Stirring-arrested binary-fluid domain size (source code)

= Stirring-arrested binary-fluid domain size

If stirring imposes a time scale $\tau$, replacing time derivatives by $1/\tau$ predicts a steady domain size. Viscous-capillary balance gives $\Lambda\sim\sigma\tau/\eta$, while inertial-capillary balance gives $\Lambda\sim(\sigma\tau^2/\rho)^{1/3}$.