An Integrated Methodology for Full-Field Imaging and Numerical Analysis of Complex Composite Substructures

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

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An Integrated Methodology for Full-Field Imaging and Numerical Analysis of Complex Composite Substructures. / Callaghan, JS; Thomsen, OT; Dulieu-Barton, JM et al.
ICCM22 2019. Melbourne, VIC: Engineers Australia, 2019. p. 1947–1952.

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

HarvardHarvard

Callaghan, JS, Thomsen, OT, Dulieu-Barton, JM & Laustsen, S 2019, An Integrated Methodology for Full-Field Imaging and Numerical Analysis of Complex Composite Substructures. in ICCM22 2019. Engineers Australia, Melbourne, VIC, pp. 1947–1952. <https://search.informit.org/doi/10.3316/informit.870985312844226>

APA

CBE

Callaghan JS, Thomsen OT, Dulieu-Barton JM, Laustsen S. 2019. An Integrated Methodology for Full-Field Imaging and Numerical Analysis of Complex Composite Substructures. In ICCM22 2019. Melbourne, VIC: Engineers Australia. pp. 1947–1952.

MLA

VancouverVancouver

Callaghan JS, Thomsen OT, Dulieu-Barton JM, Laustsen S. An Integrated Methodology for Full-Field Imaging and Numerical Analysis of Complex Composite Substructures. In ICCM22 2019. Melbourne, VIC: Engineers Australia. 2019. p. 1947–1952

Author

Callaghan, JS ; Thomsen, OT ; Dulieu-Barton, JM et al. / An Integrated Methodology for Full-Field Imaging and Numerical Analysis of Complex Composite Substructures. ICCM22 2019. Melbourne, VIC : Engineers Australia, 2019. pp. 1947–1952

RIS

TY - GEN

T1 - An Integrated Methodology for Full-Field Imaging and Numerical Analysis of Complex Composite Substructures

AU - Callaghan, JS

AU - Thomsen, OT

AU - Dulieu-Barton, JM

AU - Laustsen, S

PY - 2019/1/1

Y1 - 2019/1/1

N2 - A “pixel-matching” method is described that is used to compare and combine multi-modal full-field data from experimental and numerical sources, by spatially aligning and interpolating to a common resolution. A wind turbine blade (WTB) substructure is used as a demonstrator that is loaded in three-point bending. Experimental results are captured using Digital Image Correlation (DIC) and Thermoelastic Stress Analysis (TSA), and numerical predictions are made using Finite Element Analysis (FEA), from which surface data is extracted. The datasets are fused using various metrics and analysed for features that will be used to discern improvements in the experiments and numerical analyses. This method will help to develop high-fidelity substructural testing procedures that will reduce the design and development time and cost of WTBs.

AB - A “pixel-matching” method is described that is used to compare and combine multi-modal full-field data from experimental and numerical sources, by spatially aligning and interpolating to a common resolution. A wind turbine blade (WTB) substructure is used as a demonstrator that is loaded in three-point bending. Experimental results are captured using Digital Image Correlation (DIC) and Thermoelastic Stress Analysis (TSA), and numerical predictions are made using Finite Element Analysis (FEA), from which surface data is extracted. The datasets are fused using various metrics and analysed for features that will be used to discern improvements in the experiments and numerical analyses. This method will help to develop high-fidelity substructural testing procedures that will reduce the design and development time and cost of WTBs.

M3 - Conference contribution

SN - 9781925627220

SP - 1947

EP - 1952

BT - ICCM22 2019

PB - Engineers Australia

CY - Melbourne, VIC

ER -