Influence of dimension parameters of the gravity heat pipe on the thermal performance

Currently the problem with the increasing number of electronic devices is a problem with the outlet Joule heating. Joule heating, also known as ohmic heating and resistive heating, is the process by which the passage of an electric current through a conductor releases heat. Perfect dustproof cooling...

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Hauptverfasser: Kosa, Ľuboš, Nemec, Patrik, Jobb, Marián, Malcho, Milan
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Nemec, Patrik
Jobb, Marián
Malcho, Milan
description Currently the problem with the increasing number of electronic devices is a problem with the outlet Joule heating. Joule heating, also known as ohmic heating and resistive heating, is the process by which the passage of an electric current through a conductor releases heat. Perfect dustproof cooling of electronic components ensures longer life of the equipment. One of more alternatives of heat transfer without the using of mechanical equipment is the use of the heat pipe. Heat pipes are easy to manufacture and maintenance of low input investment cost. The advantage of using the heat pipe is its use in hermetic closed electronic device which is separated exchange of air between the device and the environment. This experiment deals with the influence of changes in the working tube diameter and changing the working fluid on performance parameters. Changing the working fluid and the tube diameter changes the thermal performance of the heat pipe. The result of this paper is finding the optimal diameter with ideal working substance for the greatest heat transfer for 1cm2 sectional area tube.
doi_str_mv 10.1063/1.4953722
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source American Institute of Physics (AIP) Journals
subjects AIR
Alternating current
CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
Conductors
COOLING
ELECTRIC CURRENTS
Electronic components
Electronic devices
ELECTRONIC EQUIPMENT
ENGINEERING
GRAVITATION
HEAT
Heat exchange
HEAT PIPES
HEAT TRANSFER
JOULE HEATING
Ohmic dissipation
Parameters
Resistance heating
Working fluids
title Influence of dimension parameters of the gravity heat pipe on the thermal performance
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