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Computational Fluid Dynamics
FEAC Engineering provides solutions to your Computer-Aided Engineering problems:
A large amount of our engineering infrastructure today is aging would this be aircraft, ground vehicles, ships or buildings. Damage is a consequence of loads being applied to those engineering structures which has to be tolerated from a design point of view.
Maintenance is the action resulting as a consequence and the more a structure ages the more maintenance and specific inspection is required. Condition-based and structural health monitoring (SHM) and management is an emerging engineering discipline that involves state-of-the-art research developments in sensing technologies, signal processing, diagnostics and prognostics, mechanics and computational modeling, data mining, instrumentation and control.
The goal of this multidisciplinary area is the transition from traditional time-based scheduled maintenance schemes to condition-based maintenance (CBM) and complete life-cycle monitoring and management of mechanical, civil, and aerospace structural systems. Such a transition is paramount for reasons associated with reduced maintenance costs throughout the life cycle of the structure, increased safety, and unprecedented performance leading to resilient and self-sustainable structural systems.
What it Includes
- ZHeat Transfer
- ZTurbulent & Laminar Flows
- ZFluid Structure Interaction (FSI)
- ZNoise Prediction
- ZMultiphase Flows
- ZPipe Systems
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