Morphological instabilities are common to pattern formation problems such as the non-equilibrium growth of crystals and directional solidification. Very small perturbations caused by noise originate convoluted interfacial patterns when surface tension is small. The generic mechanisms in the formation of these complex patterns are present in the simpler problem of a Hele-Shaw interface. Amid this extreme noise sensitivity, what is then the role played by small surface tension in the dynamic formation and selection of these patterns? What is the asymptotic behaviour of the interface in the limit as surface tension tends to zero? The ill-posedness of the zero-surface-tension problem and the singular nature of surface tension pose challenging d...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
A dynamical systems approach to competition of Saffman-Taylor fingers in a Hele-Shaw channel is deve...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
We study the singular effects of vanishingly small surface tension on the dynamics of finger competi...
We investigate numerically the effects of surface tension on the evolution of an initially circular ...
The subject of this thesis is viscous fingering in Hele-Shaw cells, or Hele-Shaw flows. We look for ...
The experimental results of Saffman & Taylor (1958) and Pitts (1980) on fingering in a Hele Shaw cel...
We present a new numerical method for calculating an evolving 2D Hele-Shaw interface when surface te...
We review recent results on dynamical aspects of viscous fingering. The Saffman¿Taylor instability i...
We investigate the dynamics of relaxation, by surface tension, of a family of curved interfaces betw...
We provide numerical and analytic evidence for the formation of a singularity driven only by surface...
We study the minimal class of exact solutions of the Saffman-Taylor problem with zero surface tensio...
We develop a systematic method to derive all orders of mode couplings in a weakly nonlinear approach...
The phenomena of viscous fingering in the flow of immiscible fluids in Hele-Shaw cells is discussed....
this behavior is opposite to the monotonic decay reported previously for the Lennard Jones fluid. It...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
A dynamical systems approach to competition of Saffman-Taylor fingers in a Hele-Shaw channel is deve...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
We study the singular effects of vanishingly small surface tension on the dynamics of finger competi...
We investigate numerically the effects of surface tension on the evolution of an initially circular ...
The subject of this thesis is viscous fingering in Hele-Shaw cells, or Hele-Shaw flows. We look for ...
The experimental results of Saffman & Taylor (1958) and Pitts (1980) on fingering in a Hele Shaw cel...
We present a new numerical method for calculating an evolving 2D Hele-Shaw interface when surface te...
We review recent results on dynamical aspects of viscous fingering. The Saffman¿Taylor instability i...
We investigate the dynamics of relaxation, by surface tension, of a family of curved interfaces betw...
We provide numerical and analytic evidence for the formation of a singularity driven only by surface...
We study the minimal class of exact solutions of the Saffman-Taylor problem with zero surface tensio...
We develop a systematic method to derive all orders of mode couplings in a weakly nonlinear approach...
The phenomena of viscous fingering in the flow of immiscible fluids in Hele-Shaw cells is discussed....
this behavior is opposite to the monotonic decay reported previously for the Lennard Jones fluid. It...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
A dynamical systems approach to competition of Saffman-Taylor fingers in a Hele-Shaw channel is deve...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...