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Andres B.

@andresbenoit

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Aerospace Engineer and Mathematician

$10 USD / hora
Bandera de
France (11:01 a. m.)
Se unió el mayo 25, 2024
$10 USD / hora
Aerothermal Engineer with especialization in CFD and Aerospace applications, I have cultivated a robust expertise in fluid mechanics, particularly in the context of aircraft engines. Over the course of my 7-year academic and professional journey, I have honed my skills in various technical domains, including MATLAB, CAD software, CFD, Python, Fortran, Ansys, etc. My experience includes working with one of the top three global companies in aircraft engines, allowing me to apply theoretical knowledge to practical, industry-leading projects. Now I work as a researcher for Ford motor company on aerothermal and human comfort applications.
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Educación
Ecole nationale supérieure d'Electronique, Informatique et de Radiocommunications de Bordeaux
2022 - 2024
2 años
Mathematics and Mechanics
Bandera de
France
2022 - 2024
2 años
Universidade Federal de Santa Maria
2019 - 2024
5 años
Aerospace Engineering
Bandera de
Brazil
2019 - 2024
5 años
Publicaciones
Evaluation of F10.7, Sunspot Number and Photon Flux Data for Ionosphere TEC Modeling Using ML
MDPI
Considering the growing volumes and varieties of ionosphere data, it is expected that automation of analytical model building using modern technologies could lead to more accurate results. In this work, machine learning techniques are applied to ionospheric modeling and prediction using sun activity data. We propose Total Electron Content (TEC) spectral analysis, using discrete cosine transform (DCT) to evaluate the relation to the solar features F10.7, sunspot number and photon flux data.
DEVELOPMENT OF ROCKET MOTOR TRANSIENT THERMAL ANALYSIS SOFTWARE
Cobem 2021
DEVELOPMENT OF ROCKET MOTOR TRANSIENT THERMAL ANALYSIS SOFTWARE
Influence of Surface Temperature on the Aerodynamic Coefficients of Biomimetic-based Airfoils
CREEM 2022
For a long time engineering hasbeen searching for optimal solutions through nature observation, in a process inspired on biology and called biomimetics. Considering this, the current work is intended to ascertain the influence of a temperature difference between lower andupper surface over the aerodynamics coefficients of a symmetric airfoil NACA 0012, based on a process that can be found on birds.
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