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High-Performance Computing in Wind Energy Part 1

High-performance computing of wind turbine tip-vortex instability Slides Ardeshir Hanifi, Researcher at KTH – Royal Institute Of Technology Blade-resolved and actuator line CFD simulations of the flow through the NREL 5 MW wind turbine Slides Optimising CFD I/O through on-node non-volatile memory Slides Actuator Line Modeling in Large Eddy Simulations Slides LES Simulations of Wind…

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High-Performance Computing in Wind Energy Part 2

Shear, thermal stratification and turbulent entrainment: how do they affect wind turbine wakes Slides Blade-resolved simulations of the NREL offshore 5-MW baseline wind turbine Slides Wall-resolved high-fidelity fluid-structure interaction simulation of wind-turbine blade Slides Accuracy of actuator line model in wind turbine and wind farm simulations Slides Optimising CFD I/O through on-node non-volatile memory Slides…

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Blade Element Momentum Theory

Wind turbine aerodynamics – introduction Wind turbine aerodynamics: part 1 – Basic fluid mechanics Wind turbine aerodynamics: part 2 – Basic aerodynamics Wind turbine aerodynamics: Part 3 – Momentum theory, the Betz limit and wake rotation Wind turbine aerodynamics: Part 4 – The blade element momentum model Anders Goude, Senior Lecturer/Associate Professor at the Department…

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High-Performance Computing in Wind Energy Research

Slides MODELLING & SIMULATION IN THE EXASCALE ERA Fluid Physics High Performance Computing Modeling Challenges of Wind Farms Towards industry LES for wind farm flows using GPU-based lattice Boltzmann solvers ENGINEERING HIGH COMPUTED NEEDS FOR OFFSHORE WIND DEVELOPMENTS