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Several models for correlating the DR behavior of polymer solutions can be found in the literature.
It seems adding 0.1 wt% nanoparticles can improve pseudoplasticity behavior of polymer solutions in low shear rate values.
Possibility of improving pseudoplasticity behavior of polymer solutions after adding high percentage of nanoparticles can be evaluated in the future [55, 56, 57].
Theoretically, the rheological behavior of polymer solutions as a function of shear rate (flow velocity gradient) in porous media could be divided into three types: Newtonian, shear thinning, and shear thickening.
The results also shed new light on the flow behavior of polymer solutions in porous media, particularly in polymer injection for enhanced oil recovery from mature fields.
This situation is due partly to the complexity of the mechanisms involved, which combine the unique dynamic behavior of polymer solutions with the unique physics of ES (with disparate temporal and spatial scales).
Similar(54)
The impact of increased salinity in the rheological behavior of polymer solution was examined.
The rheological and gelation behaviors of polymer solution due to the effect of temperature and pH were evaluated using the equipment of Physica Rheolab MC1 (Anton-Paar GmbH, Stuttgart, Germany).
Their theory of polymer solutions meant a rigorous theoretical framework was constructed that allowed, for instance, the change in behaviour as the concentration of polymer chains was increased to be quantified.
The DLS data of polymer solutions are summarized in Table 4.
Based on the results obtained from the previous section, the DR behavior of binary polymer solutions was compared to that of 200 wppm HPAM solution.
Related(14)
behavior of model solutions
performance of polymer solutions
behaviours of polymer solutions
behavior of polymer nanocomposites
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behavior of polymer electrolytes
behavior of polymer nanospheres
behavior of polymer molecules
behavior of polymer melts
behavior of polymer films
behavior of polymer blends
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