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An experimental setup is constructed to investigate heat transfer enhancement, pressure drop and power consumption in the double pipe.
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Enhancement of pressure loss in upstream and reduction of pressure loss in downstream is effective.
Together, these lead to the increased SL enhancement with pressure.
The effects of heat transfer enhancement on pressure drop can be mitigated by applying different techniques.
The appropriate twisted tape modification is necessary for heat transfer enhancement with pressure loss penalty at a reasonable level.
Duangthongsuk et al. (Duangthongsuk) showed the heat transfer enhancement and pressure drop characteristics of water based nanofluid in a double-pipe counter-current heat exchanger.
Zhang et al. (2015) presented the effect of an internally grooved tube on heat transfer enhancement and pressure drop for using R417A.
Based on these data, an analysis of the heat transfer enhancement and pressure drop penalty due to the use of twisted-tapes is performed.
To effectively solve the problem, a step wise approach for the application of heat transfer enhancement with pressure drop consideration is proposed.
No effects of heat transfer enhancement or pressure drop increase were observed as a consequence of the small scale of the microchannels.
The enhancement of pressure drop is moderate in the turbulent region which favours these nanofluids to be used in the thermal systems for different engineering applications.
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