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Coefficients (b_{i}) were matched to experimental data of viscosity (Table 1).
In this work, the experimental data of viscosity measurements of suspensions of three different ceramic nanopowders have been presented.
Based on the degree of viscosity reduction (DVR) and it was found that the viscosity of all the three oils reduced approximately 90% from 30to9090 °C and the Andrade model was obtained a good adjustment to the data of viscosity curves vs. temperature.
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Most of the experimental data of dynamic viscosity were measured using a constant force electromagnetic viscometer.
This model was considerably accurate in predicting experimental data of dynamic viscosity as R-squared and average absolute relative deviation (AARD %) were respectively 0.9999 and 0.0502.
The experimental data of the viscosity and the density of 30 dead heavy oil samples with different API values were measured in the temperature range of 20 160 °C.
The design of these processes requires accurate data of densities, viscosities or surface tensions of (CO2 + hydrocarbon) mixtures in order to simulate the behaviour of these mixtures in the reservoir.
Compositional data of heavy oil viscosity has been used to compare predicted viscosity from the proposed correlation with that from Lorenz Bray Clark (LBC) and Pederson models.
The experimental data of reservoir fluid viscosity especially at high pressure and high temperature condition are scarce and the need for knowledge of fluid property at this condition is increasing.
The reported data extend the database of viscosity to the high-temperature, high-pressure region where most gaps occur in the literature data for n-hexadecane and n-octadecane.
Using the favourable characteristics of polyamide-12 (the most often used material for laser sintering) as a benchmark, a previously un-sintered thermoplastic elastomer material was identified as being suitable for the LS process, through a combination of information from Differential Scanning Calorimetry (DSC), hot stage microscopy (HSM) and knowledge of viscosity data.
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