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The results demonstrated that the TOC content of shale samples with mixed wettability was greater than that of water-wettability samples.
Immiscible fluid flow through a synthetic bead pack with mixed wettability was investigated.
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Further, the shale samples with mixed wettability were higher in mobile hydrocarbon content (S1) than were those with only water wettability.
Residual oil saturation of mixed wettability is low because oil is located in the large pores of the rock in continuous path that makes the oil displaced from the cores even at very low oil saturation.
Finally, the obtained results for the mixed wettability system were compared to uniform wettability data.
In addition, they reported that the mixed wettability situation is more effective than water-wet conditions in terms of oil production.
Wettability was measured using water sessile drops.
Rock wettability was determined using contact angle measurement technique.
Surface wettability was characterized using a goniometer (ramé-hart Model 250 standard goniometer).
The cellulose wettability was characterized by measuring the cellulose water contact angle using the Kruss K100.
The surface wettability was determined by measuring the contact angle using the static water drop method.
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