Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Naji, M.
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Technical University of Denmark

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (26/26 displayed)

  • 2025Acoustic emission data analytics on delamination growth in a wind turbine blade under full-scale cyclic testing4citations
  • 2024Monitoring Damage Progression in Wind Turbine Blade Under Fatigue Testing Using Acceleration Measurementscitations
  • 2024Monitoring Damage Progression in Wind Turbine Blade Under Fatigue Testing Using Acceleration Measurementscitations
  • 2021Optimized method for multi-axial fatigue testing of wind turbine blades16citations
  • 2021Fatigue testing of a 14.3 m composite blade embedded with artificial defects – damage growth and structural health monitoring50citations
  • 2019Understanding progressive failure mechanisms of a wind turbine blade trailing edge section through subcomponent tests and nonlinear FE analysis46citations
  • 2018Assessment and propagation of mechanical property uncertainties in fatigue life prediction of composite laminates7citations
  • 2018Buckling and progressive failure of trailing edge subcomponent of wind turbine bladecitations
  • 2016Methodology for testing subcomponents; background and motivation for subcomponent testing of wind turbine rotor bladescitations
  • 2015New morphing blade section designs and structural solutions for smart bladescitations
  • 2015Effect of Trailing Edge Damage on Full-Scale Wind Turbine Blade Failurecitations
  • 2015Comparing Fatigue Life Estimations of Composite Wind Turbine Blades using different Fatigue Analysis Toolscitations
  • 2014Advanced topics on rotor blade full-scale structural fatigue testing and requirementscitations
  • 2014An high order Mixed Interpolation Tensorial Components (MITC) shell element approach for modeling the buckling behavior of delaminated composites16citations
  • 2014Strain and displacement controls by fibre bragg grating and digital image correlation9citations
  • 2014Uncertainty Quantification in Experimental Structural Dynamics Identification of Composite Material Structurescitations
  • 2013Calibration of a finite element composite delamination model by experimentscitations
  • 2012Experimental Determination and Numerical Modelling of Process Induced Strains and Residual Stresses in Thick Glass/Epoxy Laminatecitations
  • 2012Experimental Determination and Numerical Modelling of Process Induced Strains and Residual Stresses in Thick Glass/Epoxy Laminatecitations
  • 2011Finite elements modeling of delaminations in composite laminatescitations
  • 2011Compressive strength of thick composite panelscitations
  • 2010Full Scale Test of SSP 34m blade, edgewise loading LTT:Data Report 1citations
  • 2008Full Scale Test of a SSP 34m boxgirder 2:Data reportcitations
  • 2008Buckling Strength of Thick Composite Panels in Wind Turbine Bladescitations
  • 2008Buckling Strength of Thick Composite Panels in Wind Turbine Bladescitations
  • 2008Full Scale Test of a SSP 34m boxgirder 2citations

Places of action

Chart of shared publication
Chen, Xiao
4 / 13 shared
Mcgugan, Malcolm
5 / 21 shared
Mielke, Adam
1 / 1 shared
Benzon, Hans-Henrik
1 / 1 shared
Skovborg Ritschel, Tobias Kasper
1 / 1 shared
Luczak, Marcin
3 / 3 shared
Coppotelli, Giuliano
2 / 2 shared
Cornelis, Bram
2 / 2 shared
Di Lorenzo, Emilio
1 / 1 shared
Tavares, André
2 / 2 shared
Gryllias, Konstantinos
2 / 2 shared
Rossi, Pamela
2 / 2 shared
Lorenzo, Emilio Di
1 / 1 shared
Belloni, Federico
3 / 6 shared
Berring, Peter
14 / 14 shared
Yeniceli, Süleyman Cem
2 / 2 shared
Castro, Oscar
3 / 9 shared
Stolpe, Mathias
1 / 5 shared
Madsen, Steen Hjelm
3 / 3 shared
Semenov, Sergei
3 / 4 shared
Dimitrov, Nikolay Krasimirov
1 / 8 shared
Lekou, D. J.
1 / 3 shared
Antoniou, Alexandros
1 / 14 shared
Nuin, Iñaki
1 / 1 shared
Nijssen, Rogier
1 / 2 shared
Lachenal, Xavier
1 / 15 shared
Saravanos, Dimitrios A.
1 / 1 shared
Solomou, Alexandros
1 / 2 shared
Machairas, Theodore
1 / 1 shared
Karakalas, Anargyros A.
1 / 1 shared
Weaver, Paul M.
1 / 28 shared
Haselbach, Philipp Ulrich
1 / 6 shared
Paschereit, Christian Oliver
1 / 2 shared
Lennie, Matthew
1 / 1 shared
Nayeri, Christian
1 / 1 shared
Pechlivanoglou, George
1 / 1 shared
Fedorov, Vladimir
1 / 6 shared
Gaiotti, Marco
3 / 17 shared
Rizzo, Cesare M.
1 / 2 shared
Stang, Henrik
3 / 70 shared
Nielsen, Michael Wenani
3 / 8 shared
Schmidt, Jacob Wittrup
1 / 34 shared
Høgh, Jacob Herold
1 / 2 shared
Waldbjørn, Jacob Paamand
1 / 8 shared
Berggreen, Christian
3 / 87 shared
Peeters, Bart
1 / 11 shared
Kahsin, Maciej
1 / 1 shared
Manzato, Simone
1 / 1 shared
Rizzo, Cesare Mario
2 / 21 shared
Hattel, Jh
1 / 160 shared
Andersen, Tom Løgstrup
1 / 19 shared
Nielsen, Per Hørlyk
5 / 5 shared
Løgstrup Andersen, Tom
1 / 10 shared
Hattel, Jesper Henri
1 / 28 shared
Sørensen, Flemming
3 / 3 shared
Jensen, Find Mølholt
3 / 3 shared
Nielsen, Magda
3 / 3 shared
Wedel-Heinen, Jakob
3 / 3 shared
Hjuler Jensen, Peter
1 / 1 shared
Dear, John P.
2 / 13 shared
Morris, Andy
2 / 3 shared
Puri, Amit
2 / 2 shared
Fergusson, Alexander
2 / 2 shared
Schytt-Nielsen, Rune
2 / 2 shared
Reffs, Joan Humble
2 / 2 shared
Lindahl, Morten Michael
2 / 2 shared
Antvorskov, Troels Skieller
2 / 2 shared
Laursen, Jeppe H.
2 / 2 shared
Skamris, Carsten
2 / 2 shared
Klein, Marcus
2 / 11 shared
Tsouvalis, Nicholas G.
1 / 1 shared
Hayman, Brian
1 / 11 shared
Jensen, Peter Hjuler
1 / 1 shared
Chart of publication period
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2024
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2014
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Co-Authors (by relevance)

