arXiv · 2610.11903
Fluid deformable surfaces with variable thickness - a Surface Shallow-Water-Helfrich model
Abstract
Epithelial tissues play a fundamental role in morphogenesis. Mechanically they can be viewed as thin soft materials exhibiting a solid-fluid duality. The Surface Navier-Stokes-Helfrich model accounts for these properties by combining bending and surface hydrodynamics. In order to account for varying cell thickness we incorporate a thickness field in the spirit of a shallow-water equation, but defined on the (self-)evolving surface. This replaces the inextensibility constraint of the two-dimensional fluid and with it the conservation of surface area by an incompressibility constraint of the thin film fluid allowing for changes in surface area. We develop a numerical scheme based on surface finite elements, perform convergence tests, demonstrate the impact on shape evolution of closed surfaces with a constant enclosed volume and discuss implications on modeling morphogenesis.
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Jan Magnus Sischka, Axel Voigt. 2026-10-08. Fluid deformable surfaces with variable thickness - a Surface Shallow-Water-Helfrich model. https://arxiv.org/abs/2610.11903
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