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Forced and natural convection in aggregate-laden nanofluids
Thaseem Thajudeen
,
Christopher J. Hogan
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
19
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Scopus citations
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Dive into the research topics of 'Forced and natural convection in aggregate-laden nanofluids'. Together they form a unique fingerprint.
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Keyphrases
Forced Convection
100%
Natural Convection
100%
Nanofluid
100%
Nanoparticles
71%
Primary Particles
57%
Convective Heat Transfer Coefficient
42%
Thermal Conductivity
28%
Convective Heat Transfer
28%
Aggregate Morphology
28%
Forced Convection Heat Transfer
28%
Dynamic Viscosity
28%
Natural Convective Heat Transfer
28%
Material Properties
14%
Heat Transfer
14%
Morphology Effect
14%
Fractal
14%
Particle Morphology
14%
Monte Carlo
14%
Specific Heat
14%
Aggregate Type
14%
Heat Transfer Coefficient
14%
Heat Transfer Correlation
14%
Dynamic Calculation
14%
Coefficient of Thermal Expansion
14%
Pre-exponential Factor
14%
Nanoparticle Suspension
14%
Particle Radius
14%
Particle Volume Fraction
14%
Aggregate Particles
14%
Hausdorff Dimension
14%
Nanoparticle Morphology
14%
Nanoparticle Aggregation
14%
Liquid Suspension
14%
Sequential Algorithm
14%
Brownian Dynamics
14%
Fractal Aggregates
14%
Morphological Descriptors
14%
Via-first
14%
Quasi-fractal
14%
Nanofluid Dynamics
14%
Heat Expansion
14%
Dynamic Thermal Behavior
14%
Morphological Type
14%
First Passage
14%
Engineering
Nanoparticles
100%
Natural Convection
100%
Forced Convection
100%
Nanofluid
100%
Convective
37%
Convective Heat Transfer Coefficient
37%
Thermal Conductivity
25%
Dynamic Viscosity
25%
Pre-Exponential Factor
12%
Particle Volume
12%
Expansion Coefficient
12%
Theoretical Study
12%
Heat Transfer Coefficient
12%
Hausdorff Dimension
12%
Material Science
Natural Convection
100%
Forced Convection
100%
Nanoparticle
100%
Thermal Conductivity
25%
Morphology
25%
Materials Property
12%
Volume Fraction
12%
Thermal Expansion
12%
Density (Specific Gravity)
12%
Particle Morphology
12%
Brownian Dynamics
12%
Physics
Hausdorff Dimension
12%