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Characterizing Dissipation in Fluid-Fluid Displacement Using Constant-Rate Spontaneous Imbibition

Author(s)
Primkulov, BK; Chui, JYY; Pahlavan, AA; MacMinn, CW; Juanes, R
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Abstract
When one fluid displaces another in a confined environment, some energy is dissipated in the fluid bulk and the rest is dissipated near the contact line. Here we study the relative strengths of these two sources of dissipation with a novel experimental setup: constant-rate spontaneous imbibition experiments, achieved by introducing a viscous oil slug in front of the invading fluid inside a capillary tube. We show that a large fraction of dissipation can take place near the contact line, and rationalize the observations by means of a theoretical analysis of the dynamic contact angles of the front and back menisci of the oil slug. Our results bear important implications for macroscopic descriptions of multiphase flows in microfluidic systems and porous media.
Date issued
2020-10
URI
https://hdl.handle.net/1721.1/132991
Department
Massachusetts Institute of Technology. Department of Civil and Environmental Engineering
Journal
Physical Review Letters
Publisher
American Physical Society (APS)
Citation
Characterizing Dissipation in Fluid-Fluid Displacement Using Constant-Rate Spontaneous Imbibition B. K. Primkulov, J. Y. Y. Chui, A. A. Pahlavan, C. W. MacMinn, and R. Juanes Phys. Rev. Lett. 125, 174503 © 2020 American Physical Society.
Version: Final published version
ISSN
1079-7114
0031-9007

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