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[1] Mads Kyed.
Asymptotic profile of a linearized Navier-Stokes flow past a rotating body.
Quart. Appl. Math.
Abstract, references, and article information
View Article: PDF
[2] Jin Feng and Andrzej Święch; with Appendix B by Atanas Stefanov.
Optimal control for a mixed flow of Hamiltonian and gradient type in space of probability measures.
Trans. Amer. Math. Soc.
365
(2013)
3987-4039.
Abstract, references, and article information
View Article: PDF
[3] Josef Bemelmans, Giovanni P. Galdi and Mads Kyed.
On the steady motion of a coupled system solid-liquid.
Mem. Amer. Math. Soc.
Abstract, references, and article information
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[4] Abigail L. Bowers.
Numerical approximation of a multiscale Leray model for
incompressible, viscous flow.
Contemp. Math.
586
(2013)
83-91.
Book volume table of contents
View Article: PDF
[5] Erica M. D’Agnillo and Leo G. Rebholz.
On the enforcement of discrete mass conservation in
incompressible flow simulations with continuous velocity
approximation.
Contemp. Math.
586
(2013)
143-151.
Book volume table of contents
View Article: PDF
[6] F. Guillén-González, F. Marques-Lopes and M. Rojas-Medar.
On the approximate controllability of Stackelberg-Nash strategies for Stokes equations.
Proc. Amer. Math. Soc.
141
(2013)
1759-1773.
Abstract, references, and article information
View Article: PDF
[7] Giovanni P. Galdi and Mads Kyed.
A simple proof of $L^{q}$-estimates for the steady-state Oseen and Stokes equations in a rotating frame. Part II: Weak solutions.
Proc. Amer. Math. Soc.
141
(2013)
1313-1322.
Abstract, references, and article information
View Article: PDF
[8] Matthias Geissert, Karoline Götze and Matthias Hieber.
$L^{p}$-theory for strong solutions to fluid-rigid body interaction in Newtonian and generalized Newtonian fluids.
Trans. Amer. Math. Soc.
365
(2013)
1393-1439.
Abstract, references, and article information
View Article: PDF
[9] Giovanni P. Galdi and Mads Kyed.
A simple proof of $L^{q}$-estimates for the steady-state Oseen and Stokes equations in a rotating frame. Part I: Strong solutions.
Proc. Amer. Math. Soc.
141
(2013)
573-583.
Abstract, references, and article information
View Article: PDF
[10] Youming Liu and Junjian Zhao.
An extension of Bittner and Urban's theorem.
Math. Comp.
82
(2013)
401-411.
Abstract, references, and article information
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[11] Jean-Luc Guermond, Peter D. Minev and Abner J. Salgado.
Convergence analysis of a class of massively parallel direction splitting algorithms for the Navier-Stokes equations in simple domains.
Math. Comp.
81
(2012)
1951-1977.
Abstract, references, and article information
View Article: PDF
[12] Nathan Pennington.
Recent local and global solutions to the Lagrangian
Averaged Navier-Stokes equation.
Contemp. Math.
581
(2012)
217-233.
Book volume table of contents
View Article: PDF
[13] A. M. Blokhin and R. E. Semenko.
Electrodynamical instability of layered structures.
Quart. Appl. Math.
69
(2011)
651-676.
Abstract, references, and article information
View Article: PDF
[14] Umberto Massari, Mariarosaria Padula and Senjo Shimizu.
Loss of control of motions from initial data for pending capillary liquid.
Quart. Appl. Math.
69
(2011)
569-601.
Abstract, references, and article information
View Article: PDF
[15] Ling Hei Yeung and Manwai Yuen.
Analytical solutions to the Navier-Stokes-Poisson equations with density-dependent viscosity and with pressure.
Proc. Amer. Math. Soc.
139
(2011)
3951-3960.
Abstract, references, and article information
View Article: PDF
[16] Sadek Gala.
