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Title: | Comparative study on heat transfer enhancement of low volume concentration of Al2O3-water and carbon nanotube-water nanofluids in laminar regime using helical screw tape inserts |
Authors: | Sahu, Santosh Kumar |
Keywords: | Alumina;Aluminum oxide;Carbon nanotubes;Friction;Heat flux;Heat transfer;Laminar flow;Nusselt number;Screws;Friction factors;Heat transfer and friction factors;Heat Transfer enhancement;Helical screw-tape inserts;Helical tape inserts;Laminar regime;Nanofluids;Thermal performance factors;Nanofluidics;aluminum oxide;carbon nanotube;nanoparticle;article;calculation;comparative study;friction;heat transfer;high temperature;laminar flow;material state;mathematical analysis;synthesis;temperature measurement;thermal conductivity;viscosity |
Issue Date: | 2013 |
Publisher: | American Society of Mechanical Engineers (ASME) |
Citation: | Chougule, S. S., & Sahu, S. K. (2013). Comparative study on heat transfer enhancement of low volume concentration of Al2O3-water and carbon nanotube-water nanofluids in laminar regime using helical screw tape inserts. Journal of Nanotechnology in Engineering and Medicine, 4(4) doi:10.1115/1.4027913 |
Abstract: | An experimental study has been carried out to evaluate the heat transfer and friction factor characteristics of helical screw inserts in Al 2O3-water and carbon nanotubes (CNT)-water nanofluids through a straight pipe in laminar flow regime with constant heat flux boundary condition. Tests have been performed by using 0.15% volume concentration Al 2O3-water and CNT-water nanofluid with helical tape inserts of twist ratio (TR) = 1.5, 2.5, and 3. The helical screw tape inserts with CNT-water nanofluid exhibits higher thermal performance compared to Al 2O3-water nanofluid. The maximum enhancement in heat transfer was obtained for CNT-water nanofluid with helical tape inserts of TR = 1.5. The increase in pressure drop of Al2O3-water nanofluid with helical screw tape inserts is found to be higher compared to CNT-water nanofluid with helical screw tape inserts at lower value of TR. For both the nanofluids (CNT-water and Al2O3-water), the thermal performance factor was found to be greater than unity for all TRs. Copyright © 2013 by ASME. |
URI: | https://doi.org/10.1115/1.4027913 https://dspace.iiti.ac.in/handle/123456789/7356 |
ISSN: | 1949-2944 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Mechanical Engineering |
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