On the selection of Saffman-Taylor fingers in a tapered Hele-Shaw cell

Abstract

We present an analytical study for predicting the finger width of the Saffman-Taylor finger in a tapered Hele-Shaw cell. We consider a rectilinear geometry with a constant depth gradient and apply analytical techniques of singular perturbation analysis and WKB approximation to derive an expression for the finger selection mechanism for such tapered Hele-Shaw cells with small depth gradients. We establish \[ - 12 f(α) Cam2/3 as Cam → 0, \;\;\; and \;\;\; α 1.\] Here, is the dimensionless finger width, Cam denotes the modified Capillary parameter, and f(α) is a linear function of the gap gradient α, such that f(α = 0) = 1 recovering the results of parallel Hele-Shaw cell (Hong and Langer hong1986analytic, Combescot et al. Combescot1986, Shraiman shraiman1986velocity). Our findings indicate that the Hele-Shaw cell gap gradient plays a crucial role in determining , allowing for control over fingering instabilities such that the single-finger steady state can be stabilised or destabilised depending on the sign of the gradient, compared to the standard Hele-Shaw cell. The theoretical estimates reveal excellent agreement with experimental finger-width data and predictions from linear stability analyses.

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