Academic literature on the topic 'Mécanique des fluides – Simulation, Méthodes de'
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Journal articles on the topic "Mécanique des fluides – Simulation, Méthodes de"
Hauguel, A. "Méthodes et outils numériques en mécanique des fluides." La Houille Blanche, no. 3 (March 1986): 193–200. http://dx.doi.org/10.1051/lhb/1986018.
Full text-GRANDEMANGE, C. "Simulation numérique en mécanique des fluides et essais de systèmes aéropropulsifs." Revue de l'Electricité et de l'Electronique -, no. 06 (2001): 31. http://dx.doi.org/10.3845/ree.2001.062.
Full textBoudali Errebai, Farid, Lotfi Derradji, Yassine Maoudj, Mohamed Amara, and Abderrahmane Mokhtari. "Confort thermique d’un local d’habitation: Simulation thermoaéraulique pour différents systèmes de chauffage." Journal of Renewable Energies 15, no. 1 (October 23, 2023). http://dx.doi.org/10.54966/jreen.v15i1.303.
Full textGeorge, William K., Michel Stanislas, Jean Marc Foucaut, Christophe Cuvier, and Jean Philippe Laval. "A critical analysis of turbulence dissipation in near-wall flows, based on stereo particle image velocimetry and direct numerical simulation data." Journal of Fluid Mechanics 950 (October 13, 2022). http://dx.doi.org/10.1017/jfm.2022.699.
Full textMarouf, Abderahmane, Yannick Bmegaptche Tekap, Nikolaos Simiriotis, Jean-Baptiste Tô, Jean-François Rouchon, Yannick Hoarau, and Marianna Braza. "Numerical investigation of frequency-amplitude effects of dynamic morphing for a high-lift configuration at high Reynolds number." International Journal of Numerical Methods for Heat & Fluid Flow ahead-of-print, ahead-of-print (November 29, 2019). http://dx.doi.org/10.1108/hff-07-2019-0559.
Full textFoucher, Fabrice, Sébastien Lonné, Philippe Dubois, Stéphane Leberre, Pierre Calmon, Michael Enright, and Yasin Zaman. "Apports d’une cosimulation “END – Tolérance aux dommages” dans la réduction des risques de rupture." e-journal of nondestructive testing 28, no. 9 (September 2023). http://dx.doi.org/10.58286/28527.
Full textDissertations / Theses on the topic "Mécanique des fluides – Simulation, Méthodes de"
Bonneton, Natalie. "Simulation numérique des jets plans compressibles." Toulouse, INPT, 1993. http://www.theses.fr/1993INPT031H.
Full textLaucoin, Eli. "Développement du parallélisme des méthodes numériques adaptatives pour un code industriel de simulation en mécanique des fluides." Phd thesis, Grenoble 1, 2008. http://www.theses.fr/2008GRE10174.
Full textNumerical resolution of partial differential equations can be made reliable and efficient through the use of adaptive numerical methods. We present here the work we have done for the design, the implementation and the validation of such a method within an industrial software platform with applications in thermal-hydraulics. From the geometric point of view, this method can deal both with mesh refinement and mesh coarsening, while ensuring the quality of the mesh cells. Numerically, we use the mortar elements formalism in order to extend the Finite Volumes-Elements method implemented in the Trio-U platform and to deal with the non-conforming meshes arising from the adaptation procedure. Finally, we present an implementation of this method using concepts from domain decomposition methods for ensuring its efficiency while running in a parallel execution context
Laucoin, Eli. "Développement du parallélisme des méthodes numériques adaptatives pour un code industriel de simulation en mécanique des fluides." Phd thesis, Université Joseph Fourier (Grenoble), 2008. http://tel.archives-ouvertes.fr/tel-00385418.
Full textVial, Christophe. "Apport des méthodes de la mécanique des fluides à l'étude des contacteurs gaz/liquide : expérience et simulation numérique." Vandoeuvre-les-Nancy, INPL, 2000. http://docnum.univ-lorraine.fr/public/INPL_T_2000_VIAL_C.pdf.
Full textThis work is devoted to the experimental study, the modelling and the numerical simulation of the hydrodynamics of a bubble column and an external loop airlift reactor. It includes three parts. First, measuring techniques have been developed to study the local and global hydrodynamic parameters of the bubbly flow. In this section, several treatments of the fluctuating wall pressure signal have been developed to identify the prevailing flow regime; three measuring techniques have been adapted to bubbly flows in order to measure the local velocity of the continuous phase: the "Pavlov" tube, an electrochemical method and Laser Doppler Velocimetry. These techniques have completed the methods already available to study the dynamics of the gas phase: local optical probes and an ultrasound Doppler technique. Then, this set of measuring techniques has been used to characterise the hydrodynamics in both reactors. Regime transitions have been deterrnined. The local and global parameters which have been measured are: the gas hold-up; the velocity, the size and the morphology of the bubbles; the liquid velocity and its local fluctuations. The Reynolds shear stress, which could not be measured, has been estimated using a simple model. The evolution of these parameters has been related to the gas flow rate, the gas distribution and the hydrodynamic regime. The whole experimental data are finally compared to the predicted values obtained using a commercial CFD code. Several models of drag, additional forces and turbulence have been used to obtain the best agreement between calculations and experiments. The ability of this commercial code to predict correctly the flow and its current limits have been highlighted
Kong, Jian Xin. "Contribution à l'analyse numérique des méthodes de couplage particules-grille en mécanique des fluides." Habilitation à diriger des recherches, Grenoble 1, 1993. http://tel.archives-ouvertes.fr/tel-00343556.
