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The lowest moisture content was at the 5% volume concentration.
Filtration performance parameters were obtained: permeate flux, volume concentration factor (VCF) and power usage.
The pressure drop of nanofluid increases marginally for a nanofluid volume concentration up to 0.15 vol%.
The friction factors for both TiO2 and Al2O3 nanofluids slightly increased with volume concentration.
The results reveal that both thermal conductivity and viscosity increase by increasing the volume concentration.
The procedures specified in paragraphs (e)(2)(iii)(A), (B), (D), and (E) of this section shall be used to calculate parts per million by volume concentration.
The suspension was relatively dilute having a total solids volume concentration of no more than 16%.
The particle distribution is denoted in terms of volume concentration per voxel (i.e., a 3D pixel).
The effects of volume concentration, geometry and flow velocity were assessed.
φ volume concentration.
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They confirmed that thermal conductivity in these nanofluids increase linearly with volume concentration of nanoparticles.
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