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Manuel Bernard

Researcher at French Institute of Petroleum

Publications -  9
Citations -  89

Manuel Bernard is an academic researcher from French Institute of Petroleum. The author has contributed to research in topics: Mach number & Fluidized bed. The author has an hindex of 4, co-authored 8 publications receiving 76 citations. Previous affiliations of Manuel Bernard include French Institute for Research in Computer Science and Automation.

Papers
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Micro/meso simulation of a fluidized bed in a homogeneous bubbling regime

TL;DR: Wachs et al. as mentioned in this paper compare particle resolved simulation (PRS) with locally averaged Euler/Lagrange simulation, and show an acceptable agreement between the micro- and meso-scale predictions on integral measures as pressure drop and bed height.
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Study of a low Mach nuclear core model for two-phase flows with phase transition I: stiffened gas law

TL;DR: In this paper, the authors used a monodimensional low Mach number model coupled to the stiffened gas law to model the flow of the coolant (water) in a nuclear reactor core.
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Controlling the Quality of Two-Way Euler/Lagrange Numerical Modeling of Bubbling and Spouted Fluidized Beds Dynamics

TL;DR: In this article, the authors numerically simulate three-dimensional fluidized beds of monodisperse spheres using a two-way Euler/Lagrange method, and validate the model against theoretical results for a bubbling fluidized bed and against experimental data for a single-and multi-nozzle spouted bed.
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Study of a low Mach nuclear core model for single-phase flows

TL;DR: In this paper, a monophasic low Mach number model coupled to the stiffened gas law for a single-phase flow is presented for the 1D case, and a normal mode perturbation analysis is carried out in order to approximate 2D solutions around 1D steady solutions.
Dissertation

Approche multi-échelle pour les écoulements fluide-particules

TL;DR: In this paper, the Euler-Lagrange model is used for simulation and validation of fluide-particules in the context of longueur and solide-solide configurations.