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Pawel Packo

Researcher at AGH University of Science and Technology

Publications -  77
Citations -  855

Pawel Packo is an academic researcher from AGH University of Science and Technology. The author has contributed to research in topics: Lamb waves & Wave propagation. The author has an hindex of 15, co-authored 70 publications receiving 653 citations. Previous affiliations of Pawel Packo include Georgia Institute of Technology.

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Lamb wave propagation modelling and simulation using parallel processing architecture and graphical cards

TL;DR: A graphical processing unit (GPU) and computer unified device architecture (CUDA) and an implementation for Lamb wave propagation modelling in complex structures are demonstrated and can be used in many practical applications of science and engineering.
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GPU-based local interaction simulation approach for simplified temperature effect modelling in Lamb wave propagation used for damage detection

TL;DR: The paper explores a newly proposed, very efficient numerical simulation tool for Lamb wave propagation modelling in aluminum plates exposed to temperature changes using a local interaction approach implemented with a parallel computing architecture and graphics cards.
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Acoustic source localization in an anisotropic plate without knowing its material properties - A new approach.

TL;DR: A new technique is introduced for acoustic source localization in an anisotropic plate by dealing with non‐circular shape of wave fronts, which means the acoustic source could be successfully localized without knowing the material properties of the plate.
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Multiscale electro-mechanical modeling of carbon nanotube composites

TL;DR: In this article, a numerical framework for modeling composite materials based on carbon nanotubes that are used in strain sensors is presented, which allows for multiscale analysis of electro-mechanical properties of such systems.
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Generalized semi-analytical finite difference method for dispersion curves calculation and numerical dispersion analysis for Lamb waves

TL;DR: The proposed approach utilizes the wave equation and through-thickness-only discretization of anisotropic, layered plates to obtain the Lamb wave characteristics, so that layered structures, such as composites, can be analyzed in a straightforward manner.