2020
DOI: 10.1108/wje-10-2019-0285
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Effect of flow rates on segmental baffle shell and tube heat exchanger using CuO-W nanofluids

Abstract: Purpose Nanofluid exhibits higher density, higher viscosity, higher thermal conductivity and reduced specific heat capacity along with improved heat transfer characteristics. It is comparatively better than conventional fluids in terms of thermo-physical properties. This paper aims to investigate experimentally the overall performance of the shell and tube heat exchanger operated under two different configurations – without baffles (STHX_1) and with baffles (STHX_2) using 0.01 Vol.% and 0.02 Vol.% of CuO-W nan… Show more

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Cited by 5 publications
(6 citation statements)
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References 42 publications
(48 reference statements)
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“…They reported that the thermal enhancement factor was observed greater than unity for all situation and studied Reynolds numbers. Similar investigations are also done in this subject (Menni et al, 2019b(Menni et al, , 2019c(Menni et al, , 2019dMenni et al, 2020a;Sivamani et al, 2020;Mei et al, 2020;Benzenine et al, 2019;Sibilli et al, 2020;Raizah et al, 2020). Arie et al (2020) conducted an investigation on a novel manufactured heat exchanger using polymer composite.…”
Section: Introductionmentioning
confidence: 77%
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“…They reported that the thermal enhancement factor was observed greater than unity for all situation and studied Reynolds numbers. Similar investigations are also done in this subject (Menni et al, 2019b(Menni et al, , 2019c(Menni et al, , 2019dMenni et al, 2020a;Sivamani et al, 2020;Mei et al, 2020;Benzenine et al, 2019;Sibilli et al, 2020;Raizah et al, 2020). Arie et al (2020) conducted an investigation on a novel manufactured heat exchanger using polymer composite.…”
Section: Introductionmentioning
confidence: 77%
“…In the above equation, f drag refers to the drag coefficient and following equation is provided by Schiller and Naumann (1935) to calculate its value:…”
Section: Governing System Of Equationsmentioning
confidence: 99%
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“…The addition of nanoparticles and a surfactant to a base fluid can significantly improve thermal conductivity and convective heat transfer. In recent years, nanofluid technology has evolved as a novel enhanced heat transfer technique (Parvin et al, 2013;Sivamani et al, 2020). Nanofluids improve heat exchanger design and medical applications such as cancer treatments and heat-assisted surgery.…”
Section: Introductionmentioning
confidence: 99%
“…Copper oxide nanofluids exhibit high thermophysical properties as compared to base fluid (Sivamani et al, 2020). Adibi Toosi et al (2021) elucidated that using condenser in the stepped SSSS improves the production rate by 26% compared to traditional SS.…”
Section: Introductionmentioning
confidence: 99%