There is growing physical and mathematical interest in the hydrodynamics of dissipationless/dispersive media. Since G.B. Whitham’s seminal publication fifty years ago that ushered in the mathematical study of dispersive hydrodynamics, there has been a significant body of work in this area. However, there has been no comprehensive survey of the field of dispersive hydrodynamics. Utilizing Whitham’s averaging theory as the primary mathematical tool, we review the rich mathematical developments over the past fifty years with an emphasis on physical applications. The fundamental, large scale, coherent excitation in dispersive hydrodynamic systems is an expanding, oscillatory dispersive shock wave or DSW. Both the macroscopic and microscopic pro...
We develop a general approach to the description of dispersive shock waves (DSWs) for a class of non...
The viscously dominated, low Reynolds ’ number dynamics of multi-phase, compacting media can lead to...
A new type of wave–mean flow interaction is identified and studied in which a small-amplitude, linea...
There is growing physical and mathematical interest in the hydrodynamics of dissipationless/dispersi...
This Special Issue on Dispersive Hydrodynamics is dedicated to the memory and work of G. B. Whitham ...
In dispersive media, hydrodynamic singularities are resolved by coherent wavetrains known as dispers...
The addition of higher order asymptotic corrections to the Korteweg-de Vries equation results in the...
Dispersive shock waves are strongly oscillating wave trains that spontaneously form and expand thank...
Dispersive shock waves (DSWs), also termed undular bores in fluid mechanics, are generated from a ju...
Ubiquitous nonlinear waves in dispersive media include localized solitons and extended hydrodynamic ...
In dispersive media, hydrodynamic singularities are resolved by coherent wavetrains known as dispers...
We study a dispersive counterpart of the classical gas dynamics problem of the interaction of a shoc...
Dispersive shock waves (DSWs), also termed undular bores in fluid mechanics, governed by the non-loc...
We introduce and analyze a coupled system of partial differential equations which model the interact...
We develop a general approach to the description of dispersive shock waves (DSWs) for a class of non...
We develop a general approach to the description of dispersive shock waves (DSWs) for a class of non...
The viscously dominated, low Reynolds ’ number dynamics of multi-phase, compacting media can lead to...
A new type of wave–mean flow interaction is identified and studied in which a small-amplitude, linea...
There is growing physical and mathematical interest in the hydrodynamics of dissipationless/dispersi...
This Special Issue on Dispersive Hydrodynamics is dedicated to the memory and work of G. B. Whitham ...
In dispersive media, hydrodynamic singularities are resolved by coherent wavetrains known as dispers...
The addition of higher order asymptotic corrections to the Korteweg-de Vries equation results in the...
Dispersive shock waves are strongly oscillating wave trains that spontaneously form and expand thank...
Dispersive shock waves (DSWs), also termed undular bores in fluid mechanics, are generated from a ju...
Ubiquitous nonlinear waves in dispersive media include localized solitons and extended hydrodynamic ...
In dispersive media, hydrodynamic singularities are resolved by coherent wavetrains known as dispers...
We study a dispersive counterpart of the classical gas dynamics problem of the interaction of a shoc...
Dispersive shock waves (DSWs), also termed undular bores in fluid mechanics, governed by the non-loc...
We introduce and analyze a coupled system of partial differential equations which model the interact...
We develop a general approach to the description of dispersive shock waves (DSWs) for a class of non...
We develop a general approach to the description of dispersive shock waves (DSWs) for a class of non...
The viscously dominated, low Reynolds ’ number dynamics of multi-phase, compacting media can lead to...
A new type of wave–mean flow interaction is identified and studied in which a small-amplitude, linea...