Renewables

At blueOASIS, we specialize in providing advanced numerical simulation, AI, and digital twinning solutions to optimize the design and operational performance of renewable energy systems.

Our team has extensive experience using CFD and FEA analysis, mooring analysis, and optimization algorithms to design and optimize floating offshore wind turbines, floating solar farms, tidal turbines, and wave energy converters.

We also offer numerical modeling and simulation services using digital twin technology to predict the behavior of renewable energy systems and improve their efficiency. Let us help you take your renewable energy projects to the next level with our cutting-edge simulation and optimization capabilities.

Floating Offshore Wind Turbines (FOWT):

  • Design and optimization of floating structures and mooring systems.
  • Analysis of wind and wave loads on floating platforms.
  • Dynamic response analysis of FOWT in operational and extreme conditions.
  • Turbine modelling and performance analysis.
  • Fluid Structure Interaction (FSI) analysis.
  • Environmental impact assessment and mitigation.

Floating Solar:

  • Design and optimization of floating structures and mooring systems.
  • Assessment of solar panel performance in water-based environments.
  • Calculation of aerodynamic loads.
  • Analysis of environmental factors affecting solar panel operation.

Tidal Energy:

  • Design and optimization of tidal energy systems, including turbines and support structures.
  • Assessment of tidal resource potential and site selection.
  • Modelling of hydrodynamic forces and power output.
  • Analysis of environmental impacts and mitigation strategies.
  • Fish collision assessment.
  • Acoustic source characterization and propagation.

Wave Energy:

  • Design and optimization of wave energy systems, including converters and support structures.
  • Assessment of wave resource potential and site selection.
  • Modelling of hydrodynamic forces and power output. Low, medium, and high-fidelity (CFD) approaches.
  • Analysis of environmental impacts and mitigation strategies.