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Fig. 3 Comparison of wettability.
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In this study, we present a comparison of the wettability and electrowetting performances among ZnO nanorod arrays with different densities and dimensions.
A comparison of processes and wettability characteristics was presented for injection molded superhydrophobic polypropylene surfaces from two fabricating strategies.
However, these studies are controversial for two reasons: firstly, time dependency of graphene wettability complicates comparison of results from different groups.
Open image in new window Fig. 22 Comparison of recoveries and recovery rates of different wettability cores: a recovery curves, b recovery rate curves.
From the comparison, we found that Skjaeveland method is robust to be applicable for capillary pressure correlation in transition zones of carbonate reservoirs with a change of wettability.
The mechanism of wettability alteration is quite dependent on the initial wettability of the formation rock.
An intermediate state of wettability was observed at 104 °F.
Meanwhile, the small surface tension indicated the enhancement of wettability.
Tang and Firoozabadi performed wettability alteration and measured the effect of wettability alteration on increased liquid mobility.
Fundamental physical property of wettability with PVDF shows hydrophobicity.
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