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Dive into the research topics where Nicolas Mérigoux is active.

Publication


Featured researches published by Nicolas Mérigoux.


Science and Technology of Nuclear Installations | 2017

Dispersed Two-Phase Flow Modelling for Nuclear Safety in the NEPTUNE_CFD Code

S. Mimouni; William Benguigui; Solène Fleau; Arnaud Foissac; Mathieu Guingo; Mickael Hassanaly; Jérôme Laviéville; J. Malet; Namane Mechitoua; Nicolas Mérigoux; Stéphane Vincent

The objective of this paper is to give an overview of the capabilities of Eulerian bifluid approach to meet the needs of studies for nuclear safety regarding hydrogen risk, boiling crisis, and pipes and valves maintenance. The Eulerian bifluid approach has been implemented in a CFD code named NEPTUNE_CFD. NEPTUNE_CFD is a three-dimensional multifluid code developed especially for nuclear reactor applications by EDF, CEA, AREVA, and IRSN. The first set of models is dedicated to wall vapor condensation and spray modelling. Moreover, boiling crisis remains a major limiting phenomenon for the analysis of operation and safety of both nuclear reactors and conventional thermal power systems. The paper aims at presenting the generalization of the previous DNB model and its validation against 1500 validation cases. The modelling and the numerical simulation of cavitation phenomena are of relevant interest in many industrial applications, especially regarding pipes and valves maintenance where cavitating flows are responsible for harmful acoustics effects. In the last section, models are validated against experimental data of pressure profiles and void fraction visualisations obtained downstream of an orifice with the EPOCA facility (EDF R&D). Finally, a multifield approach is presented as an efficient tool to run all models together.


Nuclear Engineering and Design | 2016

Computational multi-fluid dynamics predictions of critical heat flux in boiling flow

S. Mimouni; Cyril Baudry; Mathieu Guingo; Jérôme Laviéville; Nicolas Mérigoux; Namane Mechitoua


Computational Thermal Sciences: An International Journal | 2015

VALIDATION OF A MULTIFIELD APPROACH FOR THE SIMULATIONS OF TWO-PHASE FLOWS

Solène Fleau; S. Mimouni; Nicolas Mérigoux; Stephane Vincent


Nuclear Engineering and Design | 2017

A Generalized turbulent dispersion model for bubbly flow numerical simulation in NEPTUNE_CFD

Jérôme Laviéville; Nicolas Mérigoux; Mathieu Guingo; Cyril Baudry; S. Mimouni


Chemical Engineering Science | 2016

An analytical relation for the void fraction distribution in a fully developed bubbly flow in a vertical pipe

O. Marfaing; Mathieu Guingo; Jérôme Laviéville; G. Bois; Namane Mechitoua; Nicolas Mérigoux; S. Mimouni


Nuclear Engineering and Design | 2017

Verification, validation and application of NEPTUNE_CFD to two-phase Pressurized Thermal Shocks

Nicolas Mérigoux; Jérôme Laviéville; S. Mimouni; Mathieu Guingo; Cyril Baudry; S. Bellet


Nuclear Engineering and Design | 2016

Reynolds stress turbulence model applied to two-phase pressurized thermal shocks in nuclear power plant

Nicolas Mérigoux; Jérôme Laviéville; S. Mimouni; Mathieu Guingo; Cyril Baudry


Proceedings of CHT-15. 6<sup>th</sup> International Symposium on ADVANCES IN COMPUTATIONAL HEAT TRANSFER, May 25-29, 2015, Rutgers University, New Brunswick, NJ, USA | 2015

SIMULATIONS OF TWO-PHASE FLOWS WITH A MULTIFIELD APPROACH

Solène Fleau; S. Mimouni; Nicolas Mérigoux; Stephane Vincent


Nuclear Engineering and Design | 2016

Two-phase CFD validation: TOPFLOW-PTS steady-state steam-water tests 3–16, 3–17, 3–18 and 3–19

P. Coste; Nicolas Mérigoux


Nuclear Engineering and Design | 2017

Combined evaluation of bubble dynamics, polydispersion model and turbulence modeling for adiabatic two-phase flow

S. Mimouni; Mathieu Guingo; Jérôme Laviéville; Nicolas Mérigoux

Collaboration


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S. Mimouni

Électricité de France

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Jérôme Laviéville

Commissariat à l'énergie atomique et aux énergies alternatives

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Cyril Baudry

Électricité de France

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Arnaud Foissac

Institut de radioprotection et de sûreté nucléaire

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C. Raynaud

Électricité de France

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G. Bois

Université Paris-Saclay

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