Full textGillyboeuf, Jean-Philippe. "Diverses méthodes chimère pour la simulation numérique d'écoulements stationnaires." Toulouse, INPT, 1996. http://www.theses.fr/1996INPT127H.
Full textSingh, Jitendra. "Couplage de la méthode intégrale aux frontières en formulation non-primitive et d'une méthode multipolaire pour la simulation d'écoulement incompressibles." Grenoble INPG, 2009. http://www.theses.fr/2009INPG0148.
Full textThe present work addresses the development of the Soundary Element Method (SEM) to model various types of flow in microfluidics devices. Two tasks were carried out; coupling SEM with multipole methods to decrease computational requirements; and a new direction of employing non-primitive variables (N-PV) in SEM formulations. Axisymmetric flow models were considered since, while allowing the realistic modelling of droplets encountered in our applications, they are less computationally demanding than three-dimensional models. The Multipole Method SEM was developed for axisymmetric potential problems and the computation time was reduced by one third. This method was adapted to the simulation of free surface flow problem of drop impact. A new boundary integral formulation for Stokes flows in axisymmetric and three-dimensional problems is developed in the second part. This formulation constitutes an actual advancement in N-PV SEM based on the Helmholtz decomposition and was validated on standard axisymmetric problems
Capatina, Daniela. "Analyse de méthodes mixtes d'éléments finis en mécanique." Habilitation à diriger des recherches, Université de Pau et des Pays de l'Adour, 2011. http://tel.archives-ouvertes.fr/tel-00647026.
Full textPaliard, Chloé. "Dimension reduction for fluid simulation and animation." Electronic Thesis or Diss., Institut polytechnique de Paris, 2024. http://www.theses.fr/2024IPPAT023.
Full textDespite tremendous improvements in graphics hardware performance aswell as key algorithmic advancements since the beginning of the years 2000, some natural phenomena remain extremely costly to simulate. For instance, several tracks have been proposed to improve the performance of fluid simulations, that are animated by solving partial differential equations (PDE), more specifically the highlynon-linear Navier-Stokes equations. In this thesis, we first explore the use of deep learning to create a reduced space in which a solver can operate with lower costs, while still out putting high-quality solutions. We propose a model that enables the simulation of turbulent flows at a resolution four times higher than that of the given input in each dimension, with improved runtime performance compared to a high-resolution solver. Secondly, we use the contributions on intrinsic operators for simulating fluids on 3D surfaces with reduced costs. We focus on the smoothed-particle hydrodynamics (SPH) model that we adapt to 3D surfaces, by gathering the particles' neighborhoods thanks to shortest-path geodesics, and by displacing such particles in an intrinsic manner on the surface. All of this is straightforward to implement on the GPU, enablingthe simulation of tens of thousands of particles on various triangle meshes at interactive speed
Alauzet, Frédéric. "Adaptation de maillage anisotrope en trois dimensions : applications aux simulations instationnaires en mécanique des fluides." Montpellier 2, 2003. http://www.theses.fr/2003MON20065.
Full textBooks on the topic "Mécanique des fluides – Simulation, Méthodes de"
Padet, Jacques P. Fluides en écoulement: Méthodes et modèles. Paris: Masson, 1990.
Find full textPironneau, Olivier. Méthodes des éléments finis pour les fluides. Paris: Masson, 1988.
Find full textK, Banerjee P., and Butterfield R, eds. Advanced geotechnical analyses. London: Elsevier, 1991.
Find full textNATO Advanced Research Workshop on Real-Time Integration Methods for Mechanical System Simulation (1989 Snowbird, Utah). Real-time integration methods for mechanical system simulation. Berlin: Springer-Verlag, 1991.
Find full textJiang, Xi. Numerical techniques for direct and large-eddy simulations. Boca Raton: Taylor & Francis, 2009.
Find full textLargeeddy Simulation In Hydraulics. Taylor & Francis Ltd, 2013.
Find full textRodi, Wolfgang. Large-Eddy Simulation in Hydraulics. Taylor & Francis Group, 2013.
Find full textRodi, Wolfgang, George Constantinescu, and Thorsten Stoesser. Large-Eddy Simulation in Hydraulics. Taylor & Francis Group, 2013.
Find full textRodi, Wolfgang, George Constantinescu, and Thorsten Stoesser. Large-Eddy Simulation in Hydraulics. Taylor & Francis Group, 2020.
Find full textRodi, Wolfgang, George Constantinescu, and Thorsten Stoesser. Large-Eddy Simulation in Hydraulics. Taylor & Francis Group, 2013.
Find full textBook chapters on the topic "Mécanique des fluides – Simulation, Méthodes de"
BOURINET, Jean-Marc. "Estimation de probabilité d’événements rares." In Ingénierie mécanique en contexte incertain, 153–222. ISTE Group, 2021. http://dx.doi.org/10.51926/iste.9010.ch5.
Full textConference papers on the topic "Mécanique des fluides – Simulation, Méthodes de"
Pineda, Saira F., Arjan M. Kamp, D. Legendre, and Armando J. Blanco. "Axisymmetric Low-Reynolds Motion of Drops Through Circular Microchannels." In ASME 2012 10th International Conference on Nanochannels, Microchannels, and Minichannels collocated with the ASME 2012 Heat Transfer Summer Conference and the ASME 2012 Fluids Engineering Division Summer Meeting. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/icnmm2012-73198.
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