Simon Clement

CTO at PYTHEAS Technology Inc at PYTHEAS Technology

Simon Clement's work experience includes a range of positions in the field of research and development. From 2011 to 2014, they worked as a PHD Scholar at CEA. Then, from 2015 to 2017, they served as a Postdoctoral Research Fellow at The George Washington University - School of Engineering & Applied Science, where they focused on experimental studies of buoyancy-driven flows. In 2018, Simon joined PYTHEAS Technology, initially working as an R&D Engineer. Simon then progressed to being the Head of the R&D Lab, responsible for designing and conducting experiments and analyzing results. Currently, Simon serves as the CTO at PYTHEAS Technology Inc, where they are involved in the design of innovative piezoelectric devices, management of R&D projects, scientific watch, and business development in various fields, including renewable energies, structural monitoring, and ultrasound probes.

Simon Clement completed their education in a chronological manner. Simon began their academic journey in 2008 by enrolling at Grenoble INP - Ense3, where they pursued a Master's degree in Nuclear Engineering. Simon successfully completed this program in 2011. Concurrently, from 2008 to 2011, Simon also pursued a Master en ingénierie in Energie from the same institution.

Following this, Simon joined Aix-Marseille University in 2011 to pursue a Doctor of Philosophy (PhD) degree in Fluid and Solid Mechanics. Simon completed this program in 2014.

Based on the provided information, Simon Clement has earned a Master's degree in Nuclear Engineering from Grenoble INP - Ense3, a Master en ingénierie in Energie from the same institution, and a Doctor of Philosophy (PhD) in Fluid and Solid Mechanics from Aix-Marseille University.

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New Paltz, United States

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PYTHEAS Technology

PYTHEAS Technology is developing an innovative and patented Power Take Off (PTO) dedicated to renewable energy. The PYTHEAS Technology solution has the following characteristics: - Constant performance at low speed and partial load, increasing the annual electricity production on a given site, for a same prime mover - An electrical torquenot depending on rotational speed, reducing the stress on the mechanical structures - An electronically controllable electrical torque with millisecond precision, optimizing the dynamic behavior of the prime mover without costly and fragile mechanical control - PYTHEAS Technology's PTO is a synchronous generator producing DC. Therefore, it requires only one power conversion stage for the production of grid code compliant electric power


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Headquarters

Meyreuil, France

Employees

11-50

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