Remark on a regularity criterion in terms of pressure for the Navier-Stokes equations.
Quart. Appl. Math.
69
(2011)
147-155.
Abstract, references, and article information
View Article: PDF
[17] Ting Zhang and Daoyuan Fang.
Random data Cauchy theory for the incompressible three dimensional Navier–Stokes equations.
Proc. Amer. Math. Soc.
139
(2011)
2827-2837.
Abstract, references, and article information
View Article: PDF
[18] D. Barbato, F. Flandoli and F. Morandin.
Energy dissipation and self-similar solutions for an unforced
inviscid dyadic model.
Trans. Amer. Math. Soc.
363
(2011)
1925-1946.
MR 2746670.
Abstract, references, and article information
View Article: PDF
[19] P. A. Krutitskii.
The Dirichlet problem for Stokes equations outside open arcs in a half-plane and creeping flow over thin profiles.
Quart. Appl. Math.
68
(2010)
537-556.
MR 2676975.
Abstract, references, and article information
View Article: PDF
[20] Donatella Donatelli.
On the artificial compressibility method for the Navier-Stokes-Fourier system.
Quart. Appl. Math.
68
(2010)
469-485.
MR 2676972.
Abstract, references, and article information
View Article: PDF
[21] Ana Maria Soane and Rouben Rostamian.
Variational problems in weighted Sobolev spaces on non-smooth domains.
Quart. Appl. Math.
68
(2010)
439-458.
MR 2676970.
Abstract, references, and article information
View Article: PDF
[22] S. Kracmar, S. Necasová and P. Penel.
$L^{q}$-approach of weak solutions to stationary rotating Oseen equations in exterior domains.
Quart. Appl. Math.
68
(2010)
421-437.
MR 2676969.
Abstract, references, and article information
View Article: PDF
[23] Jean-Yves Chemin and Isabelle Gallagher.
Large, global solutions to the Navier-Stokes equations, slowly
varying in one direction.
Trans. Amer. Math. Soc.
362
(2010)
2859-2873.
MR 2592939.
Abstract, references, and article information
View Article: PDF
[24] A. Cheskidov and R. Shvydkoy.
Ill-posedness of the basic equations of fluid dynamics in Besov spaces.
Proc. Amer. Math. Soc.
138
(2010)
1059-1067.
MR 2566571.
Abstract, references, and article information
View Article: PDF
[25] Jean Cortissoz.
Some elementary estimates for the Navier-Stokes system.
Proc. Amer. Math. Soc.
137
(2009)
3343-3353.
MR 2515404.
Abstract, references, and article information
View Article: PDF
[26] A. M. Blokhin and R. E. Semenko.
On the stability of shock waves in layered structures at the presence of the electric current.
Quart. Appl. Math.
67
(2009)
441-475.
MR 2547635.
Abstract, references, and article information
View Article: PDF
[27] Jishan Fan and Hongjun Gao.
Regularity conditions for the 3D Navier-Stokes equations.
Quart. Appl. Math.
67
(2009)
195-199.
MR 2497603.
Abstract, references, and article information
View Article: PDF
[28] Eva Dintelmann, Matthias Geissert and Matthias Hieber.
Strong $L^p$-solutions to the Navier-Stokes flow past moving obstacles: The case of several obstacles and time dependent velocity.
Trans. Amer. Math. Soc.
361
(2009)
653-669.
MR 2452819.
Abstract, references, and article information
View Article: PDF
[29] Björn Birnir.
Turbulent rivers.
Quart. Appl. Math.
66
(2008)
565-594.
MR 2445529.
Abstract, references, and article information
View Article: PDF
[30] Alexey Cheskidov.
Blow-up in finite time for the dyadic model of the Navier-Stokes equations.
Trans. Amer. Math. Soc.
360
(2008)
5101-5120.
MR 2415066.
Abstract, references, and article information
View Article: PDF
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