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CP

Camille Perrot

6
Documents

Présentation

My current research activities belong to the fields of multi-scale physics, computational mechanics, structure-property-fabrication relationships of materials, multifunctional materials, and micro(poro)mechanics of porous media. The research is based on fluid flow and transports phenomena within a large range of times and lengths scales. Works oriented towards multi-scale and multi-physics modeling, applicable to various aspects of engineering sciences. Emphasis of my research activities is on studying at the local scale (meso-, micro-, or submicroscopic depending on the case) a material or a system, the goal being to understand and predict its macroscopic behavior, where are situated applications in terms of engineering \[thermal, applied fluid dynamics, poroelasticity, acoustics, biomechanics, micro- and nano- (electro) mechanical systems\].
My current research activities belong to the fields of multi-scale physics, computational mechanics, structure-property-fabrication relationships of materials, multifunctional materials, and micro(poro)mechanics of porous media. The research is based on fluid flow and transports phenomena within a large range of times and lengths scales. Works oriented towards multi-scale and multi-physics modeling, applicable to various aspects of engineering sciences. Emphasis of my research activities is on studying at the local scale (meso-, micro-, or submicroscopic depending on the case) a material or a system, the goal being to understand and predict its macroscopic behavior, where are situated applications in terms of engineering \[thermal, applied fluid dynamics, poroelasticity, acoustics, biomechanics, micro- and nano- (electro) mechanical systems\].

Publications

1026551

Learning acoustic responses from experiments: A multiscale-informed transfer learning approach

Van Hai Trinh , Camille Perrot , Johann Guilleminot , Viet Dung Vu
International Conference on Noise and Vibration Engineering (ISMA 2022), Sep 2022, Leuven (Belgique), Belgium
Communication dans un congrès hal-04129570v1

Predicting permeability via statistical descriptors of morphology on polydisperse foams including membranes

Cong Truc Nguyen , Vincent Langlois , Johann Guilleminot , Fabrice Detrez , Arnaud Duval
The 11th edition of the Automotive NVH Comfort congress, Oct 2021, Le Mans (Sarthe), France
Communication dans un congrès hal-04129591v1
Image document

Étude numérique multi-échelle des relations structure-propriétés acoustiques d'une mousse à distribution étendue de tailles de pores

Cong Truc T Nguyen , Camille Perrot , Fabrice Detrez , Johann Guilleminot
24ème Congrès Français de Mécanique (CFM 2019), 2019, Brest, France
Communication dans un congrès hal-02863588v1