Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
computing environments. Experience with numerical modelling techniques, such as finite difference, finite element, or spectral element methods. Interest in inverse problem formulation and solving and/or
-
. Proficiency in programming languages like Python and MATLAB is essential. Practical experience in data science, predictive analytics, finite-element modelling, structural analysis, and/or offshore structures is
-
Ecole Nationale des Ponts et Chaussées (ENPC) | Champs sur Marne, le de France | France | 3 months ago
/show/id_offre/135518 Requirements Specific Requirements Needed skills and knowledge: Numerical modelling (experience in Finite Element Methods and/or AI-based modelling) Collaborative work in a large and
-
materials. The primary focus of this work is on mechanical characterization, microstructural analysis, and finite element analysis (FEA) and artificial intelligence (AI)/machine learning (ML) modeling
-
model introduced previously for carburizing will be further developed in this study. In this model, carbon diffusion is predicted using Fick's law and finite difference scheme. A source term accounts for
-
or replace established methods from computational engineering and computer simulation (such as the finite element method and constitutive materials models) to represent and exploit relationships along
-
to the development of next-generation AI-enhanced finite element methods for robust structural design. You will be part of a dynamic and internationally oriented research group with strong expertise in solid mechanics
-
the physical principles of structural dynamics and (vibro-)acoustics and the related numerical modeling techniques, such as the Finite Element Method (FEM), as well as numerical optimization, manufacturing
-
should be composed of the following main tasks: - Bibliography Review: Revision of the state-of-the-art in the topics of aircraft design, computational structural mechanics (CSM), finite-element methods
-
, structural optimization, coupled problems, and experimental mechanics, with applications to metals, polymers, fibrous materials, and granular materials. Numerical methods, such as the finite element method