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Nuclear Project & Industrial Engineering
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Modelling complex industrial systems
Size, design, secure and optimize complex installations while assessing equipment performance.
1
Challenges
Analyse complex phenomena
using appropriate tools, considering physical domains and their coupling (chemical, thermal, fluidic, two-phase, etc.)
Develop and design new processes
or
adapt
existing processes
(core processes), requiring various studies to:
Analyze
physical phenomena
Analyze
equipment operation
Optimize
systems or component topology
Extrapolate
(scale-up or over time)
Interpret degraded
operations conditions
Test and rank
design concepts
Simulate
new operating conditions for the installation
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Our Solution
Benefit from our multidisciplinary expertise
to develop digital
models tailored
to your needs
Combine the physical phenomena
to be modelled within the
same software
and take advantage of
3D software
to analyze local phenomena in greater detail
Access support from our multidisciplinary teams
to simulate complex physico-chemical phenomena in steady-state or transient regimes
Experts and computing power
Serving your needs
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Key Features
Team specialized
in physical modeling
Support
in the
design, sizing, optimization, diagnosis
and performance
verification
of process equipment, buildings, etc.
Technical support
for studies/demonstrations (safety, nuclear security, etc.)
Technical assistance
on complex Multiphysics topics, coupled with computing power available to experienced engineers
Proficiency
with the
ASPEN suite
and
3D software
(FLUENT, ANSYS Thermal, COMSOL, FDS)
Significant computing power
(more than 500 processors for CFD calculations and a dedicated AI server)
Modeling solutions
implemented for our customers in
France and worldwide
(Orano, Naval Group, CEA, Andra, Framatome, Sellafield, ENRESA, JNFL, etc.)
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Useful Links
Mechanics french congress, 2017
Orano Projects