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Thermophysical properties of graphene-based nanofluids
Khaled Elsaid
*
, Mohammad Ali Abdelkareem
, Hussein M. Maghrabie
, Enas Taha Sayed
, Tabbi Wilberforce
, Ahmad Baroutaji
, A. G. Olabi
*
Corresponding author for this work
Texas A&M University
University of Sharjah
Minia University
Qena University
Aston University
University of Wolverhampton
Research output
:
Contribution to journal
›
Article
›
peer-review
153
Citations (Scopus)
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Engineering
Nanofluid
100%
Graphene
100%
Heat Transfer Fluid
80%
High Thermal Conductivity
60%
Thermal Conductivity
40%
Fluid Viscosity
40%
Environmental Impact
20%
Nanoparticle
20%
Power Requirement
20%
Pumping Power
20%
Heat Capacity
20%
Conductive Material
20%
Heat Transfer Coefficient
20%
Convective
20%
Low Thermal Conductivity
20%
Solid Particle
20%
Heat Transfer
20%
Thermal Energy
20%
Material Science
Graphene
100%
Thermophysical Property
100%
Thermal Conductivity
100%
Density
50%
Nanoparticle
16%
Conductive Material
16%
Metal Oxide
16%
Chemical Engineering
Graphene
100%
Thermal Conductivity
100%
Specific Heat
33%
Nanoparticle
16%
Heat Transfer Coefficient
16%
Heat Transfer
16%
Keyphrases
Viscosity Increase
16%
Relative Enhancement
16%
Determinator
16%
Heat Availability
16%
Thermally Conductive Material
16%
Content Ratio
16%