{ "id": "1303.7005", "version": "v1", "published": "2013-03-27T23:19:43.000Z", "updated": "2013-03-27T23:19:43.000Z", "title": "The micropolar Navier-Stokes equations: A priori error analysis", "authors": [ "Ricardo H. Nochetto", "Abner J. Salgado", "Ignacio Tomas" ], "categories": [ "math.NA" ], "abstract": "The unsteady Micropolar Navier-Stokes Equations (MNSE) are a system of parabolic partial differential equations coupling linear velocity and pressure with angular velocity: material particles have both translational and rotational degrees of freedom. We propose and analyze a first order semi-implicit fully-discrete scheme for the MNSE, which decouples the computation of the linear and angular velocities, is unconditionally stable and delivers optimal convergence rates under assumptions analogous to those used for the Navier-Stokes equations. With the help of our scheme we explore some qualitative properties of the MNSE related to ferrofluid manipulation and pumping. Finally, we propose a second order scheme and show that it is almost unconditionally stable.", "revisions": [ { "version": "v1", "updated": "2013-03-27T23:19:43.000Z" } ], "analyses": { "subjects": [ "65N12", "65N15", "65N30", "76D99", "76M10" ], "keywords": [ "micropolar navier-stokes equations", "priori error analysis", "differential equations coupling linear", "equations coupling linear velocity", "partial differential equations coupling" ], "note": { "typesetting": "TeX", "pages": 0, "language": "en", "license": "arXiv", "status": "editable", "adsabs": "2013arXiv1303.7005N" } } }