Analysis of the Dynamic Response of Photovoltaic Module Structures
DOI:
https://doi.org/10.70567/mc.v42.ocsid8482Palabras clave:
Finite element method, Modal analysis, Photovoltaic structures, Dynamic analysis, Experimental analysisResumen
This paper presents an analysis of the dynamic response of a metal support structure for photovoltaic modules. The main objective of this study was identify the natural frequencies and validate a numerical model developed using finite element method. The structure was modeled using beam and shell elements, using commercial steel and aluminum profiles. The photovoltaic modules were considered as rigid bodies coupled to the structure. The experimental analysis was carried out using accelerometers positioned at strategic points on the structure. Excitations were applied by means of pulses. The Fast Fourier Transform (FFT) was applied to the signals obtained and processed. Furthermore, the four fundamentals frequencies were compared with the results by numerical modal analysis. The correlation between the data showed a relative error of less than 5% and a Pearson coefficient of more than 94%, demonstrating high fidelity between the models. The results validate the numerical modeling of the structure and show its applicability in future analyses, such as optimizing structural profiles and evaluating performance under dynamic loads. The methodology employed proves to be effective for modal characterization of structural systems applied to photovoltaic plants.
Citas
Bathe K.J. Finite Element Procedures in Engineering. Prentice-Hall, 1998.
BRÜEL and KJÆR. Piezoelectric accelerometers. 2024. Accessed: 2025-07-05.
Rao S.S. Mechanical Vibrations. Pearson-Prentice Hall, 2008.
Wittwer A.R., Podestá J.M., Castro H.G., Mroginski J.L., Marighetti J.O., De Bortoli M.E., Paz R.R., and Mateo F. Wind loading and its effects on photovoltaic modules: An experimental–computational study to assess the stress on structures. Solar Energy, 240:315–328, 2022. http://doi.org/10.1016/j.solener.2022.04.061. Accessed: 2025-07-05.
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Derechos de autor 2025 Asociación Argentina de Mecánica Computacional

Esta obra está bajo una licencia internacional Creative Commons Atribución 4.0.
Esta publicación es de acceso abierto diamante, sin ningún tipo de costo para los autores ni los lectores.
Solo se publicarán aquellos trabajos que han sido aceptados para su publicación y han sido presentados en el congreso de AMCA.

