ТОМ 97, №2
AUGMENTATION OF HEAT TRANSFER BY USING INTERNAL RIB GEOMETRIES IN THE PRESENCE OF NANOFLUIDS: A REVIEW
In the last few years, the efforts to increase the heat transfer rates have been concentrated on passive techniques in accordance with the aim of reducing the consumption of power and the establishment of more sustainable systems. One of these promising techniques is adding extended geometries (ribs) which serve as thermal conducting geometries and flow turbulators. Another technique is to add nanoparticles to enhance the overall thermal properties of working fluids. Researchers had investigated this approach from multiple different scientific points of view. Among these factors is the channel geometry, whether it is with a regular section or a microchannel. Two major types of channels can be noted: common or traditional channels with a macroscopic cross section and microchannels with much smaller sections. The investigation of a flow in a regular channel section includes the cases of laminar flow, turbulent flow, constant heat flux, constant temperature, as well as different working fluids. The current review tends to summarize the most remarkable efforts which had been done in the last few years according to the above-mentioned aspects
Автор: Haneen M. Al-Ali, Naseer H. Hamza
Ключевые слова: heat transfer, forced convection, enhancement, ribs, extended geometries
Стр: 439
Haneen M. Al-Ali, Naseer H. Hamza.
AUGMENTATION OF HEAT TRANSFER BY USING INTERNAL RIB GEOMETRIES IN THE PRESENCE OF NANOFLUIDS: A REVIEW // Инженерно-физический журнал.
. ТОМ 97, №2. С. 439.
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