The increased use of intermittent forms of renewable energy like wind and solar energy produces fluctuations in the electric grid that have to be compensated. For this reason, hydraulic machines like turbines and pumps are more often operated under non-conventional operating conditions and are submitted to frequent starts and stops. This type of operating conditions has important consequences on the life cycle of the machines. It is thus of paramount importance that transient flows at off-design conditions are properly taken into account in the design phase and numerical simulation is an appropriate way to do so. The present study aims at developing a flexible coupling method of the meshbased Finite Volume Method (FVM) and the meshless Smoo...
Smoothed particle hydrodynamics (SPH) is a meshless, Lagrangian CFD method. SPH often utilizes stati...
Conversion of mechanical energy into pressure inside a fluid -or inversely-, is necessary in numerou...
Le passage des navires dans une voie navigable produit des ondes de batillage qui modifient le régime...
L'utilisation croissante des sources d'énergie renouvelable avec une grande volatilité de production...
Free-surface flows have various natures in the environmental and industrial contexts. It may be a ge...
Computational fluid mechanics experienced in the last decades a fast development with the creation a...
Ce travail traite des méthodes de calcul numérique pour les simulations hydrodynamiques appliquées p...
Smoothed Particle Hydrodynamics (SPH) is a Lagrangian and meshless numerical method, used in many br...
L'approche Smoothed Particle Hydrodynamics (SPH) est une méthode de calcul pour simuler des écouleme...
The passage of ships in waterways generate shipwaves which modify the flow regime of the canal. They...
In this work a numerical model for fluid flow simulation was developed, based on the Smoothed Partic...
Smoothed Particle Hydrodynamics (SPH) is a fully Lagrangian, particle based approach for fluid-flow ...
The SPH method (smoothed particle hydrodynamics) is a numerical meshless, particle and Lagrangian m...
Flows over hydraulic works – a nappe falling over a spillway, a wave breaking on a dike, etc. – unde...
Smoothed particle hydrodynamics (SPH) is a meshless, Lagrangian CFD method. SPH often utilizes stati...
Conversion of mechanical energy into pressure inside a fluid -or inversely-, is necessary in numerou...
Le passage des navires dans une voie navigable produit des ondes de batillage qui modifient le régime...
L'utilisation croissante des sources d'énergie renouvelable avec une grande volatilité de production...
Free-surface flows have various natures in the environmental and industrial contexts. It may be a ge...
Computational fluid mechanics experienced in the last decades a fast development with the creation a...
Ce travail traite des méthodes de calcul numérique pour les simulations hydrodynamiques appliquées p...
Smoothed Particle Hydrodynamics (SPH) is a Lagrangian and meshless numerical method, used in many br...
L'approche Smoothed Particle Hydrodynamics (SPH) est une méthode de calcul pour simuler des écouleme...
The passage of ships in waterways generate shipwaves which modify the flow regime of the canal. They...
In this work a numerical model for fluid flow simulation was developed, based on the Smoothed Partic...
Smoothed Particle Hydrodynamics (SPH) is a fully Lagrangian, particle based approach for fluid-flow ...
The SPH method (smoothed particle hydrodynamics) is a numerical meshless, particle and Lagrangian m...
Flows over hydraulic works – a nappe falling over a spillway, a wave breaking on a dike, etc. – unde...
Smoothed particle hydrodynamics (SPH) is a meshless, Lagrangian CFD method. SPH often utilizes stati...
Conversion of mechanical energy into pressure inside a fluid -or inversely-, is necessary in numerou...
Le passage des navires dans une voie navigable produit des ondes de batillage qui modifient le régime...