaDepartment of Energy and Power Engineering, Institute of Engineering and Technology, South Ural State University, 76 Prospekt Lenina, 454080 Chelyabinsk, RussiaDepartment of Energy and Power Engineering, Institute of Engineering and Technology, South Ural State University, 76 Prospekt Lenina, 454080 Chelyabinsk, RussiaDepartment of Energy and Power Engineering, Institute of Engineering and Technology, South Ural State University, 76 Prospekt Lenina, 454080 Chelyabinsk, RussiaDepartment of Energy and Power Engineering, Institute of Engineering and Technology, South Ural State University, 76 Prospekt Lenina, 454080 Chelyabinsk, RussiaThe joint processes of bubble boiling and refrigerant movement in heat pump tubes are considered. A coil located on the back side of the photovoltaic panel (PVP) is used as an additional heating surface. A mathematical model of the theoretical determination of the temperature on the front surface of the PVP cooled by freon in the coil from the back side has been created. A feature of the numerical simulation of bubble boiling of refrigerant in a coil was the insufficiently detailed study of the process and the lack of references to the results obtained in earlier work. The authors have clarified the boundary conditions and assumptions for numerical simulation of the bubble boiling process of refrigerant R407C. The results were compared with the theoretically found values, and later used in the design of an energy complex consisting of a heat pump and a photovoltaic panel. The mathematical model of theoretical calculation of the PVP temperature and the methodology for constructing a numerical model of bubble boiling of refrigerant as part of the methodology for designing energy technology complexes based on the authors’ plan to present a unified methodology for energy technology complexes for desalination of seawater based on other types of renewable energy sources.https://www.mdpi.com/1996-1073/16/11/4405bubble boilingrefrigerantphotovoltaic panelcoolingenergy technology complexheat pump
spellingShingle Konstantin Osintsev
Sergei Aliukov
Anton Kovalev
Yaroslav Bolkov
Sulpan Kuskarbekova
Alyona Olinichenko
Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat Exchanger
Energies
bubble boiling
refrigerant
photovoltaic panel
cooling
energy technology complex
heat pump
title Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat Exchanger
title_full Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat Exchanger
title_fullStr Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat Exchanger
title_full_unstemmed Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat Exchanger
title_short Scientific Approaches to Solving the Problem of Joint Processes of Bubble Boiling of Refrigerant and Its Movement in a Heat Pump Heat Exchanger
title_sort scientific approaches to solving the problem of joint processes of bubble boiling of refrigerant and its movement in a heat pump heat exchanger
topic bubble boiling
refrigerant
photovoltaic panel
cooling
energy technology complex
heat pump
url https://www.mdpi.com/1996-1073/16/11/4405
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