Simulation of parabolic flow on an eye-shaped domain with moving boundary
From MaRDI portal
Publication:1616557
DOI10.1007/s10665-018-9957-7zbMath1408.76037arXiv1704.01618OpenAlexW2610316838WikidataQ130182695 ScholiaQ130182695MaRDI QIDQ1616557
J. K. Brosch, Richard J. Braun, Tobin A. Driscoll
Publication date: 6 November 2018
Published in: Journal of Engineering Mathematics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1704.01618
Thin fluid films (76A20) Spectral methods applied to problems in fluid mechanics (76M22) Physiological flows (76Z05) Physiological flow (92C35)
Related Items
Dynamics and mechanisms for tear breakup (TBU) on the ocular surface ⋮ A faster optimal solver for thin film flows
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- The effect of the lipid layer on tear film behaviour
- The effect of polar lipids on tear film dynamics
- Coupling fluid and solute dynamics within the ocular surface tear film: a modelling study of black line osmolarity
- The fluid mechanics of shear-thinning tear substitutes
- Surface-tension-driven flow on a moving curved surface
- Finite-time thin film rupture driven by modified evaporative loss
- Thin film dynamics on a prolate spheroid with application to the cornea
- Fourth order partial differential equations on general geometries
- Dynamics of the Tear Film
- Tear film dynamics with evaporation, wetting, and time-dependent flux boundary condition on an eye-shaped domain
- A model for wetting and evaporation of a post-blink precorneal tear film
- Tear film dynamics on an eye-shaped domain I: pressure boundary conditions
- Heat transfer and tear film dynamics over multiple blink cycles
- Single-equation models for the tear film in a blink cycle: realistic lid motion
- Tear film dynamics on an eye-shaped domain. Part 2. Flux boundary conditions
- An overset grid method for the study of reflex tearing
- Waiting-Time Behavior in a Nonlinear Diffusion Equation
- Thin Films with High Surface Tension
- A lubrication model of coating flows over a curved substrate in space
- Spectral Methods in MATLAB
- Schwarz-Christoffel Mapping
- Computed tear film and osmolarity dynamics on an eye-shaped domain
- Self‐similar Asymptotics for Linear and Nonlinear Diffusion Equations
- The influence of non-polar lipids on tear film dynamics
- Model problems for the tear film in a blink cycle: single-equation models
- Dynamics of tear film deposition and draining