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The effective viscosity increases with increasing foam quality in foamed cases, and decreases with increasing foam quality in unfoamed cases.
The critical settling velocity increases with the rise in temperature in foaming cases, and decreases with the rise in foam quality and sand ratio.
Higher foam quality has a lower density, so an increase in foam quality reduces the buoyancy force, and the maximum packing of cuttings increases in the annulus.
The results also suggest that a foam quality of 70% is optimal.
Therefore, a higher foam quality increases the cuttings lifting capacity of the foam.
However, the initial foam quality yielding the highest mobility reduction remained to be 70%.
Accordingly, Blend-1 at this foam quality will be used in the oil displacement experiments.
Overall, to exception of the 90% foam quality, the residual resistance averaged around 100%.
Example results at a foam quality of 80% are shown in Fig. 7.
Experiment results indicate that with the increase of foam quality, the resistance factor reduces, and the best foam quality is 0.50.
Backpressures exceed 5 MPa, and foam quality ranges from 0.80 to 0.99.
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