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2024 | OriginalPaper | Chapter

Solution of Time-Dependent Problems Using Exact Modal Analysis with Illustrative Application to One-Dimensional Truss Structures

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Abstract

The chapter delves into the solution of time-dependent problems using exact modal analysis, particularly focusing on one-dimensional truss structures. It introduces a robust method that addresses the limitations of traditional frequency-domain analysis techniques, such as the Gaver-Stehfest algorithm and Fourier series expansions. The proposed method combines advanced modal superposition techniques with equilibrium-based finite element and boundary element models, enabling the solution of transient problems with high accuracy. The chapter also highlights the development of an exact modal analysis that can be applied to problems with viscous damping, providing a more general and accurate solution compared to classical approaches. Additionally, it presents a numerical example to demonstrate the advantages of the exact technique, showcasing its superior performance in terms of accuracy and computational efficiency.

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Appendix
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Metadata
Title
Solution of Time-Dependent Problems Using Exact Modal Analysis with Illustrative Application to One-Dimensional Truss Structures
Author
Ney Augusto Dumont
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-59804-3_4

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