Please use this identifier to cite or link to this item: http://hdl.handle.net/11189/3356
Title: Solvability of a hybrid model for a vertical slender structure
Authors: Labuschagne, A
Van Rensburg, NFJ
Van der Merwe, AJ
Keywords: Existence results;Beam vibration;damping;Hybrid model
Issue Date: 2009
Publisher: JNAIAM
Source: Labuschagne, A., Van Rensburg, N. F. J., & Van Der Merwe, A. J. (2009). Solvability of a Hybrid Model for a Vertical Slender Structure. In NUMERICAL ANALYSIS AND APPLIED MATHEMATICS: International Conference of Numerical Analysis and Applied Mathematics (Vol. 936, No. 1, pp. 328-331). AIP Publishing.
Abstract: We consider the solvability of a hybrid model for the vibration of a vertical slender structure mounted on an elastic seating. The slender structure is modeled as a Rayleigh beam and gravity is taken into account. The seating and foundation block are modeled as rigid bodies connected by elastic springs with damping mechanisms. We show how an existence result for a general linear vibration problem in variational form may be applied to the weak variational problem for this system.
Description: Labuschagne, A., Van Rensburg, N. F. J., & Van Der Merwe, A. J. (2009). "Solvability of a Hybrid Model for a Vertical Slender Structure". - The definitive, peer-reviewed and edited version of this article is published in Journal of Numerical Analysis, Industrial and Applied Mathematics (JNAIAM), International Conference of Numerical Analysis and Applied Mathematics (Vol. 936, No. 1, pp. 328-331). ISSN 1790–8140.
URI: http://hdl.handle.net/11189/3356
Appears in Collections:Eng - Conference Proceedings

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