Search Results - "Branlard, E"
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Impact of a wind turbine on turbulence: Un-freezing turbulence by means of a simple vortex particle approach
Published in Journal of wind engineering and industrial aerodynamics (01-04-2016)“…A vortex particle representation of turbulent fields is devised in order to address the following questions: Does a wind turbine affect the statistics of the…”
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2
Retrieving wind statistics from average spectrum of continuous-wave lidar
Published in Atmospheric measurement techniques (15-07-2013)“…The aim of this study is to experimentally demonstrate that the time-average Doppler spectrum of a continuous-wave (cw) lidar is proportional to the…”
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A symbolic framework to obtain mid-fidelity models of flexible multibody systems with application to horizontal-axis wind turbines
Published in Wind Energy Science (01-12-2022)“…The article presents a symbolic framework (also called computer algebra program) that is used to obtain, in symbolic mathematical form, the linear and…”
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A digital twin solution for floating offshore wind turbines validated using a full-scale prototype
Published in Wind Energy Science (08-01-2024)“…In this work, we implement, verify, and validate a physics-based digital twin solution applied to a floating offshore wind turbine. The digital twin is…”
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5
A simple vortex model applied to an idealized rotor in sheared inflow
Published in Wind Energy Science (06-04-2023)“…A simple analytical vortex model is presented and used to study an idealized wind turbine rotor in uniform and sheared inflow, respectively. Our model predicts…”
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Augmented Kalman filter with a reduced mechanical model to estimate tower loads on a land-based wind turbine: a step towards digital-twin simulations
Published in Wind Energy Science (04-09-2020)“…This article presents an application of the Kalman filtering technique to estimate loads on a wind turbine. The approach combines a mechanical model and a set…”
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A multipurpose lifting-line flow solver for arbitrary wind energy concepts
Published in Wind Energy Science (08-03-2022)“…In this work, we extend the AeroDyn module of OpenFAST to support arbitrary collections of wings, rotors, and towers. The new standalone AeroDyn driver…”
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Comparison of free vortex wake and blade element momentum results against large-eddy simulation results for highly flexible turbines under challenging inflow conditions
Published in Wind Energy Science (24-03-2023)“…Throughout wind energy development, there has been a push to increase wind turbine size due to the substantial economic benefits. However, increasing turbine…”
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One-to-one aeroservoelastic validation of operational loads and performance of a 2.8 MW wind turbine model in OpenFAST
Published in Wind Energy Science (23-08-2024)“…This article presents a validation study of the popular aeroservoelastic code suite OpenFAST leveraging weeks of measurements obtained during normal operation…”
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OC6 project Phase III: validation of the aerodynamic loading on a wind turbine rotor undergoing large motion caused by a floating support structure
Published in Wind Energy Science (06-04-2023)“…This paper provides a summary of the work done within Phase III of the Offshore Code Comparison Collaboration, Continued, with Correlation and unCertainty…”
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On the characteristics of the wake of a wind turbine undergoing large motions caused by a floating structure: an insight based on experiments and multi-fidelity simulations from the OC6 project Phase III
Published in Wind Energy Science (10-11-2023)“…This study reports the results of the second round of analyses of the Offshore Code Comparison, Collaboration, Continued, with Correlation and unCertainty…”
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Progress in the validation of rotor aerodynamic codes using field data
Published in Wind Energy Science (20-02-2023)“…Within the framework of the fourth phase of the International Energy Agency (IEA) Wind Task 29, a large comparison exercise between measurements and…”
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Influence of wind turbine design parameters on linearized physics-based models in OpenFAST
Published in Wind Energy Science (11-03-2022)“…While most physics involved in wind energy are nonlinear, linearization of the underlying nonlinear wind system equations is often important for understanding…”
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