PSI - Issue 17

Pedro J. Sousa et al. / Procedia Structural Integrity 17 (2019) 812–821 Author name / Structural Integrity Procedia 00 (2019) 000 – 000

821

10

Operacional Competitividade e Internacionalização – Compete2020 and Fundos Nacionais through FCT – Fundação para a Ciência e a Tecnologia through project PTDC/EME-EME/29339/2017 - Monitorização Multiescala de Fendas.

References

[1] I. Bucher, D.J. Ewins, Modal analysis and testing of rotating structures, Philos. Trans. R. Soc. London. Ser. A Math. Phys. Eng. Sci. 359 (2001) 61 – 96. doi:10.1098/rsta.2000.0714. [2] J. Winstroth, J.R. Seume, Wind Turbine Rotor Blade Monitoring using Digital Image Correlation: Assessment on a Scaled Model, in: 32nd ASME Wind Energy Symp., American Institute of Aeronautics and Astronautics, 2014. doi:doi:10.2514/6.2014 139610.2514/6.2014-1396. [3] Y. Bazilevs, M. ‐C. Hsu, J. Kiendl, R. Wüchner, K. ‐U. Bletzinger, 3D simulation of wind turbine rotors at full scale. Part II: Fluid – structure interaction modeling with composite blades, Int. J. Numer. Methods Fluids. 65 (2011) 236 – 253. doi:10.1002/fld.2454. [4] J. Winstroth, J.R. Seume, Wind turbine rotor blade monitoring using digital image correlation: 3d simulation of the experimental setup, in: Eur. Wind Energy Assoc. - EWEA 2014, Barcelona, 2014. [5] J. Winstroth, L. Schoen, B. Ernst, J.R. Seume, Wind turbine rotor blade monitoring using digital image correlation: a comparison to aeroelastic simulations of a multi-megawatt wind turbine, J. Phys. Conf. Ser. 524 (2014) 12064. http://stacks.iop.org/1742 6596/524/i=1/a=012064. [6] G. Santo, M. Peeters, W. Van Paepegem, J. Degroote, Dynamic load and stress analysis of a large horizontal axis wind turbine using full scale fluid-structure interaction simulation, Renew. Energy. (2019). doi:10.1016/j.renene.2019.03.053. [7] F. Boden, K. Bodensiek, B. Stasicki, Application of image pattern correlation for non-intrusive deformation measurements of fast rotating objects on aircrafts, in: 2009: pp. 75222S-75222S – 10. http://dx.doi.org/10.1117/12.852703. [8] P.J. Sousa, J.M.R.S. Tavares, P.J.S. Tavares, P.M.G.P. Moreira, Correction of rigid body motion in deformation measurement of rotating objects, Measurement. 129 (2018) 436 – 444. doi:10.1016/J.MEASUREMENT.2018.07.049. [9] P.J. Sousa, F. Barros, P.J. Tavares, P.M.G.P. Moreira, Digital image correlation displacement measurement of a rotating RC helicopter blade, Eng. Fail. Anal. 90 (2018) 371 – 379. doi:10.1016/j.engfailanal.2018.04.005. [10] P.J. Sousa, F. Barros, P. J. Tavares, P.M.G.P. Moreira, Displacement measurement and shape acquisition of an RC helicopter blade using Digital Image Correlation, Procedia Struct. Integr. 5 (2017) 1253 – 1259. doi:10.1016/j.prostr.2017.07.097. [11] Y. Chen, Z. Wang, G. Tsai, Two-way Fluid-Structure Interaction Simulation of a Micro Horizontal Axis Wind Turbine, (2015) 33 – 44. [12] ANSYS Inc., ANSYS® Fluent, Release 18.2, Help System, User’s Guide - 11. Modelling Turbulence, (2017). [13] Shawn Wasserman, Choosing the Right Turbulence Model for Your CFD Simulation - Engineering.com, (2016). https://www.engineering.com/DesignSoftware/DesignSoftwareArticles/ArticleID/13743/Choosing-the-Right-Turbulence-Model-for Your-CFD-Simulation.aspx (accessed March 21, 2019).

Made with FlippingBook Digital Publishing Software