Cargando…

A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves

The reliability of the wind turbine blade (WTB) evaluation using a new criterion is presented in the work. Variation of the ultrasonic guided waves (UGW) phase velocity is proposed to be used as a new criterion for defect detection. Based on an intermediate value between the maximum and minimum valu...

Descripción completa

Detalles Bibliográficos
Autores principales: Raišutis, Renaldas, Tiwari, Kumar Anubhav, Žukauskas, Egidijus, Tumšys, Olgirdas, Draudvilienė, Lina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309722/
https://www.ncbi.nlm.nih.gov/pubmed/34300622
http://dx.doi.org/10.3390/s21144879
_version_ 1783728587983028224
author Raišutis, Renaldas
Tiwari, Kumar Anubhav
Žukauskas, Egidijus
Tumšys, Olgirdas
Draudvilienė, Lina
author_facet Raišutis, Renaldas
Tiwari, Kumar Anubhav
Žukauskas, Egidijus
Tumšys, Olgirdas
Draudvilienė, Lina
author_sort Raišutis, Renaldas
collection PubMed
description The reliability of the wind turbine blade (WTB) evaluation using a new criterion is presented in the work. Variation of the ultrasonic guided waves (UGW) phase velocity is proposed to be used as a new criterion for defect detection. Based on an intermediate value between the maximum and minimum values, the calculation of the phase velocity threshold is used for defect detection, location and sizing. The operation of the proposed technique is verified using simulation and experimental studies. The artificially milled defect having a diameter of 81 mm on the segment of WTB is used for verification of the proposed technique. After the application of the proposed evaluation technique for analysis of the simulated B-scan image, the coordinates of defect edges have been estimated with relative errors of 3.7% and 3%, respectively. The size of the defect was estimated with a relative error of 2.7%. In the case of an experimentally measured B-scan image, the coordinates of defect edges have been estimated with relative errors of 12.5% and 3.9%, respectively. The size of the defect was estimated with a relative error of 10%. The comparative results obtained by modelling and experiment show the suitability of the proposed new criterion to be used for the defect detection tasks solving.
format Online
Article
Text
id pubmed-8309722
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-83097222021-07-25 A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves Raišutis, Renaldas Tiwari, Kumar Anubhav Žukauskas, Egidijus Tumšys, Olgirdas Draudvilienė, Lina Sensors (Basel) Article The reliability of the wind turbine blade (WTB) evaluation using a new criterion is presented in the work. Variation of the ultrasonic guided waves (UGW) phase velocity is proposed to be used as a new criterion for defect detection. Based on an intermediate value between the maximum and minimum values, the calculation of the phase velocity threshold is used for defect detection, location and sizing. The operation of the proposed technique is verified using simulation and experimental studies. The artificially milled defect having a diameter of 81 mm on the segment of WTB is used for verification of the proposed technique. After the application of the proposed evaluation technique for analysis of the simulated B-scan image, the coordinates of defect edges have been estimated with relative errors of 3.7% and 3%, respectively. The size of the defect was estimated with a relative error of 2.7%. In the case of an experimentally measured B-scan image, the coordinates of defect edges have been estimated with relative errors of 12.5% and 3.9%, respectively. The size of the defect was estimated with a relative error of 10%. The comparative results obtained by modelling and experiment show the suitability of the proposed new criterion to be used for the defect detection tasks solving. MDPI 2021-07-17 /pmc/articles/PMC8309722/ /pubmed/34300622 http://dx.doi.org/10.3390/s21144879 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Raišutis, Renaldas
Tiwari, Kumar Anubhav
Žukauskas, Egidijus
Tumšys, Olgirdas
Draudvilienė, Lina
A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves
title A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves
title_full A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves
title_fullStr A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves
title_full_unstemmed A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves
title_short A Novel Defect Estimation Approach in Wind Turbine Blades Based on Phase Velocity Variation of Ultrasonic Guided Waves
title_sort novel defect estimation approach in wind turbine blades based on phase velocity variation of ultrasonic guided waves
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309722/
https://www.ncbi.nlm.nih.gov/pubmed/34300622
http://dx.doi.org/10.3390/s21144879
work_keys_str_mv AT raisutisrenaldas anoveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT tiwarikumaranubhav anoveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT zukauskasegidijus anoveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT tumsysolgirdas anoveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT draudvilienelina anoveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT raisutisrenaldas noveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT tiwarikumaranubhav noveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT zukauskasegidijus noveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT tumsysolgirdas noveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves
AT draudvilienelina noveldefectestimationapproachinwindturbinebladesbasedonphasevelocityvariationofultrasonicguidedwaves