World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
33
Citations
6367
World Ranking
9343
National Ranking
106

Overview

Gunner Chr. Larsen is affiliated with the Technical University of Denmark in Denmark. Their research primarily covers the fields of Engineering and Environmental Science, with a focus on subfields such as Aerospace Engineering, Environmental Engineering, Electrical and Electronic Engineering, Computational Mechanics, and Atmospheric Science.

Their work mainly addresses topics within Wind Energy Research and Development, Wind and Air Flow Studies, Fluid Dynamics and Vibration Analysis, Wind Turbine Control Systems, Icing and De-icing Technologies, Energy Load and Power Forecasting, and Fluid Dynamics and Turbulent Flows.

Frequent co-authors collaborating with Larsen include Wai Hou Lio, Jaime Liew, Jens Nørkær Sørensen, Mads Mølgaard Pedersen, and Tuhfe Göçmen.

The scientist has a number of publications in recognized venues with repeated contributions to the Journal of Physics Conference Series, Energies, Wind Energy, Wind energy science, and Renewable Energy.

Recent papers authored or co-authored by Gunner Chr. Larsen include:

  • A Minimalistic Prediction Model to Determine Energy Production and Costs of Offshore Wind Farms, 2021, Energies
  • Streaming dynamic mode decomposition for short-term forecasting in wind farms, 2021, Wind Energy
  • Comparison of large eddy simulations against measurements from the Lillgrund offshore wind farm, 2022, Wind energy science
  • Yaw induced wake deflection-a full-scale validation study, 2020, Journal of Physics Conference Series
  • Dynamic wake tracking using a cost-effective LiDAR and Kalman filtering: Design, simulation and full-scale validation, 2021, Renewable Energy

Best Publications

  • Wake meandering: a pragmatic approach

    Gunner C. Larsen;Helge Aa. Madsen;Kenneth Thomsen;Torben J. Larsen

  • Comparison of Wake Model Simulations with Offshore Wind Turbine Wake Profiles Measured by Sodar

    R. J. Barthelmie;G. C. Larsen;S. T. Frandsen;L. Folkerts

  • Wind turbine wake models developed at the technical university of Denmark: A review

    Tuhfe Göçmen;Paul Van Der Laan;Pierre Elouan Réthoré;Alfredo Peña Diaz

  • A Review of Methodological Approaches for the Design and Optimization of Wind Farms

    José F. Herbert-Acero;Oliver Probst;Pierre Elouan Réthoré;Gunner Chr Larsen

  • A Simple Wake Calculation Procedure

    Gunner Chr. Larsen

  • Light detection and ranging measurements of wake dynamics part I: one‐dimensional scanning

    Ferhat Bingöl;Jakob Mann;Gunner Chr. Larsen

  • Validation of the dynamic wake meander model for loads and power production in the Egmond aan Zee wind farm

    Torben J. Larsen;Helge Aagaard Madsen;Gunner Chr. Larsen;Kurt Schaldemose Hansen

  • Numerical simulations of wake interaction between two wind turbines at various inflow conditions

    Niels Troldborg;Gunner Chr. Larsen;Helge Aagaard Madsen;Kurt Schaldemose Hansen

  • Dynamic wake meandering modeling

    Gunner Chr. Larsen;Helge Madsen Aagaard;Ferhat Bingöl;Jakob Mann

  • Calibration and Validation of the Dynamic Wake Meandering Model for Implementation in an Aeroelastic Code

    H. Aa. Madsen;G. C. Larsen;T. J. Larsen;N. Troldborg

  • Reliability-based design of wind-turbine rotor blades against failure in ultimate loading

    Knut O. Ronold;Gunner C. Larsen

  • Light detection and ranging measurements of wake dynamics. Part II: two-dimensional scanning

    Unknown

  • TOPFARM: Multi‐fidelity optimization of wind farms

    Pierre-Elouan Réthoré;Peter Fuglsang;Gunner Chr. Larsen;Thomas Buhl

  • Comparison of Wake Models with Data for Offshore Windfarms

    K. Rados;G. Larsen;R. Barthelmie;W. Schlez

  • ENDOW (efficient development of offshore wind farms): modelling wake and boundary layer interactions

    Rebecca Barthelmie;Gunner Larsen;Sara Pryor;Hans Jørgensen

  • An experimental and numerical study of the atmospheric stability impact on wind turbine wakes

    Ewan Machefaux;Gunner Chr. Larsen;Tilman Koblitz;Niels Troldborg

  • Wind fields in wakes

    G C Larsen;J Hoejstrup;H A Madsen

  • Modal analysis of wind turbine blades

    Gunner Chr. Larsen;M.H. Hansen;A. Baumgart;I. Carlén

  • On atmospheric stability in the dynamic wake meandering model

    Rolf-Erik Keck;Rolf-Erik Keck;Martin Tobias de Mare;Martin Tobias de Mare;Matthew J. Churchfield;Sang Lee

  • A simple stationary semi-analytical wake model

    Gunner Chr. Larsen

  • Benchmarking of Wind Turbine Wake Models in Large Offshore Windfarms

    M. Gaumond;Pierre-Elouan Réthoré;Andreas Bechmann;Søren Ott

  • Wind Simulation for Extreme and Fatigue Loads

    Morten Nielsen;Gunner Chr. Larsen;Jakob Mann;Søren Ott

  • Evaluation of the Wind Direction Uncertainty And Its Impact on Wake Modelling at the Horns Rev Offshore Wind Farm

    Pierre-Elouan Réthoré;Mathieu Gaumond;Andreas Bechmann;Kurt Schaldemose Hansen

Frequent Co-Authors

Helge Aagaard Madsen
Helge Aagaard Madsen Technical University of Denmark
Jakob Mann
Jakob Mann Technical University of Denmark
Rebecca Jane Barthelmie
Rebecca Jane Barthelmie Cornell University
Jens Nørkær Sørensen
Jens Nørkær Sørensen Technical University of Denmark
Sara C. Pryor
Sara C. Pryor Cornell University
Poul Ejnar Sørensen
Poul Ejnar Sørensen Technical University of Denmark
Robert Flemming Mikkelsen
Robert Flemming Mikkelsen Technical University of Denmark
Morten Nielsen
Morten Nielsen Technical University of Denmark
Alfredo Peña
Alfredo Peña Technical University of Denmark
Wen Zhong Shen
Wen Zhong Shen Yangzhou University

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