The break-up of a slender viscous jet is examined using the Needham-Leach asymptotic method. This method enables the calculation of the large time asymptotic structure of the model evolution equations using matched asymptotic expansions. An equation which describes the dynamics of non-linear travelling waves at large times is derived using this method. In particular, the wave speed, wavelength, growth rate and frequency of these travelling waves are determined. This provides information on how the jet breaks up, the region of break-up and the possibility for multiple break-up points. Also, this method gives information on how non-linear jets may be controlled.</p
Nonlinear asymmetric breakup of a circular capillary jet stressed at the surface by an electrical fi...
This paper presents asymptotic models of different complexity for the simulation of slender viscous ...
In this article we review recent results on the breakup of cylindrical jets of a Newtonian fluid. Ca...
The break-up of a slender viscous jet is examined using the Needham-Leach asymptotic method. This me...
A liquid jet follows a curved trajectory when the orifice from which the jet emerges is rotating. Su...
We describe the nonlinear evolution of a travelling wave disturbance on a spiralling slender invisci...
We examine a spiralling slender viscous jet emerging from a rapidly rotating orifice, extending Wall...
AbstractWe examine a spiralling slender viscous jet emerging from a rapidly rotating orifice, extend...
A one-dimensional model evolution equation is used to describe the nonlinear dynamics that can lead ...
The break-up of a compound liquid jet into droplets has relevance to many practical situations in en...
Abstract-A liquid jet originating from a nozzle with radius rt breaks up into droplet; in consequenc...
We examine the dynamics of a spiralling slender liquid jet which emerges from a rotating cylindrical...
An investigation into the break-up dynamics of a curved liquid jet has been studied. A comprehensive...
A spiralling slender non-Newtonian liquid jet emerging from a rapidly rotating orifice is examined. ...
We examine a spiralling slender inviscid liquid jet which emerges from a rapidly rotating orifice. T...
Nonlinear asymmetric breakup of a circular capillary jet stressed at the surface by an electrical fi...
This paper presents asymptotic models of different complexity for the simulation of slender viscous ...
In this article we review recent results on the breakup of cylindrical jets of a Newtonian fluid. Ca...
The break-up of a slender viscous jet is examined using the Needham-Leach asymptotic method. This me...
A liquid jet follows a curved trajectory when the orifice from which the jet emerges is rotating. Su...
We describe the nonlinear evolution of a travelling wave disturbance on a spiralling slender invisci...
We examine a spiralling slender viscous jet emerging from a rapidly rotating orifice, extending Wall...
AbstractWe examine a spiralling slender viscous jet emerging from a rapidly rotating orifice, extend...
A one-dimensional model evolution equation is used to describe the nonlinear dynamics that can lead ...
The break-up of a compound liquid jet into droplets has relevance to many practical situations in en...
Abstract-A liquid jet originating from a nozzle with radius rt breaks up into droplet; in consequenc...
We examine the dynamics of a spiralling slender liquid jet which emerges from a rotating cylindrical...
An investigation into the break-up dynamics of a curved liquid jet has been studied. A comprehensive...
A spiralling slender non-Newtonian liquid jet emerging from a rapidly rotating orifice is examined. ...
We examine a spiralling slender inviscid liquid jet which emerges from a rapidly rotating orifice. T...
Nonlinear asymmetric breakup of a circular capillary jet stressed at the surface by an electrical fi...
This paper presents asymptotic models of different complexity for the simulation of slender viscous ...
In this article we review recent results on the breakup of cylindrical jets of a Newtonian fluid. Ca...