Home Knowledge Base the Surface Stokes Problem

the Surface Stokes Problem

No mentions found

This entity hasn't been tracked yet, or Iris is still building its knowledge base.

Related Articles from SNS

A Divergence-Free Scott-Vogelius Finite Element Method for the Surface Stokes Problem

arXiv:2606.07840v1 Announce Type: new Abstract: We construct and analyze an exactly divergence-free Scott-Vogelius finite element method for the surface Stokes problem. The proposed scheme simultaneously enforces the tangentiality and incompressibility constructs exactly and has the same number of unknowns as the two-dimensional Euclidean discretization.

arXiv CS 1d ago

A scalable Ewald-free BIE framework for periodic Stokes flow via hierarchical proxy sums

arXiv:2605.30805v1 Announce Type: cross Abstract: Particulate Stokes flow in confined, periodic geometries underlies a broad class of problems in biophysics, microfluidics, and the rheology of complex fluids. Boundary integral equation (BIE) methods are a natural tool for such problems, but existing periodization schemes rely either on periodic Green's functions, which are restrictive for complex confining geometries, or on free-space schemes that solve auxiliary proxy strengths alongside...

arXiv CS 9d ago

A scalable Ewald-free BIE framework for periodic Stokes flow via hierarchical proxy sums

arXiv:2605.30805v1 Announce Type: new Abstract: Particulate Stokes flow in confined, periodic geometries underlies a broad class of problems in biophysics, microfluidics, and the rheology of complex fluids. Boundary integral equation (BIE) methods are a natural tool for such problems, but existing periodization schemes rely either on periodic Green's functions, which are restrictive for complex confining geometries, or on free-space schemes that solve auxiliary proxy strengths alongside the...

arXiv Physics 9d ago

Lattice Boltzmann Methods for Compressible (Magneto)hydrodynamics

arXiv:2606.00641v1 Announce Type: new Abstract: The simulation of magnetohydrodynamic (MHD) flows presents a highly complex, tightly coupled transport problem that poses severe numerical and computational demands. Towards this, we propose a novel class of Lattice Boltzmann Methods (LBM) schemes capable of solving a wide range of transport equation systems with high computational efficiency and scalability. Our approach exploits the algorithmic structure of kinetic formulations to separately...

arXiv Physics 8d ago