New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse Interface Model in 1-D. They extend two open boundary conditions originally designed for the Navier–Stokes equations. The non-dimensional formulation of the DIM generalizes the approach to any fluid. The equations support a steady state whose analytical approximation close to the critical point depends only on temperature. This feature enables the use of detectors at the boundaries switching between conventional boundary conditions in bulk phases and a multi-phase strategy in interfacial regions. Moreover, the latter takes advantage of the steady state approximation to minimize the interface–boundary interactions. The techniques are applied to ...
Application of diffuse–interface models (DIM) yields a system of partial differential equations (PDE...
In nuclear reactor safety and optimization there are key issues that rely on in-depth understanding ...
A diffuse interface model for surfactants in multi-phase flow with three or more fluids is derived. ...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
We review the development of diffuse-interface models of hydrodynamics and their application to a wi...
We study physical systems composed of at least two immiscible fluids occu- pying different regions o...
Diffuse interface models based on the phase field methodology have been developed for various free b...
Diffuse interface models based on the phase field methodology have been developed for various free b...
International audienceSimulation of compressible flows became a routine activity with the appearance...
Application of diffuse–interface models (DIM) yields a system of partial differential equations (PDE...
Application of diffuse–interface models (DIM) yields a system of partial differential equations (PDE...
Application of diffuse–interface models (DIM) yields a system of partial differential equations (PDE...
In nuclear reactor safety and optimization there are key issues that rely on in-depth understanding ...
A diffuse interface model for surfactants in multi-phase flow with three or more fluids is derived. ...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
New techniques are developed for solving multi-phase flows in unbounded domains using the Diffuse In...
We review the development of diffuse-interface models of hydrodynamics and their application to a wi...
We study physical systems composed of at least two immiscible fluids occu- pying different regions o...
Diffuse interface models based on the phase field methodology have been developed for various free b...
Diffuse interface models based on the phase field methodology have been developed for various free b...
International audienceSimulation of compressible flows became a routine activity with the appearance...
Application of diffuse–interface models (DIM) yields a system of partial differential equations (PDE...
Application of diffuse–interface models (DIM) yields a system of partial differential equations (PDE...
Application of diffuse–interface models (DIM) yields a system of partial differential equations (PDE...
In nuclear reactor safety and optimization there are key issues that rely on in-depth understanding ...
A diffuse interface model for surfactants in multi-phase flow with three or more fluids is derived. ...