Matches in SemOpenAlex for { <https://semopenalex.org/work/W4322762018> ?p ?o ?g. }
- W4322762018 endingPage "16" @default.
- W4322762018 startingPage "1" @default.
- W4322762018 abstract "The most common type of heat exchanger used in a variety of industrial applications is the shell-and-tube heat exchanger (STHE). In this work, the impact of graphene nanoplate (GNP)/water nanofluids at 0.01 wt.%, 0.03 wt.%, and 0.06 wt.% on the thermal efficiency, thermal performance factor, pressure drop, overall heat transfer, convective heat transfer coefficient (CVHTC), and heat transfer characteristics of a shell-and-tube heat exchanger was examined. For these experiments, a new STHE was designed and built. The novelty of this study is the use of GNPs/water nanofluids in this new STHE for the first time and the fully experimental investigation of the attributes of nanofluids. GNP properties were analysed and confirmed using analyses including XRD and TEM. Zeta potential, DLS, and camera images were used to examine the stability of nanofluids at various periods. The zeta potential of the nanofluids was lower than -27.8 mV, confirming the good stability of GNP/water nanofluids. The results illustrated that the experimental data for distilled water had a reasonably good agreement with Sieder-Tate correlation. The maximum enhancement in the CVHTC of nanofluid with 0.06 wt.% of GNP, was equal to 910 (W/m2K), an increase of 22.47%. Also, the efficiency of the heat exchanger for nanofluid at 0.06 wt.% improved by 8.88% compared with that of the base fluid. The heat transfer rate of the nanofluid at maximum concentration and volume flow rate was 3915 (J/kg.K), an improvement of 15.65% over the base fluid. The pressure drops increased as the flow rate and concentration of the nanofluid increased. Although increasing the pressure drop in tubes would increase the CVHTC, it would also increase the power consumption of the pump. In conclusion, nanofluid at 0.06 wt.% had good performance." @default.
- W4322762018 created "2023-03-03" @default.
- W4322762018 creator A5001649701 @default.
- W4322762018 creator A5048755032 @default.
- W4322762018 creator A5049672777 @default.
- W4322762018 creator A5078447806 @default.
- W4322762018 creator A5088540260 @default.
- W4322762018 date "2023-03-02" @default.
- W4322762018 modified "2023-10-16" @default.
- W4322762018 title "Experimental Investigation of the Effect of Graphene/Water Nanofluid on the Heat Transfer of a Shell-and-Tube Heat Exchanger" @default.
- W4322762018 cites W1979798404 @default.
- W4322762018 cites W1986632736 @default.
- W4322762018 cites W1989805830 @default.
- W4322762018 cites W2002728487 @default.
- W4322762018 cites W2010364254 @default.
- W4322762018 cites W2051623369 @default.
- W4322762018 cites W2066278761 @default.
- W4322762018 cites W2071044837 @default.
- W4322762018 cites W2074976029 @default.
- W4322762018 cites W2104187070 @default.
- W4322762018 cites W2227368397 @default.
- W4322762018 cites W2256004185 @default.
- W4322762018 cites W2292350578 @default.
- W4322762018 cites W2524415602 @default.
- W4322762018 cites W2560025721 @default.
- W4322762018 cites W2607648677 @default.
- W4322762018 cites W2623134999 @default.
- W4322762018 cites W2751533967 @default.
- W4322762018 cites W2780353424 @default.
- W4322762018 cites W2787748576 @default.
- W4322762018 cites W2803077596 @default.
- W4322762018 cites W2905902924 @default.
- W4322762018 cites W2908446319 @default.
- W4322762018 cites W2927845606 @default.
- W4322762018 cites W2971074263 @default.
- W4322762018 cites W3002779028 @default.
- W4322762018 cites W3005632431 @default.
- W4322762018 cites W3012233886 @default.
- W4322762018 cites W3026154957 @default.
- W4322762018 cites W3036586555 @default.
- W4322762018 cites W3123671661 @default.
- W4322762018 cites W3156535832 @default.
- W4322762018 cites W3186972760 @default.
- W4322762018 cites W3199836537 @default.
- W4322762018 cites W4206328014 @default.
- W4322762018 cites W4210961974 @default.
- W4322762018 cites W4220961190 @default.
- W4322762018 cites W4221002019 @default.
- W4322762018 cites W4225142500 @default.
- W4322762018 cites W4280635283 @default.
- W4322762018 cites W4288709701 @default.
- W4322762018 cites W4289754980 @default.
- W4322762018 cites W4289886017 @default.
- W4322762018 cites W4294810151 @default.
- W4322762018 cites W4296919082 @default.
- W4322762018 cites W4300167499 @default.
- W4322762018 cites W4308946428 @default.
- W4322762018 cites W4309762014 @default.
- W4322762018 cites W4310137663 @default.
- W4322762018 doi "https://doi.org/10.1155/2023/3477673" @default.
- W4322762018 hasPublicationYear "2023" @default.
- W4322762018 type Work @default.
- W4322762018 citedByCount "5" @default.
- W4322762018 countsByYear W43227620182023 @default.
- W4322762018 crossrefType "journal-article" @default.
- W4322762018 hasAuthorship W4322762018A5001649701 @default.
- W4322762018 hasAuthorship W4322762018A5048755032 @default.
- W4322762018 hasAuthorship W4322762018A5049672777 @default.
- W4322762018 hasAuthorship W4322762018A5078447806 @default.
- W4322762018 hasAuthorship W4322762018A5088540260 @default.
- W4322762018 hasBestOaLocation W43227620181 @default.
- W4322762018 hasConcept C107706546 @default.
- W4322762018 hasConcept C121332964 @default.
- W4322762018 hasConcept C127413603 @default.
- W4322762018 hasConcept C155672457 @default.
- W4322762018 hasConcept C159985019 @default.
- W4322762018 hasConcept C171250308 @default.
- W4322762018 hasConcept C192562407 @default.
- W4322762018 hasConcept C205318045 @default.
- W4322762018 hasConcept C21946209 @default.
- W4322762018 hasConcept C2779429693 @default.
- W4322762018 hasConcept C29700514 @default.
- W4322762018 hasConcept C32375409 @default.
- W4322762018 hasConcept C41231900 @default.
- W4322762018 hasConcept C42360764 @default.
- W4322762018 hasConcept C50517652 @default.
- W4322762018 hasConcept C86181022 @default.
- W4322762018 hasConcept C97355855 @default.
- W4322762018 hasConceptScore W4322762018C107706546 @default.
- W4322762018 hasConceptScore W4322762018C121332964 @default.
- W4322762018 hasConceptScore W4322762018C127413603 @default.
- W4322762018 hasConceptScore W4322762018C155672457 @default.
- W4322762018 hasConceptScore W4322762018C159985019 @default.
- W4322762018 hasConceptScore W4322762018C171250308 @default.
- W4322762018 hasConceptScore W4322762018C192562407 @default.
- W4322762018 hasConceptScore W4322762018C205318045 @default.
- W4322762018 hasConceptScore W4322762018C21946209 @default.
- W4322762018 hasConceptScore W4322762018C2779429693 @default.