skip to content

Faculty of Mathematics

 

Publications

Stabilizing the long-time behavior of the forced Navier–Stokes and damped Euler systems by large mean flow
J Cyranka, PB Mucha, ES Titi, P Zgliczyński
– Physica D Nonlinear Phenomena
(2018)
369,
18
Onsager’s Conjecture for the Incompressible Euler Equations in Bounded Domains
C Bardos, ES Titi
– Archive for Rational Mechanics and Analysis
(2018)
228,
197
A Determining Form for the Subcritical Surface Quasi-Geostrophic Equation
MS Jolly, VR Martinez, T Sadigov, ES Titi
– Journal of Dynamics and Differential Equations
(2018)
31,
1457
A computational investigation of the finite-time blow-up of the 3D incompressible Euler equations based on the Voigt regularization
A Larios, MR Petersen, ES Titi, B Wingate
– Theoretical and Computational Fluid Dynamics
(2018)
32,
23
Uniform-in-Time Error Estimates for the Postprocessing Galerkin Method Applied to a Data Assimilation Algorithm
CF Mondaini, ES Titi
– SIAM Journal on Numerical Analysis
(2018)
56,
78
Downscaling data assimilation algorithm with applications to statistical solutions of the Navier–Stokes equations
A Biswas, C Foias, CF Mondaini, ES Titi
– Annales de l'Institut Henri Poincaré C, Analyse non linéaire
(2018)
36,
295
The primitive equations as the small aspect ratio limit of the Navier–Stokes equations: Rigorous justification of the hydrostatic approximation
J Li, ES Titi
– Journal Des Mathematiques Pures Et Appliquees
(2018)
124,
30
On the Extension of Onsager’s Conjecture for General Conservation Laws
C Bardos, P Gwiazda, A Świerczewska-Gwiazda, ES Titi, E Wiedemann
– Journal of Nonlinear Science
(2018)
29,
501
Finite determining parameters feedback control for distributed nonlinear dissipative systems -a computational study
E Lunasin, ES Titi
– Evolution Equations and Control Theory
(2017)
6,
535
One-Dimensional Parametric Determining form for the Two-Dimensional Navier–Stokes Equations
C Foias, MS Jolly, D Lithio, ES Titi
– Journal of Nonlinear Science
(2017)
27,
1513
  • <
  • 11 of 31
  • >

Research Group

Nonlinear Dynamical Systems

Room

G1.12

Telephone

01223 337871