Global solvability of the inhomogeneous Ericksen–Leslie system with only bounded density
From MaRDI portal
Publication:5356936
DOI10.1142/S0219530516500172zbMath1380.76004arXiv1503.01623OpenAlexW2964132693MaRDI QIDQ5356936
Publication date: 12 September 2017
Published in: Analysis and Applications (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1503.01623
Related Items (2)
Global well-posedness for the density-dependent incompressible flow of liquid crystals ⋮ Global solution to the 3D inhomogeneous nematic liquid crystal flows with variable density
Cites Work
- Dynamics of nematic liquid crystal flows: the quasilinear approach
- Global strong solution to the density-dependent 2-D liquid crystal flows
- Global well-posedness of incompressible inhomogeneous fluid systems with bounded density or non-Lipschitz velocity
- Inhomogeneous Navier-Stokes equations in the half-space, with only bounded density
- On the uniqueness of heat flow of harmonic maps and hydrodynamic flow of nematic liquid crystals
- Global regularity and uniqueness of weak solution for the 2-D liquid crystal flows
- Hydrostatic theory of liquid crystals
- Ordinary differential equations, transport theory and Sobolev spaces
- Liquid crystal flows in two dimensions
- A critical functional framework for the inhomogeneous Navier-Stokes equations in the half-space
- Partial regularity of the dynamic system modeling the flow of liquid crystals
- Existence of solutions for the Ericksen-Leslie system
- On the general Ericksen-Leslie system: Parodi's relation, well-posedness and stability
- Global weak solution and large-time behavior for the compressible flow of liquid crystals
- On multi-dimensional compressible flows of nematic liquid crystals with large initial energy in a bounded domain
- Global strong solutions to the inhomogeneous incompressible nematic liquid crystal flow
- Some constitutive equations for liquid crystals
- Global Unique Solvability of Inhomogeneous Navier-Stokes Equations with Bounded Density
- A Lagrangian Approach for the Incompressible Navier-Stokes Equations with Variable Density
- Recent developments of analysis for hydrodynamic flow of nematic liquid crystals
- Fourier Analysis and Nonlinear Partial Differential Equations
- Global Existence of Weak Solutions of the Nematic Liquid Crystal Flow in Dimension Three
- Nonlinear theory of defects in nematic liquid crystals; Phase transition and flow phenomena
- Global weak solution to the flow of liquid crystals system
- Nonparabolic dissipative systems modeling the flow of liquid crystals
- Unnamed Item
- Unnamed Item
This page was built for publication: Global solvability of the inhomogeneous Ericksen–Leslie system with only bounded density