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Updated: Jun 22, 2026

Measuring Material Microstructure Under Flow Using 1-2 Plane Flow-Small Angle Neutron Scattering
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Control of viscous fingering patterns in a radial Hele-Shaw cell
Shuwang Li1, John S Lowengrub, Jake Fontana
1Department of Applied Mathematics, Illinois Institute of Technology, Chicago, Illinois 60616, USA. sli@math.iit.edu
Abstract:
We study numerically and experimentally the dynamics and control of viscous fingering patterns in a circular Hele-Shaw cell. The nonlocality and nonlinearity of the system, especially interactions among developing fingers, make the emergent pattern difficult to predict and control. By controlling the injection rate of the less viscous fluid, we can precisely suppress the evolving interfacial instabilities. There exist denumerable attractive, self-similarly evolving symmetric, universal shapes. Experiments confirm the feasibility of the control strategy, which is summarized in a morphology diagram.
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