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Passive Cooling of PV Modules Using Heat Pipe Thermosiphon with Acetone: Experimental and Theoretical Study
by
Kaneesamkandi, Zakariya
, Sayeed, Abdul
, Almalki, Mohammed Jarallah
, Haidar, Zeyad A.
in
Alternative energy
/ Cooling
/ Efficiency
/ Heat transfer
/ Hybridization
/ Methods
/ phase change material
/ Photovoltaic cells
/ PV panels
/ Radiation
/ Renewable resources
/ thermosiphon
2023
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Passive Cooling of PV Modules Using Heat Pipe Thermosiphon with Acetone: Experimental and Theoretical Study
by
Kaneesamkandi, Zakariya
, Sayeed, Abdul
, Almalki, Mohammed Jarallah
, Haidar, Zeyad A.
in
Alternative energy
/ Cooling
/ Efficiency
/ Heat transfer
/ Hybridization
/ Methods
/ phase change material
/ Photovoltaic cells
/ PV panels
/ Radiation
/ Renewable resources
/ thermosiphon
2023
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Do you wish to request the book?
Passive Cooling of PV Modules Using Heat Pipe Thermosiphon with Acetone: Experimental and Theoretical Study
by
Kaneesamkandi, Zakariya
, Sayeed, Abdul
, Almalki, Mohammed Jarallah
, Haidar, Zeyad A.
in
Alternative energy
/ Cooling
/ Efficiency
/ Heat transfer
/ Hybridization
/ Methods
/ phase change material
/ Photovoltaic cells
/ PV panels
/ Radiation
/ Renewable resources
/ thermosiphon
2023
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Passive Cooling of PV Modules Using Heat Pipe Thermosiphon with Acetone: Experimental and Theoretical Study
Journal Article
Passive Cooling of PV Modules Using Heat Pipe Thermosiphon with Acetone: Experimental and Theoretical Study
2023
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Overview
The effect of heat pipe thermosiphon in reducing the operating temperature of a photovoltaic panel has been analyzed theoretically and experimentally in this paper. Copper heat pipe thermosiphon with acetone as a working fluid was used. The theoretical study involved a heat balance analysis of the panel with cylindrical heat pipe with surface contact with the panel bottom. The experimental study involved recording temperature variations, with and without a heat pipe, which had very good agreement with the theoretical results of 2.61%. Additionally, the optimum quantity of acetone was 50 mL, with a maximum reduction in panel temperature of 10 °C.
Publisher
MDPI AG
Subject
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