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Study of viscosity and heat capacity characteristics of molten salt nanofluids for thermal energy storage
Baha El Far,
Donghyun Shin
Engineering & Technology, School Of
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Dive into the research topics of 'Study of viscosity and heat capacity characteristics of molten salt nanofluids for thermal energy storage'. Together they form a unique fingerprint.
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Engineering
Heat Capacity
100%
Viscosity
83%
Nanofluid
83%
Shear Thinning
66%
Enhancement
50%
Thinning Behavior
50%
Dendritic Nanostructures
33%
Silica Nanoparticle
33%
High Shear Rate
33%
Low Concentration
33%
High Aspect Ratio
16%
Shear Rate
16%
Binary Mixture
16%
Supports
16%
Characteristics
16%
High Concentration
16%
Chemistry
Debye Temperature
100%
Viscosity
83%
Molten Salt
66%
Nanomaterial
50%
Salt
50%
Nanoparticle
33%
Nanotube
33%
Non-Newtonian Behavior
33%
Hydroxide
16%
Concentration
16%
Structure
16%
Rod Like Crystal
16%
Physics
Specific Heat
100%
Nanofluid
83%
Adhesion
83%
Molten Salts
66%
Shear Thinning
66%
Theoretical Model
16%
Dispersing
16%
Heat Storage
16%
Particle
16%
Material Science
Nanoparticle
100%
Nanocrystalline Material
50%
Materials Characterization
16%
Chemical Engineering
Specific Heat
100%
Sodium Chloride
50%
Nanotube
16%