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Erschienen in: Applied Composite Materials 4/2019

19.06.2019

Evaluating Structural Failure of Load-Carrying Composite Box Beams with Different Geometries and Load Conditions

verfasst von: Jing Tang, Xiao Chen, Ke Yang

Erschienen in: Applied Composite Materials | Ausgabe 4/2019

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Abstract

The load-carrying component of wind turbine blades is a composite box beam that often consists of two spar caps and two shear webs. Local buckling of such beams usually leads to failure of spar caps and/or shear webs. As the failure modes change with cross-sectional geometries and load conditions, it is of interest to develop a method for efficient structural failure evaluation. As a correlation exists between linear buckling response and the potential structural failure, this study presents comprehensive numerical studies on the box beams with different external shapes and layer thicknesses to establish buckling mode maps that can be useful for the preliminary structural design. The results show that the changes of cross-sectional aspect ratio affect the buckling strength more than the change of the weight or the material usage when the spar cap buckling dominates the failure. Larger curvature of spar caps can significantly improve the buckling strength due to better resistance to the cross-sectional flattening. The evaluation method only uses the modeling techniques readily available in common commercial FE software, and no in-house user subroutines is needed, thus allowing the failure evaluation to be performed efficiently in the early design of the load-carrying box beams in wind turbine blades.

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Literatur
1.
Zurück zum Zitat DNV GL Standard, DNVGL-ST-0376, rotor blades for wind turbines, DNV GL; Edition December (2015 DNV GL Standard, DNVGL-ST-0376, rotor blades for wind turbines, DNV GL; Edition December (2015
2.
Zurück zum Zitat Tang, J., Chen, X.: Experimental investigation on ultimate strength and failure response of composite box beams used in wind turbine blades. Compos. Struct. 198, 19–34 (2018)CrossRef Tang, J., Chen, X.: Experimental investigation on ultimate strength and failure response of composite box beams used in wind turbine blades. Compos. Struct. 198, 19–34 (2018)CrossRef
3.
Zurück zum Zitat Cole, B., Miyase, A., Yu, T.P., Lo, K.H., Wang, S.S.: Failure modes and strength of composite box beam structures. In: Proceeding of the American Society for Composites 30th Annual Technical Conference (2015) Cole, B., Miyase, A., Yu, T.P., Lo, K.H., Wang, S.S.: Failure modes and strength of composite box beam structures. In: Proceeding of the American Society for Composites 30th Annual Technical Conference (2015)
4.
Zurück zum Zitat Yu, T.P., Miyase, A., Lo, K.H., Wang, S.S.: Composite box-beam failure modes and strength: 3D modeling and analysis and comparison with experimental results. In: Proceeding of the American Society for Composites 31th Annual Technical Conference (2016) Yu, T.P., Miyase, A., Lo, K.H., Wang, S.S.: Composite box-beam failure modes and strength: 3D modeling and analysis and comparison with experimental results. In: Proceeding of the American Society for Composites 31th Annual Technical Conference (2016)
5.
Zurück zum Zitat Amit, S.P.: Researching the Non-linear Geometrical Effects Caused by Static Flap-Wise Loading of a Wind Turbine Blade. Imperial College London, London (2010) Amit, S.P.: Researching the Non-linear Geometrical Effects Caused by Static Flap-Wise Loading of a Wind Turbine Blade. Imperial College London, London (2010)
6.
Zurück zum Zitat Qin, Z., Wang, J.H., Yang, K., Yu, G.G., Xu, Y., Xu, J.Z.: Design and nonlinear structural responses of multi-bolted joint composite box-beam for sectional wind turbine blades. Compos. Struct. 206, 801–813 (2018)CrossRef Qin, Z., Wang, J.H., Yang, K., Yu, G.G., Xu, Y., Xu, J.Z.: Design and nonlinear structural responses of multi-bolted joint composite box-beam for sectional wind turbine blades. Compos. Struct. 206, 801–813 (2018)CrossRef
7.
Zurück zum Zitat Fernandez, G., Usabiaga, H., Vandepitte, D.: Subcomponent development for sandwich composite wind turbine blade bonded joints analysis. Compos. Struct. 180, 41–62 (2017)CrossRef Fernandez, G., Usabiaga, H., Vandepitte, D.: Subcomponent development for sandwich composite wind turbine blade bonded joints analysis. Compos. Struct. 180, 41–62 (2017)CrossRef
8.
Zurück zum Zitat Sayer, F., Antoniou, A., Wingerde, A.: Investigation of structural bond lines in wind turbine blades by sub-component tests. Int. J. Adhes. Adhes. 37, 129–135 (2012)CrossRef Sayer, F., Antoniou, A., Wingerde, A.: Investigation of structural bond lines in wind turbine blades by sub-component tests. Int. J. Adhes. Adhes. 37, 129–135 (2012)CrossRef
9.
Zurück zum Zitat Leong, M., Overgaard, L.C.T., Thomsen, O.T., Lund, E., Daniel, I.M.: Investigation of failure mechanisms in GFRP sandwich structures with face sheet wrinkle defects used for wind turbine blades. Compos. Struct. 94(2), 768–778 (2012)CrossRef Leong, M., Overgaard, L.C.T., Thomsen, O.T., Lund, E., Daniel, I.M.: Investigation of failure mechanisms in GFRP sandwich structures with face sheet wrinkle defects used for wind turbine blades. Compos. Struct. 94(2), 768–778 (2012)CrossRef
10.
Zurück zum Zitat Branner, K., Berring, P., Berggreen, C., Knudsen, H.W.: Torsional performance of wind turbine blades – Part II: Numerical validation. In: ICCM International Conferences on Composite Materials, pp. 1120–1121 (2007) Branner, K., Berring, P., Berggreen, C., Knudsen, H.W.: Torsional performance of wind turbine blades – Part II: Numerical validation. In: ICCM International Conferences on Composite Materials, pp. 1120–1121 (2007)
11.
Zurück zum Zitat Chen, X., Tang, J., Yang, K.: Modeling multiple failures of composite box beams used in wind turbine blades. Composite Structures 217,130-142 (2019)CrossRef Chen, X., Tang, J., Yang, K.: Modeling multiple failures of composite box beams used in wind turbine blades. Composite Structures 217,130-142 (2019)CrossRef
12.
Zurück zum Zitat Schubel, P.J.: Technical cost modelling for a generic 45-m wind turbine blade produced by vacuum infusion (VI). Renew Energy 35 (1), 183-189 (2010)CrossRef Schubel, P.J.: Technical cost modelling for a generic 45-m wind turbine blade produced by vacuum infusion (VI). Renew Energy 35 (1), 183-189 (2010)CrossRef
Metadaten
Titel
Evaluating Structural Failure of Load-Carrying Composite Box Beams with Different Geometries and Load Conditions
verfasst von
Jing Tang
Xiao Chen
Ke Yang
Publikationsdatum
19.06.2019
Verlag
Springer Netherlands
Erschienen in
Applied Composite Materials / Ausgabe 4/2019
Print ISSN: 0929-189X
Elektronische ISSN: 1573-4897
DOI
https://doi.org/10.1007/s10443-019-09776-4

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