  • Chen, Xiao
  • Mcgugan, Malcolm
  • Mielke, Adam
  • Benzon, Hans-Henrik
  • Skovborg Ritschel, Tobias Kasper
  • Luczak, Marcin
  • Coppotelli, Giuliano
  • Cornelis, Bram
  • Di Lorenzo, Emilio
  • Tavares, André
  • Gryllias, Konstantinos
  • Rossi, Pamela
  • Lorenzo, Emilio Di
  • Belloni, Federico
  • Berring, Peter
  • Yeniceli, Süleyman Cem
  • Castro, Oscar
  • Stolpe, Mathias
  • Madsen, Steen Hjelm
  • Semenov, Sergei
  • Dimitrov, Nikolay Krasimirov
  • Lekou, D. J.
  • Antoniou, Alexandros
  • Nuin, Iñaki
  • Nijssen, Rogier
  • Lachenal, Xavier
  • Saravanos, Dimitrios A.
  • Solomou, Alexandros
  • Machairas, Theodore
  • Karakalas, Anargyros A.
  • Weaver, Paul M.
  • Haselbach, Philipp Ulrich
  • Paschereit, Christian Oliver
  • Lennie, Matthew
  • Nayeri, Christian
  • Pechlivanoglou, George
  • Fedorov, Vladimir
  • Gaiotti, Marco
  • Rizzo, Cesare M.
  • Stang, Henrik
  • Nielsen, Michael Wenani
  • Schmidt, Jacob Wittrup
  • Høgh, Jacob Herold
  • Waldbjørn, Jacob Paamand
  • Berggreen, Christian
  • Peeters, Bart
  • Kahsin, Maciej
  • Manzato, Simone
  • Rizzo, Cesare Mario
  • Hattel, Jh
  • Andersen, Tom Løgstrup
  • Nielsen, Per Hørlyk
  • Løgstrup Andersen, Tom
  • Hattel, Jesper Henri
  • Sørensen, Flemming
  • Jensen, Find Mølholt
  • Nielsen, Magda
  • Wedel-Heinen, Jakob
  • Hjuler Jensen, Peter
  • Dear, John P.
  • Morris, Andy
  • Puri, Amit
  • Fergusson, Alexander
  • Schytt-Nielsen, Rune
  • Reffs, Joan Humble
  • Lindahl, Morten Michael
  • Antvorskov, Troels Skieller
  • Laursen, Jeppe H.
  • Skamris, Carsten
  • Klein, Marcus
  • Tsouvalis, Nicholas G.
  • Hayman, Brian
  • Jensen, Peter Hjuler
OrganizationsLocationPeople

report

Methodology for testing subcomponents; background and motivation for subcomponent testing of wind turbine rotor blades

  • Lekou, D. J.
  • Antoniou, Alexandros
  • Branner, Kim
  • Nuin, Iñaki
  • Nijssen, Rogier
Abstract

This report aims to provide an overview of the design methodology followed by wind turbine blade structural designers, along with the testing procedure on full scale blades which are followed by testing laboratories for blade manufacturers as required by the relevant standards and certification bodies’ recommendations for design and manufacturing verification. The objective of the report is not to criticize the design methodology or testing procedure and the standards thereof followed in the wind energy<br/>community, but to identify those items offered by state of the art structural design tools that cannot be verified through the currently followed testing procedures and recommend ways to overcome these limitations. The work is performed within Work-Package WP7.1 entitled “Improved and validated wind turbine structural reliability - Efficient blade structure” of the IRPWIND programme. The numerical investigations performed are based on the INNWIND.EU reference 10MW horizontal axis wind turbine [1]. The structural properties and material and layout definition used within IRPWIND are defined in the INNWIND.EU report [2]. The layout of the report includes a review of the structural analysis models used for<br/>blade design, highlighting the current state of the art. The review of the full-scale blade testing procedure is performed under Section 3, followed by the discussion on the issues of verification of design and manufacture performed through testing. Finally, methodologies for testing blade subcomponents and/or blade parts are described in 5. The present report is complemented by all details of the comparison of blade test loads against design loads on the reference blade, as provided in Annex 1. These data will<br/>facilitate direct comparisons in fine points of interest along the reference blade for the load cases considered. The recommendations of this report are relevant for the design and testing of wind turbine subcomponents, in order to verify the numerical analysis tools used in the structural design of wind turbine blades.

Topics
  • impedance spectroscopy