Frederik Zahle

About Frederik Zahle

Frederik Zahle, With an exceptional h-index of 34 and a recent h-index of 26 (since 2020), a distinguished researcher at Danmarks Tekniske Universitet, specializes in the field of wind energy, rotor design, adaptable trailing edge flaps, multi-element airfoils, CFD.

His recent articles reflect a diverse array of research interests and contributions to the field:

Definition of the IEA Wind 22-Megawatt Offshore Reference Wind Turbine

Influence of the installation of a trailing edge flap on the vortex induced vibrations of a wind turbine blade

System Modeling Frameworks for Wind Turbines and Plants: Review and Requirements Specifications

Comparison of aerodynamic planform optimization of non-planar rotors using blade element momentum method and a vortex cylinder model

Vibrations of wind turbine blades in standstill: Mapping the influence of the inflow angles

Post-Optimum Sensitivity Analysis with Automatically Tuned Numerical Gradients Applied to Swept Wind Turbine Blades

Immersed boundary method for the incompressible Reynolds Averaged Navier–Stokes equations

Convergence enhancement of SIMPLE-like steady-state RANS solvers applied to airfoil and cylinder flows

Frederik Zahle Information

University

Position

Department of Wind Energy

Citations(all)

4462

Citations(since 2020)

2869

Cited By

2537

hIndex(all)

34

hIndex(since 2020)

26

i10Index(all)

69

i10Index(since 2020)

56

Email

University Profile Page

Google Scholar

Frederik Zahle Skills & Research Interests

wind energy

rotor design

adaptable trailing edge flaps

multi-element airfoils

CFD

Top articles of Frederik Zahle

Definition of the IEA Wind 22-Megawatt Offshore Reference Wind Turbine

2024

Influence of the installation of a trailing edge flap on the vortex induced vibrations of a wind turbine blade

Journal of Wind Engineering and Industrial Aerodynamics

2022/10/1

System Modeling Frameworks for Wind Turbines and Plants: Review and Requirements Specifications

2022/5/11

Frederik Zahle
Frederik Zahle

H-Index: 22

Comparison of aerodynamic planform optimization of non-planar rotors using blade element momentum method and a vortex cylinder model

Journal of Physics: Conference Series

2022/5/1

Ang Li
Ang Li

H-Index: 8

Frederik Zahle
Frederik Zahle

H-Index: 22

Vibrations of wind turbine blades in standstill: Mapping the influence of the inflow angles

Physics of Fluids

2022/5/1

Post-Optimum Sensitivity Analysis with Automatically Tuned Numerical Gradients Applied to Swept Wind Turbine Blades

Energies

2022/4/20

Frederik Zahle
Frederik Zahle

H-Index: 22

Taeseong Kim
Taeseong Kim

H-Index: 15

Immersed boundary method for the incompressible Reynolds Averaged Navier–Stokes equations

Computers & Fluids

2022/4/15

Frederik Zahle
Frederik Zahle

H-Index: 22

Convergence enhancement of SIMPLE-like steady-state RANS solvers applied to airfoil and cylinder flows

Journal of Wind Engineering and Industrial Aerodynamics

2022/1/1

Antariksh Dicholkar
Antariksh Dicholkar

H-Index: 1

Frederik Zahle
Frederik Zahle

H-Index: 22

A simplified model for transition prediction applicable to wind-turbine rotors

Wind Energy Science

2021

Frederik Zahle
Frederik Zahle

H-Index: 22

Ardeshir Hanifi
Ardeshir Hanifi

H-Index: 18

Wind turbines in atmospheric flow: fluid-structure interaction simulations with hybrid turbulence modeling

Wind Energy Science

2021

IEA Wind Energy Task 37-System Engineering-Aerodynamic Optimization Case Study

2021

CFD-based curved tip shape design for wind turbine blades

Wind Energy Science Discussions

2021/11/1

Pushing the physics of the large turbines of the future

2021

Wind turbines in atmospheric flow–FSI simulations with hybrid LES-IDDES turbulence modelling

Wind Energy Science

2020/12/9

Comparison of loads from HAWC2 and OpenFAST for the IEA Wind 15 MW Reference Wind Turbine

Journal of Physics: Conference Series

2020/9/1

Frederik Zahle
Frederik Zahle

H-Index: 22

Witold Skrzypiński
Witold Skrzypiński

H-Index: 9

Validation of blade-resolved computational fluid dynamics for a MW-scale turbine rotor in atmospheric flow

Journal of Physics: Conference Series

2020/9/1

Initial performance and load analysis of the LowWind turbine in comparison with a conventional turbine

Journal of Physics: Conference Series

2020/9/1

Blade research and demonstration platform

Journal of Physics: Conference Series

2020/9/1

Frederik Zahle
Frederik Zahle

H-Index: 22

Vortex induced vibrations of wind turbine blades: Influence of the tip geometry

Physics of Fluids

2020/6/1

Re-design of an upwind rotor for a downwind configuration: design changes and cost evaluation

Conceptual Research of a Multi Megawatt Downwind Turbine

2019/12

See List of Professors in Frederik Zahle University(Danmarks Tekniske Universitet)