This communication presents the numerical resolution of non-linear yield stress phenomena by using a new mixed anisotropic auto-adaptive finite element method. The Poiseuille flow of a Bingham fluid with slip yield boundary condition at the wall is considered. Despite its practical interest, for instance for pipeline flows of yield stress fluids such as concrete and cements, this problem was not yet addressed to your knowledge. The case of a pipe with a square section has been investigated into details. The computations cover the full range of the two main dimensionless numbers and exhibit complex flow patterns: all the different flow regimes are completely identified
International audienceThe archetypal feature of a viscoplastic fluid is its yield stress: If the mat...
We study a set of yield stress fluid flows in channels with geometric non-uniformities, motivated by...
[EN] Developing a numerical and algorithmic tool which correctly identifies unyielded regions in yi...
Colloque avec actes et comité de lecture. Internationale.International audienceThis communication pr...
International audienceThis paper presents the numerical resolution of non-linear yield stress phenom...
International audienceNumerical simulations of viscoplastic fluid flows have provided a better under...
Abstract. The numerical modeling of the fully developed Poiseuille flow of a Newtonian fluid in a sq...
The numerical modeling of the fully developed Poiseuille flow of a Newtonian fluid in a square secti...
This thesis is devoted to the flow of yield stress (or viscoplastic) fluids in pipes.Analytical and ...
Ette thèse traite d’écoulements de fluides à seuil (ou viscoplastiques) en milieu confiné. Les diffi...
Viscoplastic fluids are a class of non-Newtonian liquids characterised by their yield stress. Unless...
When two purely viscous fluids flow in a parallel multi-layer shear flow down a pipe or other duct, ...
International audienceWe devise a hybrid low-order method for Bingham pipe flows, where the velocity...
Various flows through extrusion dies have been studied for viscoplastic materials exhibiting a yield...
Many industrial processes include numerous complex fluids often presenting a yield stress. Those flu...
International audienceThe archetypal feature of a viscoplastic fluid is its yield stress: If the mat...
We study a set of yield stress fluid flows in channels with geometric non-uniformities, motivated by...
[EN] Developing a numerical and algorithmic tool which correctly identifies unyielded regions in yi...
Colloque avec actes et comité de lecture. Internationale.International audienceThis communication pr...
International audienceThis paper presents the numerical resolution of non-linear yield stress phenom...
International audienceNumerical simulations of viscoplastic fluid flows have provided a better under...
Abstract. The numerical modeling of the fully developed Poiseuille flow of a Newtonian fluid in a sq...
The numerical modeling of the fully developed Poiseuille flow of a Newtonian fluid in a square secti...
This thesis is devoted to the flow of yield stress (or viscoplastic) fluids in pipes.Analytical and ...
Ette thèse traite d’écoulements de fluides à seuil (ou viscoplastiques) en milieu confiné. Les diffi...
Viscoplastic fluids are a class of non-Newtonian liquids characterised by their yield stress. Unless...
When two purely viscous fluids flow in a parallel multi-layer shear flow down a pipe or other duct, ...
International audienceWe devise a hybrid low-order method for Bingham pipe flows, where the velocity...
Various flows through extrusion dies have been studied for viscoplastic materials exhibiting a yield...
Many industrial processes include numerous complex fluids often presenting a yield stress. Those flu...
International audienceThe archetypal feature of a viscoplastic fluid is its yield stress: If the mat...
We study a set of yield stress fluid flows in channels with geometric non-uniformities, motivated by...
[EN] Developing a numerical and algorithmic tool which correctly identifies unyielded regions in yi...