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Investigation of thermal transport in colloidal silica dispersions (nanofluids)
David C. Venerus
, Yiran Jiang
Research output
:
Contribution to journal
›
Article
›
peer-review
8
Scopus citations
Overview
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Dive into the research topics of 'Investigation of thermal transport in colloidal silica dispersions (nanofluids)'. Together they form a unique fingerprint.
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Mathematics
Silica
100%
Nanofluid
93%
Thermal Conductivity
82%
Nanoparticles
46%
Enhancement
37%
Thermal Resistance
18%
Prediction Model
13%
Aggregation
10%
Experimental Results
10%
Model
6%
Engineering & Materials Science
Dispersions
83%
Silica
65%
Thermal conductivity
57%
Nanoparticles
31%
Hot Temperature
30%
Gels
11%
Heat resistance
10%
Agglomeration
9%
Physics & Astronomy
thermal conductivity
49%
silicon dioxide
48%
nanoparticles
21%
augmentation
19%
thermal resistance
11%
gels
8%
predictions
5%
Chemical Compounds
Thermal Conductivity
60%
Thermal Resistance
12%
Nanoparticle Size
11%
Nanoparticle
10%
Gel
6%