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Asymptotic Analysis of an Elastic Layer under Light Fluid Loading

Shamsi, Sheeru; Prikazchikova, Ludmila

Authors

Sheeru Shamsi



Abstract

Asymptotic analysis for an elastic layer under light fluid loading was developed. The ratio of fluid and solid densities was chosen as the main small parameter determining a novel scaling. The leading- and next-order approximations were derived from the full dispersion relation corresponding to long-wave, low-frequency, antisymmetric motions. The asymptotic plate models, including the equations of motion and the impenetrability condition, motivated by the aforementioned shortened dispersion equations, were derived for a plane-strain setup. The key findings included, in particular, the necessity of taking into account transverse plate inertia at the leading order, which is not the case for heavy fluid loading. In addition, the transverse shear deformation, rotation inertia, and a number of other corrections appeared at the next order, contrary to the previous asymptotic developments for fluid-loaded plates not assuming a light fluid loading scenario.

Citation

Shamsi, S., & Prikazchikova, L. (in press). Asymptotic Analysis of an Elastic Layer under Light Fluid Loading. Mathematics, 12(10), Article 1465. https://doi.org/10.3390/math12101465

Journal Article Type Article
Acceptance Date May 6, 2024
Online Publication Date May 9, 2024
Deposit Date May 28, 2024
Journal Mathematics
Electronic ISSN 2227-7390
Publisher MDPI
Peer Reviewed Peer Reviewed
Volume 12
Issue 10
Article Number 1465
DOI https://doi.org/10.3390/math12101465
Public URL https://keele-repository.worktribe.com/output/833350
Publisher URL https://www.mdpi.com/2227-7390/12/10/1465